@phdthesis{Kress2020, author = {Kreß, Luisa Sophia}, title = {Determination of cytokine and axon guidance molecule profiles in patients with small fiber neuropathy}, doi = {10.25972/OPUS-20911}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-209113}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2020}, abstract = {The pathophysiological mechanisms of pain in small fiber neuropathy (SFN) are unclear. Based on experimental and clinical studies, sensitized nociceptors in the skin are reported to be involved in pain development. These nociceptors may be sensitized by cutaneous and systemic pain mediators e.g. pro- and anti-inflammatory cytokines. The aim of our study was, to measure the systemic and local gene expression of pro- and anti-inflammatory cytokines in white blood cells (WBC) as well as in primary fibroblasts and keratinocytes obtained from human skin of patients with SFN. Furthermore, gene expression levels of axon guidance molecules and their receptors, as potential regulators of the intraepidermal nerve fiber density (IENFD), were investigated. 55 patients and 31 healthy controls were prospectively recruited. Participants underwent extensive clinical phenotyping and blood sampling, 6-mm skin punch biopsies were taken from the right lateral calf and the upper thigh. Systemic relative gene expression levels (ΔG) of the interleukin (IL)-1β, IL-2, IL-6, IL-8, and tumor necrosis factor (TNF) was measured in WBC. Skin punch biopsies were taken to determine the IENFD and to obtain primary fibroblast and keratinocyte cell cultures. Skin cells were then used for investigation of ΔG in axon guidance molecules netrin 1 (NTN1) and ephrin A4 (EPHA4) as well as their receptors Unc5b receptor, and ephrin A4 (EFNA4) as well as cytokines IL-1β, IL-4, IL-6, IL-8, IL-10, TNF, and transforming growth factor (TGF). Systemically, gene expression of IL-2, IL-8, and TNF was higher in SFN patients compared to healthy controls. In keratinocytes, higher expression levels of NTN1 and TGF were found when comparing the SFN patients to the controls. In fibroblasts higher gene expression was shown in NTN1, Unc5b, IL-6, and IL-8 when comparing patients to healthy controls. The systemically and local elevated levels of pro-inflammatory, algesic cytokines in SFN patients compared to healthy controls, confirms a potential pathophysiological role in the development of neuropathic pain. Data also indicate fibroblasts and keratinocytes to influence subepidermal and intraepidermal nerve fiber growth through the expression of NTN1 and Unc5b. Thus, skin cells may contribute to the development of neuropathic pain through local denervation.}, subject = {Neuropathischer Schmerz}, language = {en} } @phdthesis{Wind2020, author = {Wind, Teresa Elisabeth}, title = {Einfluss von Alter und Polyneuropathie auf zeitliche Wahrnehmungsschwellen somatosensorischer und kin{\"a}sthetischer Stimuli und propriozeptive Leistungsf{\"a}higkeit}, doi = {10.25972/OPUS-20804}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-208047}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2020}, abstract = {Zeitliche Diskrimination somatosensorischer und kin{\"a}sthetischer Stimuli wurde als neurophysiologisches Korrelat f{\"u}r propriozeptive Pr{\"a}zision postuliert und bei verschiedenen Bewegungsst{\"o}rungen als pathologisch beschrieben. Ziel der Untersuchung war es, den Einfluss von Alter und Polyneuropathie auf die kin{\"a}sthetische (TDMT) und taktile (STDT) zeitliche Wahrnehmungsschwelle sowie die propriozeptive Genauigkeit bei Zeigeversuchen systematisch zu untersuchen. Hierf{\"u}r wurden 54 gesunde Probanden und 25 Polyneuropathie-Patienten im Alter zwischen 30 und 76 Jahren untersucht. Die STDT-Messung erfolgte mit Oberfl{\"a}chenelektroden, die an der Zeigefingerspitze bzw. am Großzehengrundgelenk angebracht wurden. Die TDMT-Werte wurden mit Hilfe einer sterilen Nadelelektrode erfasst, welche in den Musculus flexor carpi radialis bzw. Musculus tibialis anterior inseriert wurde. Die Daten zur Propriozeption wurden mit Hilfe eines Goniometers erhoben und beinhalteten dabei aktive Zeigeaufgaben (Zeigen auf eine LED, Nachahmung einer Bewegung anhand einer auf einem Computerbildschirm dargebotenen PFEIL-Darstellung unterschiedlicher L{\"a}nge) und die Einsch{\"a}tzung der Position der jeweiligen Extremit{\"a}t nach passiver Bewegung (PASSIV). Die Messungen erfolgten jeweils ohne visuelle R{\"u}ckmeldung. Die Zeigefehler (Abweichung von der Zielposition) bzw. Sch{\"a}tzfehler (Abweichung der gesch{\"a}tzten von der tats{\"a}chlichen Position nach passiver Auslenkung) wurden als Maß der propriozeptiven Pr{\"a}zision verwendet. Die Ergebnisse der gesunden Probandengruppe zeigten, dass h{\"o}heres Alter mit h{\"o}heren STDT- und TDMT-Werten korrelierte. Die Polyneuropathie-Patienten erzielten in allen Bereichen (Diskriminationsschwellen und Propriozeptionsaufgaben) signifikant schlechtere Ergebnisse als die gesunde Kontrollgruppe. Zus{\"a}tzlich konnte eine statistisch signifikante positive Korrelation zwischen der propriozeptiven Pr{\"a}zision bei den aktiven Zeige-Aufgaben (LED und PFEIL) und den zeitlichen Diskriminationsschwellen (STDT und TDMT) gezeigt werden. In Anbetracht dieser Ergebnisse sollten das Patienten-Alter und m{\"o}gliche St{\"o}rungen der peripheren Nervenleitung ber{\"u}cksichtigt werden, wenn STDT-und TDMT-Bestimmungen bei Patienten mit Bewegungsst{\"o}rungen angewendet werden. Die Korrelation zwischen den Diskriminationsschwellen und der Performance bei aktiven Zeigeversuchen (PFEIL- und LED-Aufgabe) legt nahe, dass STDT und TDMT Indikatoren der propriozeptiven Funktion sein k{\"o}nnten. Es ist weitere Forschungsarbeit notwendig, um diese Beziehung exakt zu beleuchten. Im Falle einer Best{\"a}tigung der Befunde auch bei Patienten mit Bewegungsst{\"o}rungen erscheint denkbar, dass sich STDT und TDMT als vergleichsweise leicht messbare und gut quantifizierbare Parameter der Propriozeption herausstellen mit Potenzial zur differenzialdiagnostischen Anwendung, m{\"o}glicherweise aber auch als Surrogatparameter einer gezielten rehabilitativen Behandlung.}, subject = {Propriozeption}, language = {de} } @phdthesis{Emmerich2020, author = {Emmerich, Christoph}, title = {Die Rolle der clathrin- und dynaminabh{\"a}ngigen Endozytose bei der Internalisation von anti-Amphiphysin-Autoantik{\"o}rpern im Falle des Stiff-Person-Syndroms, untersucht am Zellkulturmodell hippocampaler Neurone}, doi = {10.25972/OPUS-20936}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-209360}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2020}, abstract = {In dieser Arbeit wurde mit Hilfe von small-molecule Inhibitoren die Rolle von clathrin- und dynaminabh{\"a}ngigen Endozytosemechanismen bei der Aufnahme von anti-Amphiphysin-Autoantik{\"o}rpern am Zellkulturmodell prim{\"a}rer hippocampaler Neurone untersucht. Hierbei konnte eine Beeinflussung der Autoaantik{\"o}rperaufnahme durch die Intervention gezeigt werden. Außerdem erfolgte der Versuch der Etablierung eines siRNA knockdowns unter Zuhilfenahme unterschiedlicher Traansfektionsreaaagenzien.}, subject = {siRNA}, language = {de} } @phdthesis{Brandt2020, author = {Brandt, Gregor A.}, title = {Gait Initiation in Parkinson's Disease: The Interplay of Dopamine and Postural Control}, doi = {10.25972/OPUS-21463}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-214636}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2020}, abstract = {Deterioration of gait and alterations of physiological gait initiation contribute significantly to the burden of disease in Parkinson's disease. This paper systematically investigates disease-specific alterations during the postural phases of gait initiation and demonstrates the influence of dopaminergic networks by assessing levodopa mediated improvements in motor performance and correlation of motor behavior with loss of striatal and cortical dopaminergic neurons. Particular attention is given to known confounders such as initial stance and anthropometrics.}, subject = {Parkinson-Krankheit}, language = {en} } @phdthesis{Purrer2020, author = {Purrer, Veronika}, title = {Nicht-motorische Begleitsymptome bei Patienten mit Essentiellen Tremor}, doi = {10.25972/OPUS-19366}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-193665}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2020}, abstract = {Der essentielle Tremor (ET) ist eine der h{\"a}ufigsten Bewegungsst{\"o}rungen, welcher lange Zeit als rein motorische St{\"o}rung angesehen wurde. Aufgrund zunehmender Belege {\"u}ber nicht-motorisch Begleitsymptome wandelte sich dieses Bild jedoch in den letzten Jahren zunehmend. In der vorliegenden Arbeit untersuchten wir 113 Probanden aus der Allgemeinbev{\"o}lkerung mit klinisch definitiven oder wahrscheinlichen ET anhand einer breiten Batterie neuro-psychologischer Testverfahren. Es gelang hierbei signifikante Unterschiede im Vergleich zu gesunden Eichstichproben im Hinblick auf neuro-psychologische Charakteristika, wie Apathie, {\"A}ngstlichkeit und exekutive Dysfunktion, sowie deren negativen Einfluss auf die Lebensqualit{\"a}t der Probanden darzustellen. Bisher werden im klinischen Alltag nicht-motorische Begleitph{\"a}nomene beim ET nicht regelhaft erfasst; aufgrund unserer Ergebnisse und der Relevanz vor allem im Hinblick auf die Lebensqualit{\"a}t des Einzelnen halten wir jedoch die Erfassung und gegebenenfalls Behandlung dieser Symptome f{\"u}r ebenso relevant.}, subject = {Essentieller Tremor}, language = {de} } @phdthesis{Hirschmann2020, author = {Hirschmann, Anna}, title = {microRNA-Genexpressionsprofile in Blut-, Haut- und Nervenproben von Patienten mit Polyneuropathien}, doi = {10.25972/OPUS-21701}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-217010}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2020}, abstract = {Die Polyneuropathie (PNP) ist die h{\"a}ufigste St{\"o}rung des peripheren Nervensystems bei Erwachsenen. Die Suche nach der Ursache bleibt in vielen F{\"a}llen erfolglos, ist aber unverzichtbar, da die Therapiewahl von der {\"A}tiologie der Erkrankung abh{\"a}ngt. Geeignete Biomarker k{\"o}nnten die Differentialdiagnose unter Umst{\"a}nden erleichtern. microRNAs (miRNAs) sind in dieser Hinsicht vielversprechend, da in vielen Studien bei Nervende- und regenerationsprozessen sowie in neuropathischen Schmerzmodellen eine Dysregulation beschrieben wurde. In dieser Studie wurde die Expression zweier miRNAs, miR-103a und miR-let-7d, sowie eines Zielmolek{\"u}ls der miR-103a, des Kalziumkanals Cav1,2, in einer großen Kohorte von PNP-Patienten unterschiedlicher {\"A}tiologie in Blut, Haut- und Nervenbiopsien untersucht. Insgesamt wurden 116 Patienten und 22 Kontroll-probanden in die Studie eingeschlossen. Nach der Isolation von RNA aus weißen Blutzellen (WBC), Haut- und Nervenbiopsien folgte die Expressionsbestimmung mittels qRT-PCR. W{\"a}hrend sich jeweils Unterschiede zwischen PNP-Patienten und Kontrollen und zwischen Patienten mit entz{\"u}ndlicher und solchen mit nicht-entz{\"u}ndlicher PNP zeigten, wurden keine Unterschiede in der Expression zwischen den {\"a}tiologischen Subgruppen oder zwischen Patienten mit schmerzhafter und schmerzloser PNP festgestellt. In den Nervenbiopsien der Patientenkohorte ergab sich eine inverse Korrelation der miR-103a und ihrem Zielgen Cacna1c, die darauf hinweisen k{\"o}nnte, dass Cacna1c von der miR-103a negativ reguliert wird. Da in unserer Patientenkohorte keine Unterschiede zwischen den PNP-Subgruppen auftraten, scheint der Einsatz der miR-103a und miR-let-7d als diagnostische Biomarker zur {\"a}tiologischen Einordnung einer PNP nicht gerechtfertigt. Dennoch deuten unsere Ergebnisse auf eine m{\"o}gliche Rolle der untersuchten miRNAs bei Entstehung und Verlauf von PNP hin. F{\"u}r ein tieferes pathophysiologisches Verst{\"a}ndnis der miRNAs vor allem bei entz{\"u}ndlichen Neuropathien, k{\"o}nnte die Untersuchung von weiteren miRNAs und Zielgenen Aufschluss geben.}, subject = {miRNS}, language = {de} } @phdthesis{Pozzi2020, author = {Pozzi, Nicol{\´o} Gabriele}, title = {Parkinson's disease revisited: multiple circuitopathies}, doi = {10.25972/OPUS-21671}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-216715}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2020}, abstract = {Parkinson's disease (PD) is among the most common neurodegenerative conditions, and it is characterized by the progressive loss of dopaminergic neurons and a great variability in clinical expression. Despite several effective medications, it still causes disability as all patients show treatment-resistant symptoms and complications. A possible reason for this therapeutic-burden and great clinical variability lies in a probable misconception about its pathophysiology, one that focuses on neurodegeneration, while largely neglecting its functional consequences and the related compensatory changes. In this thesis, I expand on the hypothesis that some PD symptoms have a dysfunctional origin and reflect derangements of neural network dynamics, the means by which brain coordination supports any motor behaviour. In particular, I have investigated resting tremor and freezing of gait, two common symptoms with an enigmatic mechanism and suboptimal management. In the case of tremor, I predicted a pathological change in response to dopamine loss, which included the activation of noradrenergic (NA) neurons of the locus coeruleus (LC) projecting to the cerebellum. This compensatory LC activation that supports dopaminergic neurons might indeed come at the expense of tremor development. To assess the role of LC-NA in tremor development, I recorded tremor occurrence in the reserpinized rat model of PD, one of very few showing tremor, after selective lesioning (with the neurotoxin DSP-4) of the LC-NA terminal axons. DSP-4 induced a severe reduction of LC-NA terminal axons in the cerebellar cortex and this was associated with a significant reduction in tremor development. Unlike its development, tremor frequency and the akinetic rigid signs did not differ between the groups, thus suggesting a dopaminergic dependency. These findings suggest that the LC-NA innervation of the cerebellum has a critical role for PD tremor, possibly by exerting a network effect, which gates the cerebello-thalamic-cortical circuit into pathological oscillations upon a dopaminergic loss in the basal ganglia. In contrast, for the study of freezing of gait, I worked with human PD subjects and deep brain stimulation, a therapeutic neuromodulation device that in some prototypes also allows the recording of neural activity in freely-moving subjects. Gait freezing is a disabling PD symptom that suddenly impairs effective stepping, thus causing falls and disability. Also in this study, I hypothesized that the underlying pathophysiology may be represented by dysfunctional neural network dynamics that abruptly impair locomotor control by affecting the communication in the supraspinal locomotor network. To test this hypothesis, I investigated the coupling between the cortex and the subthalamic nucleus, two main nodes of the supraspinal locomotor network, in freely-moving subjects PD patients and also performed molecular brain imaging of striatal dopamine receptor density and kinematic measurements. I found that in PD patients, walking is associated with cortical-subthalamic stable coupling in a low-frequency band (i.e. θ-α rhythms). In contrast, these structures decoupled when gait freezing occurred in the brain hemisphere with less dopaminergic innervation. These findings suggest that freezing of gait is a "circuitopathy", with dysfunctional cortical-subcortical communication. Altogether the results of my experiments support the hypothesis that the pathophysiology of PD goes beyond neurodegenerative (loss-of-function) processes and that derangement of neural network dynamics coincides with some disabling PD symptoms, thus suggesting that PD can be interpreted as the combination of multiple circuitopathies.}, subject = {Parkinson-Krankheit}, language = {en} } @article{BrieseSaalBauernschubertLueningschroeretal.2020, author = {Briese, Michael and Saal-Bauernschubert, Lena and L{\"u}ningschr{\"o}r, Patrick and Moradi, Mehri and Dombert, Benjamin and Surrey, Verena and Appenzeller, Silke and Deng, Chunchu and Jablonka, Sibylle and Sendtner, Michael}, title = {Loss of Tdp-43 disrupts the axonal transcriptome of motoneurons accompanied by impaired axonal translation and mitochondria function}, series = {Acta Neuropathologica Communications}, volume = {8}, journal = {Acta Neuropathologica Communications}, doi = {10.1186/s40478-020-00987-6}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-230322}, year = {2020}, abstract = {Protein inclusions containing the RNA-binding protein TDP-43 are a pathological hallmark of amyotrophic lateral sclerosis and other neurodegenerative disorders. The loss of TDP-43 function that is associated with these inclusions affects post-transcriptional processing of RNAs in multiple ways including pre-mRNA splicing, nucleocytoplasmic transport, modulation of mRNA stability and translation. In contrast, less is known about the role of TDP-43 in axonal RNA metabolism in motoneurons. Here we show that depletion of Tdp-43 in primary motoneurons affects axon growth. This defect is accompanied by subcellular transcriptome alterations in the axonal and somatodendritic compartment. The axonal localization of transcripts encoding components of the cytoskeleton, the translational machinery and transcripts involved in mitochondrial energy metabolism were particularly affected by loss of Tdp-43. Accordingly, we observed reduced protein synthesis and disturbed mitochondrial functions in axons of Tdp-43-depleted motoneurons. Treatment with nicotinamide rescued the axon growth defect associated with loss of Tdp-43. These results show that Tdp-43 depletion in motoneurons affects several pathways integral to axon health indicating that loss of TDP-43 function could thus make a major contribution to axonal pathomechanisms in ALS.}, language = {en} } @article{RauschenbergervonWardenburgSchaeferetal.2020, author = {Rauschenberger, Vera and von Wardenburg, Niels and Schaefer, Natascha and Ogino, Kazutoyo and Hirata, Hiromi and Lillesaar, Christina and Kluck, Christoph J. and Meinck, Hans-Michael and Borrmann, Marc and Weishaupt, Andreas and Doppler, Kathrin and Wickel, Jonathan and Geis, Christian and Sommer, Claudia and Villmann, Carmen}, title = {Glycine Receptor Autoantibodies Impair Receptor Function and Induce Motor Dysfunction}, series = {Annals of Neurology}, volume = {88}, journal = {Annals of Neurology}, number = {3}, doi = {10.1002/ana.25832}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-216005}, pages = {544 -- 561}, year = {2020}, abstract = {Objective Impairment of glycinergic neurotransmission leads to complex movement and behavioral disorders. Patients harboring glycine receptor autoantibodies suffer from stiff-person syndrome or its severe variant progressive encephalomyelitis with rigidity and myoclonus. Enhanced receptor internalization was proposed as the common molecular mechanism upon autoantibody binding. Although functional impairment of glycine receptors following autoantibody binding has recently been investigated, it is still incompletely understood. Methods A cell-based assay was used for positive sample evaluation. Glycine receptor function was assessed by electrophysiological recordings and radioligand binding assays. The in vivo passive transfer of patient autoantibodies was done using the zebrafish animal model. Results Glycine receptor function as assessed by glycine dose-response curves showed significantly decreased glycine potency in the presence of patient sera. Upon binding of autoantibodies from 2 patients, a decreased fraction of desensitized receptors was observed, whereas closing of the ion channel remained fast. The glycine receptor N-terminal residues \(^{29}\)A to \(^{62}\)G were mapped as a common epitope of glycine receptor autoantibodies. An in vivo transfer into the zebrafish animal model generated a phenotype with disturbed escape behavior accompanied by a reduced number of glycine receptor clusters in the spinal cord of affected animals. Interpretation Autoantibodies against the extracellular domain mediate alterations of glycine receptor physiology. Moreover, our in vivo data demonstrate that the autoantibodies are a direct cause of the disease, because the transfer of human glycine receptor autoantibodies to zebrafish larvae generated impaired escape behavior in the animal model compatible with abnormal startle response in stiff-person syndrome or progressive encephalitis with rigidity and myoclonus patients.}, language = {en} } @article{UeceylerBuchholzKewenigetal.2020, author = {{\"U}{\c{c}}eyler, Nurcan and Buchholz, Hans-Georg and Kewenig, Susanne and Ament, Stephan-Johann and Birklein, Frank and Schreckenberger, Mathias and Sommer, Claudia}, title = {Cortical Binding Potential of Opioid Receptors in Patients With Fibromyalgia Syndrome and Reduced Systemic Interleukin-4 Levels - A Pilot Study}, series = {Frontiers in Neuroscience}, volume = {14}, journal = {Frontiers in Neuroscience}, issn = {1662-453X}, doi = {10.3389/fnins.2020.00512}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-204457}, year = {2020}, abstract = {Objective: We investigated cerebral opioid receptor binding potential in patients with fibromyalgia syndrome (FMS) using positron-emission-tomography (PET) and correlated our results with patients' systemic interleukin-4 (IL-4) gene expression. Methods: In this pilot study, seven FMS patients (1 man, 6 women) agreed to participate in experimental PET scans. All patients underwent neurological examination, were investigated with questionnaires for pain, depression, and FMS symptoms. Additionally, blood for IL-4 gene expression analysis was withdrawn at two time points with a median latency of 1.3 years. Patients were investigated in a PET scanner using the opioid receptor ligand F-18-fluoro-ethyl-diprenorphine ([18F]FEDPN) and results were compared with laboratory normative values. Results: Neurological examination was normal in all FMS patients. Reduced opioid receptor binding was found in mid cingulate cortex compared to healthy controls (p < 0.005). Interestingly, three patients with high systemic IL-4 gene expression had increased opioid receptor binding in the fronto-basal cortex compared to those with low IL-4 gene expression (p < 0.005). Conclusion: Our data give further evidence for a reduction in cortical opioid receptor availability in FMS patients as another potential central nervous system contributor to pain in FMS.}, language = {en} }