Neurologische Klinik und Poliklinik
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Fibromyalgia syndrome (FMS) is a heterogeneous chronic pain syndrome characterized by musculoskeletal pain and other key co-morbidities including fatigue and a depressed mood. FMS involves altered functioning of the central and peripheral nervous system (CNS, PNS) and immune system, but the specific molecular pathophysiology remains unclear. Anti-cholinergic treatment is effective in FMS patient subgroups, and cholinergic signaling is a strong modulator of CNS and PNS immune processes. Therefore, we used whole blood small RNA-sequencing of female FMS patients and healthy controls to profile microRNA regulators of cholinergic transcripts (CholinomiRs). We compared microRNA profiles with those from Parkinson's disease (PD) patients with pain as disease controls. We validated the sequencing results with quantitative real-time PCR (qRT-PCR) and identified cholinergic targets. Further, we measured serum cholinesterase activity in FMS patients and healthy controls. Small RNA-sequencing revealed FMS-specific changes in 19 CholinomiRs compared to healthy controls and PD patients. qRT-PCR validated miR-182-5p upregulation, distinguishing FMS patients from healthy controls. mRNA targets of CholinomiRs bone morphogenic protein receptor 2 and interleukin 6 signal transducer were downregulated. Serum acetylcholinesterase levels and cholinesterase activity in FMS patients were unchanged. Our findings identified an FMS-specific CholinomiR signature in whole blood, modulating immune-related gene expression.
Parkinson’s disease (PD) is a progressive and debilitating chronic disease that affects more than six million people worldwide, with rising prevalence. The hallmarks of PD are motor deficits, the spreading of pathological α-synuclein clusters in the central nervous system, and neuroinflammatory processes. PD is treated symptomatically, as no causally-acting drug or procedure has been successfully established for clinical use. Various pathways contributing to dopaminergic neuron loss in PD have been investigated and described to interact with the innate and adaptive immune system. We discuss the possible contribution of interconnected pathways related to the immune response, focusing on the pathophysiology and neurodegeneration of PD. In addition, we provide an overview of clinical trials targeting neuroinflammation in PD.
Diabetes Mellitus Is a Possible Risk Factor for Nodo-paranodopathy With Antiparanodal Autoantibodies
(2022)
Background and Objectives
Nodo-paranodopathies are peripheral neuropathies with dysfunction of the node of Ranvier. Affected patients who are seropositive for antibodies against adhesion molecules like contactin-1 and neurofascin show distinct clinical features and a disruption of the paranodal complex. An axoglial dysjunction is also a characteristic finding of diabetic neuropathy. Here, we aim to investigate a possible association of antibody-mediated nodo-paranodopathy and diabetes mellitus (DM).
Methods
We retrospectively analyzed clinical data of 227 patients with chronic inflammatory demyelinating polyradiculoneuropathy and Guillain-Barré syndrome from multiple centers in Germany who had undergone diagnostic testing for antiparanodal antibodies targeting neurofascin-155, pan-neurofascin, contactin-1–associated protein 1, and contactin-1. To study possible direct pathogenic effects of antiparanodal antibodies, we performed immunofluorescence binding assays on human pancreatic tissue sections.
Results The frequency of DM was 33.3% in seropositive patients and thus higher compared with seronegative patients (14.1%, OR = 3.04, 95% CI = 1.31–6.80). The relative risk of DM in seropositive patients was 3.4-fold higher compared with the general German population. Seropositive patients with DM most frequently harbored anti–contactin-1 antibodies and had higher antibody titers than seropositive patients without DM. The diagnosis of DM preceded the onset of neuropathy in seropositive patients. No immunoreactivity of antiparanodal antibodies against pancreatic tissue was detected.
Discussion
We report an association of nodo-paranodopathy and DM. Our results suggest that DM may be a potential risk factor for predisposing to developing nodo-paranodopathy and argue against DM being induced by the autoantibodies. Our findings set the basis for further research investigating underlying immunopathogenetic connections.
Aims
Cognitive dysfunction occurs frequently in patients with heart failure (HF), but early detection remains challenging. Serum glial fibrillary acidic protein (GFAP) is an emerging biomarker of cognitive decline in disorders of primary neurodegeneration such as Alzheimer's disease. We evaluated the utility of serum GFAP as a biomarker for cognitive dysfunction and structural brain damage in patients with stable chronic HF.
Methods and results
Using bead-based single molecule immunoassays, we quantified serum levels of GFAP in patients with HF participating in the prospective Cognition.Matters-HF study. Participants were extensively phenotyped, including cognitive testing of five separate domains and magnetic resonance imaging (MRI) of the brain. Univariable and multivariable models, also accounting for multiple testing, were run. One hundred and forty-six chronic HF patients with a mean age of 63.8 ± 10.8 years were included (15.1% women). Serum GFAP levels (median 246 pg/mL, quartiles 165, 384 pg/mL; range 66 to 1512 pg/mL) did not differ between sexes. In the multivariable adjusted model, independent predictors of GFAP levels were age (T = 5.5; P < 0.001), smoking (T = 3.2; P = 0.002), estimated glomerular filtration rate (T = −4.7; P < 0.001), alanine aminotransferase (T = −2.1; P = 0.036), and the left atrial end-systolic volume index (T = 3.4; P = 0.004). NT-proBNP but not serum GFAP explained global cerebral atrophy beyond ageing. However, serum GFAP levels were associated with the cognitive domain visual/verbal memory (T = −3.0; P = 0.003) along with focal hippocampal atrophy (T = 2.3; P = 0.025).
Conclusions
Serum GFAP levels are affected by age, smoking, and surrogates of the severity of HF. The association of GFAP with memory dysfunction suggests that astroglial pathologies, which evade detection by conventional MRI, may contribute to memory loss beyond ageing in patients with chronic HF.
During ischemic stroke, infarct growth before recanalization diminishes functional outcome. Hence, adjunct treatment options to protect the ischemic penumbra before recanalization are eagerly awaited. In experimental stroke targeting two different pathways conferred protection from penumbral tissue loss: (1) enhancement of hypoxic tolerance of neurons by deletion of the calcium channel subunit Orai2 and (2) blocking of detrimental lymphocyte–platelet responses. However, until now, no preclinical stroke study has assessed the potential of combining neuroprotective with anti-thrombo-inflammatory interventions to augment therapeutic effects. We induced focal cerebral ischemia in Orai2-deficient (Orai2\(^{-/-}\)) mice by middle cerebral artery occlusion (MCAO). Animals were treated with anti-glycoprotein Ib alpha (GPIbα) Fab fragments (p0p/B Fab) blocking GPIbα–von Willebrand factor (vWF) interactions. Rat immunoglobulin G (IgG) Fab was used as the control treatment. The extent of infarct growth before recanalization was assessed at 4 h after MCAO. Moreover, infarct volumes were determined 6 h after recanalization (occlusion time: 4 h). Orai2 deficiency significantly halted cerebral infarct progression under occlusion. Inhibition of platelet GPIbα further reduced primary infarct growth in Orai2\(^{-/-}\) mice. During ischemia–reperfusion, upon recanalization, mice were likewise protected. All in all, we show that neuroprotection in Orai2\(^{-/-}\) mice can be augmented by targeting thrombo-inflammation. This supports the clinical development of combined neuroprotective/anti-platelet strategies in hyper-acute stroke.
Acute ischemic cardiac injury predisposes one to cognitive impairment, dementia, and depression. Pathophysiologically, recent positron emission tomography data suggest astroglial activation after experimental myocardial infarction (MI). We analyzed peripheral surrogate markers of glial (and neuronal) damage serially within 12 months after the first ST-elevation MI (STEMI). Serum levels of glial fibrillary acidic protein (GFAP) and neurofilament light chain (NfL) were quantified using ultra-sensitive molecular immunoassays. Sufficient biomaterial was available from 45 STEMI patients (aged 28 to 78 years, median 56 years, 11% female). The median (quartiles) of GFAP was 63.8 (47.0, 89.9) pg/mL and of NfL 10.6 (7.2, 14.8) pg/mL at study entry 0–4 days after STEMI. GFAP after STEMI increased in the first 3 months, with a median change of +7.8 (0.4, 19.4) pg/mL (p = 0.007). It remained elevated without further relevant increases after 6 months (+11.7 (0.6, 23.5) pg/mL; p = 0.015), and 12 months (+10.3 (1.5, 22.7) pg/mL; p = 0.010) compared to the baseline. Larger relative infarction size was associated with a higher increase in GFAP (ρ = 0.41; p = 0.009). In contrast, NfL remained unaltered in the course of one year. Our findings support the idea of central nervous system involvement after MI, with GFAP as a potential peripheral biomarker of chronic glial damage as one pathophysiologic pathway.
Aims
We aimed to analyze prevalence and predictors of NOAC off-label under-dosing in AF patients before and after the index stroke.
Methods
The post hoc analysis included 1080 patients of the investigator-initiated, multicenter prospective Berlin Atrial Fibrillation Registry, designed to analyze medical stroke prevention in AF patients after acute ischemic stroke.
Results
At stroke onset, an off-label daily dose was prescribed in 61 (25.5%) of 239 NOAC patients with known AF and CHA2DS2-VASc score ≥ 1, of which 52 (21.8%) patients were under-dosed. Under-dosing was associated with age ≥ 80 years in patients on rivaroxaban [OR 2.90, 95% CI 1.05-7.9, P = 0.04; n = 29] or apixaban [OR 3.24, 95% CI 1.04-10.1, P = 0.04; n = 22]. At hospital discharge after the index stroke, NOAC off-label dose on admission was continued in 30 (49.2%) of 61 patients. Overall, 79 (13.7%) of 708 patients prescribed a NOAC at hospital discharge received an off-label dose, of whom 75 (10.6%) patients were under-dosed. Rivaroxaban under-dosing at discharge was associated with age ≥ 80 years [OR 3.49, 95% CI 1.24-9.84, P = 0.02; n = 19]; apixaban under-dosing with body weight ≤ 60 kg [OR 0.06, 95% CI 0.01-0.47, P < 0.01; n = 56], CHA2DS2-VASc score [OR per point 1.47, 95% CI 1.08-2.00, P = 0.01], and HAS-BLED score [OR per point 1.91, 95% CI 1.28-2.84, P < 0.01].
Conclusion
At stroke onset, off-label dosing was present in one out of four, and under-dosing in one out of five NOAC patients. Under-dosing of rivaroxaban or apixaban was related to old age. In-hospital treatment after stroke reduced off-label NOAC dosing, but one out of ten NOAC patients was under-dosed at discharge.
Cerebrospinal fluid (CSF) and serum biomarkers are critical for clinical decision making in neurological diseases. In cerebral small vessel disease (CSVD), white matter hyperintensities (WMH) are an important neuroimaging biomarker, but more blood-based biomarkers capturing different aspects of CSVD pathology are needed. In 42 sporadic CSVD patients, we prospectively analysed WMH on magnetic resonance imaging (MRI) and the biomarkers neurofilament light chain (NfL), glial fibrillary acidic protein (GFAP), chitinase3-like protein 1 (CHI3L1), Tau and Aβ1-42 in CSF and NfL and GFAP in serum. GFAP and CHI3L1 expression was studied in post-mortem brain tissue in additional cases. CSVD cases with higher serum NfL and GFAP levels had a higher modified Rankin Scale (mRS) and NIHSS score and lower CSF Aβ1-42 levels, whereas the CSF NfL and CHI3L1 levels were positively correlated with the WMH load. Moreover, the serum GFAP levels significantly correlated with the neurocognitive functions. Pathological analyses in CSVD revealed a high density of GFAP-immunoreactive fibrillary astrocytic processes in the periventricular white matter and clusters of CHI3L1-immunoreactive astrocytes in the basal ganglia and thalamus. Thus, besides NfL, serum GFAP is a highly promising fluid biomarker of sporadic CSVD, because it does not only correlate with the clinical severity but also correlates with the cognitive function in patients.
Recent advances in proteomic technologies now allow unparalleled assessment of the molecular composition of a wide range of sample types. However, the application of such technologies and techniques should not be undertaken lightly. Here, we describe why the design of a proteomics experiment itself is only the first step in yielding high-quality, translatable results. Indeed, the effectiveness and/or impact of the majority of contemporary proteomics screens are hindered not by commonly considered technical limitations such as low proteome coverage but rather by insufficient analyses. Proteomic experimentation requires a careful methodological selection to account for variables from sample collection, through to database searches for peptide identification to standardised post-mass spectrometry options directed analysis workflow, which should be adjusted for each study, from determining when and how to filter proteomic data to choosing holistic versus trend-wise analyses for biologically relevant patterns. Finally, we highlight and discuss the difficulties inherent in the modelling and study of the majority of progressive neurodegenerative conditions. We provide evidence (in the context of neurodegenerative research) for the benefit of undertaking a comparative approach through the application of the above considerations in the alignment of publicly available pre-existing data sets to identify potential novel regulators of neuronal stability.
Freezing of gait (FOG) is a sudden episodic inability to produce effective stepping despite the intention to walk. It typically occurs during gait initiation (GI) or modulation and may lead to falls. We studied the anticipatory postural adjustments (imbalance, unloading, and stepping phase) at GI in 23 patients with Parkinson’s disease (PD) and FOG (PDF), 20 patients with PD and no previous history of FOG (PDNF), and 23 healthy controls (HCs). Patients performed the task when off dopaminergic medications. The center of pressure (CoP) displacement and velocity during imbalance showed significant impairment in both PDNF and PDF, more prominent in the latter patients. Several measurements were specifically impaired in PDF patients, especially the CoP displacement along the anteroposterior axis during unloading. The pattern of segmental center of mass (SCoM) movements did not show differences between groups. The standing postural profile preceding GI did not correlate with outcome measurements. We have shown impaired motor programming at GI in Parkinsonian patients. The more prominent deterioration of unloading in PDF patients might suggest impaired processing and integration of somatosensory information subserving GI. The unaltered temporal movement sequencing of SCoM might indicate some compensatory cerebellar mechanisms triggering time-locked models of body mechanics in PD.
Idiopathic Parkinson’s disease (PD) is characterized by a progredient degeneration of the brain, starting at deep subcortical areas such as the dorsal motor nucleus of the glossopharyngeal and vagal nerves (DM) (stage 1), followed by the coeruleus–subcoeruleus complex; (stage 2), the substantia nigra (SN) (stage 3), the anteromedial temporal mesocortex (MC) (stage 4), high-order sensory association areas and prefrontal fields (HC) (stage 5) and finally first-order sensory association areas, premotor areas, as well as primary sensory and motor field (FC) (stage 6). Autoimmunity might play a role in PD pathogenesis. Here we analyzed whether anti-brain autoantibodies differentially recognize different human brain areas and identified autoantigens that correlate with the above-described dissemination of PD pathology in the brain. Brain tissue was obtained from deceased individuals with no history of neurological or psychiatric disease and no neuropathological abnormalities. Tissue homogenates from different brain regions (DM, SN, MC, HC, FC) were subjected to SDS-PAGE and Western blot. Blots were incubated with plasma samples from 30 PD patients and 30 control subjects and stained with anti-IgG antibodies to detect anti-brain autoantibodies. Signals were quantified. Prominent autoantigens were identified by 2D-gel-coupled mass spectrometry sequencing. Anti-brain autoantibodies are frequent and occur both in healthy controls and individuals with PD. Glial fibrillary acidic protein (GFAP) was identified as a prominent autoantigen recognized in all plasma samples. GFAP immunoreactivity was highest in DM areas and lowest in FC areas with no significant differences in anti-GFAP autoantibody titers between healthy controls and individuals with PD. The anti-GFAP autoimmunoreactivity of different brain areas correlates with the dissemination of histopathological neurodegeneration in PD. We hypothesize that GFAP autoantibodies are physiological but might be involved as a cofactor in PD pathogenesis secondary to a leakage of the blood–brain barrier.
Rag1\(^{−/−}\) mice, lacking functional B and T cells, have been extensively used as an adoptive transfer model to evaluate neuroinflammation in stroke research. However, it remains unknown whether natural killer (NK) cell development and functions are altered in Rag1\(^{−/−}\) mice as well. This connection has been rarely discussed in previous studies but might have important implications for data interpretation. In contrast, the NOD-Rag1\(^{null}\)IL2rg\(^{null}\) (NRG) mouse model is devoid of NK cells and might therefore eliminate this potential shortcoming. Here, we compare immune-cell frequencies as well as phenotype and effector functions of NK cells in Rag1\(^{−/−}\) and wildtype (WT) mice using flow cytometry and functional in vitro assays. Further, we investigate the effect of Rag1\(^{−/−}\) NK cells in the transient middle cerebral artery occlusion (tMCAO) model using antibody-mediated depletion of NK cells and adoptive transfer to NRG mice in vivo. NK cells in Rag1\(^{−/−}\) were comparable in number and function to those in WT mice. Rag1\(^{−/−}\) mice treated with an anti-NK1.1 antibody developed significantly smaller infarctions and improved behavioral scores. Correspondingly, NRG mice supplemented with NK cells were more susceptible to tMCAO, developing infarctions and neurological deficits similar to Rag1−/− controls. Our results indicate that NK cells from Rag1−/− mice are fully functional and should therefore be considered in the interpretation of immune-cell transfer models in experimental stroke. Fortunately, we identified the NRG mice, as a potentially better-suited transfer model to characterize individual cell subset-mediated neuroinflammation in stroke.
Prädiktion des Verschlusses großer intrakranieller Arterien anhand präklinischer Schlaganfallscores
(2021)
2015 konnte in mehreren Studien ESCAPE, EXTENDED IA, MR CLEAN, REVASCAT, SWIFT-PRIME eine signifikante Überlegenheit der mechanischen Thrombektomie verglichen mit der alleinigen i. v. Lysetherapie mit rtPA bezogen auf Revaskularisierung bei Patienten mit einer LVO (large vessel occlusion) nachgewiesen werden. Diese neue Therapiemöglichkeit erforderte eine Aufteilung der Patienten die von einer Thrombektomie profitieren (LVO) und der Patienten, die keiner Thrombektomie zugeführt werden können (nLVO). Die zentrale Fragestellung der Studie ist: Kann ein symptomorientierter Schlaganfallscore die Wahrscheinlichkeit eines großen intrakraniellen Gefäßverschlusses mit hinreichender Präzision vorhersagen und kann auf Basis dieser Vorhersage ein Patient direkt in ein übergeordnetes Schlagfanfallzentrum gebracht werden, obwohl sich dadurch eine Bridging Lysetherapie verzögern würde?
Um diesen Fragen auf den Grund zu gehen führten wir eine monozentrische Querschnittstudie durch, in deren Rahmen 215 Patienten rekrutiert wurden. Die Rekrutierung erfolgte mittels eines aus Subitems bereits etablierter Schlafanfallscores (FAST, CPSS, LAPSS, 3ISS, RACE), zusammengesetzten Fragebogens. Die ausgefüllten Fragebögen wurde in Excel digitalisiert und mittels SPSS, Signifikanz und Odds Ratio berechnet. Anschließend wurde aus den signifikanten Subitems mit der höchsten Odds Ratio ein neuer einfach anzuwendender Schlaganfallscore, bestehend aus den präklinisch erhobenen Daten gebildet (Würzburg Score of Large Vessel Occlusions, WOLVE- Score). Weiter wurden Signifikanz, Odds Ratio, Sensitivität und Spezifität des WOLVE-Score mit denen der oben genannten etablieren Scores verglichen.
Veränderung der Ranvier’schen Schnürringarchitektur bei Patienten mit diabetischer Neuropathie
(2021)
In der Krankheitsentstehung der diabetischen Neuropathie wird die paranodale Demyelinisierung als ein möglicher Pathomechanismus diskutiert, wobei Studien mit Gewebeproben von Patienten aufgrund der Invasivität limitiert sind. In der vorliegenden Studie wurden periphere Nervenfasern in Hautbiopsien von Patienten mit diabetischer Neuropathie und in Patienten mit Diabetes mellitus ohne Neuropathie untersucht. Ziel war es, nodale und paranodale Veränderungen, wie eine Dispersion der paranodalen Proteine Caspr und Neurofascin oder der nodalen Na-Kanäle, zu detektieren und die Proben auf verlängerte Ranvier`sche Schnürringe zu untersuchen.
Es wurde die Hypothese überprüft, dass paranodale Demyelinisierungen bei Patienten mit diabetischer Neuropathie in Hautbiopsien, als minimal-invasive Methode, nachweisbar sind. Hautproben von Patienten mit Diabetes mellitus ohne Neuropathie sollten zudem in einem frühen Krankheitsstadium untersucht werden.
Für die Untersuchung konnten 35 Patienten mit einer diabetischen Neuropathie, 17 Patienten mit Diabetes mellitus und 31 Kontrollen eingeschlossen werden. Immunfluoreszenzfärbungen mit Antikörpern gegen Caspr, Neurofascin und Natrium-Kanälen wurden zur Analyse der Ranvier`schen Schnürringarchitektur durchgeführt und ausgewertet.
Eine erhöhte Anzahl an verlängerten Schnürringen, als Zeichen einer segmentalen Demyelinisierung, konnte in den Patienten mit diabetischer Neuropathie aber auch in Patienten mit Diabetes mellitus nachgewiesen werden. Weiterhin waren vermehrt Veränderungen der paranodalen Proteine, wie eine Dispersion von Caspr und Neurofascin in den Proben des Fingers der Patienten mit diabetischer Neuropathie sowie eine Dispersion von Neurofascin im Unterschenkel in beiden Patientengruppen nachweisbar. Interessanterweise waren einzelne Veränderungen auch in den gesunden Kontrollen auffindbar.
Veränderungen der Schnürringarchitektur lassen sich mithilfe der Hautbiopsie nachweisen und quantifizieren. Nodale und paranodale Veränderungen weisen auf demyelinisierende Prozesse in Patienten mit diabetischer Neuropathie hin und finden sich auch bereits in einem frühen Krankheitsstadium.
Im Zeitraum von 2004 bis 2016 erhielten an der Neurologischen Universitätsklinik Würzburg Patienten mit einer chronisch progredienten Multiplen Sklerose insgesamt 595 Injektionen von intrathekalem Triamcinolonacetonid. Diese Arbeit befasst sich mit Sicherheit, Nebenwirkungen und Wirksamkeit der intrathekalen Therapieform.
Eine Prognoseeinschätzung bei Patienten mit hypoxischer Enzephalopathie (HIE) nach Reanimation wird frühestens 72 Stunden nach Reanimation empfohlen. Bis zu diesem Zeitpunkt besteht eine für Ärzte und Angehörige belastende prognostische Lücke. Und auch nach 72 Stunden bestehen nur ungenaue Angaben zum weiteren Vorgehen, sodass eine fundierte Prognoseeinschätzung aktuell eine deutliche Herausforderung im Alltag klinisch tätiger Ärzte darstellt.
Der Nervus opticus ist als Bestandteil des zentralen Nervensystems mit dem Liquorsystem verbunden. Intrazerebrale Druckerhöhungen wirken sich daher unmittelbar auf die ihn ummantelnde Nervenscheide und deren Durchmesser aus, sodass sich die Bestimmung des Optikusnervenscheidendurchmessers (ONSD) mittels transorbitaler Sonographie in der Diagnostik unterschiedlicher intrakranieller Erkrankungen bereits bewährt hat. Das Krankheitsbild der HIE wurde als weiteres mögliches Einsatzgebiet des ONSD jedoch bisher nicht untersucht.
Ziel dieser Dissertation war es daher, den ONSD grundsätzlich auf seine Verlässlichkeit als Prognoseparameter bei HIE nach Reanimation zu überprüfen. Besonderes Augenmerk lag hierbei auf der Ermöglichung einer frühzeitigen Prognoseeinschätzung innerhalb von 24 Stunden sowie auf der Definition eines prognostischen Cut-Off-Wertes als klare Entscheidungshilfe für weitere therapeutische Strategien.
24, 48 und 72 Stunden nach Reanimation werden signifikant unterschiedliche ONSD unter überlebenden und verstorbenen Patienten nachgewiesen. Letztere weisen dabei im Vergleich sowohl höhere als auch im zeitlichen Verlauf signifikant ansteigende ONSD-Werte auf. Als prognostischer Cut-Off-Wert konnte eine Grenze bei 5,75mm festgelegt werden.
Zusammenfassend stellt die sonographische Bestimmung des ONSD eine sinnvolle Zusatzdiagnostik in der Prognoseeinschätzung bei Patienten mit HIE nach Reanimation dar.
Die tiefe Hirnstimulation ist eine etablierte und hocheffiziente operative Behandlungsmethode für Patienten mit idiopathischem Parkinson- Syndrom (IPS). Als Zielgebiet dient in den meisten Fällen der Nucleus subthalamicus. Die Indikationen zur Implantation einer tiefen Hirnstimulation (THS) sind medikamentös nicht behandelbare motorische Fluktuationen und Dyskinesien oder ein medikamentös nicht kontrollierbarer Tremor.
Bislang erfolgt eine kontinuierliche Stimulation. Little et al. konnten jedoch bereits in ihrer 2013 veröffentlichen Studie zeigen, dass eine adaptive Stimulation, gemessen am UPDRS, um 27 % effektiver war und entsprechend die Stimulationszeit um 56 % gesenkt werden konnte.
Voraussetzung für die Anwendbarkeit einer adaptiven Stimulation im klinischen Alltag ist der Nachweis eines oder mehrerer Physiomarker, welche als Rückkopplungssignal für den Stimulationsbeginn dienen. Diese Marker müssen verlässlich mit dem Auftreten und der Ausprägung der Bewegungsstörungen korrelieren. Die Systeme müssen die Signale auslesen und entsprechend darauf reagieren können, damit ein sogenanntes Closed- loop- Verfahren entstehen kann. Bei diesen Markern handelt es sich um sogenannte lokale Feldpotenzialaktivitäten, das heißt niederfrequente Potentialänderungen von Zellen in subkortikalen Arealen des Gehirns, welche über Elektroden der THS abgeleitet werden können. Der Stimulator Activa PC+S (Medtronic) ermöglicht es erstmalig Aufzeichnungen von LFP- Daten, außerhalb eines experimentellen Laboraufbaus, mittels dauerhaft implantiertem Gerät vorzunehmen und damit auch Langzeitanalysen durchzuführen.
Erkenntnisse vergangener Studien ergaben, dass die synchronisierte, pathologisch gesteigerte oszillatorische Aktivität im Beta-Frequenzband (13- 35 Hz) eine bedeutende Rolle im Bezug auf die Pathophysiologie des IPS spielt und als krankheitsspezifische Aktivität gilt. Es konnte bereits belegt werden, dass die Verbesserung der motorischen Symptome (Bradykinese und Rigor) mit dem Ausmaß der Suppression der Betaband- Aktivität korreliert. Die Betabandaktivität als lokale Feldpotentialaktivität kann als Physiomarker einer adaptiven Stimulation dienen.
Unser Hauptaugenmerk galt daher der Analyse der Betabandaktivität oder anderer Frequenzbereiche während des Schlafes um hier die THS bedarfsgerecht einzusetzen. Hierfür wurden nächtliche subkortikale LFP- Aufzeichnungen parallel zur Schlaf- Polysomnographie durchgeführt. Zudem erfolgte in der vorliegenden Arbeit sowohl in unserem Vorversuch als auch in unserem Hauptversuch die Anwendung des UPDRS Teil III zur Erfassung der motorischen Symptome, sowie die Durchführung von Fragebögen zur Erfassung der nicht- motorischen Symptome, insbesondere des Schlafes vor und nach Implantation der tiefen Hirnstimulation.
Wir konnten belegen, dass es nach Implantation der THS zu einer Erhöhung der Schlafeffizienz und zu einer Erhöhung des Anteils der Schlafstadien II und III und damit einhergehend zu einer Steigerung der Schlafqualität kommt. Übereinstimmend mit anderen Studien konnten wir zeigen, dass sich die Motorik unter Stimulation deutlich verbessert. Im Vorversuch reduzierte sich der mittlere präoperative MDS- UPDRS III im MedsOFF verglichen mit dem mittleren postoperativ MDS- UPDRS III im MedsOFF/StimON um 37 %. In der PC+S- Studie imponierte eine Reduktion um 67%. Zudem zeigte sich eine Reduktion der nicht- motorischen Symptome durch die THS, insbesondere in der Kategorie Schlaf. Die Ergebnisse der vorliegenden Arbeit ergaben außerdem, dass die Betabandaktivität im Schlafstadium II und vor allem im Schlafstadium III am geringsten ist. Im Schlafstadium I und REM ist die Betabandaktivität höher als im Schlafstadium II und III. Hierbei war entscheidend, dass die Patienten eine klar abgrenzbare Betabandaktivität im Wachstadium aufwiesen und die Elektrodenkontakte im dorsolateralen Kerngebiet des STN lokalisiert waren.
Gegenläufig dazu verhält sich die Deltaaktivität. Sie ist im Schlafstadium II und besonders im Stadium III am höchsten. Stadium I ist mit durchschnittlich um 7,3 % niedriger als im Wachstadium. Am geringsten ist sie jedoch im REM-Schlafstadium.
Indem wir mit der Betabandaktivität und Deltaaktivität in den einzelnen Schlafstadien einen stabilen und reproduzierbaren Physiomarker finden konnten, sind wir unserem Ziel der adaptiven THS ein Stück näher gekommen.
Neuropathies are a group of potentially treatable diseases with an often disabling and restricting course. Amyotrophic lateral sclerosis (ALS) is a lethal disease without causal treatment possibilities. The objective of this study was to examine the diagnostic utility of HRUS for the differentiation of subtypes of axonal and demyelinating neuropathies and to investigate its utility for the sonological differentiation of ALS.
The hypothetical statement that neuropathy causes enlargement of peripheral nerves compared to healthy controls proved to be right, but the adjunctive assumption that ALS does not cause enlargement of peripheral nerves proved to be wrong – in patients with ALS slight enlargement of peripheral nerves was visible as well. The statement that nerve enlargement can be detected by measurement of the cross-sectional area (CSA) and the longitudinal diameter (LD) with comparable results proved to be right, but the enlargement was slightly less present by measurement of the LD. The statement that axonal and demyelinating neuropathies show distinct patterns of nerve enlargement must be answered differentiated: The comparison between axonal and demyelinating neuropathies showed a stronger nerve enlargement in patients with demyelinating neuropathies than in patients with axonal neuropathies at proximal nerve segments of upper extremities. In the comparison of diagnose-defined subgroups of inflammatory demyelinating neuropathies a respective specific pattern of nerve enlargement was visible. However, remarkable in this context was the strong nerve enlargement found in patients with NSVN, which is classified as an axonal neuropathy. Stratification for specific findings in nerve biopsy did not lead to constructive differences in comparison between the different groups.
To sum up, HRUS showed to provide a useful contribution in the diagnostic process of neuropathies and ALS but needs to be integrated in a multimodal diagnostic approach.
In der vorliegenden Studie wurde untersucht, ob zerebrale Mikroblutungen (CMB) bereits im frühen Verlauf nach ischämischem Schlaganfall (IS) oder Transitorisch-Ischämischer Attacke (TIA) mit kognitivem Abbau assoziiert sind und ob spezifische kognitive Domänen besonders betroffen sind. Der Vergleich zweier Probandengruppen mit IS/TIA und CMB bzw. IS/TIA ohne CMB hinsichtlich ihrer Ergebnisse in der neuropsychologischen Testbatterie CERAD ergab, dass CMB bereits sechs Monate nach dem zerebrovaskulären Ereignis mit einem kognitiven Abbau assoziiert sind. Multilokuläre CMB zeigen eine stärkere Auswirkung auf die Kognition als solche CMB, die in einer einzigen Hirnregion gefunden wurden. Zudem wurde eine signifikante Korrelation zwischen dem Grad der kognitiven Einschränkung und der Anzahl der CMB errechnet. Die separate Betrachtung derjenigen Testungen, welche das episodische Gedächtnis erfassen, zeigte eine Beeinträchtigung der Testpersonen beim Wiedererkennen von zuvor gelernten Wörtern. Bei der Untersuchung des semantischen Gedächtnisses der ProbandInnen fiel eine signifikant eingeschränkte phonematische Wortflüssigkeit auf, die semantische Flüssigkeit und das Benennen jedoch waren weniger betroffen. Die Domäne „Visuokonstruktive Fähigkeiten“ wurde ebenfalls in drei Untertests beurteilt. Hierbei zeigten sich keine Defizite der Testgruppe beim Abzeichnen der dargebotenen Figuren, die Reproduktion hingegen war signifikant gestört. Es zeigte sich keine CMB-bedingte Einschränkung der exekutiven Funktionen.
Auch wenn die Ätiopathogenese von Morbus Parkinson bis heute nicht vollständig geklärt ist, scheint α-Synuclein (α-Syn) eine zentrale Rolle zu spielen. Die Entdeckung als genetische Ursache der Erkrankung, als Hauptbestandteil der Lewy-Körper (LK) und seine Assoziation mit verschiedenen anderen potenziellen ätiologischen Faktoren verdeutlichen dies.
Bei Ratten und Affen führte eine AAV1/2-vermittelte Überexpression von A53T-α-Syn zu einer Degeneration dopaminerger Neurone in der Substantia nigra (SN), einem striatalen dopaminergen Defizit sowie Verhaltensauffälligkeiten. In Anbetracht bestimmter Vorteile der Mausspezies, war es das Ziel dieser Dissertation - die im Rahmen eines kollaborativen Projektes mit dem Toronto Western Research Institut in Ontario, Kanada entstanden ist - dieses auf AAV1/2-A53T-α-Syn basierende Parkinson-Modell auf Mäuse zu übertragen.
Dazu wurde AAV1/2-A53T-α-Syn oder leerer AAV1/2-Vektor in einer Dosis von 1,5 µl mit einer Konzentration von 5,16 x 10^12 gp/ml stereotaktisch einseitig in die rechte SN von C57BL/6-wt-Mäusen injiziert. Über einen Zeitraum von 11 Wochen wurden verschiedene Verhaltensexperimente durchgeführt und die beiden Versuchstiergruppen miteinander verglichen. Post-mortem erfolgten verschiedene immunhistochemische Untersuchungen.
Es konnte gezeigt werden, dass die einseitige Injektion von AAV1/2-A53T-α-Syn in die SN bei Mäusen eine weit verbreitete Überexpression von A53T-α-Syn in dopaminergen Neuronen der SN induzierte, die innerhalb von 10 Wochen zu signifikanten frühen und persistierenden motorischen Verhaltensauffälligkeiten, nigrostriataler Degeneration und Entwicklung einer Lewy-ähnlichen Pathologie führte.
Durch die Generierung und Charakterisierung dieses neuen Parkinson-Mausmodells, das klinische und histopathologische Merkmale der menschlichen Erkrankung widerspiegelt, besteht nun die Möglichkeit es weiterzuentwickeln und z.B. auf transgene Mäuse zu übertragen, um u.a. molekulare Mechanismen der Parkinson-Krankheit zu entschlüsseln und präklinische Tests von krankheitsmodifizierenden Therapien durchzuführen.
In der vorliegenden Studie untersuchten wir das Körperselbstgefühl von Patienten mit Morbus Parkinson und altersgematchten gesunden Teilnehmern mithilfe der Puppenhandillusion. Bei diesem Paradigma wird dadurch, dass die verdeckte Hand der Testperson zeitgleich mit einer sichtbaren Puppenhand bestrichen wird, das Gefühl hervorgerufen, die Kunsthand sei die eigene (gemessen mittels Fragebogen zur Illusion und propriozeptivem Drift). Eine zeitlich versetzte (asynchrone) Stimulation dient als Kontrollbedingung. Innerhalb der Parkinsonpatienten wurde darüber hinaus eine Untergruppe zusätzlich im medikamentösen OFF-Zustand untersucht.
Die Annahme, dass die Parkinsonerkrankung mit einer gestörten Körperselbstwahrnehmung einhergeht, spiegelt sich in den Ergebnissen wider: Bei den Patienten mit Parkinsonerkrankung trat unabhängig vom Stimulationsmodus ein höherer propriozeptiver Drift als bei den Gesunden ein. Wurden die Patienten anschließend nach dem Erleben der Illusion befragt, fielen die Antworten allerdings nur während der asynchronen Durchführung positiver als bei der Kontrollgruppe aus.
Die Untersuchungen des Drifts und Fragebogens im ON- gegenüber OFF-Zustand lieferten keinen Unterschied.
Die vorliegende Studie liefert Hinweise darauf, dass die gemessenen Unterschiede bei Parkinsonpatienten gegenüber Gesunden auf ein internes Rauschen eingehender sensorischer Signale beim Morbus Parkinson sowie auf die Beteiligung nicht-dopaminerger Systeme zurückzuführen sein könnten. Die zunehmende Aufmerksamkeit gegenüber einer veränderten Körperwahrnehmung bei Parkinsonpatienten und deren Grundlagen im Bereich der multisensorischen Integration könnte künftig neue Möglichkeiten in der ganzheitlichen Therapie liefern mit dem Ziel, die Lebensqualität der Patienten zu steigern.
Background and aims:
Small fiber neuropathy (SFN) is increasingly suspected in patients with pain of uncertain origin, and making the diagnosis remains a challenge lacking a diagnostic gold standard.
Methods:
In this case–control study, we prospectively recruited 86 patients with a medical history and clinical phenotype suggestive of SFN. Patients underwent neurological examination, quantitative sensory testing (QST), and distal and proximal skin punch biopsy, and were tested for pain-associated gene loci. Fifty-five of these patients additionally underwent pain-related evoked potentials (PREP), corneal confocal microscopy (CCM), and a quantitative sudomotor axon reflex test (QSART).
Results:
Abnormal distal intraepidermal nerve fiber density (IENFD) (60/86, 70%) and neurological examination (53/86, 62%) most frequently reflected small fiber disease. Adding CCM and/or PREP further increased the number of patients with small fiber impairment to 47/55 (85%). Genetic testing revealed potentially pathogenic gene variants in 14/86 (16%) index patients. QST, QSART, and proximal IENFD were of lower impact.
Conclusion:
We propose to diagnose SFN primarily based on the results of neurological examination and distal IENFD, with more detailed phenotyping in specialized centers.
In der Puppenhandillusion (PHI) wird durch die synchrone Berührung der nicht-sichtbaren Hand des Probanden und einer sichtbaren Puppenhand ein illusio-näres Körperzugehörigkeitsgefühl induziert. Dieses Paradigma erlaubt es zu untersuchen, wie das Gehirn widersprüchliche multisensorische Informationen während einer perzeptiven Inferenz auflöst.
Vorausgehende Studien weisen darauf hin, dass der Konflikt zwischen visueller und propriozeptiver Information vor der PHI durch eine Abschwächung des so-matosensiblen Inputs behoben wird. Um herauszufinden, ob eine Exzitabilitäts-Minderung des primären somatosensiblen Kortex die PHI verstärken kann, kam die kathodale transkranielle Gleichstromstimulation (c-tDCS) zum Einsatz.
An dreißig gesunden Probanden wurde die PHI ohne (=baseline) und während tDCS untersucht. Jeder Proband erhielt kathodale, anodale und sham-Stimulation an drei unterschiedlichen Tagen im Abstand von je einer Woche. Das PHI-Paradigma wurde in sechs Distanzen (von 17,5 bis 67,5 cm) zwischen der eigenen Hand und der Puppenhand durchgeführt. Das Auftreten der PHI wurde anhand eines Fragebogens (Illusionsscore, IS) und der Abweichung der gefühlten Handposition in Bezug zur realen Position (relativer Drift, RD) evalu-iert. Die kathodale Stimulation war mit einem signifikanten Anstieg des IS im Vergleich zur anodalen Stimulation assoziiert, wohingegen die RD-Werte über alle Stimulationsarten hinweg vergleichbar waren.
Die fehlende Signifikanz zwischen Verum und Sham-Stimulation wurde auf die geringe Effektstärke bei vergleichsweise kleinem Probandenkollektiv bezogen.
Die Ergebnisse dieser Studie zeigen jedoch eine verstärkte Wahrnehmung der PHI unabhängig von demographischen Faktoren, wenn kathodale tDCS über dem kontralateralen primären somatosensiblen Kortex appliziert wurde. Dies unterstützt unsere Hypothese, dass eine Abschwächung der somatosensiblen Präzision den Weg für eine erleichterte Integration eines fremden Körperteils in das eigene Körperschema ebnet.
The objective of this study was to examine the therapeutic potential of multiple sessions of training on a split-belt treadmill (SBT) combined with cerebellar anodal transcranial direct current stimulation (tDCS) on gait and balance in People with Multiple Sclerosis (PwMS). Twenty-two PwMS received six sessions of anodal (PwMS\(_{real}\), n = 12) or sham (PwMS\(_{sham}\), n = 10) tDCS to the cerebellum prior to performing the locomotor adaptation task on the SBT. To evaluate the effect of the intervention, functional gait assessment (FGA) scores and distance walked in 2 min (2MWT) were measured at the baseline (T0), day 6 (T5), and at the 4-week follow up (T6). Locomotor performance and changes of motor outcomes were similar in PwMS\(_{real}\) and PwMS\(_{sham}\) independently from tDCS mode applied to the cerebellum (anodal vs. sham, on FGA, p = 0.23; and 2MWT, p = 0.49). When the data were pooled across the groups to investigate the effects of multiple sessions of SBT training alone, significant improvement of gait and balance was found on T5 and T6, respectively, relative to baseline (FGA, p < 0.001 for both time points). The FGA change at T6 was significantly higher than at T5 (p = 0.01) underlining a long-lasting improvement. An improvement of the distance walked during the 2MWT was also observed on T5 and T6 relative to T0 (p = 0.002). Multiple sessions of SBT training resulted in a lasting improvement of gait stability and endurance, thus potentially reducing the risk of fall as measured by FGA and 2MWT. Application of cerebellar tDCS during SBT walking had no additional effect on locomotor outcomes.
We examined 143 patients suffering from FMS, a syndrome characterized by chronic widespread pain, sleep disturbances, and fatigue. Etiology and pathophysiology of FMS are scarcely understood. In recent years abnormalities of small Aδ- and C-nerve fibers have been found in subgroups of FMS patients. It is yet unclear how such SFP is caused in FMS patients and how it contributes to FMS symptoms.
We used CCM to analyze corneal small nerve fibers and associated LC, comparing FMS patients’ results to those from 65 healthy controls and 41 disease controls suffering from SFN. We, further, assessed expression levels of mRNA and miRNA in keratinocytes taken from skin punch biopsies of FMS patients and healthy controls kept as monocellular cell cultures. A screening was performed using NGS in a small cohort of 12 FMS patients and 5 healthy controls. Results were validated in larger cohorts by qRT-PCR.
As in previous studies IENFD and CNFD were reduced in a subgroup of FMS patients. We found identical LC densities in FMS patients, healthy controls, and SFN patients. The subpopulation of dLCfiber contact in FMS and SFN patients was lower than in healthy controls. Our RNA expression analysis revealed one mRNA that was expressed higher in FMS patients than in controls: PRSS21.
We conclude that reduced neurotrophic signaling of LC may contribute to SFP in the cornea. Epidermal PRSS21 expression and dLCfiber contact density are promising biomarker candidates for FMS diagnosis.
Beim idiopathischen Parkinson Syndrom (IPS) gewinnen nicht-motorische Symptome in Forschung und Klinik zunehmend an Bedeutung. So findet sich in der Literatur vermehrt Evidenz, dass die Propriozeption bei Patienten mit IPS (PmIPS) gestört ist. Verschiedene klinische und neuroanatomische Studien weisen darauf hin, dass es beim IPS zu einer fehlerhaften sensomotorischen Integration von propriozeptiven Informationen in den Basalganglien kommt. Zudem gibt es Hinweise, dass die passiv-sensible Wahrnehmung von Propriozeption pathologisch verändert ist. Außerdem wird vermutet, dass durch propriozeptives Training eine Verbesserung der Parkinsonsymptomatik erreicht werden kann. Ein spezielles Trainingsprogramm, die LSVT-BIG-Therapie, bei der gezielt trainiert wird, Bewegungen mit einer großen Amplitude durchzuführen, konnte motorische Symptome und Mobilität beim IPS effektiv verbessern.
In der vorliegenden Arbeit stellten wir folgende Hypothesen auf: Das IPS geht mit einer fehlerhaften sensomotorischen Integration von Propriozeption einher. Die afferente propriozeptive Wahrnehmung ist ebenfalls pathologisch verändert. Eine propriozeptive Rekalibrierung ist mithilfe der LSVT-BIG-Therapie möglich.
Für die Überprüfung dieser Hypothesen schlossen wir 30 PmIPS und 15 gesunde Probanden in unsere Fall-Kontroll-Studie ein und führten eine Eingangsuntersuchung durch. 11 PmIPS absolvierten anschließend eine vierwöchige LSVT-BIG-Therapie. Die Folgeuntersuchungen fanden 4 und 8 Wochen nach der Eingangsuntersuchung statt.
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Diese beinhalteten neuropsychologische Testungen, außerdem die Bestimmung der Lebensqualität, die Erhebung des motorischen Teils der Movement Disorder Society Unified Parkinson´s Disease Rating Scale (MDS-UPDRS III), Untersuchungen zur Feinmotorik, die Durchführung einer diagnostischen Transkraniellen Magnetstimulation (TMS) sowie Testverfahren zur Propriozeption, darunter sowohl Zeigeversuche, als auch die Bestimmung der Position einer Extremität, ohne visuelle Kontrolle.
Die Ergebnisse zeigten, dass die IPS-Gruppe gegenüber der gesunden Kontrollgruppe signifikant größere Zeigefehler machte, wohingegen die Bestimmung der Position einer Extremität in beiden Gruppen vergleichbar präzise möglich war. Zusätzlich zeigte eine von sieben Messungen der Feinmotorik einen signifikanten Unterschied zwischen PmIPS und Kontrollen. Die Messungen der TMS erbrachten hingegen keine signifikant messbaren Unterschiede zwischen den Gruppen.
In den Folgeuntersuchungen nach therapeutischer Intervention ergaben die Zeigeübungen eine signifikante Verbesserung der BIG-Gruppe im Zeitverlauf. Die Untersuchungen zu Feinmotorik und MDS-UPDRS III ergaben zwar eine tendenzielle Verbesserung durch die LSVT-BIG-Therapie, waren jedoch statistisch nicht signifikant.
Die Lebensqualität der PmIPS in der BIG-Gruppe verbesserte sich signifikant nach Intervention.
Die Ergebnisse sprechen für die Hypothese der fehlerhaften propriozeptiven Integration beim Morbus Parkinson. Dies zeigte sich für aktive sensomotorische Tasks, nicht hingegen in der passiv-sensiblen propriozeptiven Testung.
Auch wenn weitere Studien mit größeren Kohorten benötigt werden, legt unsere Studie nahe, dass die LSVT-BIG-Therapie mit einer propriozeptiven Rekalibrierung einhergeht. Damit erklärt sich möglicherweise der nachhaltige Erfolg der Therapie.
High-mobility group box 1 protein (HMGB1) is a damage-associated molecular pattern (DAMP) involved in neutrophil extracellular trap (NET) formation and thrombosis. NETs are regularly found in cerebral thromboemboli. We here analyzed associated HMGB1 expression in human thromboemboli retrieved via mechanical thrombectomy from 37 stroke patients with large vessel occlusion. HMGB1 was detected in all thromboemboli, accounting for 1.7% (IQR 0.6–6.2%) of the total thromboemboli area and was found to be colocalized with neutrophils and NETs and in spatial proximity to platelets. Correlation analysis revealed that the detection of HMGB1 was strongly related to the number of neutrophils (r = 0.58, p = 0.0002) and platelets (r = 0.51, p = 0.001). Our results demonstrate that HMGB1 is a substantial constituent of thromboemboli causing large vessel occlusion stroke.
Inflammation is crucial in the pathophysiology of stroke and thus a promising therapeutic target. High-frequency stimulation (HFS) of the mesencephalic locomotor region (MLR) reduces perilesional inflammation after photothrombotic stroke (PTS). However, the underlying mechanism is not completely understood. Since distinct neural and immune cells respond to electrical stimulation by releasing acetylcholine, we hypothesize that HFS might trigger the cholinergic anti-inflammatory pathway via activation of the α7 nicotinic acetylcholine receptor (α7nAchR). To test this hypothesis, rats underwent PTS and implantation of a microelectrode into the MLR. Three hours after intervention, either HFS or sham-stimulation of the MLR was applied for 24 h. IFN-γ, TNF-α, and IL-1α were quantified by cytometric bead array. Choline acetyltransferase (ChAT)\(^+\) CD4\(^+\)-cells and α7nAchR\(^+\)-cells were quantified visually using immunohistochemistry. Phosphorylation of NFĸB, ERK1/2, Akt, and Stat3 was determined by Western blot analyses. IFN-γ, TNF-α, and IL-1α were decreased in the perilesional area of stimulated rats compared to controls. The number of ChAT\(^+\) CD4\(^+\)-cells increased after MLR-HFS, whereas the amount of α7nAchR\(^+\)-cells was similar in both groups. Phospho-ERK1/2 was reduced significantly in stimulated rats. The present study suggests that MLR-HFS may trigger anti-inflammatory processes within the perilesional area by modulating the cholinergic system, probably via activation of the α7nAchR.
Patients with atrial fibrillation and previous ischemic stroke (IS) are at increased risk of cerebrovascular events despite anticoagulation. In these patients, treatment with non-vitamin K oral anticoagulants (NOAC) such as edoxaban reduced the probability and severity of further IS without increasing the risk of major bleeding. However, the detailed protective mechanism of edoxaban has not yet been investigated in a model of ischemia/reperfusion injury. Therefore, in the current study we aimed to assess in a clinically relevant setting whether treatment with edoxaban attenuates stroke severity, and whether edoxaban has an impact on the local cerebral inflammatory response and blood–brain barrier (BBB) function after experimental IS in mice. Focal cerebral ischemia was induced by transient middle cerebral artery occlusion in male mice receiving edoxaban, phenprocoumon or vehicle. Infarct volumes, functional outcome and the occurrence of intracerebral hemorrhage were assessed. BBB damage and the extent of local inflammatory response were determined. Treatment with edoxaban significantly reduced infarct volumes and improved neurological outcome and BBB function on day 1 and attenuated brain tissue inflammation. In summary, our study provides evidence that edoxaban might exert its protective effect in human IS by modulating different key steps of IS pathophysiology, but further studies are warranted.
Skin alpha-synuclein deposition is considered a potential biomarker for Parkinson's disease (PD). Real-time quaking-induced conversion (RT-QuIC) is a novel, ultrasensitive, and efficient seeding assay that enables the detection of minute amounts of alpha-synuclein aggregates. We aimed to determine the diagnostic accuracy, reliability, and reproducibility of alpha-synuclein RT-QuIC assay of skin biopsy for diagnosing PD and to explore its correlation with clinical markers of PD in a two-center inter-laboratory comparison study. Patients with clinically diagnosed PD (n = 34), as well as control subjects (n = 30), underwent skin punch biopsy at multiple sites (neck, lower back, thigh, and lower leg). The skin biopsy samples (198 in total) were divided in half to be analyzed by RT-QuIC assay in two independent laboratories. The a-synuclein RT-QuIC assay of multiple skin biopsies supported the clinical diagnosis of PD with a diagnostic accuracy of 88.9% and showed a high degree of inter-rater agreement between the two laboratories (92.2%). Higher alpha-synuclein seeding activity in RT-QuIC was shown in patients with longer disease duration and more advanced disease stage and correlated with the presence of REM sleep behavior disorder, cognitive impairment, and constipation. The alpha-synuclein RT-QuIC assay of minimally invasive skin punch biopsy is a reliable and reproducible biomarker for Parkinson's disease. Moreover, alpha-synuclein RT-QuIC seeding activity in the skin may serve as a potential indicator of progression as it correlates with the disease stage and certain non-motor symptoms.
Based on recent findings that show that depletion of factor XII (FXII) leads to better posttraumatic neurological recovery, we studied the effect of FXII-deficiency on post-traumatic cognitive and behavioral outcomes in female and male mice. In agreement with our previous findings, neurological deficits on day 7 after weight-drop traumatic brain injury (TBI) were significantly reduced in FXII\(^{−/−}\) mice compared to wild type (WT) mice. Also, glycoprotein Ib (GPIb)-positive platelet aggregates were more frequent in brain microvasculature of WT than FXII\(^{−/−}\) mice 3 months after TBI. Six weeks after TBI, memory for novel object was significantly reduced in both female and male WT but not in FXII\(^{−/−}\) mice compared to sham-operated mice. In the setting of automated home-cage monitoring of socially housed mice in IntelliCages, female WT mice but not FXII\(^{−/−}\) mice showed decreased exploration and reacted negatively to reward extinction one month after TBI. Since neuroendocrine stress after TBI might contribute to trauma-induced cognitive dysfunction and negative emotional contrast reactions, we measured peripheral corticosterone levels and the ration of heart, lung, and spleen weight to bodyweight. Three months after TBI, plasma corticosterone levels were significantly suppressed in both female and male WT but not in FXII\(^{−/−}\) mice, while the relative heart weight increased in males but not in females of both phenotypes when compared to sham-operated mice. Our results indicate that FXII deficiency is associated with efficient post-traumatic behavioral and neuroendocrine recovery.
Regional iron accumulation and α‐synuclein (α‐syn) spreading pathology within the central nervous system are common pathological findings in Parkinson's disease (PD). Whereas iron is known to bind to α‐syn, facilitating its aggregation and regulating α‐syn expression, it remains unclear if and how iron also modulates α‐syn spreading. To elucidate the influence of iron on the propagation of α‐syn pathology, we investigated α‐syn spreading after stereotactic injection of α‐syn preformed fibrils (PFFs) into the striatum of mouse brains after neonatal brain iron enrichment. C57Bl/6J mouse pups received oral gavage with 60, 120, or 240 mg/kg carbonyl iron or vehicle between postnatal days 10 and 17. At 12 weeks of age, intrastriatal injections of 5‐µg PFFs were performed to induce seeding of α‐syn aggregates. At 90 days post‐injection, PFFs‐injected mice displayed long‐term memory deficits, without affection of motor behavior. Interestingly, quantification of α‐syn phosphorylated at S129 showed reduced α‐syn pathology and attenuated spreading to connectome‐specific brain regions after brain iron enrichment. Furthermore, PFFs injection caused intrastriatal microglia accumulation, which was alleviated by iron in a dose‐dependent way. In primary cortical neurons in a microfluidic chamber model in vitro, iron application did not alter trans‐synaptic α‐syn propagation, possibly indicating an involvement of non‐neuronal cells in this process. Our study suggests that α‐syn PFFs may induce cognitive deficits in mice independent of iron. However, a redistribution of α‐syn aggregate pathology and reduction of striatal microglia accumulation in the mouse brain may be mediated via iron‐induced alterations of the brain connectome.
Inflammatory mechanisms in the pathophysiology of diabetic peripheral neuropathy (DN) — new aspects
(2021)
The pathogenesis of diabetic neuropathy is complex, and various pathogenic pathways have been proposed. A better understanding of the pathophysiology is warranted for developing novel therapeutic strategies. Here, we summarize recent evidence from experiments using animal models of type 1 and type 2 diabetes showing that low-grade intraneural inflammation is a facet of diabetic neuropathy. Our experimental data suggest that these mild inflammatory processes are a likely common terminal pathway in diabetic neuropathy associated with the degeneration of intraepidermal nerve fibers. In contrast to earlier reports claiming toxic effects of high-iron content, we found the opposite, i.e., nutritional iron deficiency caused low-grade inflammation and fiber degeneration while in normal or high non-heme iron nutrition no or only extremely mild inflammatory signs were identified in nerve tissue. Obesity and dyslipidemia also appear to trigger mild inflammation of peripheral nerves, associated with neuropathy even in the absence of overt diabetes mellitus. Our finding may be the experimental analog of recent observations identifying systemic proinflammatory activity in human sensorimotor diabetic neuropathy. In a rat model of type 1 diabetes, a mild neuropathy with inflammatory components could be induced by insulin treatment causing an abrupt reduction in HbA1c. This is in line with observations in patients with severe diabetes developing a small fiber neuropathy upon treatment-induced rapid HbA1c reduction. If the inflammatory pathogenesis could be further substantiated by data from human tissues and intervention studies, anti-inflammatory compounds with different modes of action may become candidates for the treatment or prevention of diabetic neuropathy.
Genetic deficiency for acid sphingomyelinase or its pharmacological inhibition has been shown to increase Foxp3\(^+\) regulatory T-cell frequencies among CD4\(^+\) T cells in mice. We now investigated whether pharmacological targeting of the acid sphingomyelinase, which catalyzes the cleavage of sphingomyelin to ceramide and phosphorylcholine, also allows to manipulate relative CD4\(^+\) Foxp3\(^+\) regulatory T-cell frequencies in humans. Pharmacological acid sphingomyelinase inhibition with antidepressants like sertraline, but not those without an inhibitory effect on acid sphingomyelinase activity like citalopram, increased the frequency of Foxp3\(^+\) regulatory T cell among human CD4\(^+\) T cells in vitro. In an observational prospective clinical study with patients suffering from major depression, we observed that acid sphingomyelinase-inhibiting antidepressants induced a stronger relative increase in the frequency of CD4\(^+\) Foxp3\(^+\) regulatory T cells in peripheral blood than acid sphingomyelinase-non- or weakly inhibiting antidepressants. This was particularly true for CD45RA\(^-\) CD25\(^{high}\) effector CD4\(^+\) Foxp3\(^+\) regulatory T cells. Mechanistically, our data indicate that the positive effect of acid sphingomyelinase inhibition on CD4\(^+\) Foxp3\(^+\) regulatory T cells required CD28 co-stimulation, suggesting that enhanced CD28 co-stimulation was the driver of the observed increase in the frequency of Foxp3+ regulatory T cells among human CD4\(^+\) T cells. In summary, the widely induced pharmacological inhibition of acid sphingomyelinase activity in patients leads to an increase in Foxp3+ regulatory T-cell frequencies among CD4\(^+\) T cells in humans both in vivo and in vitro.
The clinical and preclinical research of ischemic strokes (IS) is becoming increasingly comprehensive, especially with the emerging evidence of complex thrombotic and inflammatory interactions. Within these, the blood brain barrier (BBB) plays an important role in regulating the cellular interactions at the vascular interface and is therefore the object of many IS-related questions. Consequently, valid, economic and responsible methods to define BBB integrity are necessary. Therefore, we compared the three ex-vivo setups albumin Western blot (WB), IgG WB and albumin intensity measurement (AIM) with regard to validity as well as temporal and economic efficacy. While the informative value of the three methods correlated significantly, the efficacy of the IgG WB dominated.
Effects of dopamine on BDNF / TrkB mediated signaling and plasticity on cortico-striatal synapses
(2021)
Progressive loss of voluntary movement control is the central symptom of Parkinson's disease (PD). Even today, we are not yet able to cure PD. This is mainly due to a lack of understanding the mechanisms of movement control, network activity and plasticity in motor circuits, in particular between the cerebral cortex and the striatum. Brain-derived neurotrophic factor (BDNF) has emerged as one of the most important factors for the development and survival of neurons, as well as for synaptic plasticity. It is thus an important target for the development of new therapeutic strategies against neurodegenerative diseases. Together with its receptor, the Tropomyosin receptor kinase B (TrkB), it is critically involved in development and function of the striatum. Nevertheless, little is known about the localization of BDNF within presynaptic terminals in the striatum, as well as the types of neurons that produce BDNF in the cerebral cortex. Furthermore, the influence of midbrain derived dopamine on the control of BDNF / TrkB interaction in striatal medium spiny neurons (MSNs) remains elusive so far. Dopamine, however, appears to play an important role, as its absence leads to drastic changes in striatal synaptic plasticity. This suggests that dopamine could regulate synaptic activity in the striatum via modulation of BDNF / TrkB function. To answer these questions, we have developed a sensitive and reliable protocol for the immunohistochemical detection of endogenous BDNF. We find that the majority of striatal BDNF is provided by glutamatergic, cortex derived afferents and not dopaminergic inputs from the midbrain. In fact, we found BDNF in cell bodies of neurons in layers II-III and V of the primary and secondary motor cortex as well as layer V of the somatosensory cortex. These are the brain areas that send dense projections to the dorsolateral striatum for control of voluntary movement. Furthermore, we could show that these projection neurons significantly downregulate the expression of BDNF during the juvenile development of mice between 3 and 12 weeks.
In parallel, we found a modulatory effect of dopamine on the translocation of TrkB to the cell surface in postsynaptic striatal Medium Spiny Neurons (MSNs). In MSNs of the direct pathway (dMSNs), which express dopamine receptor 1 (DRD1), we observed the formation of TrkB aggregates in the 6-hydroxydopamine (6-OHDA) model of PD. This suggests that DRD1 activity controls TrkB surface expression in these neurons. In contrast, we found that DRD2 activation has opposite effects in MSNs of the indirect pathway (iMSNs). Activation of DRD2 promotes a rapid decrease in TrkB surface expression which was reversible and depended on cAMP. In parallel, stimulation of DRD2 led to induction of phospho-TrkB (pTrkB). This effect was significantly slower than the effect on TrkB surface expression and indicates that TrkB is transactivated by DRD2. Together, our data provide evidence that dopamine triggers dual modes of plasticity on striatal MSNs by acting on TrkB surface expression in DRD1 and DRD2 expressing MSNs. This surface expression of the receptor is crucial for the binding of BDNF, which is released from corticostriatal afferents. This leads to the induction of TrkB-mediated downstream signal transduction cascades and long-term potentiation (LTP). Therefore, the dopamine-mediated translocation of TrkB could be a mediator that modulates the balance between dopaminergic and glutamatergic signaling to allow synaptic plasticity in a spatiotemporal manner. This information and the fact that TrkB is segregated to persistent aggregates in PD could help to improve our understanding of voluntary movement control and to develop new therapeutic strategies beyond those focusing on dopaminergic supply.
Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease that causes progressive autonomy loss and need for care. This does not only affect patients themselves, but also the patients’ informal caregivers (CGs) in their health, personal and professional lives. The big efforts of this multi-center study were not only to evaluate the caregivers' burden and to identify its predictors, but it also should provide a specific understanding of the needs of ALS patients' CGs and fill the gap of knowledge on their personal and work lives. Using standardized questionnaires, primary data from patients and their main informal CGs (n = 249) were collected. Patients' functional status and disease severity were evaluated using the Barthel Index, the revised Amyotrophic Lateral Sclerosis Functional Rating Scale (ALSFRS-R) and the King’s Stages for ALS. The caregivers' burden was recorded by the Zarit Burden Interview (ZBI). Comorbid anxiety and depression of caregivers were assessed by the Hospital Anxiety and Depression Scale. Additionally, the EuroQol Five Dimension Five Level Scale evaluated their health-related quality of life. The caregivers' burden was high (mean ZBI = 26/88, 0 = no burden, ≥24 = highly burdened) and correlated with patients' functional status (r\(_p\) = −0.555, p < 0.001, n = 242). It was influenced by the CGs' own mental health issues due to caregiving (+11.36, 95% CI [6.84; 15.87], p < 0.001), patients' wheelchair dependency (+9.30, 95% CI [5.94; 12.66], p < 0.001) and was interrelated with the CGs' depression (r\(_p\) = 0.627, p < 0.001, n = 234), anxiety (r\(_p\) = 0.550, p < 0.001, n = 234), and poorer physical condition (r\(_p\) = −0.362, p < 0.001, n = 237). Moreover, female CGs showed symptoms of anxiety more often, which also correlated with the patients' impairment in daily routine (r\(_s\) = −0.280, p < 0.001, n = 169). As increasing disease severity, along with decreasing autonomy, was the main predictor of caregiver burden and showed to create relevant (negative) implications on CGs' lives, patient care and supportive therapies should address this issue. Moreover, in order to preserve the mental and physical health of the CGs, new concepts of care have to focus on both, on not only patients but also their CGs and gender-associated specific issues. As caregiving in ALS also significantly influences the socioeconomic status by restrictions in CGs' work lives and income, and the main reported needs being lack of psychological support and a high bureaucracy, the situation of CGs needs more attention. Apart from their own multi-disciplinary medical and psychological care, more support in care and patient management issues is required.
This expert opinion paper on cardiac imaging after acute ischemic stroke or transient ischemic attack (TIA) includes a statement of the "Heart and Brain" consortium of the German Cardiac Society and the German Stroke Society. The Stroke Unit-Commission of the German Stroke Society and the German Atrial Fibrillation NETwork (AFNET) endorsed this paper. Cardiac imaging is a key component of etiological work-up after stroke. Enhanced echocardiographic tools, constantly improving cardiac computer tomography (CT) as well as cardiac magnetic resonance imaging (MRI) offer comprehensive non- or less-invasive cardiac evaluation at the expense of increased costs and/or radiation exposure. Certain imaging findings usually lead to a change in medical secondary stroke prevention or may influence medical treatment. However, there is no proof from a randomized controlled trial (RCT) that the choice of the imaging method influences the prognosis of stroke patients. Summarizing present knowledge, the German Heart and Brain consortium proposes an interdisciplinary, staged standard diagnostic scheme for the detection of risk factors of cardio-embolic stroke. This expert opinion paper aims to give practical advice to physicians who are involved in stroke care. In line with the nature of an expert opinion paper, labeling of classes of recommendations is not provided, since many statements are based on expert opinion, reported case series, and clinical experience.
Background: In recent years, health care has increasingly become the focus of public interest, politics, health insurance companies, and research. This includes the development of therapeutic concepts that can respond individually to patients' resources in order to improve coping with chronic diseases. Research into psychosocial and biological resilience factors is very important and the basic objective of the present work. I studied patients with fibromyalgia syndrome (FMS), who suffer among others from chronic pain, fatigue, sleep and gastrointestinal problems. This patient cohort is characterized by a pronounced heterogeneity in terms of clinical outcome, degree in disability and coping. FMS has a prevalence of 3 – 8 % in the Western population and has a significant socio-economic impact. Validated psychosocial resilience factors include optimism, humor, coherence, self-efficacy, awareness with one's own resources and the ability to apply them profitably (coping), and a healthy social environment with positive relationships. Studies in patients with cancer revealed religiosity as positive and negative factor on the health outcome, but there is little data on religious aspects of pain resilience. Various genetic polymorphisms and anti-inflammatory cytokines are known as biological resilience factors. Various microRNA (miRNA) were detected to contribute to resilience in the context of stress and psychiatric disorders. Objective: The underlying research question of this work is to understand the factors that make some FMS patients resilient and others not, even though they suffer from the same disease. The long-term aim was to understand mechanisms and influencing factors of resilience to design preventive and resource-oriented therapies for FMS patients. Material and Methods: Three studies examined religious, physiological, biological, and psychosocial factors which may contribute to resilience in FMS patients. Study one combined data of questionnaires, a psychosocial interview, and regression analyses to investigate the relevance of religiosity for coping and resilience. Study two examined variance explaining factors and defined clusters among FMS patients by their differences in coping, pain phenotype and disability. The factor analysis used variables derived from questionnaires and qPCR of cytokines in white blood samples (WBC) of patients and healthy controls. Study three assessed cluster-wise miRNA signatures which may underly differences in behaviour, emotional and physiological disability, and resilience among patient clusters. A cluster-specific speculative model of a miRNA-mediated regulatory cycle was proposed and its potential targets verified by an online tool. Results: The data from the first study revealed a not very religious patient cohort, which was rather ambivalent towards the institution church, but described itself as a believer. The degree of religiosity played a role in the choice of coping strategy but had no effect on psychological parameters or health outcomes. The coping strategy "reinterpretation", which is closely related iv to the religious coping "reappraisal", had the highest influence on FMS related disability. Cognitive active coping strategies such as reappraisal which belongs to religious coping had the highest effect on FMS related disability (resilience) and could be trained by a therapist. Results from the second study showed high variances of all measured cytokines within the patient group and no difference between patient and control group. The high dispersion indicated cluster among patients. Factor analysis extracted four variance-explaining factors named as affective load, coping, pain, and pro-inflammatory cytokines. Psychological factors such as depression were the most decisive factors of everyday stress in life and represented the greatest influence on the variance of the data. Study two identified four clusters with respective differences in the factors and characterized them as poorly adapted (maladaptive), well adapted (adaptive), vulnerable and resilient. Their naming was based on characteristics of both resilience concepts, indicated by patients who were less stress-sensitive and impaired as a personal characteristic and by patients who emerged as more resilient from a learning and adaptive process. The data from the variance analysis suggests that problem- and emotion-focused coping strategies and a more anti-inflammatory cytokine pattern are associated with low impairment and contribute to resilience. Additional favorable factors include low anxiety, acceptance, and persistence. Some cluster-specific intervention proposals were created that combine existing concepts of behavioral and mindfulness therapies with alternative therapies such as vitamin D supplementation and a healthy intestinal flora. The results of the third study revealed lower relative gene expression of miR103a-3p, miR107, and miR130a-3p in the FMS cohort compared to the healthy controls with a large effect size. The adaptive cluster had the highest gene expression of miR103a-3p and tendentially of miR107, which was correlated with the subscale score "physical abuse" of the trauma questionnaire. Further correlations were found in particular with pain catastrophizing and FMS-related disability. MiR103a-3p and miR107 form a miRNA-family. Based on this, we proposed a miR103a/107 regulated model of an adaptive process to stress, inflammation and pain by targeting genetic factors which are included in different anti-inflammatory and stress-regulating pathways. Conclusion: All three studies provide new insights into resilience in FMS patients. Cognitive coping (reappraisal/reinterpretation) plays a central role and thus offers therapeutic targets (reframing in the context of behavioral therapy). Religosity as a resilience factor was only partially valid for our patient cohort. Basically, the use of resource-oriented therapy in large institutions still requires research and interdisciplinary cooperation to create a consensus between the humanities, natural sciences and humanism.
Am Universitätsklinikum Würzburg wurden zwischen 2006-2015 447 Fälle einer akuten erregerbedingten Meningoenzephalitis in den Kliniken der Neurologie, Kinderklinik, Neurochirurgie und Psychiatrie behandelt. Es konnten sowohl Fälle durch Bakterien als auch Fälle durch Viren, Parasiten und Pilze gesichert werden. Diese Arbeit beschreibt die lokale Epidemiologie akuter erregerbedingter Meningoenzephalitiden.
Startle disease is a rare disorder associated with mutations in GLRA1 and GLRB, encoding glycine receptor (GlyR) α1 and β subunits, which enable fast synaptic inhibitory transmission in the spinal cord and brainstem. The GlyR β subunit is important for synaptic localization via interactions with gephyrin and contributes to agonist binding and ion channel conductance. Here, we have studied three GLRB missense mutations, Y252S, S321F, and A455P, identified in startle disease patients. For Y252S in M1 a disrupted stacking interaction with surrounding aromatic residues in M3 and M4 is suggested which is accompanied by an increased EC\(_{50}\) value. By contrast, S321F in M3 might stabilize stacking interactions with aromatic residues in M1 and M4. No significant differences in glycine potency or efficacy were observed for S321F. The A455P variant was not predicted to impact on subunit folding but surprisingly displayed increased maximal currents which were not accompanied by enhanced surface expression, suggesting that A455P is a gain-of-function mutation. All three GlyR β variants are trafficked effectively with the α1 subunit through intracellular compartments and inserted into the cellular membrane. In vivo, the GlyR β subunit is transported together with α1 and the scaffolding protein gephyrin to synaptic sites. The interaction of these proteins was studied using eGFP-gephyrin, forming cytosolic aggregates in non-neuronal cells. eGFP-gephyrin and β subunit co-expression resulted in the recruitment of both wild-type and mutant GlyR β subunits to gephyrin aggregates. However, a significantly lower number of GlyR β aggregates was observed for Y252S, while for mutants S321F and A455P, the area and the perimeter of GlyR β subunit aggregates was increased in comparison to wild-type β. Transfection of hippocampal neurons confirmed differences in GlyR-gephyrin clustering with Y252S and A455P, leading to a significant reduction in GlyR β-positive synapses. Although none of the mutations studied is directly located within the gephyrin-binding motif in the GlyR β M3-M4 loop, we suggest that structural changes within the GlyR β subunit result in differences in GlyR β-gephyrin interactions. Hence, we conclude that loss- or gain-of-function, or alterations in synaptic GlyR clustering may underlie disease pathology in startle disease patients carrying GLRB mutations.
Ischemic stroke is among the leading causes of disability and death worldwide. In acute ischemic stroke, successful recanalization of occluded vessels is the primary therapeutic aim, but even if it is achieved, not all patients benefit. Although blockade of platelet aggregation did not prevent infarct progression, cerebral thrombosis as cause of secondary infarct growth has remained a matter of debate. As cerebral thrombi are frequently observed after experimental stroke, a thrombus-induced impairment of the brain microcirculation is considered to contribute to tissue damage. Here, we combine the model of transient middle cerebral artery occlusion (tMCAO) with light sheet fluorescence microscopy and immunohistochemistry of brain slices to investigate the kinetics of thrombus formation and infarct progression. Our data reveal that tissue damage already peaks after 8 h of reperfusion following 60 min MCAO, while cerebral thrombi are only observed at later time points. Thus, cerebral thrombosis is not causative for secondary infarct growth during ischemic stroke.
In einer Vielzahl von epidemiologischen Studien zeigten Patienten, die an einem idiopathischen Parkinson-Syndrom (IPS) erkrankt waren, erniedrigte Vitamin D-Serumspiegel (25-(OH)-Vit D). Die Rolle von Vitamin D im Knochenstoffwechsel ist weitgehend bekannt, allerdings konnten Assoziationen zwischen Vitamin D und chronischen Erkrankungen, die das Nervensystem sowie das kardiovaskuläre und immunologische System betreffen, nachgewiesen werden. In Tiermodellen konnten anti-oxidative Effekte von Vitamin D im Nervensystem gezeigt werden. In den letzten Jahren häuften sich allerdings Studien, die gegen einen direkten Zusammenhang zwischen IPS und Vitamin D sprechen. Demnach stellt sich die Frage, ob dem gehäuften Auftreten eines Vitamin D-Mangels bei IPS-Patienten eine krankheitsspezifische Ursache zugrunde liegt oder ob diese lediglich ein unspezifisches krankheitsbegleitendes Phänomen darstellt.
In der vorliegenden Arbeit wurden in einer retrospektiven Analyse Parkinson-Patienten aus der neurogerontopsychiatrischen Tagesklinik sowie der neurogeriatrischen Frührehastation der Neurologischen Klinik der Universitätsklinik Würzburg hinsichtlich ihres 25-(OH)-Vit D-Serumspiegel mit zwei Kontrollgruppen bestehend aus Patienten mit psychiatrischer bzw. anderweitig neurologischer Erkrankung, die keiner Parkinson-Erkrankung entsprach, verglichen. Im Anschluss wurde auf mögliche Konfounder sowie der Zusammenhang zwischen IPS-Risiko bzw. Krankheitsschwere und 25-(OH)-Vit D-Serumspiegel untersucht.
Der mittlere 25-(OH)-Vit D-Serumspiegel der Neurologie-Gruppe war im Vergleich zur Psychiatrie-Gruppe signifikant niedriger. Der Unterschied zwischen IPS-Gruppe und Psychiatrie- bzw. Neurologie-Gruppe war nicht signifikant. Bei Hinzunahme von weiteren rekrutierten Parametern (Body-Mass-Index, Frailty, Sturzanamnese, Gehhilfe, CHA2DS2-VASc-Score, C-reaktives Protein, Hämoglobin) konnte kein signifikanter Unterschied zwischen der Neurologie- und Psychiatrie-Gruppe mehr gefunden werden.
Das Risiko sowie die Krankheitsschwere einer Parkinson-Erkrankung, gemessen am Hoehn-Yahr-Stadium und den erreichten Werten im MDS UPDRS III, korrelierten mit dem Vitamin D-Serumspiegel. Allerdings war auch hier nach Hinzunahme von Kovariaten wie Alter, Geschlecht und Krankheitsdauer der Effekt nicht mehr signifikant.
Die Ergebnisse unterstützen die Annahme, dass die vorgefundenen niedrigen 25-(OH)-Vit D-Serumspiegel bei Parkinson-Patienten ein krankheitsbegleitendes Phänomen ist, das womöglich durch die eingeschränkten motorischen Fähigkeiten mit resultierend niedriger Sonnenexposition bedingt ist und durch zunehmende Kranheitsdauer und damit Krankheitsschwere verstärkt wird. Da es sich jedoch beim IPS um eine Krankheit handelt, die zum Einen mit motorischen Einschränkungen und resultierend erhöhtem Sturzrisiko einhergeht und zum Anderen vorwiegend Menschen höheren Alters betrifft, besteht ein erhöhtes Osteoporose- und sturzbedingtes Frakturrisiko, sodass ein Monitoring des Vitamin D-Serumspiegels sowie eine gegebenenfalls notwendige Vitamin D-Supplementierung weiterhin eine Rolle in der Behandlung von Parkinson-Patienten spielen.
Background
In acute ischemic stroke, cessation of blood flow causes immediate tissue necrosis within the center of the ischemic brain region accompanied by functional failure in the surrounding brain tissue designated the penumbra. The penumbra can be salvaged by timely thrombolysis/thrombectomy, the only available acute stroke treatment to date, but is progressively destroyed by the expansion of infarction. The underlying mechanisms of progressive infarction are not fully understood.
Methods
To address mechanisms, mice underwent filament occlusion of the middle cerebral artery (MCAO) for up to 4 h. Infarct development was compared between mice treated with antigen-binding fragments (Fab) against the platelet surface molecules GPIb (p0p/B Fab) or rat immunoglobulin G (IgG) Fab as control treatment. Moreover, Rag1\(^{−/−}\) mice lacking T-cells underwent the same procedures. Infarct volumes as well as the local inflammatory response were determined during vessel occlusion.
Results
We show that blocking of the platelet adhesion receptor, glycoprotein (GP) Ibα in mice, delays cerebral infarct progression already during occlusion and thus before recanalization/reperfusion. This therapeutic effect was accompanied by decreased T-cell infiltration, particularly at the infarct border zone, which during occlusion is supplied by collateral blood flow. Accordingly, mice lacking T-cells were likewise protected from infarct progression under occlusion.
Conclusions
Progressive brain infarction can be delayed by blocking detrimental lymphocyte/platelet responses already during occlusion paving the way for ultra-early treatment strategies in hyper-acute stroke before recanalization.
A diagnosis of neuropathy can typically be determined through clinical assessment and focused investigation. With technological advances, including significant progress in genomics, the role of nerve biopsy has receded over recent years. However, making a specific and, in some cases, tissue-based diagnosis is essential across a wide array of potentially treatable acquired peripheral neuropathies. When laboratory investigations do not suggest a definitive diagnosis, nerve biopsy remains the final step to ascertain the etiology of the disease. The present review highlights the utility of nerve biopsy in confirming a diagnosis, while further illustrating the importance of a tissue-based diagnosis in relation to treatment strategies, particularly when linked to long-term immunosuppressive therapies,
Improving quality of life (QoL) is central to amyotrophic lateral sclerosis (ALS) treatment. This Germany-wide, multicenter cross-sectional study analyses the impact of different symptom-specific treatments and ALS variants on QoL. Health-related QoL (HRQoL) in 325 ALS patients was assessed using the Amyotrophic Lateral Sclerosis Assessment Questionnaire 5 (ALSAQ-5) and EuroQol Five Dimension Five Level Scale (EQ-5D-5L), together with disease severity (captured by the revised ALS Functional Rating Scale (ALSFRS-R)) and the current care and therapies used by our cohort. At inclusion, the mean ALSAQ-5 total score was 56.93 (max. 100, best = 0) with a better QoL associated with a less severe disease status (β = −1.96 per increase of one point in the ALSFRS-R score, p < 0.001). “Limb-onset” ALS (lALS) was associated with a better QoL than “bulbar-onset” ALS (bALS) (mean ALSAQ-5 total score 55.46 versus 60.99, p = 0.040). Moreover, with the ALSFRS-R as a covariate, using a mobility aid (β = −7.60, p = 0.001), being tracheostomized (β = −14.80, p = 0.004) and using non-invasive ventilation (β = −5.71, p = 0.030) were associated with an improved QoL, compared to those at the same disease stage who did not use these aids. In contrast, antidepressant intake (β = 5.95, p = 0.007), and increasing age (β = 0.18, p = 0.023) were predictors of worse QoL. Our results showed that the ALSAQ-5 was better-suited for ALS patients than the EQ-5D-5L. Further, the early and symptom-specific clinical management and supply of assistive devices can significantly improve the individual HRQoL of ALS patients. Appropriate QoL questionnaires are needed to monitor the impact of treatment to provide the best possible and individualized care.
Deep brain stimulation (DBS) of the thalamic ventral intermediate nucleus is one of the main advanced neurosurgical treatments for drug-resistant tremor. However, not every patient may be eligible for this procedure. Nowadays, various other functional neurosurgical procedures are available. In particular cases, radiofrequency thalamotomy, focused ultrasound and radiosurgery are proven alternatives to DBS. Besides, other DBS targets, such as the posterior subthalamic area (PSA) or the dentato-rubro-thalamic tract (DRT), may be appraised as well. In this review, the clinical characteristics and pathophysiology of tremor syndromes, as well as long-term outcomes of DBS in different targets, will be summarized. The effectiveness and safety of lesioning procedures will be discussed, and an evidence-based clinical treatment approach for patients with drug-resistant tremor will be presented. Lastly, the future directions in the treatment of severe tremor syndromes will be elaborated.
Die Multiple Sklerose ist eine bisher nicht heilbare, chronisch-inflammatorische demyelinisierende Erkrankung des zentralen Nervensystems. Trotz intensiver Forschungsbemühungen ist der exakte Pathomechanismus nicht vollkommen verstanden. Klar ist jedoch, dass der Blut-Hirn-Schranke eine entscheidende Rolle bei der Pathogenese zukommt. Seit Februar 2014 ist mit Dimethylfumarat ein neues orales Medikament für die schubförmige Multiple Sklerose zugelassen. Die Wirkungen von Fumarsäureestern auf humane zerebrale Endothelzellen als Grundsteine der Blut-Hirn-Schranke sind allerdings nur unzureichend untersucht.
Mehrere Forschungsgruppen demonstrierten an humanem Nabelschnurvenenendothel einen hemmenden Effekt von Fumarsäureestern auf die Adhäsion von Leukozyten und beschrieben eine Inhibition der Aktivierung des proinflammatorischen Transkriptionsfaktors NFB in den Endothelzellen. Aufgrund der charakteristischen Eigenschaften zerebralen Endothels ist eine Übertragung dieser Beobachtungen auf die Blut-Hirn-Schranke allerdings nicht ohne weiteres möglich. Daher galt es potentielle Effekte von Fumarsäureestern auf primäre humane zerebrale Endothelzellen als in vitro Modell der Blut-Hirn-Schranke zu überprüfen. Dabei wurden die Zellen nicht nur unter ruhenden Bedingungen, sondern auch unter inflammatorischer Stimulation mit TNF-α, IL-1 und IFN untersucht, einem Milieu, wie es in inflammatorischen MS Läsionen zu finden ist. In Leukozyten-Adhäsionsassays konnte durch Inkubation mit Monomethylfumarat und Dimethylfumarat keine funktionale Beeinflussung der Adhäsion von T-Lymphozyten an den verwendeten zerebralen Endothelzellen verzeichnet werden. Kongruent dazu fand sich in durchflusszytometrischen Analysen keine Hemmung der inflammatorisch vermittelten Expression des Adhäsionsmoleküls ICAM-1, welches eine tragende Rolle bei der Leukozytenmigration spielt. Inflammatorische intrazelluläre Signalwege, wie die NFB-Kerntranslokation oder die Phosphorylierung von p38 wurden in HECE im Gegensatz zu HUVEC durch Fumarsäureester ebenso wenig beeinflusst.
Diese in sich konsistenten Ergebnisse führen zu der Schlussfolgerung, dass im Gegensatz zu anderen Gefäßbetten weder Dimethylfumarat noch Monomethylfumarat direkt am zerebralen Endothel anti-inflammatorisch wirken.
Die Schlaganfallnachsorge in Deutschland wird von verschiedenen Leistungserbringern geprägt, die teilweise komplementäre und komplexe Dienstleistungen erbringen und sektorenübergreifend arbeiten. In Bad Neustadt wurde in Kooperation mit der Universität Würzburg und dem Zentrum für Telemedizin Bad Kissingen das Stroke Manager Programm entwickelt und evaluiert. Das strukturierte Nachsorgeprogramm Stroke Manager basiert auf einer standardisierten Informations- und Software Unterstützung von der Akutversorgung bis drei Monate nach Entlassung aus der stationären Versorgung.
Anhand der Ergebnisse des Stroke Manager Programms konnte eine vergleichsweise hohe Persistenz bzgl. der stationär verordneten medikamentösen Sekundärprävention über einen Zeitraum von drei Monaten festgestellt werden, ebenso konnten wir nachweisen, dass sich das Programm positiv auf die Versorgungsqualität sowie die Patientenzufriedenheit nach Schlaganfall auswirken kann. Die im Stroke Manager-Programm betreuten Schlaganfallpatienten wiesen im Vergleich signifikante Unterschiede bei den Faktoren Rauchverhalten, Schlaganfallschweregrad und subjektive, globale Lebensqualität auf.