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Anti-CNTN1 IgG3 induces acute conduction block and motor deficits in a passive transfer rat model
(2019)
Background:
Autoantibodies against the paranodal protein contactin-1 have recently been described in patients with severe acute-onset autoimmune neuropathies and mainly belong to the IgG4 subclass that does not activate complement. IgG3 anti-contactin-1 autoantibodies are rare, but have been detected during the acute onset of disease in some cases. There is evidence that anti-contactin-1 prevents adhesive interaction, and chronic exposure to anti-contactin-1 IgG4 leads to structural changes at the nodes accompanied by neuropathic symptoms. However, the pathomechanism of acute onset of disease and the pathogenic role of IgG3 anti-contactin-1 is largely unknown.
Methods:
In the present study, we aimed to model acute autoantibody exposure by intraneural injection of IgG of patients with anti-contacin-1 autoantibodies to Lewis rats. Patient IgG obtained during acute onset of disease (IgG3 predominant) and IgG from the chronic phase of disease (IgG4 predominant) were studied in comparison.
Results:
Conduction blocks were measured in rats injected with the “acute” IgG more often than after injection of “chronic” IgG (83.3% versus 35%) and proved to be reversible within a week after injection. Impaired nerve conduction was accompanied by motor deficits in rats after injection of the “acute” IgG but only minor structural changes of the nodes. Paranodal complement deposition was detected after injection of the “acute IgG”. We did not detect any inflammatory infiltrates, arguing against an inflammatory cascade as cause of damage to the nerve. We also did not observe dispersion of paranodal proteins or sodium channels to the juxtaparanodes as seen in patients after chronic exposure to anti-contactin-1.
Conclusions:
Our data suggest that anti-contactin-1 IgG3 induces an acute conduction block that is most probably mediated by autoantibody binding and subsequent complement deposition and may account for acute onset of disease in these patients. This supports the notion of anti-contactin-1-associated neuropathy as a paranodopathy with the nodes of Ranvier as the site of pathogenesis.
Multifocal motor neuropathy is an immune mediated disease presenting with multifocal muscle weakness and conduction block. IgM auto-antibodies against the ganglioside GM1 are detectable in about 50% of the patients. Auto-antibodies against the paranodal proteins contactin-1 and neurofascin-155 and the nodal protein neurofascin-186 have been detected in subgroups of patients with chronic inflammatory demyelinating polyneuropathy. Recently, auto-antibodies against neurofascin-186 and gliomedin were described in more than 60% of patients with multifocal motor neuropathy. In the current study, we aimed to validate this finding, using a combination of different assays for auto-antibody detection. In addition we intended to detect further auto-antibodies against paranodal proteins, specifically contactin-1 and neurofascin-155 in multifocal motor neuropathy patients’ sera. We analyzed sera of 33 patients with well-characterized multifocal motor neuropathy for IgM or IgG anti-contactin-1, anti-neurofascin-155 or -186 antibodies using enzyme-linked immunosorbent assay, binding assays with transfected human embryonic kidney 293 cells and murine teased fibers. We did not detect any IgM or IgG auto-antibodies against contactin-1, neurofascin-155 or -186 in any of our multifocal motor neuropathy patients. We conclude that auto-antibodies against contactin-1, neurofascin-155 and -186 do not play a relevant role in the pathogenesis in this cohort with multifocal motor neuropathy.
Migration of immune cells to the target organ plays a key role in autoimmune disorders like multiple sclerosis (MS). However, the exact underlying mechanisms of this active process during autoimmune lesion pathogenesis remain elusive. To test if pro-inflammatory and regulatory T cells migrate via a similar molecular mechanism, we analyzed the expression of different adhesion molecules, as well as the composition of infiltrating T cells in an in vivo model of MS, adoptive transfer experimental autoimmune encephalomyelitis in rats. We found that the upregulation of ICAM-I and VCAM-I parallels the development of clinical disease onset, but persists on elevated levels also in the phase of clinical remission. However, the composition of infiltrating T cells found in the developing versus resolving lesion phase changed over time, containing increased numbers of regulatory T cells (FoxP3) only in the phase of clinical remission. In order to test the relevance of the expression of cell adhesion molecules, animals were treated with purified antibodies to ICAM-I and VCAM-I either in the phase of active disease or in early remission. Treatment with a blocking ICAM-I antibody in the phase of disease progression led to a milder disease course. However, administration during early clinical remission aggravates clinical symptoms. Treatment with anti-VCAM-I at different timepoints had no significant effect on the disease course. In summary, our results indicate that adhesion molecules are not only important for capture and migration of pro-inflammatory T cells into the central nervous system, but also permit access of anti-inflammatory cells, such as regulatory T cells. Therefore it is likely to assume that intervention at the blood brain barrier is time dependent and could result in different therapeutic outcomes depending on the phase of CNS lesion development.
The mechanisms of mechanical energy recovery during gait have been thoroughly investigated in healthy subjects, but never described in patients with Parkinson disease (PD). The aim of this study was to investigate whether such mechanisms are preserved in PD patients despite an altered pattern of locomotion. We consecutively enrolled 23 PD patients (mean age 64±9 years) with bilateral symptoms (H&Y ≥II) if able to walk unassisted in medication-off condition (overnight suspension of all dopaminergic drugs). Ten healthy subjects (mean age 62±3 years) walked both at their ‘preferred’ and ‘slow’ speeds, to match the whole range of PD velocities. Kinematic data were recorded by means of an optoelectronic motion analyzer. For each stride we computed spatio-temporal parameters, time-course and range of motion (ROM) of hip, knee and ankle joint angles. We also measured kinetic (Wk), potential (W\(_{p}\)), total (W\(_{totCM}\)) energy variations and the energy recovery index (ER). Along with PD progression, we found a significant correlation of W\(_{totCM}\) and W\(_{p}\) with knee ROM and in particular with knee extension in terminal stance phase. W\(_{k}\) and ER were instead mainly related to gait velocity. In PD subjects, the reduction of knee ROM significantly diminished both W\(_{p}\) and W\(_{totCM}\). Rehabilitation treatments should possibly integrate passive and active mobilization of knee to prevent a reduction of gait-related energetic components.
The execution of voluntary movements is primarily governed by the cerebral hemisphere contralateral to the moving limb. Previous research indicates that the ipsilateral motor network, comprising the primary motor cortex (M1), supplementary motor area (SMA), and premotor cortex (PM), plays a crucial role in the planning and execution of limb movements. However, the precise functions of this network and its interplay in different task contexts have yet to be fully understood. Twenty healthy right-handed participants (10 females, mean age 26.1 ± 4.6 years) underwent functional MRI scans while performing biceps brachii representations such as bilateral, unilateral flexion, and bilateral flexion-extension. Ipsilateral motor evoked potentials (iMEPs) were obtained from the identical set of participants in a prior study using transcranial magnetic stimulation (TMS) targeting M1 while employing the same motor tasks. The voxel time series was extracted based on the region of interest (M1, SMA, ventral PM and dorsal PM). Directed functinal connectivity was derived from the extracted time series using time-resolved partial directed coherence. We found increased connectivity from left-PMv to both sides M1, as well as right-PMv to both sides SMA, in unilateral flexion compared to bilateral flexion. Connectivity from left M1 to left-PMv, and left-SMA to right-PMd, also increased in both unilateral flexion and bilateral flexion-extension compared to bilateral flexion. However, connectivity between PMv and right-M1 to left-PMd decreased during bilateral flexion-extension compared to unilateral flexion. Additionally, during bilateral flexion-extension, the connectivity from right-M1 to right-SMA had a negative relationship with the area ratio of iMEP in the dominant side. Our results provide corroborating evidence for prior research suggesting that the ipsilateral motor network is implicated in the voluntary movements and underscores its involvement in cognitive processes such as movement planning and coordination. Moreover, ipsilateral connectivity from M1 to SMA on the dominant side can modulate the degree of ipsilateral M1 activation during bilateral antagonistic contraction.
Low-frequency oscillatory patterns of pallidal local field potentials (LFPs) have been proposed as a physiomarker for dystonia and hold the promise for personalized adaptive deep brain stimulation. Head tremor, a low-frequency involuntary rhythmic movement typical of cervical dystonia, may cause movement artifacts in LFP signals, compromising the reliability of low-frequency oscillations as biomarkers for adaptive neurostimulation. We investigated chronic pallidal LFPs with the Percept\(^{TM}\) PC (Medtronic PLC) device in eight subjects with dystonia (five with head tremors). We applied a multiple regression approach to pallidal LFPs in patients with head tremors using kinematic information measured with an inertial measurement unit (IMU) and an electromyographic signal (EMG). With IMU regression, we found tremor contamination in all subjects, whereas EMG regression identified it in only three out of five. IMU regression was also superior to EMG regression in removing tremor-related artifacts and resulted in a significant power reduction, especially in the theta-alpha band. Pallido-muscular coherence was affected by a head tremor and disappeared after IMU regression. Our results show that the Percept PC can record low-frequency oscillations but also reveal spectral contamination due to movement artifacts. IMU regression can identify such artifact contamination and be a suitable tool for its removal.
This paper provides an overview of current progress in the technological advances and the use of deep brain stimulation (DBS) to treat neurological and neuropsychiatric disorders, as presented by participants of the Fourth Annual DBS Think Tank, which was convened in March 2016 in conjunction with the Center for Movement Disorders and Neurorestoration at the University of Florida, Gainesveille FL, USA. The Think Tank discussions first focused on policy and advocacy in DBS research and clinical practice, formation of registries, and issues involving the use of DBS in the treatment of Tourette Syndrome. Next, advances in the use of neuroimaging and electrochemical markers to enhance DBS specificity were addressed. Updates on ongoing use and developments of DBS for the treatment of Parkinson's disease, essential tremor, Alzheimer's disease, depression, post-traumatic stress disorder, obesity, addiction were presented, and progress toward innovation(s) in closed-loop applications were discussed. Each section of these proceedings provides updates and highlights of new information as presented at this year's international Think Tank, with a view toward current and near future advancement of the field.
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.
Die Multiple Sklerose ist eine chronische neurologische Erkrankung, welche in der industrialisierten Welt einen der häufigsten Gründe für eine bleibende Behinderung bei jungen Erwachsenen darstellt. Obwohl die ZNS-Schädigung, charakterisiert durch Demyelinisierung und axonale Schädigung im Rahmen entzündlicher Vorgänge, durch verschiedene Reparaturmechanismen reduziert wird, akkumuliert die Läsionslast im zentralen Nervensystem mit der Zeit. T2-gewichtete MRT-Studien zeigen, dass die dargestellten Pathologien nur mäßig mit den motorischen Defiziten korrelieren. Diese Diskrepanz wird unter anderem auf Vorgänge der Neuroplastizität zurückgeführt, als deren Basismechanismen Langzeitpotenzierung (LTP) und -depression (LTD) gelten. In verschiedenen fMRT-Studien haben sich Hinweise ergeben, dass diese adaptiven Veränderungen zur Reorganisation kortikaler Repräsentationmuster führen können, so dass bei MS-Patienten eine ausgedehntere Aktivierung ipsilateraler sensomotorischer Areale bei motorischen Aufgaben zu beobachten ist. Die transkranielle Magnetstimulation (TMS) bietet die Möglichkeit, mittels virtueller Läsionstechniken eine direkte Aussage über die kausale Beziehung zwischen Struktur und Funktion zu liefern. Die funktionelle Rolle ipsilateraler Motorareale wurde an 26 MS-Patienten, in Relation zu ihrer motorischen Beeinträchtigung und ZNS-Schädigung, und an nach Alter, Geschlecht und Händigkeit zugeordneten Kontrollprobanden, untersucht. Die motorische Leistungsfähigkeit wurde durch verschiedene Tests zur Handfunktion erhoben. Die ZNS-Schädigung wurde mittels MR-Spektroskopie als NAA/Cr Quotient sowie durch die CML erhoben. Die Aufgabe zur einfachen Reaktionszeit (SRT) bestand aus einer isometrischen Abduktionsbewegung des rechten Daumens gegen einen Kraftaufnehmer auf ein akustisches Go-Signal. Mit TMS-Einzelreizen wurde mit Hilfe einer Neuronavigation eine reversible virtuelle Läsion über bestimmten Gehirnarealen, kontralateraler M1, ipsilateraler M1 und ipsilateraler PMd, erzeugt. Es wurde eine Kontrollstimulation über MO durchgeführt. Die TMS-Einzelreize wurden 100ms nach dem Go-Signal appliziert. Als SRT wurde der Zeitraum zwischen dem Go-Signal und EMG-Beginn im APB definiert. Die signifikanten SRT-Verlängerungen bei TMS über dem ipsilateralen M1 und dem ipsilateralen PMd zeigen, dass diese Regionen eine Rolle bei der motorischen Funktion bei MS spielen. Die fehlenden Korrelationen zwischen motorischen Funktionstest und NAA/Cr-Verhältnis sowie die inverse Korrelation zur kortikomuskulären Latenz sind durch strukturell von der krankheitsbedingten Pathologie betroffenen kompensierenden Gehirnregionen erklärbar. Bei dem Theta Burst Experiments (TBS) wurde ein virtueller Läsionseffekt durch eine repetitive TMS-Intervention über dem ipsilateralen M1 induziert. Die Ergebnisse zeigen ähnliche Veränderungen der Exzitabilität bei MS-Patienten und gesunden Kontrollprobanden, was schließen lässt, dass die LTD bei mild bis moderat betroffenen MS-Patienten weitestgehend unbeeinträchtigt ist. MS-Patienten zeigen im Vergleich zu den Kontrollen eine ähnliche Minderung der Verhaltensleistung, Trefferquote in ein Kraftfenster, der MS-Patienten im Kontrollvergleich. Die Ergebnisse zeigen, dass ipsilaterale motorische Areale in der Lage sind den primär motorischen Kortex soweit zu kompensieren, jedoch die Fähigkeit zur Kompensation in fortgeschrittenen Krankheitsstadien eingeschränkt ist. Abschließend kann man zusammenfassen, dass die funktionelle Rekrutierung von ipsilateralen Motorarealen eine adaptive Antwort auf chronische Gehirnschädigung bei MS-Patienten sein kann, allerdings mit Einschränkung der Kapazität in fortgeschrittenen Krankheitsstadien. Nachdem die synaptische Plastizität weitestgehend intakt scheint, sollte man besonders Mechanismen der späten Phase der Plastizität fördern, welche auf eine langfristige kortikale Plastizität abzielen. Weitere Studien in diesem Forschungszweig könnten einen Beitrag zur Entwicklung therapeutischer Konzepte der Neurorehabilitation bei Multipler Sklerose leisten.
Background: Patients presenting with bilateral trigeminal hypoesthesia may go on to have trigeminal isolated sensory neuropathy, a benign, purely trigeminal neuropathy, or facial-onset sensory motor neuronopathy (FOSMN), a malignant life-threatening condition. No diagnostic criteria can yet differentiate the two conditions at their onset. Nor is it clear whether the two diseases are distinct entities or share common pathophysiological mechanisms.
Methods: Seeking pathophysiological and diagnostic information to distinguish these two conditions at their onset, in this neurophysiological and morphometric study we neurophysiologically assessed function in myelinated and unmyelinated fibres and histologically examined supraorbital nerve biopsy specimens with optic and electron microscopy in 13 consecutive patients with recent onset trigeminal hypoesthesia and pain.
Results: The disease course distinctly differed in the 13 patients. During a mean 10 year follow-up whereas in eight patients the disease remained relatively stable, in the other five it progressed to possibly life-threatening motor disturbances and extra-trigeminal spread. From two to six years elapsed between the first sensory symptoms and the onset of motor disorders. In patients with trigeminal isolated sensory neuropathy (TISN) and in those with FOSMN neurophysiological and histological examination documented a neuronopathy manifesting with trigeminal nerve damage selectively affecting myelinated fibres, but sparing the Ia-fibre-mediated proprioceptive reflex.
Conclusions: Although no clinical diagnostic criteria can distinguish the two conditions at onset, neurophysiological and nerve-biopsy findings specify that in both disorders trigeminal nerve damage manifests as a dissociated neuronopathy affecting myelinated and sparing unmyelinated fibres, thus suggesting similar pathophysiological mechanisms.
Cervical dystonia (CD) is a movement disorder which affects daily living of many patients. In clinical practice, several unmet treatment needs remain open. This article focuses on the four main aspects of treatment. We describe existing and emerging treatment approaches for CD, including botulinum toxin injections, surgical therapy, management of non-motor symptoms, and rehabilitation strategies. The unsolved issues regarding each of these treatments are identified and discussed, and possible future approaches and research lines are proposed.
Background:
Deep brain stimulation (DBS) is the chronic electrical stimulation of selected target sites in the brain through stereotactically implanted electrodes. More than 150 000 patients around the world have been treated to date with DBS for medically intractable conditions. The indications for DBS include movement disorders, epilepsy, and some types of mental illness.
Methods:
This review is based on relevant publications retrieved by a selective search in PubMed and the Cochrane Library, and on the current guidelines of the German Neurological Society (Deutsche Gesellschaft fur Neurologie, DGN).
Results: DBS is usually performed to treat neurological diseases, most often movement disorders and, in particular, Parkinson's disease. Multiple randomized controlled trials (RCTs) have shown that DBS improves tremor, dyskinesia, and quality of life in patients with Parkinson's disease by 25% to 50%, depending on the rating scales used. DBS for tremor usually involves stimulation in the cerebello-thalamo-cortical regulatory loop. In an RCT of DBS for the treatment of primary generalized dystonia, the patients who underwent DBS experienced a 39.3% improvement of dystonia, compared to only 4.9% in the control group. Two multicenter trials of DBS for depression were terminated early because of a lack of efficacy.
Conclusion:
DBS is an established treatment for various neurological and psychiatric diseases. It has been incorporated in the DGN guidelines and is now considered a standard treatment for advanced Parkinson's disease. The safety and efficacy of DBS can be expected to improve with the application of new technical developments in electrode geometry and new imaging techniques. Controlled trials would be helpful so that DBS could be extended to further indications, particularly psychiatric ones.
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.
Die Prognose einer lebensbedrohlichen Meningitis wird bestimmt durch möglichst erregergerechte und möglichst frühzeitige Therapie. Dabei spielt die Unterscheidung zwischen eitriger Meningitis durch typische oder schwer anzüchtbare Bakterien und abakterieller Meningitis eine Rolle, um die potentiellen Komplikationen unnötiger Polypragmasie zu vermeiden. Daher sind möglichst einfach und rasch zu bestimmende Laborparameter zur Untersuchung wünschenswert. Als relativ neuer Parameter zur Differenzierung bakterieller von nicht bakteriellen Infekten ist Procalcitonin (PCT) eingeführt, dessen Bestimmung jetzt auch am Krankenbett möglich ist. PCT hat bisher seine Nützlichkeit v. a. in der Sepsiserkennung und –therapie gezeigt. Erste Fragestellung dieser retrospektiven Analyse von Meningoencephalitispatienten war, ob bei Erwachsenen durch Messung des PCT-Spiegels eine Differenzierung zwischen bakterieller oder viraler Genese gelingt, und ob der Bedsidetest so zuverlässig ist wie der aufwändigere LUMItest®. Dazu wurden retrospektiv die Daten von 141 Patienten erhoben, die 1992-2001 an der Neurologischen Universitätsklinik Würzburg mit gesicherter Meningitis behandelt wurden, von denen sowohl Akten als auch Liquor- und Serumasservate vorlagen, in denen die PCT-Messungen durchgeführt wurden. In den Untersuchungen von Schwarz et al. [102], Gendrel et al. [100] und Jereb et al. [104] wurde bei einem PCT-Grenzwert von 0,5 ng/ml eine Spezifität von 100 % für die Differenzierung bakterielle verusus abakterielle Meninigitis gefunden. Dagegen wären bei gleicher Messmethodik im hier vorliegendem größeren Patientengut 35 % der gesicherten bakteriellen Meningitiden bei einem „cut-off“ von 0,5 ng/ml nicht als solche erkannt worden. 5 % der nicht-bakteriellen Meningitiden wären mittels PCT-Messung als bakteriell eingestuft worden. Im hier untersuchten Patientenkollektiv hatte PCT als diagnostischer Parameter für diese Fragestellung bei einem Grenzwert von 0,5 ng/ml eine Sensitivität von 65 % und eine Spezifität von 96 %. Eine 100 % Spezifität wäre in unserer Untersuchung bei einem „cut-off“ von 1 ng/ml erreicht worden. Diese Grenze wird jedoch auf dem Schnelltest nicht angegeben. Es stellte sich hier heraus, dass der PCT®-Q Schnelltest im Bereich > 0,5 ng/ml bzw. <0,5 ng/ml dem LUMItest® vergleichbare Ergebnisse lieferte. Das bedeutet zwar, dass alle bakteriellen Meningitiden durch typische Erreger (Meningokokken und Pneumokokken) rasch und sicher bettseitig mittels PCT-Schnelltest hätten identifiziert werden können. Aber ein niedriger PCT-Wert schloss eine bakterielle Meningitis, insbesondere eine durch „atypische Erreger“ wie Listerien und Mycobakterien, nicht sicher aus. Denkbare Störgrößen für das vorliegende Ergebnis sind Antibiotikagabe und Immunschwäche. Ein statistisch auffallender Einfluss einer Antibiotikatherapie auf den PCT-Spiegel konnte in unserem Patientengut nicht festgestellt werden. Für die wenigen Fälle mit anzunehmender verminderter Immunleistung ließ sich keine Regel bezüglich der PCT-Reaktion ableiten. Damit erscheint der Schnelltest im klinischen Alltag für eine 100% spezifische, sichere Unterscheidung bakterielle vs. nicht-bakterielle Meniongoencephalitis nicht geeignet; das bisher größte untersuchte Kollektiv hat den in der Literatur angegebenen „cut-off“ von 0,5 ng/ml für eine sichere Differenzierung nicht bestätigen können. Die zweite Frage ist, ob die Messung des PCT den traditionellen Parametern Liquorzellzahl, Liquoreiweiß, Liquor/Serum-Glucosequotient, BSG, Serumleukozytenzahl oder CRP bezüglich Spezifität und Sensitivität in der Differentialdiagnose überlegen ist. Es zeigte sich, dass CRP bei einem Grenzwert von 5-6 mg/dl mit einer Sensitivität und Spezifität von 95 % und 98 % die sicherste Differenzierung zwischen bakterieller und abakterieller Meningitis bei diesem Patientenkollektiv leistete. Mithin kann die PCT-Bestimmung am Krankenbett in der Akutaufnahmesituation eines Patienten mit Meningoencephalitis bei Werten > 10 ng/ml zwar treffsicher die Diagnose einer Meningokokken- oder Pneumokokken-Infektion stützen. Für jede darüber hinaus gehende Schlussfolgerung erscheint die PCT-Messung aber entbehrlich wegen mangelhafter Spezifität und Sensitivität und v.a. der Unterlegenheit gegenüber traditionell herangezogenen Laborparametern, insbesondere CRP. Folglich erwies sich die Bestimmung des PCT bei akuter Meningoencephalitis als entbehrlich.
Schwerpunktmäßig befasst sich diese Arbeit mit den praktischen Vorgängen zur Zählung von Neuronen mit dem optischen Fraktionator unter dem Mikroskop, wobei zur Veranschaulichung die Neuronen in der Substantia Nigra an C57BL/6-Mäusen gezählt wurden. Es wurde erläutert, wie die Einstellungen der jeweiligen Methode vorzunehmen sind und auf die angestrebten Ziele angepasst werden können, um ein effizientes Zählen von Neuronen unter Berücksichtigung grundlegender Zählregeln zu gewährleisten. Gleichzeitig wurde gezeigt, wie die Methoden des optischen Fraktionators die gewünschten präzisen Ergebnisse anhand des CE-Wertes liefern können.
Die in dieser Arbeit präsentierte Axiophot-2-Methode ist in der Lage, selbst mit einem einfachen, kommerziell erhältlichen Lichtmikroskop und einem Standbildaufnahmeprogramm die Gesamtanzahl von Zellen einer gegebenen Struktur unter Beachtung aller stereologischen Regeln zu zählen – und zwar genauso effizient und mit vergleichbaren Ergebnissen wie mit einem speziell für stereologische Untersuchungen vorgefertigtes Komplettsystem. Vergleiche beider Methoden zueinander ergeben folgende Schlussfolgerungen: bei dem Stereo Investigator, ist die Untersuchung zwar wesentlich schneller, da die Bildaufnahme und Auswertung mittels voreingestellten Programmes automatisch durchgeführt werden. Allerdings ist solch ein Komplettsystem sehr kostspielig (ca. 60.000 Euro Anschaffungskosten) und nicht flexibel auf andere Untersuchungsbereiche einsetzbar.
Die Axiophot-2-Methode weist zwar einige Nachteile aufgrund der manuellen Vorarbeiten auf, ist aber dafür wesentlich günstiger und zugänglicher, da sie nur ein konventionelles Mikroskop mit einem Standardprogramm erfordert.
Nitric oxide synthase modulates CFA-induced thermal hyperalgesia through cytokine regulation in mice
(2010)
Background: Although it has been largely demonstrated that nitric oxide synthase (NOS), a key enzyme for nitric oxide (NO) production, modulates inflammatory pain, the molecular mechanisms underlying these effects remain to be clarified. Here we asked whether cytokines, which have well-described roles in inflammatory pain, are downstream targets of NO in inflammatory pain and which of the isoforms of NOS are involved in this process. Results: Intraperitoneal (i.p.) pretreatment with 7-nitroindazole sodium salt (7-NINA, a selective neuronal NOS inhibitor), aminoguanidine hydrochloride (AG, a selective inducible NOS inhibitor), L-N(G)-nitroarginine methyl ester (L-NAME, a non-selective NOS inhibitor), but not L-N(5)-(1-iminoethyl)-ornithine (L-NIO, a selective endothelial NOS inhibitor), significantly attenuated thermal hyperalgesia induced by intraplantar (i.pl.) injection of complete Freund’s adjuvant (CFA). Real-time reverse transcription-polymerase chain reaction (RT-PCR) revealed a significant increase of nNOS, iNOS, and eNOS gene expression, as well as tumor necrosis factor-alpha (TNF), interleukin-1 beta (IL-1b), and interleukin-10 (IL-10) gene expression in plantar skin, following CFA. Pretreatment with the NOS inhibitors prevented the CFA-induced increase of the pro-inflammatory cytokines TNF and IL-1b. The increase of the antiinflammatory cytokine IL-10 was augmented in mice pretreated with 7-NINA or L-NAME, but reduced in mice receiving AG or L-NIO. NNOS-, iNOS- or eNOS-knockout (KO) mice had lower gene expression of TNF, IL-1b, and IL-10 following CFA, overall corroborating the inhibitor data. Conclusion: These findings lead us to propose that inhibition of NOS modulates inflammatory thermal hyperalgesia by regulating cytokine expression.
Background: The role of serotonin (5-hydroxytrptamine, 5-HT) in the modulation of pain has been widely studied. Previous work led to the hypothesis that 5-hydroxyindolacetic acid (5-HIAA), a main metabolite of serotonin, might by itself influence pain thresholds. Results: In the present study, we investigated the role of 5-HIAA in inflammatory pain induced by intraplantar injection of complete Freund’s adjuvant (CFA) into the hind paw of mice. Wild-type mice were compared to mice deficient of the 5-HT transporter (5-HTT-/- mice) using behavioral tests for hyperalgesia and high-performance liquid chromatography (HPLC) to determine tissue levels of 5-HIAA. Wild-type mice reproducibly developed thermal hyperalgesia and paw edema for 5 days after CFA injection. 5-HTT-/- mice treated with CFA had reduced thermal hyperalgesia on day 1 after CFA injection and normal responses to heat hereafter. The 5-HIAA levels in spinal cord and sciatic nerve as measured with HPLC were lower in 5-HTT-/- mice than in wild-type mice after CFA injection. Pretreatment of wild-type mice with intraperitoneal injection of para-chlorophenylalanine (p-CPA), a serotonin synthesis inhibitor, resulted in depletion of the 5-HIAA content in spinal cord and sciatic nerve and decrease in thermal hyperalgesia in CFA injected mice. The application of exogenous 5-HIAA resulted in potentiation of thermal hyperalgesia induced by CFA in 5-HTT-/- mice and in wild-type mice pretreated with p- CPA, but not in wild-type mice without p-CPA pretreatment. Further, methysergide, a broad-spectrum serotonin receptor antagonist, had no effect on 5-HIAA-induced potentiation of thermal hyperalgesia in CFA-treated wildtype mice. Conclusion: Taken together, the present results suggest that 5-HIAA plays an important role in modulating peripheral thermal hyperalgesia in CFA induced inflammation, probably via a non-serotonin receptor mechanism.
Tetrahydroisoquinolines (TIQs) such as salsolinol (SAL), norsalsolinol (NSAL) and their methylated derivatives N-methyl-norsalsolinol (NMNSAL) and N-methyl-salsolinol (NMSAL), modulate dopaminergic neurotransmission and metabolism in the central nervous system. Dopaminergic neurotransmission is thought to play an important role in the pathophysiology of chronic tic disorders, such as Tourette syndrome (TS). Therefore, the urinary concentrations of these TIQ derivatives were measured in patients with TS and patients with comorbid attention-deficit/hyperactivity disorder (TS + ADHD) compared with controls. Seventeen patients with TS, 12 with TS and ADHD, and 19 age-matched healthy controls with no medication took part in this study. Free levels of NSAL, NMNSAL, SAL, and NMSAL in urine were measured by a two-phase chromatographic approach. Furthermore, individual TIQ concentrations in TS patients were used in receiver-operating characteristics (ROC) curve analysis to examine the diagnostic value. NSAL concentrations were elevated significantly in TS [434.67 ± 55.4 nmol/l (standard error of mean = S.E.M.), two-way ANOVA, p < 0.0001] and TS + ADHD patients [605.18 ± 170.21 nmol/l (S.E.M.), two-way ANOVA, p < 0.0001] compared with controls [107.02 ± 33.18 nmol/l (S.E.M.), two-way ANOVA, p < 0.0001] and NSAL levels in TS + ADHD patients were elevated significantly in comparison with TS patients (two-way ANOVA, p = 0.017). NSAL demonstrated an AUC of 0.93 ± 0.046 (S.E.M) the highest diagnostic value of all metabolites for the diagnosis of TS. Our results suggest a dopaminergic hyperactivity underlying the pathophysiology of TS and ADHD. In addition, NSAL concentrations in urine may be a potential diagnostic biomarker of TS.
The size of the synaptic subcomponents falls below the limits of visible light microscopy. Despite new developments in advanced microscopy techniques, the resolution of transmission electron microscopy (TEM) remains unsurpassed. The requirements of tissue preservation are very high, and human post mortem material often does not offer adequate quality. However, new reprogramming techniques that generate human neurons in vitro provide samples that can easily fulfill these requirements. The objective of this study was to identify the culture technique with the best ultrastructural preservation in combination with the best embedding and contrasting technique for visualizing neuronal elements. Two induced neural stem cell lines derived from healthy control subjects underwent differentiation either adherent on glass coverslips, embedded in a droplet of highly concentrated Matrigel, or as a compact neurosphere. Afterward, they were fixed using a combination of glutaraldehyde (GA) and paraformaldehyde (PFA) followed by three approaches (standard stain, Ruthenium red stain, high contrast en-bloc stain) using different combinations of membrane enhancing and contrasting steps before ultrathin sectioning and imaging by TEM. The compact free-floating neurospheres exhibited the best ultrastructural preservation. High-contrast en-bloc stain offered particularly sharp staining of membrane structures and the highest quality visualization of neuronal structures. In conclusion, compact neurospheres growing under free-floating conditions in combination with a high contrast en-bloc staining protocol, offer the optimal preservation and contrast with a particular focus on visualizing membrane structures as required for analyzing synaptic structures.
Activation of the basal ganglia has been shown during the preparation and execution of movement. However, the functional interaction of cortical and subcortical brain areas during movement and the relative contribution of dopaminergic striatal innervation remains unclear. We recorded local field potential (LFP) activity from the subthalamic nucleus (STN) and high-density electroencephalography (EEG) signals in four patients with Parkinson’s disease (PD) off dopaminergic medication during a multi-joint motor task performed with their dominant and non-dominant hand. Recordings were performed by means of a fully-implantable deep brain stimulation (DBS) device at 4 months after surgery. Three patients also performed a single-photon computed tomography (SPECT) with [123I]N-ω-fluoropropyl-2β-carbomethoxy-3β-(4-iodophenyl)nortropane (FP-CIT) to assess striatal dopaminergic innervation. Unilateral movement execution led to event-related desynchronization (ERD) followed by a rebound after movement termination event-related synchronization (ERS) of oscillatory beta activity in the STN and primary sensorimotor cortex of both hemispheres. Dopamine deficiency directly influenced movement-related beta-modulation, with greater beta-suppression in the most dopamine-depleted hemisphere for both ipsi- and contralateral hand movements. Cortical-subcortical, but not interhemispheric subcortical coherencies were modulated by movement and influenced by striatal dopaminergic innervation, being stronger in the most dopamine-depleted hemisphere. The data are consistent with a role of dopamine in shielding subcortical structures from an excessive cortical entrapment and cross-hemispheric coupling, thus allowing fine-tuning of movement.