TY - JOUR A1 - Linker, Ralf A. A1 - Magnus, Tim A1 - Korn, Thomas A1 - Kleinschnitz, Christoph A1 - Meuth, Sven G. T1 - Report on the 5‘th scientific meeting of the “Verein zur Förderung des Wissenschaftlichen Nachwuchses in der Neurologie” (NEUROWIND e.V.) held in Motzen, Germany, Oct. 25th – Oct. 27th, 2013 JF - Experimental & Translational Stroke Medicine N2 - From october 25th - 27th 2013, the 5th NEUROWIND e.V. meeting was held in Motzen, Brandenburg, Germany. This year more than 60 doctoral students and postdocs from over 25 different groups working in German university hospitals or research institutes attended the meeting to discuss their latest findings in the fields of neuroimmunology, neurodegeneration and neurovascular research. All participants appreciated the stimulating environment in Motzen, Brandenburg, and people took the opportunity for scientific exchange, discussion about ongoing projects and already started further collaborations. Like in the previous years, the symposium was regarded as a very well organized platform to support research of young investigators in Germany. According to the major aim of NEUROWIND e.V. to support younger researchers in Germany the 3rd NEUROWIND YOUNG SCIENTIST AWARD for experimental neurology was awarded to Ruth Stassart working in the group of Klaus Armin Nave and Wolfgang Brück (MPI Göttingen and Department of Neuropathology, Göttingen Germany). The successful work was published in Nature Neuroscience entitled “A role for Swann cell-derived neuregulin-1 in remyelination”. This outstanding paper deals with the function of Schwann cell neuregulin as an endogenous factor for myelin repair. The award is endowed with 20.000 Euro sponsored by Merck Serono GmbH, Darmstadt, Germany (unrestricted educational grant). This year’s keynote lecture was given by Albert Ludolph, Head of the Department of Neurology at the University Clinic of Ulm. Dr. Ludolph highlighted the particular role of individual scientists for the development of research concepts in Alzheimer´s disease (AD) and frontotemporal dementia (FTD). KW - NEUROWIND Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-129230 VL - 5 IS - 15 ER - TY - JOUR A1 - Ehling, Petra A1 - Göb, Eva A1 - Bittner, Stefan A1 - Budde, Thomas A1 - Ludwig, Andreas A1 - Kleinschnitz, Christoph A1 - Meuth, Sven G. T1 - Ischemia-induced cell depolarization: does the hyperpolarization-activated cation channel HCN2 affect the outcome after stroke in mice? JF - Experimental & Translational Stroke Medicine N2 - Background Brain ischemia is known to include neuronal cell death and persisting neurological deficits. A lack of oxygen and glucose are considered to be key mediators of ischemic neurodegeneration while the exact mechanisms are yet unclear. In former studies the expression of two different two-pore domain potassium \((K_{2P})\) channels (TASK1, TREK1) were shown to ameliorate neuronal damage due to cerebral ischemia. In neurons, TASK channels carrying hyperpolarizing \(K^+\) leak currents, and the pacemaker channel HCN2, carrying depolarizing Ih, stabilize the membrane potential by a mutual functional interaction. It is assumed that this ionic interplay between TASK and HCN2 channels enhances the resistance of neurons to insults accompanied by extracellular pH shifts. Methods In C57Bl/6 (wildtype, WT), \(hcn2^{+/+}\) and \(hcn2^{-/-}\) mice we used an in vivo model of cerebral ischemia (transient middle cerebral artery occlusion (tMCAO)) to depict a functional impact of HCN2 in stroke formation. Subsequent analyses comprise behavioural tests and hcn2 gene expression assays. Results After 60 min of tMCAO induction in WT mice, we collected tissue samples at 6, 12, and 24 h after reperfusion. In the infarcted neocortex, hcn2 expression analyses revealed a nominal peak of hcn2 expression 6 h after reperfusion with a tendency towards lower expression levels with longer reperfusion times. Hcn2 gene expression levels in infarcted basal ganglia did not change after 6 h and 12 h. Only at 24 h after reperfusion, hcn2 expression significantly decreases by ~55%. However, 30 min of tMCAO in hcn2-/- as well as hcn2+/+ littermates induced similar infarct volumes. Behavioural tests for global neurological function (Bederson score) and motor function/coordination (grip test) were performed at day 1 after surgery. Again, we found no differences between the groups. Conclusions Here, we hypothesized that the absence of HCN2, an important functional counter player of TASK channels, affects neuronal survival during stroke-induced tissue damage. However, together with a former study on TASK3 these results implicate that both TASK3 and HCN2 which were supposed to be neuroprotective due to their pH-dependency, do not influence ischemic neurodegeneration during stroke in the tMCAO model. KW - neurology Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-129240 VL - 5 IS - 16 ER - TY - THES A1 - Stallforth, Sabine T1 - Unterschiedliche Wirkungen der TNF-alpha-Rezeptoren auf De- und Regeneration peripherer NervenEine Studie an TNF-alpha-Rezeptor-Knockoutmäusen in zwei verschiedenen Tiermodellen für Nervenläsionen T1 - Different effects of TNF-alpha-receptors on de- and regeneration of the peripheral nerveA study in TNF-alpha-receptor-knockout-mice in two different models of nerve injury N2 - Noch immer ist die Behandlung von Neuropathien mit den gängigen therapeutischen Mitteln für viele Patienten sehr unbefriedigend. Als erfolgsversprechender therapeutischer Ansatz werden zur Zeit Wege erforscht, welche direkt in die molekularen Entstehungsmechanismen pathologischer Veränderungen und regenerationsfördernder Mechanismen eingreifen, um dadurch eine Heilung von Nervenschäden zu ermöglichen. Bisher sind die Erkenntnisse über diese Mechanismen nicht vollständig genug, um daraus eine sichere Behandlungsmöglichkeit abzuleiten. Wegweisende Erkenntnisse deuten sich allerdings durch Studien von unterschiedlichen Vertretern des Zytokinnetzwerkes an - darunter auch TNF-alpha - welche als molekulare Ursache neuropathischer Veränderungen diskutiert werden. In dieser Studie wurde an Knockoutmäusen der Einfluss des jeweiligen TNF-alpha-Rezeptors auf morphologische Veränderungen nach CCI (Chronic constriction injury) und Crush-Verletzung des N. ischiadicus untersucht. Nach 3,7,15 und 36 Tagen (CCI) bzw. 3,7 und 28 Tagen (Crush) wurden in Methylenblau gefärbten Semidünnschnitten intakte und degenerierte Nervenfasern, Makrophagen, Angioproliferation, Ödembildung udn Veränderung des Anteils nicht neuronaler Zellen lichtmikroskopisch beurteilt. Zusätzlich wurden Mac-1+ Makrophagen immunzytochemisch erfasst. Die Ergebnisse zeigten in beiden Modellen und bei beiden Knockouttypen eine starke axonale Schädigung, die von einer großen endoneuroalen Makrophagenansammlung begleitet war. Bei TNF-R1-/- Mäusen war eine stärkere und verlängerte Degeneration mit entsprechend höheren Makrophagenzahlen sichtbar. In den Immunzytochemischen Färbungen wiesen die TNF-R1-/- Mäuse hingegen den geringsten Makropahgenanteil auf.Trotz der starken Schädigung war die anschließende Regeneration im Gegensatz zu WT und TNF-R2-/- Mäusen besser. Die Ödembildung war bei den TNF-R2-/- nach CCI besonders stark ausgeprägt und von einer schlechten Regeneration gefolgt. Während die gefundenen Daten auf eine Beteiligung beider Rezeptoren während degenerativer Prozesse hindeuten, scheint insbesondere TNF-R2 regenerationsfördernde Effekte zu vermitteln. N2 - Current Treatment of neuropathic disorders is still dissatisfactory for many patients. A promising approach is the investigation of agents that directly interfere with molecular development of pathologic changes and regeneration. Up to now, consolidated findings of the underlying mechanisms are not yet sufficent to allow therapeutic intervention. Pathbreaking findings come from studies investigating different agents of the cytokine network - as e.g. TNF-alpha - that are discussed as molecular cause of neuropathic changes. This study investigated the influence of both TNF-alpha-receptors on morphologic changes after CCI (chronic constriction injury) and crush-injury of the sciatic nerve of TNF-R-knockoutmice. After 3,7,15 and 36 days (CCI), and 3,7 and 28 respectively (Crush),intact and degenerating nerve fibers, macrophages, angioproliferation, development of edema and changes in the amount of non-neuronal cells were acquired by light microscopy of toluidin-stained semithin sections. Additionally Mac-1+ macrophages were acquired via immuncytochemically stained sections. The results showed strong axonal damage in both knockout-types accompanied by large amounts of endoneurial macrophages. TNF-R1-/-mice showed a longer degeneration phase including respectively higher amounts of macrophages. In contrast the TNF-R1-/-mice revealed the fewest amount of macrophages in immunocytochemical sections. Despite the strong damage better nerve regeneration was observed compared to WT and TNF-R2-/-mice. Formation of edema was pronounced in TNF-R2-/- after CCI and followed by poorly regeneration. Whereas these findings point to a participation of both receptors in degeneration, TNF-R2 seems to support regeneration. KW - peripheral nerve KW - TNF KW - TNF-R1 KW - TNF-R2 KW - TNF-receptors KW - knockout KW - Crush KW - CCI KW - sciatic nerve injury KW - Cytokines KW - regeneration KW - degeneration KW - Degeneration KW - Regeneration KW - TNF-Rezeptor-1 KW - TNF-Rezeptor-2 KW - degeneration KW - regeneration KW - TNF-receptor-1 KW - TNF-receptor-2 Y1 - 2007 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-24808 ER - TY - THES A1 - He, Lan T1 - Small fiber involvement in Fabry's disease N2 - Aim of Investigation: The neurological manifestations of Fabry’s disease, a rare, X-linked, multisystem disorder caused by alpha-galactosidase A deficiency and globotriosylceramide (Gb3) accumulation, include both peripheral and central nervous system symptoms. Here we evaluated a prospectively recruited cohort of patients with Fabry’s disease for pain, small nerve fiber function, and skin innervation. Methods: 66 patients (31 male and 35 female) were enrolled,31 patients were on ERT. All patients underwent quantitative sensory testing (QST), electrophysiological examination, and extra- and transcranial Doppler sonography. For pain and mood assessment standardized questionnaires were used. Skin biopsies were performed at the left distal leg in 38 patients for intraepidermal nerve fiber density (IENFD) assessment. Results: Age at examination did not differ significantly between women (40.2+/-16.2 years) and men (38.9+/-13.8; n.s.). 29/31 male and 19/35 female patients complained of acroparesthesias or neuropathic pain. QST abnormalities indicative of small fiber impairment were found in 26/31 male and 28/35 female patients. Electrophysiological examination of large fibers and autonomic fibers revealed pathological findings in 11/31 male and 3/35 female patients. All patients had normal Doppler sonography results. Indicators for depression were present in 14/31 male and 10/35 female patients. 20/31 male and 18/35 female patients had a skin biopsy, the IENFD was significantly reduced in male (2.0+/-2.8 fibers/mm) compared with female patients (6.7 +/- 4.4 fibers/mm). In 10 patients free from neurological symptoms, QST and IENFD abnormalities were still detected. Follow up examination after one year in 12 patients under ERT (2.1+/-1.7 years) showed improvement in some symptoms and in QST and neurophysiology in six patients with normal renal function. 20/35 female patients older than 40 y had concomitant diseases, while none of the 18 younger female patients did. The corresponding radio in male patients was 5/19 (>=40y) and 2/13 (<40y) respectively. Conclusions: Neuropathic pain and sensory deficits of the distal extremities are common in patients with Fabry’s disease. QST and IENFD analysis are important for early diagnosis of nerve involvement in Fabry’s disease. Small fiber function may improve under ERT in patients without severe renal impairment. KW - Fabry’s disease KW - neuropathic pain KW - QST KW - IENFD KW - ERT KW - Fabry’s disease KW - neuropathic pain KW - QST KW - IENFD KW - ERT Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-32844 ER - TY - THES A1 - Yu-Hwa, Huang T1 - The Role of HLA-G-expressing Regulatory T cells in Multiple Sclerosis: A Perspective of Beneficial Inflammation in the Central Nervous System Inflammation T1 - Die Rolle HLA-G-exprimierender regulatorischer T-Zellen in multipler Sklerose: Möglichkeit einer hilfreichen Entzündung bei Entzündungserkrankung des zentralen Nervensystems N2 - Die Regulation von Effektor-T-Zellen ist ein wichtiger Mechanismus zur Kontrolle organspezifischer Entzündungen. Dabei sind regulatorische T-Zellen (Treg) maßgeblich an der Aufrechterhaltung peripherer Immuntoleranz und parenchymaler Immunhomöostase beteiligt. Eine neue Population von humanen, natürlich vorkommenden Treg Zellen wurde durch ihre konstitutive Expression des immuntolerogenen Moleküls HLA-G identifiziert. Im ersten Teil dieser Arbeit wurden die Mechanismen, durch die CD4+ HLA-Gpos Treg Zellen ihre Zielzellen (autologe HLA-Gneg T-Zellen) modulieren, aufgeklärt. Unter Verwendung eines Suppressionsansatzes in Abwesenheit von antigenpräsentierenden Zellen (APC) wurden T-T-Zell-Interaktionen, die die Proliferation von HLA-Gneg T-Zellen hemmen, demonstriert. Diese Suppression, die durch die Stimulierung des T-Zell-Rezeptors auf HLA-Gpos Treg Zellen verstärkt wurde, war unabhängig vom Zell-Zell-Kontakt. Die HLA-Gneg T-Zellen erlangten nach Entfernung der HLA-Gpos Treg Zellen und einer erneuten Stimulierung ihrer T-Zell- Rezeptoren ihre Fähigkeit zur Proliferation wieder. Dies wies auf die Umkehrbarkeit dieser Suppression hin. Darüber hinaus war die HLA-Gpos Treg-vermittelte Suppression entscheidend von der IL-10- Sekretion, nicht jedoch von TGF-β abhängig. Zusammengefasst beschreibt dieser Teil der Arbeit eine detaillierte Charakterisierung der Mechanismen, wie HLA-Gpos Treg HLA-Gneg TZellen supprimieren. Das tiefere Verständnis der Wirkmechanismen von HLA-Gpos Treg könnte in therapeutischen Strategien verwendet werden, in denen die regulatorische Funktion der T-Zell-Suppression verstärkt oder moduliert werden soll. Im zweiten Teil dieser Arbeit wurde die potenzielle Rolle von HLA-Gpos Treg bei der Multiplen Sklerose (MS) untersucht, einer klassischen Autoimmunerkrankung des Zentralnervensystems (ZNS). Im Gegensatz zu Vergleichspatienten mit nicht-entzündlichen Erkrankungen konnte im Liquor von MS Patienten eine erhöhte Anzahl von HLA-Gpos Treg gefunden werden. Diese aus dem Liquor isolierten HLA-Gpos Treg wiesen phänotypische Merkmale von zentralen Gedächtnis-T-Zellen (CD45RA- CD27+) auf, exprimierten den Aktivierungsmarker ICOS sowie deutlich höhere Level des Chemokinrezeptors (CCR) CCR5 und agierten als starke Suppressoren der autologen CD4+ T-Zellproliferation. Durch Verwendung eines in vitro Modells der humanen Bluthirnschranke konnte demonstriert werden, dass HLA-Gpos Treg eine starke Neigung zur Migration haben, die durch die CCR5- Liganden MIP1α und RANTES, nicht jedoch durch MIP3β (Ligand von CCR7) unterstützt wird. Diese Chemokin-induzierte Migration von HLA-Gpos Treg war auch mit einer Steigerung der suppressiven Kapazität nach Zelltransmigration assoziiert. Im Gegensatz zu CD4+CD25+, FoxP3-exprimierenden Treg zeigten HLA-Gpos Treg von MS-Patienten keine beeinträchtigte Funktionalität. Dies deutet auf eine selektive Rekrutierung von HLA-Gpos Treg zu Entzündungsherden im ZNS und ihre Beteiligung an der Bekämpfung der destruktiven Entzündung hin. Die Ergebnisse dieser Studien tragen zum weitergehenden Verständnis der Rolle und Funktion HLA-Gpos Treg Zellen bei und stellen somit ein wichtiges pathophysiologisches Beispiel „gutartiger“ T-Zell-Entzündung während der ZNS Autoimmunität dar, das sowohl aus pathophysiologischer als auch therapeutischer Sicht interessant ist. N2 - Regulation of effector T cells is an important mechanism to control organ-specific inflammation. Thereby regulatory T cells (Treg cells) are essential for maintaining peripheral immune tolerance and for establishing parenchyma immune homeostasis. A novel population of natural human Treg characterized by the constitutive expression of the immune-tolerogenic human HLA-G molecule has been identified. In the first part of the study, we elucidated the mechanism(s) by which CD4+ HLA-Gpos Treg modulates their cellular targets namely autologous HLA-G negative responder T cells (HLAGneg Tresp). Using a suppression system free of antigen-presenting cells (APC), we demonstrate a T-T cell interaction resulting in suppression of HLA-Gneg Tresp. We could also show that this suppression was independent of cell-cell contact. Importantly, stimulus of T cell receptor (TCR) on HLA-Gpos Treg facilitated their suppressive capacity. We also observed that removal of HLA-Gpos Treg from the established co-cultures could restore the ability of HLA-Gneg Tresp to proliferate upon TCR re-stimulation, indicating that the suppression was reversible. Further, HLA-Gpos Treg–mediated suppression was critically depending on the secretion of IL-10 but not TGF-β. Taken together, this part of the work provides an in-depth characterization of the mechanisms of how HLA-Gpos Treg suppresses T responder cells in direct T-T interactions. Understanding the suppressive mechanism used by HLA-Gpos Treg may help to develop therapeutic strategies to modulate regulatory arms of T-cell suppression. In the second part of this study, the potential role of HLA-Gpos Treg in the pathophysiological process of Multiple Sclerosis (MS), a prototypic autoimmune inflammatory central nervous system (CNS), has been investigated. We found that HLA-Gpos Treg are enriched in the cerebrospinal fluid (CSF) from MS patients, but not in non-inflammatory controls. CSFderived HLA-Gpos Treg showed predominance of central memory (CD45RA-CD27+) phenotype, exhibited markers of activation (ICOS), and had significantly higher expression of the inflammatory chemokine receptor CCR5. Importantly, these cells demonstrated as potent suppressors to autologous CD4+ T-cell proliferation. Using an in vitro model of human blood brain barrier, we showed that HLA-Gpos Treg have a strong propensity to migrate, which could be facilitated by MIP1α and RANTES (ligands of CCR5) but not MIP3β (a ligand of CCR7). The HLA-Gpos Treg migration triggered by chemokines was also associated with a gain of suppressive capacity upon cellular transmigration. In contrast to CD4+CD25+ naturally occurring FoxP3-expressing Treg, HLA-Gpos Treg from patients with MS did not exhibit impaired function, suggesting that HLA-Gpos Treg are selectively recruited to the sites of CNS inflammation in an effort to combat destructive inflammation during MS. Our results contribute to the understanding of the role and function of HLA-Gpos Treg and provide an important example of “beneficial” T-cell inflammation in CNS autoimmunity- interesting both from a patho/-physiological and a therapeutically point of view. KW - Regulatorische T-Zellen KW - Multiplen Sklerose KW - HLA-G KW - Zentralnervensystems KW - Chemokinrezeptors KW - Regulatory T cells KW - Multiple Sclerosis KW - HLA-G KW - Central Nervous System KW - Chemokine Receptor Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-39957 ER - TY - JOUR A1 - Giordano, Rosaria A1 - Canesi, Margherita A1 - Isalberti, Maurizio A1 - Isaias, Ioannis Ugo A1 - Montemurro, Tiziana A1 - Viganò, Mariele A1 - Montelatici, Elisa A1 - Boldrin, Valentina A1 - Benti, Riccardo A1 - Cortelezzi, Agostino A1 - Fracchiolla, Nicola A1 - Lazzari, Lorenza A1 - Pezzoli, Gianni T1 - Autologous mesenchymal stem cell therapy for progressive supranuclear palsy: translation into a phase I controlled, randomized clinical study JF - Journal of Translational Medicine N2 - Background: Progressive Supranuclear Palsy (PSP) is a sporadic and progressive neurodegenerative disease which belongs to the family of tauopathies and involves both cortical and subcortical structures. No effective therapy is to date available. Methods/design: Autologous bone marrow (BM) mesenchymal stem cells (MSC) from patients affected by different type of parkinsonisms have shown their ability to improve the dopaminergic function in preclinical and clinical models. It is also possible to isolate and expand MSC from the BM of PSP patients with the same proliferation rate and immuphenotypic profile as MSC from healthy donors. BM MSC can be efficiently delivered to the affected brain regions of PSP patients where they can exert their beneficial effects through different mechanisms including the secretion of neurotrophic factors. Here we propose a randomized, placebo-controlled, double-blind phase I clinical trial in patients affected by PSP with MSC delivered via intra-arterial injection. Discussion: To our knowledge, this is the first clinical trial to be applied in a no-option parkinsonism that aims to test the safety and to exploit the properties of autologous mesenchymal stem cells in reducing disease progression. The study has been designed to test the safety of this " first-in-man" approach and to preliminarily explore its efficacy by excluding the placebo effect. Trial registration: NCT01824121 KW - Parkinson's disease KW - cellular therapy KW - deep brain-stimulation KW - bone-marrow KW - transplantation KW - receptor tyrosine kinase KW - Richardson-Olszewski-Syndrome KW - multiple system atrophy KW - advanced therapy medicinal products KW - mesenchymal stem and stromal cells KW - progressive supranuclear palsy KW - treatment options KW - adrenal medulla KW - stromal cells Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-117594 VL - 12 IS - 14 ER - TY - JOUR A1 - Norrmen, Camilla A1 - Figlia, Gianluca A1 - Lebrun-Julien, Frederic A1 - Pereira, Jorge A. A1 - Trötzmüller, Martin A1 - Köfeler, Harald C. A1 - Rantanen, Ville A1 - Wessig, Carsten A1 - van Deijk, Anne-Lieke F. A1 - Smit, August B. A1 - Verheijen, Mark H. G. A1 - Rüegg, Markus A. A1 - Hall, Michael N. A1 - Suter, Ueli T1 - mTORC1 Controls PNS Myelination along the mTORC1-RXR gamma-SREBP-Lipid Biosynthesis Axis in Schwann Cells JF - Cell Reports N2 - Myelin formation during peripheral nervous system (PNS) development, and reformation after injury and in disease, requires multiple intrinsic and extrinsic signals. Akt/mTOR signaling has emerged as a major player involved, but the molecular mechanisms and downstream effectors are virtually unknown. Here, we have used Schwann-cell-specific conditional gene ablation of raptor and rictor, which encode essential components of the mTOR complexes 1 (mTORC1) and 2 (mTORC2), respectively, to demonstrate that mTORC1 controls PNS myelination during development. In this process, mTORC1 regulates lipid biosynthesis via sterol regulatory element-binding proteins (SREBPs). This course of action is mediated by the nuclear receptor RXRg, which transcriptionally regulates SREBP1c downstream of mTORC1. Absence of mTORC1 causes delayed myelination initiation as well as hypomyelination, together with abnormal lipid composition and decreased nerve conduction velocity. Thus, we have identified the mTORC1-RXR gamma-SREBP axis controlling lipid biosynthesis as a major contributor to proper peripheral nerve function. KW - axonal integrity KW - peripheral nervous-system KW - COMPLEX 1 KW - rat hepatocytes KW - SREBP KW - mice KW - growth KW - protein KW - element KW - CNS Myelination Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-114847 SN - 2211-1247 VL - 9 IS - 2 ER - TY - JOUR A1 - Cruccu, Giorgio A1 - Pennisi, Elena M. A1 - Antonini, Giovanni A1 - Biasiotta, Antonella A1 - Di Stefano, Giulia A1 - La Cesa, Silvia A1 - Leone, Caterina A1 - Raffa, Salvatore A1 - Sommer, Claudia A1 - Truini, Andrea T1 - Trigeminal isolated sensory neuropathy (TISN) and FOSMN syndrome: despite a dissimilar disease course do they share common pathophysiological mechanisms? JF - BMC Neurology N2 - 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. KW - amyotrophic-lateral-sclerosis KW - atrophy Kennedys-disease KW - trigeminal nerve KW - neuronopathy KW - trigeminal neuropathy KW - FOSMN KW - facial pain KW - Sjorgens-syndrome KW - reflex KW - afferents KW - neuralgia KW - pathways KW - humans KW - fibers Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-114249 SN - 1471-2377 VL - 14 ER - TY - JOUR A1 - Bischoff, Joakim M. A1 - Ringsted, Thomas K. A1 - Petersen, Marian A1 - Sommer, Claudia A1 - Üçeyler, Nurcan A1 - Werner, Mads U. T1 - A Capsaicin (8%) Patch in the Treatment of Severe Persistent Inguinal Postherniorrhaphy Pain: A Randomized, Double-Blind, Placebo-Controlled Trial JF - PLOS ONE N2 - Background: Persistent pain after inguinal herniorrhaphy is a disabling condition with a lack of evidence-based pharmacological treatment options. This randomized placebo-controlled trial investigated the efficacy of a capsaicin 8% cutaneous patch in the treatment of severe persistent inguinal postherniorrhaphy pain. Methods: Forty-six patients with persistent inguinal postherniorrhaphy pain were randomized to receive either a capsaicin 8% patch or a placebo patch. Pain intensity (Numerical Rating Scale [NRS 0-10]) was evaluated under standardized conditions (at rest, during movement, and during pressure) at baseline and at 1, 2 and 3 months after patch application. Skin punch biopsies for intraepidermal nerve fiber density (IENFD) measurements were taken at baseline and 1 month after patch application. Quantitative sensory testing was performed at baseline and at 1, 2, and 3 months after patch application. The primary outcome was comparisons of summed pain intensity differences (SPIDs) between capsaicin and placebo treatments at 1, 2 and 3 months after patch application (significance level P<0.01). Results: The maximum difference in SPID, between capsaicin and placebo treatments, was observed at 1 month after patch application, but the pain reduction was not significant (NRS, mean difference [95% CI]: 5.0 [0.09 to 9.9]; P=0.046). No differences in SPID between treatments were observed at 2 and 3 months after patch application. Changes in IENFD on the pain side, from baseline to 1 month after patch application, did not differ between capsaicin and placebo treatment: 1.9 [-0.1 to 3.9] and 0.6 [-1.2 to 2.5] fibers/mm, respectively (P=0.32). No significant changes in sensory function, sleep quality or psychological factors were associated with capsaicin patch treatment. Conclusions: The study did not demonstrate significant differences in pain relief between capsaicin and placebo treatment, although a trend toward pain improvement in capsaicin treated patients was observed 1 month after patch application. KW - postherpetic neuralgia KW - long-term pain KW - crossover trial KW - neuropathic pain KW - risk factors KW - cutaneous patch KW - scale KW - hernia repair KW - interference KW - validation Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-115198 SN - 1932-6203 VL - 9 IS - 10 ER - TY - JOUR A1 - Meyer zu Hörste, Gerd A1 - Cordes, Steffen A1 - Mausberg, Anne K. A1 - Zozulya, Alla L. A1 - Wessig, Carsten A1 - Sparwasser, Tim A1 - Mathys, Christian A1 - Wiendl, Heinz A1 - Hartung, Hans-Peter A1 - Kieseier, Bernd C. T1 - FoxP3+Regulatory T Cells Determine Disease Severity in Rodent Models of Inflammatory Neuropathies JF - PLOS ONE N2 - Inflammatory neuropathies represent disabling human autoimmune disorders with considerable disease variability. Animal models provide insights into defined aspects of their disease pathogenesis. Forkhead box P3 (FoxP3)+ regulatory T lymphocytes (Treg) are anti-inflammatory cells that maintain immune tolerance and counteract tissue damage in a variety of immune-mediated disorders. Dysfunction or a reduced frequency of Tregs have been associated with different human autoimmune disorders. We here analyzed the functional relevance of Tregs in determining disease manifestation and severity in murine models of autoimmune neuropathies. We took advantage of the DEREG mouse system allowing depletion of Treg with high specificity as well as anti-CD25 directed antibodies to deplete Tregs in mice in actively induced experimental autoimmune neuritis (EAN). Furthermore antibody-depletion was performed in an adoptive transfer model of chronic neuritis. Early Treg depletion increased clinical EAN severity both in active and adoptive transfer chronic neuritis. This was accompanied by increased proliferation of myelin specific T cells and histological signs of peripheral nerve inflammation. Late stage Treg depletion after initial disease manifestation however did not exacerbate inflammatory neuropathy symptoms further. We conclude that Tregs determine disease severity in experimental autoimmune neuropathies during the initial priming phase, but have no major disease modifying function after disease manifestation. Potential future therapeutic approaches targeting Tregs should thus be performed early in inflammatory neuropathies. KW - Guillain-Barre-Syndrome KW - regulatory cells KW - C57BL/6 mice KW - demyelinating polyradiculoneuropathy KW - cytokines KW - pathogenesis KW - polyneuropathy KW - enteropathy KW - peptide KW - experimental autoimmune neuritis Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-115239 VL - 9 IS - 10 ER - TY - JOUR A1 - Üçeyler, Nurcan A1 - Valet, Michael A1 - Kafke, Waldemar A1 - Tölle, Thomas R. A1 - Sommer, Claudia T1 - Local and Systemic Cytokine Expression in Patients with Postherpetic Neuralgia N2 - Background Postherpetic neuralgia (PHN) is the painful complication of a varicella zoster virus reactivation. We investigated the systemic and local gene expression of pro- and anti-inflammatory cytokine expression in patients with PHN. Methods Thirteen patients with PHN at the torso (Th4-S1) were recruited. Skin punch biopsies were obtained from the painful and the contralateral painless body area for intraepidermal nerve fiber density (IENFD) and cytokine profiling. Additionally, blood was withdrawn for systemic cytokine expression and compared to blood values of healthy controls. We analyzed the gene expression of selected pro- and anti-inflammatory cytokines (tumor necrosis factor-alpha [TNF] and interleukins [IL]-1β, IL-2, and IL-8). Results IENFD was lower in affected skin compared to unaffected skin (p<0.05), while local gene expression of pro- and anti-inflammatory cytokines did not differ except for two patients who had 7fold higher IL-6 and 10fold higher IL-10 gene expression in the affected skin compared to the contralateral unaffected skin sample. Also, the systemic expression of cytokines in patients with PHN and in healthy controls was similar. Conclusion While the systemic and local expression of the investigated pro- and anti-inflammatory cytokines was not different from controls, this may have been influenced by study limitations like the low number of patients and different disease durations. Furthermore, other cytokines or pain mediators need to be considered. KW - neuropathic pain KW - cytokines KW - pain sensation KW - gene expression KW - nerve fibres KW - RNA extraction KW - shingles KW - skin tumors Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-113041 ER - TY - JOUR A1 - Kleinschnitz, Christoph A1 - Mencl, Stine A1 - Garz, Cornelia A1 - Niklass, Solveig A1 - Braun, Holger A1 - Göb, Eva A1 - Homola, György A1 - Heinze, Hans-Jochen A1 - Reymann, Klaus G. A1 - Schreiber, Stefanie T1 - Early microvascular dysfunction in cerebral small vessel disease is not detectable on 3.0 Tesla magnetic resonance imaging: a longitudinal study in spontaneously hypertensive stroke-prone rats JF - Experimental & Translational Stroke Medicine N2 - Background Human cerebral small vessel disease (CSVD) has distinct histopathologic and imaging findings in its advanced stages. In spontaneously hypertensive stroke-prone rats (SHRSP), a well-established animal model of CSVD, we recently demonstrated that cerebral microangiopathy is initiated by early microvascular dysfunction leading to the breakdown of the blood–brain barrier and an activated coagulatory state resulting in capillary and arteriolar erythrocyte accumulations (stases). In the present study, we investigated whether initial microvascular dysfunction and other stages of the pathologic CSVD cascade can be detected by serial magnetic resonance imaging (MRI). Findings Fourteen SHRSP and three control (Wistar) rats (aged 26–44 weeks) were investigated biweekly by 3.0 Tesla (3 T) MRI. After perfusion, brains were stained with hematoxylin–eosin and histology was correlated with MRI data. Three SHRSP developed terminal CSVD stages including cortical, hippocampal, and striatal infarcts and macrohemorrhages, which could be detected consistently by MRI. Corresponding histology showed small vessel thromboses and increased numbers of small perivascular bleeds in the infarcted areas. However, 3 T MRI failed to visualize intravascular erythrocyte accumulations, even in those brain regions with the highest densities of affected vessels and the largest vessels affected by stases, as well as failing to detect small perivascular bleeds. Conclusion Serial MRI at a field strength of 3 T failed to detect the initial microvascular dysfunction and subsequent small perivascular bleeds in SHRSP; only terminal stages of cerebral microangiopathy were reliably detected. Further investigations at higher magnetic field strengths (7 T) using blood- and flow-sensitive sequences are currently underway. KW - Cerebral small vessel disease KW - SHRSP KW - MRI Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-97056 UR - http://www.etsmjournal.com/content/5/1/8 ER - TY - JOUR A1 - Üçeyler, Nurcan A1 - Kahn, Ann-Kathrin A1 - Kramer, Daniela A1 - Zeller, Daniel A1 - Casanova-Molla, Jordi A1 - Wanner, Christoph A1 - Weidemann, Frank A1 - Katsarava, Zaza A1 - Sommer, Claudia T1 - Impaired small fiber conduction in patients with Fabry disease: a neurophysiological case–control study JF - BMC Neurology N2 - Background Fabry disease is an inborn lysosomal storage disorder which is associated with small fiber neuropathy. We set out to investigate small fiber conduction in Fabry patients using pain-related evoked potentials (PREP). Methods In this case–control study we prospectively studied 76 consecutive Fabry patients for electrical small fiber conduction in correlation with small fiber function and morphology. Data were compared with healthy controls using non-parametric statistical tests. All patients underwent neurological examination and were investigated with pain and depression questionnaires. Small fiber function (quantitative sensory testing, QST), morphology (skin punch biopsy), and electrical conduction (PREP) were assessed and correlated. Patients were stratified for gender and disease severity as reflected by renal function. Results All Fabry patients (31 men, 45 women) had small fiber neuropathy. Men with Fabry disease showed impaired cold (p < 0.01) and warm perception (p < 0.05), while women did not differ from controls. Intraepidermal nerve fiber density (IENFD) was reduced at the lower leg (p < 0.001) and the back (p < 0.05) mainly of men with impaired renal function. When investigating A-delta fiber conduction with PREP, men but not women with Fabry disease had lower amplitudes upon stimulation at face (p < 0.01), hands (p < 0.05), and feet (p < 0.01) compared to controls. PREP amplitudes further decreased with advance in disease severity. PREP amplitudes and warm (p < 0.05) and cold detection thresholds (p < 0.01) at the feet correlated positively in male patients. Conclusion Small fiber conduction is impaired in men with Fabry disease and worsens with advanced disease severity. PREP are well-suited to measure A-delta fiber conduction. KW - Fabry disease KW - Pain-related evoked potentials KW - Small fiber neuropathy KW - A-delta fibers Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-96527 UR - http://www.biomedcentral.com/1471-2377/13/47 ER - TY - JOUR A1 - Kleinschnitz, Christoph A1 - Göbel, Kerstin A1 - Meuth, Sven G. A1 - Kraft, Peter T1 - Glatiramer acetate does not protect from acute ischemic stroke in mice N2 - Background The role of the immune system in the pathophysiology of acute ischemic stroke is increasingly recognized. However, targeted treatment strategies to modulate immunological pathways in stroke are still lacking. Glatiramer acetate is a multifaceted immunomodulator approved for the treatment of relapsing-remitting multiple sclerosis. Experimental studies suggest that glatiramer acetate might also work in other neuroinflammatory or neurodegenerative diseases apart from multiple sclerosis. Findings We evaluated the efficacy of glatiramer acetate in a mouse model of brain ischemia/reperfusion injury. 60 min of transient middle cerebral artery occlusion was induced in male C57Bl/6 mice. Pretreatment with glatiramer acetate (3.5 mg/kg bodyweight) 30 min before the induction of stroke did not reduce lesion volumes or improve functional outcome on day 1. Conclusions Glatiramer acetate failed to protect from acute ischemic stroke in our hands. Further studies are needed to assess the true therapeutic potential of glatiramer acetate and related immunomodulators in brain ischemia. KW - Glatiramer acetate KW - Stroke KW - Inflammation KW - Neurodegeneration Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-110528 ER - TY - JOUR A1 - Groh, Janos A1 - Stadler, David A1 - Buttmann, Mathias A1 - Martini, Rudolf T1 - Non-invasive assessment of retinal alterations in mouse models of infantile and juvenile neuronal ceroid lipofuscinosis by spectral domain optical coherence tomography N2 - Introduction The neuronal ceroid lipofuscinoses constitute a group of fatal inherited lysosomal storage diseases that manifest in profound neurodegeneration in the CNS. Visual impairment usually is an early symptom and selective degeneration of retinal neurons has been described in patients suffering from distinct disease subtypes. We have previously demonstrated that palmitoyl protein thioesterase 1 deficient (Ppt1-/-) mice, a model of the infantile disease subtype, exhibit progressive axonal degeneration in the optic nerve and loss of retinal ganglion cells, faithfully reflecting disease severity in the CNS. Here we performed spectral domain optical coherence tomography (OCT) in Ppt1-/- and ceroid lipofuscinosis neuronal 3 deficient (Cln3-/-) mice, which are models of infantile and juvenile neuronal ceroid lipofuscinosis, respectively, in order to establish a non-invasive method to assess retinal alterations and monitor disease severity in vivo. Results Blue laser autofluorescence imaging revealed increased accumulation of autofluorescent storage material in the inner retinae of 7-month-old Ppt1-/- and of 16-month-old Cln3-/- mice in comparison with age-matched control littermates. Additionally, optical coherence tomography demonstrated reduced thickness of retinae in knockout mice in comparison with age-matched control littermates. High resolution scans and manual measurements allowed for separation of different retinal composite layers and revealed a thinning of layers in the inner retinae of both mouse models at distinct ages. OCT measurements correlated well with subsequent histological analysis of the same retinae. Conclusions These results demonstrate the feasibility of OCT to assess neurodegenerative disease severity in mouse models of neuronal ceroid lipofuscinosis and might have important implications for diagnostic evaluation of disease progression and therapeutic efficacy in patients. Moreover, the non-invasive method allows for longitudinal studies in experimental models, reducing the number of animals used for research. KW - Optical coherence tomography KW - Neuronal ceroid lipofuscinosis KW - Neurodegeneration KW - Retinal degeneration KW - Lysosomal storage disease Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-110566 ER - TY - JOUR A1 - Üçeyler, Nurcan A1 - Kewenig, Susanne A1 - Kafke, Waldemar A1 - Kittel-Schneider, Sarah A1 - Sommer, Claudia T1 - Skin cytokine expression in patients with fibromyalgia syndrome is not different from controls N2 - Background Fibromyalgia syndrome (FMS) is a chronic pain syndrome of unknown etiology. There is increasing evidence for small nerve fiber impairment in a subgroup of patients with FMS. We investigated whether skin cytokine and delta opioid receptor (DOR) gene expression in FMS patients differs from controls as one potential contributor to small nerve fiber sensitization. Methods We investigated skin punch biopsies of 25 FMS patients, ten patients with monopolar depression but no pain, and 35 healthy controls. Biopsies were obtained from the lateral upper thigh and lower calf. Gene expression of the pro-inflammatory cytokines tumor necrosis factor-alpha (TNF), interleukin (IL)-6, and IL-8 and of the anti-inflammatory cytokine IL-10 was analyzed using quantitative real-time PCR and normalizing data to 18sRNA as housekeeping gene. Additionally, we assessed DOR gene expression. Results All cytokines and DOR were detectable in skin samples of FMS patients, patients with depression, and healthy controls without intergroup difference. Also, gene expression was not different in skin of the upper and lower leg within and between the groups and in FMS patient subgroups. Conclusions Skin cytokine and DOR gene expression does not differ between patients with FMS and controls. Our results do not support a role of the investigated cytokines in sensitization of peripheral nerve fibers as a potential mechanism of small fiber pathology in FMS. KW - Fibromyalgia syndrome KW - Skin biopsy KW - Monopolar depression KW - Cytokines KW - Opioid receptor Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-110624 ER - TY - THES A1 - Herrmann, Alexander Michael T1 - CD8+ Lymphozyten mediierter Angriff auf Neuronen des ZNS: Relevanz von Granzym B und Perforin für akute elektrophysiologische Veränderungen T1 - CD8+ lymphocyte-mediated attack on neurons of the CNS: Relevance on granzyme B and perforin for acute electrophysiological alterations N2 - Zytotoxische CD8+ T-Lymphozyten spielen in vielen inflammatorischen, aber auch primär neurodegenerativen Erkrankungen eine wichtige Rolle. Daher besitzt die Fragestellung inwiefern CD8+ ZTL Neurone direkt schädigen und ggf. welche mechanistischen Aspekte dieser Schädigung zugrunde liegen, eine hohe Relevanz. Um diese Fragestellung eingehender zu beleuchten, wurde mit dem OT-I-System gearbeitet. Dieses gut vorcharakterisierte CD8+ T-Zell-Modell besitzt den Vorteil, dass diese transgenen Zellen nur eine Peptidsequenz des Ovalbumin (OVA) Protein als spezifisches Antigen erkennen. Zunächst wurden in der vorliegenden Arbeit Co-Kultivierungs-Experimente durchgeführt. Hierzu wurden akut isolierte murine Hippokampus-Neurone unter verschiedenen Bedingungen mit OT-I Lymphozyten co-kultiviert. Hierbei konnte gezeigt werden, dass unter Antigenpräsentation der Neurone signifikant mehr Neurone in die Apoptose/Nekrose geführt werden, als unter Kontroll-Bedingungen, in denen entweder kein Antigen oder ein Antigen, das nicht von OT-I Lymphozyten erkannt wird, präsentiert wird. Nachdem die Antigen-abhängigen zytotoxischen Effekte auf Neurone gezeigt werden konnten, wurde mithilfe elektrophysiologischer Techniken die mechanistischen und funktionellen Konsequenzen des direkten neuronalen/OT-I-vermittelten Zellkontakts untersucht. Bei diesem experimentellen Ansatz wurde durch elektrisches Auslenken eines Neurons nach Kontakt mit einem OT-I Lymphozyt die passiven elektrischen Parameter der Neuronenmembran gemessen. In diesen Messungen konnte gezeigt werden, dass nach unmittelbarem Kontakt eines Neurons mit einem OT-I Lymphozyt der neuronale Membranwiderstand reduziert wird bzw. die Leitfähigkeit der Zellmembran erhöht wird. Diese Änderung der neuronalen Membran-Leitfähigkeit findet in einem Zeitraum von 10 min nach dem Zell-Zell-Kontakt statt. Auch hier konnte gezeigt werden, dass dieser Einfluss von OT-I Lymphozyten auf Neurone strikt Antigen-abhängig ist. Zur Untersuchung des Mechanismus der OT-I T-Lymphozyten auf Neurone wurde das Augenmerk auf verschiedene T-Zell-induzierte Apoptosewegegelegt. Es konnte gezeigt werden, dass durch Blockieren der Fas/FasL-Interaktion mittels eines Antikörpers kein Unterschied, weder in der neuronalen Apoptoserate nach Co-Kultivierung, noch eine Änderung der passiven neuronalen Membran-Leitfähigkeit auftritt. Weiterhin wurde die Rolle der von T-Zellen sezernierten Granula Perforin und Granzym B untersucht. Um den Einfluss dieser Granula aufzuklären, wurden OT-I Lymphozyten verwendet, die entweder defizient für Perforin oder Granzym B waren. In diesem experimentellen Ansatz wurde gezeigt, dass ausschließlich Perforin für die Erniedrigung des passiven neuronalen Membran-Widerstandes verantwortlich ist. Diese Erhöhung der neuronalen Membranleitfähigkeit führte aber nicht direkt zum neuronalen Zelltod. Vielmehr wurde durch die einhergehende Depolarisation des Neurons die elektrische Aktivität der Zelle vermindert, sodass es zu einem sogenannten „electrical silencing“ kommt. Dieser Umstand konnte auch in der Betrachtung der spontanen Netzwerkaktivität von Neuronenkulturen gezeigt werden. Hierfür wurden hoch dichte Neuronenkulturen auf MEA-Chips kultiviert. Mit Hilfe dieser MEA konnten die Summenfeldpotentiale der Neuronenkulturen detektiert werden. Hierbei wurde beobachtet, dass nach Beladung der Neuronen mit dem spezifischen OT-I-Antigen und OT-I Zellen eine Verringerung der spontanen Netzwerkaktivität einhergeht. Auch in diesem Effekt konnte eine Antigen-Spezifität nachgewiesen werden. Da der Prozess der zellulären Apoptose mit einem Anstieg der intrazellulären Ca2+-Konzentration einhergeht, und Perforin als Ca2+-durchlässiger unselektiver Porenbildner fungiert, wurden zur Überprüfung der Hypothese calcium imaging-Experimente durchgeführt. Analog zu den elektrophysiologischen Messungen wurde gezeigt, dass nach direktem Zell-Zell-Kontakt zwischen Neuron und OT-I Lymphozyt eine Erhöhung der intrazellulären Ca2+-Konzentration zu messen ist. Dass diese Änderung des neuronalen Ca2+-Einstroms durch Perforin-abhängige Membranporen hervorgerufen wird, konnte durch die Verwendung von Perforin-defizienten OT-I Lymphozyten bewiesen werden. Unter Verwendung von Perforin-defizienten OT-I Lymphozyten wurde keine Änderung der neuronalen Ca2+-Konzentration ermittelt. Weiterhin wurde in diesem experimentellen Ansatz gezeigt, dass auch der OT-I-vermittelte neuronale Ca2+-Anstieg strikt Antigen-abhängig ist.Zusammengefasst konnte in dieser Arbeit gezeigt werden, dass MHC-I/Antigen-vermittelte CD8+ Lymphozyten-Interaktion mit einem Neuron zu „electrical silencing“ des Neurons führt. Dieser Prozess ist klar Perforin-abhängig, führt jedoch nicht zum unmittelbaren Zelltod des Neurons. N2 - Cytotoxic CD8+ T cells are considered as important effector cells contributing to neuronal damage in inflammatory and primary degenerative disorders in the CNS. Hence, it is highly relevant to know to what extent CD8+ T-lymphocytes can contribute to neuronal damage in these disorders. To challenge this question, we used the murine OT-I system. The advantage of this well-characterized transgenic model is that OT-I CD8+ T-lymphocytes are restricted to one single antigen – one peptide sequence of Ovalbumin (Ova). In a first set of experiments, OT-I lymphocytes were co-cultured with neurons that presented Ova in a MHC-I specific context on their surface. As control, neurons without any antigen or neurons that presented a scrambled peptide form (SIY) were used. These co-culture experiments indicates that neuronal killing by OT-I lymphocytes is a MHC-I and antigen-dependent mechanism. To clarify the underlying mechanism and the functionally consequences in this OT-I/neuron interaction, we performed electrophysiological patch-clamp analysis to measure the influence from one single OT-I T-cell on a single neuron. For this purpose, we established a special protocol to stimulate the neuronal membrane to measure the passive electrical parameters after a direct OT-I contact. These measurements revealed a significant antigen restricted reduction in neuronal membrane resistance. This effect could be detected within 10 min after the direct cell-cell contact. To challenge the underlying cellular mechanisms we analyzed several known apoptosis pathways. In a first set of experiments, we investigated the Fas/FasL interaction. To answer this question, we used a blocking FasL antibody, to interrupt this pathway. These experiments showed no changes in neuronal apoptosis, neither in co-cultivation experiments nor in the electrophysiological situation. As next step we investigate the role of CD8+ lymphocyte derived granula perforin and granzyme B. Therefore we used OT-I T-cells that are either deficient for perforin or granzyme B. Using these experimental conditions, we could show that only perforin is responsible for changing passive electrical parameters. However, these reductions in neuronal membrane resistance did not lead immediately in neuronal cell death, but rather led to a depolarization and therefore to an electrical silencing of the neuron. This electrical silencing was also shown to occur in the spontaneous network activity in a neuronal network. The network activity was measured on a high density neuron network cultivated on a MEA. These MEA measurements revealed a decrease in the total spike activity after loading of OT-I lymphocytes on an antigen presenting neuronal network. Due to the increase of the intracellular Ca2+ level in the process of cell death and the Ca2+ selectivity of perforin membrane pores, we hypothesized that neuronal silencing and neuronal cell death elicited by perforin pores might lead to an intracellular Ca2+ increase. To proof this hypothesis we established a calcium imaging experiment in an OT-I/neuron contact situation. These measurements were done in the same manner as the electrophysiological measurements. Ca2+ imaging indicated increasing Ca2+ levels in neurons after application of perforin releasing OT-I lymphocytes. Furthermore, these experiments revealed a strictly antigen dependence for Ca2+ increase in target cells. In conclusion, we could show that MHC-I/antigen-mediated CD8+ lymphocyte interactions with neurons led to their electrical silencing. This process was perforin dependent. However this process was not causally linked to neuronal cell death. KW - Antigen CD8 KW - T-Lymphozyt KW - Lymphozyten mediierter Angriff auf Neurone KW - Nervendegeneration KW - Lymphozyten KW - neurone Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-109124 ER - TY - THES A1 - Klaus, Laura-Christin T1 - Generierung und Charakterisierung eines neuen Mausmodells des Morbus Parkinson durch AAV1/2 vermittelte Überexpression von humanem mutiertem A53T-α-Synuclein in der Substantia nigra T1 - Generation and characterization of a new mouse model for Parkinson’s disease by AAV1/2 induced overexpression of human mutated A53T-α-synuclein in the substantia nigra N2 - 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. N2 - Although the etiopathogenesis of Parkinson’s disease (PD) has not been fully elucidated to date, α-synuclein (α-syn) seems to play a central role. Its discovery as a genetic cause of the disease, as the major component of the Lewy bodies (LB) and its association with other potential etiological factors illustrate this. In rats and monkeys, AAV1/2-mediated overexpression of A53T-α-syn resulted in degeneration of dopaminergic neurons of the substantia nigra (SN), a striatal dopaminergic deficit and behavioral deficits. Given certain advantages of the mouse species, the aim of this doctoral thesis - which was part of a collaborative project with the Toronto Western Research Institute in Ontario, Canada - was to transfer this AAV1/2-A53T-α-syn based PD model to mice. For this purpose, 1.5 µl of AAV1/2-A53T-α-syn or AAV1/2 empty vector at a concentration of 5.16 x 10^12 gp/ml were stereotactically injected unilaterally into the right SN of C57BL/6-wt-mice. Several behavioral experiments were performed over a period of 11 weeks and the two groups of mice were compared. Post-mortem measures included different immunohistochemical studies. It was shown that unilateral injection of AAV1/2-A53T-α-syn into the mouse SN induced a widespread overexpression of A53T-α-syn in dopaminergic SN neurons, that led to significant early and persistent motor deficits, nigrostriatal degeneration and development of Lewy-like pathology within 10 weeks. By generating and characterizing this novel PD mouse model, which reflects clinical and histopathological hallmarks of human PD, there is now the opportunity to further develop it and to transfer it e.g. to transgenic mice for unravelling molecular mechanisms of PD and preclinical testing of disease modifying therapies. KW - Parkinson-Krankheit KW - Synuclein KW - Tiermodell KW - Morbus Parkinson KW - α-Synuclein KW - Mausmodell KW - Lewy-Pathologie KW - A53T-Mutation KW - Parkinson’s disease KW - α-synuclein KW - mouse model KW - A53T mutation KW - Lewy-like pathology Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-239217 ER - TY - THES A1 - Yuan, Xidi T1 - Aging and inflammation in the peripheral nervous system T1 - Altern und Entzündung im peripheren Nervensystem N2 - Aging is known to be a risk factor for structural abnormalities and functional decline in the nervous system. Characterizing age-related changes is important to identify putative pathways to overcome deleterious effects and improve life quality for the elderly. In this study, the peripheral nervous system of 24-month-old aged C57BL/6 mice has been investigated and compared to 12-month-old adult mice. Aged mice showed pathological alterations in their peripheral nerves similar to nerve biopsies from elderly human individuals, with nerve fibers showing demyelination and axonal damage. Such changes were lacking in nerves of adult 12-month-old mice and adult, non-aged humans. Moreover, neuromuscular junctions of 24-month-old mice showed increased denervation compared to adult mice. These alterations were accompanied by elevated numbers of macrophages in the peripheral nerves of aged mice. The neuroinflammatory conditions were associated with impaired myelin integrity and with a decline of nerve conduction properties and muscle strength in aged mice. To determine the pathological impact of macrophages in the aging mice, macrophage depletion was performed in mice by oral administration of CSF-1R specific kinase (c-FMS) inhibitor PLX5622 (300 mg/kg body weight), which reduced the number of macrophages in the peripheral nerves by 70%. The treated mice showed attenuated demyelination, less muscle denervation and preserved muscle strength. This indicates that macrophage-driven inflammation in the peripheral nerves is partially responsible for the age-related neuropathy in mice. Based on previous observations that systemic inflammation can accelerate disease progression in mouse models of neurodegenerative diseases, it was hypothesized that systemic inflammation can exacerbate the peripheral neuropathy found in aged mice. To investigate this hypothesis, aged C57BL/6 mice were intraperitoneally injected with a single dose of lipopolysaccharide (LPS; 500 μg/kg body weight) to induce systemic inflammation by mimicking bacterial infection, mostly via activation of Toll-like receptors (TLRs). Altered endoneurial macrophage activation, highlighted by Trem2 downregulation, was found in LPS injected aged mice one month after injection. This was accompanied by a so far rarely observed form of axonal perturbation, i.e., the occurrence of “dark axons” characterized by a damaged cytoskeleton and an increased overall electron density of the axoplasm. At the same time, however, LPS injection reduced demyelination and muscle denervation in aged mice. Interestingly, TREM2 deficiency in aged mice led to similar changes to LPS injection. This suggests that LPS injection likely mitigates aging-related demyelination and muscle denervation via Trem2 downregulation. Taken together, this study reveals the role of macrophage-driven inflammation as a pathogenic mediator in age-related peripheral neuropathy, and that targeting macrophages might be an option to mitigate peripheral neuropathies in aging individuals. Furthermore, this study shows that systemic inflammation may be an ambivalent modifier of age-related nerve damage, leading to a distinct type of axonal perturbation, but in addition to functionally counteracting, dampened demyelination and muscle denervation. Translationally, it is plausible to assume that tipping the balance of macrophage polarization to one direction or the other may determine the functional outcome in the aging peripheral nervous system of the elderly. N2 - Es ist bekannt, dass das Altern ein Risikofaktor für strukturelle Veränderungen und Funktionsstörungen des Nervensystems ist. Die Charakterisierung altersbedingter Veränderungen ist wichtig, um mögliche Wege zu identifizieren, um schädliche Auswirkungen zu überwinden und die Lebensqualität älterer Menschen zu verbessern. In dieser Studie wurde das periphere Nervensystem von 24 Monate alten gealterten C57BL/6-Mäusen untersucht und mit 12 Monate alten adulten Mäusen verglichen. Gealterte Mäuse zeigten ähnliche pathologische Veränderungen in ihren peripheren Nerven wie Nervenbiopsien älterer Menschen, wobei die Nervenfasern eine Demyelinisierung und axonale Schädigung zeigten. Bei den Nerven von adulten 12 Monate alten Mäusen und nicht gealterten Menschen fehlten solche Veränderungen. Darüber hinaus wiesen die neuromuskulären Endplatten von 24 Monate alten Mäusen im Vergleich zu adulten Mäusen eine erhöhte Denervation auf. Diese Veränderungen wurden von einer erhöhten Anzahl von Makrophagen in den peripheren Nerven gealterter Mäuse begleitet. Die neuroinflammatorischen Bedingungen waren mit einer Beeinträchtigung der Myelinintegrität, einer Abnahme der Nervenleitungseigenschaften und der Muskelkraft bei gealterten Mäusen verbunden. Um den pathologischen Einfluss von Makrophagen bei alternden Mäusen zu bestimmen, wurde die Makrophagen-Depletion bei Mäusen durch orale Verabreichung des CSF-1R-spezifischen Kinase-Inhibitors (c-FMS) PLX5622 (300 mg/kg Körpergewicht) durchgeführt, welche die Anzahl der Makrophagen in den peripheren Nerven um 70% reduzierte. Die behandelten Mäuse zeigten eine verminderte Demyelinisierung, eine reduzierte Muskeldenervation und einen Erhalt der Muskelkraft. Dies deutet darauf hin, dass die durch Makrophagen verursachte Entzündung in den peripheren Nerven teilweise für die altersbedingte Neuropathie bei Mäusen verantwortlich ist. Auf der Grundlage früherer Beobachtungen, dass systemische Entzündungen das Fortschreiten der Krankheit in Mausmodellen neurodegenerativer Erkrankungen beschleunigen können, wurde die Hypothese aufgestellt, dass systemische Entzündungen die periphere Neuropathie in gealterten Mäusen verschlimmern können. Um diese Hypothese zu untersuchen, wurde gealterten C57BL/6-Mäusen eine Einzeldosis Lipopolysaccharid (LPS; 500 μg/kg Körpergewicht) intraperitonal injiziert, um eine systemische Entzündung durch Nachahmung einer bakteriellen Infektion, meist über die Aktivierung von Toll-like-Rezeptoren (TLRs), zu induzieren. Eine veränderte endoneuriale Makrophagenaktivierung, die durch eine reduzierte Trem2-Expression hervorgehoben wird, konnte bei LPS-injizierten gealterten Mäusen einen Monat nach der Injektion gefunden werden. Dies ging einher mit einer bisher selten beobachteten Form der axonalen Perturbation, d.h. dem Auftreten von "dunklen Axonen", die sich durch ein geschädigtes Zytoskelett und eine erhöhte Gesamtelektronendichte des Axoplasmas auszeichnen. Gleichzeitig verringerte die LPS-Injektion jedoch die Demyelinisierung und Muskeldenervation bei gealterten Mäusen. Interessanterweise führte die TREM2 Defizienz bei gealterten Mäusen zu vergleichbaren Veränderungen wie die LPS-Injektion. Dies deutet darauf hin, dass die LPS-Injektion die alterungsbedingte Demyelinisierung und Muskeldenervierung über die Trem2 Herunterregulation abschwächt. Zusammenfassend zeigt diese Studie die Rolle der Makrophagen-getriebenen Entzündung als pathogener Mediator bei der altersbedingten peripheren Neuropathie. Zusätzlich deuten die Ergebnisse darauf hin, dass die gezielte Behandlung von Makrophagen eine Option zur Linderung peripherer Neuropathien bei alternden Menschen sein könnte. Darüber hinaus zeigt diese Studie, dass die systemische Entzündung ein ambivalenter Modifikator der altersbedingten Nervenschädigung sein kann, der zu einer bestimmten Art von axonaler Perturbation führt, aber zusätzlich zu einer funktionell entgegenwirkenden, weniger schweren Demyelinisierung und Muskeldenervation. Translatorisch ist es plausibel anzunehmen, dass eine Veränderung des Gleichgewichts der Makrophagenpolarisation in die eine oder andere Richtung das funktionelle Ergebnis im alternden peripheren Nervensystem der älteren Menschen bestimmen kann. KW - Maus KW - Peripheres Nervensystem KW - Altern KW - Immunsystem KW - macrophages KW - peripheral nervous system KW - aging KW - neuroinflammation KW - Trem2 KW - systemic inflammation Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-237378 ER - TY - THES A1 - Waldmann, Amelie Friederike T1 - Körperselbstgefühl und Puppenhandillusion bei Patienten mit Morbus Parkinson im medikamentösen ON und OFF T1 - Body ownership and rubber hand illusion in patients with Parkinson’s disease in medical ON and OFF N2 - 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. N2 - In this study, we assessed the rubber hand illusion in patients with Parkinson’s disease (PD) and age-matched healthy controls. In this experimental setup, stroking a visible plastic hand simultaneously with the covered real hand elicits the feeling of ownership over the seen hand. Proprioceptive bias and an illusion score were used as measures of the illusion. Asynchronous stroking served as a control condition. A subgroup of patients with PD additionally underwent the experiments “OFF medication”. Compared to controls, patients with PD showed higher proprioceptive bias independent of stroking condition and had higher illusion scores in the asynchronous condition. In patients with PD, there were no significant differences between ON- and OFF-medication state. These findings may indicate an internal “noise” during multisensory integration in patients with PD and the involvement of non-dopaminergic transmitter systems. Increasing attention towards altered body perception and its multisensory underpinning in patients with PD will provide new avenues for an integrated treatment concept and might eventually improve the patients’ quality of life. KW - Parkinson-Krankheit KW - Propriozeption KW - Körperwahrnehmung KW - Multisensorische Integration KW - Puppenhandillusion KW - multisensory integration KW - rubber hand illusion Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-232009 ER -