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 Additionally, blood was withdrawn for systemic cytokine expression and compared to blood values of healthy controls.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 - Üçeyler, Nurcan A1 - Topuzoğlu, Tengü A1 - Schießer, Peter A1 - Hahnenkamp, Saskia A1 - Sommer, Claudia T1 - IL-4 Deficiency Is Associated with Mechanical Hypersensitivity in Mice JF - PLoS One N2 - Interleukin-4 (IL-4) is an anti-inflammatory and analgesic cytokine that induces opioid receptor transcription. We investigated IL-4 knockout (ko) mice to characterize their pain behavior before and after chronic constriction injury (CCI) of the sciatic nerve as a model for neuropathic pain. We investigated opioid responsivity and measured cytokine and opioid receptor gene expression in the peripheral and central nervous system (PNS, CNS) of IL-4 ko mice in comparison with wildtype (wt) mice. Naïve IL-4 ko mice displayed tactile allodynia (wt: 0.45 g; ko: 0.18 g; p<0.001), while responses to heat and cold stimuli and to muscle pressure were not different. No compensatory changes in the gene expression of tumor necrosis factor-alpha (TNF), IL-1β, IL-10, and IL-13 were found in the PNS and CNS of naïve IL-4 ko mice. However, IL-1β gene expression was stronger in the sciatic nerve of IL-4 ko mice (p<0.001) 28 days after CCI and only IL-4 ko mice had elevated IL-10 gene expression (p = 0.014). Remarkably, CCI induced TNF (p<0.01), IL-1β (p<0.05), IL-10 (p<0.05), and IL-13 (p<0.001) gene expression exclusively in the ipsilateral spinal cord of IL-4 ko mice. The compensatory overexpression of the anti-inflammatory and analgesic cytokines IL-10 and IL-13 in the spinal cord of IL-4 ko mice may explain the lack of genotype differences for pain behavior after CCI. Additionally, CCI induced gene expression of μ, κ, and δ opioid receptors in the contralateral cortex and thalamus of IL-4 ko mice, paralleled by fast onset of morphine analgesia, but not in wt mice. We conclude that a lack of IL-4 leads to mechanical sensitivity; the compensatory hyperexpression of analgesic cytokines and opioid receptors after CCI, in turn, protects IL-4 ko mice from enhanced pain behavior after nerve lesion. KW - mouse models KW - animal behavior KW - sciatic nerves KW - spinal cord KW - opioids KW - cytokines KW - gene expression KW - mice Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-137924 VL - 6 IS - 12 ER - TY - JOUR A1 - Üçeyler, Nurcan A1 - Sommer, Claudia T1 - High-Dose Capsaicin for the Treatment of Neuropathic Pain: What We Know and What We Need to Know JF - Pain and Therapy N2 - Neuropathic pain is a frequent and disabling condition with diverse underlying etiologies and is often difficult to treat. Systemic drug treatment is often limited in efficacy. Furthermore, adverse effects may be a limiting factor when trying to reach the necessary dose. Analgesics that can be applied topically have the potential to largely overcome this problem. They may be of particular advantage in localized neuropathic pain syndromes such as postherpetic neuralgia or small fiber neuropathy. Capsaicin, the pungent component of chili peppers, is a natural ligand of the transient receptor potential vanilloid 1 channel and has long been used as topically applicable cream with concentrations of 0.025 to 0.075%. In 2009, a high-concentration transdermal capsaicin 8% patch (Qutenza ; Acorda Therapeutics, Inc., Ardsley, NY, USA; Astellas Pharma Europe Ltd., Chertsey, Surrey, UK) was introduced for the treatment of peripheral neuropathic pain syndromes other than of diabetic origin in adults. It has since been widely used in diverse neuropathic pain disorders. In this review article, we summarize current knowledge on Qutenza, its advantages and problems, and expose unmet needs. KW - transient receptor potential vanilloid 1 (TRPV1) KW - analgesia KW - capsaicin KW - neuropathic pain KW - qutenza Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-120669 SN - 2193-651X VL - 3 IS - 2 ER - TY - JOUR A1 - Üçeyler, Nurcan A1 - Schröter, Nils A1 - Kafke, Waldemar A1 - Kramer, Daniela A1 - Wanner, Christoph A1 - Weidemann, Frank A1 - Sommer, Claudia T1 - Skin Globotriaosylceramide 3 Load Is Increased in Men with Advanced Fabry Disease JF - PLoS ONE N2 - Background The X-chromosomally linked life-limiting Fabry disease (FD) is associated with deposits of the sphingolipid globotriaosylceramide 3 (Gb3) in various tissues. Skin is easily accessible and may be used as an additional diagnostic and follow-up medium. Our aims were to visualize skin Gb3 deposits in FD patients applying immunofluorescence and to determine if cutaneous Gb3 load correlates with disease severity. Methods At our Fabry Center for Interdisciplinary Therapy we enrolled 84 patients with FD and 27 healthy controls. All subjects underwent 5-mm skin punch biopsy at the lateral lower leg and the back. Skin samples were processed for immunohistochemistry using antibodies against CD77 (i.e. Gb3). Cutaneous Gb3 deposition was quantified in a blinded manner and correlated to clinical data. Results We found that Gb3 load was higher in distal skin of male FD patients compared to healthy controls (p<0.05). Men (p<0.01) and women (p<0.05) with a classic FD phenotype had higher distal skin Gb3 load than healthy controls. Men with advanced disease as reflected by impaired renal function, and men and women with small fiber neuropathy had more Gb3 deposits in distal skin samples than males with normal renal function (p<0.05) and without small fiber neuropathy. Gb3 deposits were not different between patients with and without enzyme replacement therapy. Conclusions Immunofluorescence on minimally invasive skin punch biopsies may be useful as a tool for assessment and follow-up in FD patients. KW - biopsy KW - neuropathy KW - Fabry disease KW - renal system KW - immunofluorescence KW - enzyme replacement therapy KW - skin diseases KW - nerve fibers Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-178856 VL - 11 IS - 11 ER - TY - JOUR A1 - Üçeyler, Nurcan A1 - Schließer, Mira A1 - Evdokimov, Dimitar A1 - Radziwon, Jakub A1 - Feulner, Betty A1 - Unterecker, Stefan A1 - Rimmele, Florian A1 - Walter, Uwe T1 - Reduced midbrain raphe echogenicity in patients with fibromyalgia syndrome JF - PloS One N2 - Objectives The pathogenesis of fibromyalgia syndrome (FMS) is unclear. Transcranial ultrasonography revealed anechoic alteration of midbrain raphe in depression and anxiety disorders, suggesting affection of the central serotonergic system. Here, we assessed midbrain raphe echogenicity in FMS. Methods Sixty-six patients underwent transcranial sonography, of whom 53 were patients with FMS (27 women, 26 men), 13 patients with major depression and physical pain (all women), and 14 healthy controls (11 women, 3 men). Raphe echogenicity was graded visually as normal or hypoechogenic, and quantified by digitized image analysis, each by investigators blinded to the clinical diagnosis. Results Quantitative midbrain raphe echogenicity was lower in patients with FMS compared to healthy controls (p<0.05), but not different from that of patients with depression and accompanying physical pain. Pain and FMS symptom burden did not correlate with midbrain raphe echogenicity as well as the presence and severity of depressive symptoms. Conclusion We found reduced echogenicity of the midbrain raphe area in patients with FMS and in patients with depression and physical pain, independent of the presence or severity of pain, FMS, and depressive symptoms. Further exploration of this sonographic finding is necessary before this objective technique may enter diagnostic algorithms in FMS and depression. KW - midbrain KW - fibromyalgia KW - depression KW - pain KW - ultrasound imaging KW - neuropathic pain KW - diagnostic medicine KW - migraine Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-300639 VL - 17 IS - 11 ER - TY - JOUR A1 - Üçeyler, Nurcan A1 - Kewenig, Susanne A1 - Kittel-Schneider, Sarah A1 - Fallgatter, Andreas J. A1 - Sommer, Claudia T1 - Increased cortical activation upon painful stimulation in fibromyalgia syndrome JF - BMC Neurology N2 - Background Fibromyalgia syndrome (FMS) is a chronic condition characterized by widespread pain and associated symptoms. We investigated cerebral activation in FMS patients by functional near-infrared spectroscopy (fNIRS). Methods Two stimulation paradigms were applied: a) painful pressure stimulation at the dorsal forearm; b) verbal fluency test (VFT). We prospectively recruited 25 FMS patients, ten patients with unipolar major depression (MD) without pain, and 35 healthy controls. All patients underwent neurological examination and all subjects were investigated with questionnaires (pain, depression, FMS, empathy). Results FMS patients had lower pressure pain thresholds than patients with MD and controls (p < 0.001) and reported higher pain intensity (p < 0.001). Upon unilateral pressure pain stimulation fNIRS recordings revealed increased bilateral cortical activation in FMS patients compared to controls (p < 0.05). FMS patients also displayed a stronger contralateral activity over the dorsolateral prefrontal cortex in direct comparison to patients with MD (p < 0.05). While all three groups performed equally well in the VFT, a frontal deficit in cortical activation was only found in patients with depression (p < 0.05). Performance and cortical activation correlated negatively in FMS patients (p < 0.05) and positively in patients with MD (p < 0.05). Conclusion Our data give further evidence for altered central nervous processing in patients with FMS and the distinction between FMS and MD. KW - fibromyalgia syndrome KW - depression KW - cortical activation KW - pain KW - near-infrared spectroscopy Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-125230 VL - 15 IS - 210 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 - 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 - Üçeyler, Nurcan A1 - Homola, György A. A1 - González, Hans Guerrero A1 - Kramer, Daniela A1 - Wanner, Christoph A1 - Weidemann, Frank A1 - Solymosi, László A1 - Sommer, Claudia T1 - Increased Arterial Diameters in the Posterior Cerebral Circulation in Men with Fabry Disease N2 - A high load of white matter lesions and enlarged basilar arteries have been shown in selected patients with Fabry disease, a disorder associated with an increased stroke risk. We studied a large cohort of patients with Fabry disease to differentially investigate white matter lesion load and cerebral artery diameters. We retrospectively analyzed cranial magnetic resonance imaging scans of 87 consecutive Fabry patients, 20 patients with ischemic stroke, and 36 controls. We determined the white matter lesion load applying the Fazekas score on fluid-attenuated inversion recovery sequences and measured the diameters of cerebral arteries on 3D-reconstructions of the time-of-flight-MR-angiography scans. Data of different Fabry patient subgroups (males – females; normal – impaired renal function) were compared with data of patients with stroke and controls. A history of stroke or transient ischemic attacks was present in 4/30 males (13%) and 5/57 (9%) females with Fabry disease, all in the anterior circulation. Only one man with Fabry disease showed confluent cerebral white matter lesions in the Fazekas score assessment (1%). Male Fabry patients had a larger basilar artery (p<0.01) and posterior cerebral artery diameter (p<0.05) compared to male controls. This was independent of disease severity as measured by renal function and did not lead to changes in arterial blood flow properties. A basilar artery diameter of >3.2 mm distinguished between men with Fabry disease and controls (sensitivity: 87%, specificity: 86%, p<0.001), but not from stroke patients. Enlarged arterial diameters of the posterior circulation are present only in men with Fabry disease independent of disease severity. KW - Arterial Diameters KW - ischemic stroke KW - magnetic resonance imaging KW - stroke KW - cerebral arteries KW - renal system KW - central nervous system KW - blood flow KW - lesions Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-112614 ER - TY - JOUR A1 - Üçeyler, Nurcan A1 - Buchholz, Hans-Georg A1 - Kewenig, Susanne A1 - Ament, Stephan-Johann A1 - Birklein, Frank A1 - Schreckenberger, Mathias A1 - Sommer, Claudia T1 - Cortical Binding Potential of Opioid Receptors in Patients With Fibromyalgia Syndrome and Reduced Systemic Interleukin-4 Levels – A Pilot Study JF - Frontiers in Neuroscience N2 - Objective: We investigated cerebral opioid receptor binding potential in patients with fibromyalgia syndrome (FMS) using positron-emission-tomography (PET) and correlated our results with patients’ systemic interleukin-4 (IL-4) gene expression. Methods: In this pilot study, seven FMS patients (1 man, 6 women) agreed to participate in experimental PET scans. All patients underwent neurological examination, were investigated with questionnaires for pain, depression, and FMS symptoms. Additionally, blood for IL-4 gene expression analysis was withdrawn at two time points with a median latency of 1.3 years. Patients were investigated in a PET scanner using the opioid receptor ligand F-18-fluoro-ethyl-diprenorphine ([18F]FEDPN) and results were compared with laboratory normative values. Results: Neurological examination was normal in all FMS patients. Reduced opioid receptor binding was found in mid cingulate cortex compared to healthy controls (p < 0.005). Interestingly, three patients with high systemic IL-4 gene expression had increased opioid receptor binding in the fronto-basal cortex compared to those with low IL-4 gene expression (p < 0.005). Conclusion: Our data give further evidence for a reduction in cortical opioid receptor availability in FMS patients as another potential central nervous system contributor to pain in FMS. KW - fibromyalgia syndrome KW - PET KW - brain KW - opioid KW - IL-4 Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-204457 SN - 1662-453X VL - 14 ER - TY - JOUR A1 - Üçeyler, Nurcan A1 - Biko, Lydia A1 - Hose, Dorothea A1 - Hoffmann, Lukas A1 - Sommer, Claudia T1 - Comprehensive and differential long-term characterization of the alpha-galactosidase A deficient mouse model of Fabry disease focusing on the sensory system and pain development JF - Molecular Pain N2 - Fabry disease is an X-linked lysosomal storage disorder due to impaired activity of alpha-galactosidase A with intracellular accumulation of globotriaosylceramide. Associated small fiber pathology leads to characteristic pain in Fabry disease. We systematically assessed sensory system, physical activity, metabolic parameters, and morphology of male and female mice with alpha-galactosidase A deficiency (Fabry ko) from 2 to 27 months of age and compared results with those of age- and gender-matched wild-type littermates of C57Bl/6J background. Results From the age of two months, male and female Fabry mice showed mechanical hypersensitivity (p < 0.001 each) compared to wild-type littermates. Young Fabry ko mice of both genders were hypersensitive to heat stimulation (p < 0.01) and developed heat hyposensitivity with aging (p < 0.05), while cold hyposensitivity was present constantly in young (p < 0.01) and old (p < 0.05) Fabry ko mice compared to wild-type littermates. Stride angle increased only in male Fabry ko mice with aging (p < 0.01) in comparison to wild-type littermates. Except for young female mice, male (p < 0.05) and female (p < 0.01) Fabry ko mice had a higher body weight than wild-type littermates. Old male Fabry ko mice were physically less active than their wild-type littermates (p < 0.05), had lower chow intake (p < 0.001), and lost more weight (p < 0.001) in a one-week treadmill experiment than wild-type littermates. Also, Fabry ko mice showed spontaneous pain protective behavior and developed orofacial dysmorphism resembling patients with Fabry disease. Conclusions. Mice with alpha-galactosidase A deficiency show age-dependent and distinct deficits of the sensory system. alpha-galactosidase A-deficient mice seem to model human Fabry disease and may be helpful when studying the pathophysiology of Fabry-associated pain. KW - Fabry disease KW - alpha-galactosidase A KW - mouse model KW - pain Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147562 VL - 12 IS - 1744806916646370 ER - TY - JOUR A1 - Üceyler, Nurcan A1 - Häuser, Winfried A1 - Sommer, Claudia T1 - Systematic review with meta-analysis: Cytokines in fibromyalgia syndrome N2 - Background: To perform a systematic review and meta-analysis on cytokine levels in patients with fibromyalgia syndrome (FMS). Methods: Through December 2010 we systematically reviewed the databases PubMed, MEDLINE, and PsycINFO and screened the reference lists of 22 review articles for suitable original articles. Original articles investigating cytokines in patients with FMS were included. Data were extracted by two independent authors. Differences of the cytokine levels of FMS patients and controls were summarized by standardized mean differences (SMD) using a random effects model. Study quality was assessed applying methodological scores: modified Center of Evidence Based Medicine, Newcastle-Ottawa-Scale, and Würzburg Methodological Quality Score. Results: Twenty-five articles were included investigating 1255 FMS patients and 800 healthy controls. Data of 13/25 studies entered meta-analysis. The overall methodological quality of studies was low. The results of the majority of studies were not comparable because methods, investigated material, and investigated target cytokines differed. Systematic review of the selected 25 articles revealed that FMS patients had higher serum levels of interleukin (IL)-1 receptor antagonist, IL-6, and IL-8, and higher plasma levels of IL-8. Meta-analysis of eligible studies showed that FMS patients had higher plasma IL-6 levels compared to controls (SMD = -0.34 [-0.64, -0.03] 95% CI; p = 0.03). The majority of investigated cytokines were not different between patients and controls. Conclusions: The pathophysiological role of cytokines in FMS is still unclear. Studies of higher quality and with higher numbers of subjects are needed. KW - Fibromyalgie Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-69189 ER - TY - THES A1 - Özkent, Helena T1 - Untersuchung der Beteiligung der kleinen Nervenfasern bei Patient/-innen mit Antikörper-assoziierten Neuropathien T1 - Investigation of the involvement of small nerve fibers in patients with antibody-associated neuropathies N2 - In der vorliegenden Studie wurden QST, QSART, Hautbiopsien und Fragebögen genutzt, um die Beteiligung kleiner Nervenfasern bei verschiedenen Formen der Immunneuropathien zu untersuchen. Wir konnten hierbei eine signifikante Beeinträchtigung der thermischen Reizleitung bei CIDP- und MADSAM-Patient/-innen nachweisen sowie eine signifikant reduzierte Schweißproduktion am distalen Unterschenkel bei MADSAM-Patient/-innen. Diese Ergebnisse belegen in allen drei Untergruppen der immunvermittelten Neuropathien eine Beteiligung kleiner auch unmyelinisierter Nervenfasertypen. MADSAM- und CIDP-Patient/-innen wiesen in der QST ein ähnliches Schädigungsmuster auf. Dagegen unterschieden sie sich signifikant in der QSART. Diese Ergebnisse können als weiterer Hinweis auf unterschiedliche zugrundeliegende Pathomechanismen verstanden werden. MMN-Patient/-innen wiesen insgesamt die geringste Small-Fiber-Beteiligung in den quantitativen Testungen auf. Auch lagen bei MMN-Patient/-innen durchschnittlich die geringsten Schmerz-Scores und autonomen Symptome vor. Es zeigten sich wenig signifikante Unterschiede zwischen seropositiven und seronegativen Neuropathie-Patient/-innen. Diese jedoch bestätigten unsere Hypothese einer etwas geringeren Small-Fiber-Beteiligung bei seropositiven Patient/-innen. Bei der Vielzahl an unterschiedlichen Pathomechanismen innerhalb der immunvermittelten Neuropathien erscheinen weitere Subklassifizierungen für eine optimale Diagnosestellung und Therapie unabdingbar. Diese Arbeit konnte mit den oben genannten Untersuchungen einen weiteren Beitrag zur Identifikation von klinischen und quantitativen Unterschieden innerhalb dieser großen Erkrankungsgruppe leisten. Künftige, größere Studien dieser Art können möglicherweise hier nur als Tendenzen gesehene Erkenntnisse belegen und sollten durch zusätzliche Informationen wie Korrelation zu Krankheitsdauer, Therapie, Laborchemie und elektrophysiologischen Untersuchen weitere interessante Erkenntnisse liefern. N2 - In the present study QST, QSART, skin biopsies and questionnaires were used to examine the involvement of small nerve fibers in different forms of immune-mediated neuropathies. Here, we demonstrated significant impairment of thermal conduction in CIDP and MADSAM patients and a significantly reduced sweat production at the distal lower leg in MADSAM patients. These results demonstrate an involvement of small unmyelinated nerve fibers in all three subgroups of immune-mediated neuropathies. MADSAM and CIDP patients showed a similar pattern of damage in QST. In contrast, they differed significantly in QSART. These results can be understood as further evidence of different underlying pathomechanisms. MMN patients had the lowest overall small-fiber involvement in our quantitative tests and suffered from less pain and autonomic symptoms compared to CIDP and MADSAM. There were few significant differences between seropositive and seronegative neuropathy patients. However, these confirmed our hypothesis of slightly lower small-fiber involvement in seropositive patients. Given the large number of different pathomechanisms within immune-mediated neuropathies, further subclassifications seem essential for optimal diagnosis and therapy. With these results this work could contribute further aspects to the identification of clinical and quantitative differences within immune-mediated neuropathies. Future larger studies of this type may be able to substantiate findings - seen here only as trends - and should provide further interesting insights through additional information such as correlation to disease duration, therapy, laboratory chemistry and electrophysiological studies. KW - Polyneuropathie KW - Nervenfaser KW - Neuropathie KW - Quantitativ Sensorische Testung KW - QSART KW - Hautbiopsie KW - small nerve fibers Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-269293 ER - TY - JOUR A1 - Özdağ Acarlı, Ayşe Nur A1 - Klein, Thomas A1 - Egenolf, Nadine A1 - Sommer, Claudia A1 - Üçeyler, Nurcan T1 - Subepidermal Schwann cell counts correlate with skin innervation - an exploratory study JF - Muscle & Nerve N2 - Introduction/Aims Schwann cell clusters have been described at the murine dermis-epidermis border. We quantified dermal Schwann cells in the skin of patients with small-fiber neuropathy (SFN) compared with healthy controls to correlate with the clinical phenotype. Methods Skin punch biopsies from the lower legs of 28 patients with SFN (11 men, 17 women; median age, 54 [range, 19-73] years) and 9 healthy controls (five men, four women, median age, 34 [range, 25-69] years) were immunoreacted for S100 calcium-binding protein B as a Schwann cell marker, protein-gene product 9.5 as a pan-neuronal marker, and CD207 as a Langerhans cell marker. Intraepidermal nerve fiber density (IENFD) and subepidermal Schwann cell counts were determined. Results Skin samples of patients with SFN showed lower IENFD (P < .05), fewer Schwann cells per millimeter (P < .01), and fewer Schwann cell clusters per millimeter (P < .05) than controls. When comparing SFN patients with reduced (n = 13; median age, 53 [range, 19-73] years) and normal distal (n = 15, median age, 54 [range, 43-68] years) IENFD, the number of solitary Schwann cells per millimeter (p < .01) and subepidermal nerve fibers associated with Schwann cell branches (P < .05) were lower in patients with reduced IENFD. All three parameters correlated positively with distal IENFD (P < .05 to P < .01), whereas no correlation was found between Schwann cell counts and clinical pain characteristics. Discussion Our data raise questions about the mechanisms underlying the interdependence of dermal Schwann cells and skin innervation in SFN. The temporal course and functional impact of Schwann cell presence and kinetics need further investigation. KW - intraepidermal nerve fiber density KW - small-fiber neuropathy KW - skin punch biopsy KW - Schwann cell KW - neuropathic pain KW - innervation Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-318726 VL - 65 IS - 4 SP - 471 EP - 479 ER - TY - THES A1 - Zimmermann [née Papp], Lena T1 - Platelets as modulators of blood-brain barrier disruption and inflammation in the pathophysiology of ischemic stroke T1 - Thrombozyten als Modulatoren der Blut-Hirn-Schrankenstörung und Inflammation in der Pathophysiologie des ischämischen Schlaganfalls N2 - Ischemia-reperfusion injury (I/R injury) is a common complication in ischemic stroke (IS) treatment, which is characterized by a paradoxical perpetuation of tissue damage despite the successful re-establishment of vascular perfusion. This phenomenon is known to be facilitated by the detrimental interplay of platelets and inflammatory cells at the vascular interface. However, the spatio-temporal and molecular mechanisms underlying these cellular interactions and their contribution to infarct progression are still incompletely understood. Therefore, this study intended to clarify the temporal mechanisms of infarct growth after cerebral vessel recanalization. The data presented here could show that infarct progression is driven by early blood-brain-barrier perturbation and is independent of secondary thrombus formation. Since previous studies unravelled the secretion of platelet granules as a molecular mechanism of how platelets contribute to I/R injury, special emphasis was placed on the role of platelet granule secretion in the process of barrier dysfunction. By combining an in vitro approach with a murine IS model, it could be shown that platelet α-granules exerted endothelial-damaging properties, whereas their absence (NBEAL2-deficiency) translated into improved microvascular integrity. Hence, targeting platelet α-granules might serve as a novel treatment option to reduce vascular integrity loss and diminish infarct growth despite recanalization. Recent evidence revealed that pathomechanisms underlying I/R injury are already instrumental during large vessel occlusion. This indicates that penumbral tissue loss under occlusion and I/R injury during reperfusion share an intertwined relationship. In accordance with this notion, human observational data disclosed the presence of a neutrophil dominated immune response and local platelet activation and secretion, by the detection of the main components of platelet α-granules, within the secluded vasculature of IS patients. These initial observations of immune cells and platelets could be further expanded within this thesis by flow cytometric analysis of local ischemic blood samples. Phenotyping of immune cells disclosed a yet unknown shift in the lymphocyte population towards CD4+ T cells and additionally corroborated the concept of an immediate intravascular immune response that is dominated by granulocytes. Furthermore, this thesis provides first-time evidence for the increased appearance of platelet-leukocyte-aggregates within the secluded human vasculature. Thus, interfering with immune cells and/or platelets already under occlusion might serve as a potential strategy to diminish infarct expansion and ameliorate clinical outcome after IS. N2 - Eine häufig auftretende Komplikation in der Behandlung des ischämischen Schlaganfalls ist der Ischämie/Reperfusion Schaden (I/R Schaden), welcher trotz der erfolgreichen Wiederherstellung der zerebralen Durchblutung durch ein paradoxes Fortschreiten des entstandenen Gewebeschadens charakterisiert ist. Dieses Phänomen wird durch das schädigende Zusammenspiel von Thrombozyten und inflammatorischen Zellen am vaskulären Endothel verursacht. Allerdings sind die räumlich-temporalen und molekularen Mechanismen dieser zellulären Interaktionen und deren Beteiligung am Infarktwachstum noch nicht vollständig verstanden. Daraus folgend, beabsichtigte diese Arbeit eben diese temporalen Mechanismen des fortschreitenden Infarktwachstums nach der zerebralen Gefäßwiedereröffnung aufzuklären. Die hier vorgestellten Daten implizieren, dass das anhaltende Fortschreiten des Gewebeschadens durch die Schädigung der Bluthirnschranke verursacht wird und somit unabhängig vom Auftreten sekundär gebildeter Thromben ist. In vorangegangenen Studien konnte die Freisetzung von thrombozytären Granula als molekularer Mechanismus, mit welchem Thrombozyten zum I/R Schaden beitragen, aufgedeckt werden. Basierend auf diesen Studien wurde in dieser Arbeit ein besonderes Augenmerk auf die Sekretion thrombozytärer Granula im Zusammenhang mit der Beeinträchtigung der endothelialen Barriere gelegt. Durch die Kombination eines in vitro Ansatzes mit einem murinen Model des ischämischen Schlaganfalls konnte gezeigt werden, dass α-Granula endothelialen Schaden verursachen, wohingegen deren Absenz (NBEAL2 Defizienz) zu einer verbesserten mikrovaskulären Integrität führte. Aufgrund dessen könnte das Adressieren der α-Granula als eine neuartige Therapieoption zum Erhalt der vaskulären Integrität und zur Verminderung des Infarktwachstums trotz Rekanalisation genutzt werden. Neuste Erkenntnisse enthüllten, dass die dem I/R Schaden zu Grunde liegenden Pathomechanismen bereits während des Verschlusses eines großen hirnversorgenden Gefäßes zu beobachten sind. Dies deutet darauf hin, dass der Verlust von penumbralem Gewebe unter Okklusion und I/R Schädigung während der Reperfusion im engen Zusammenhang stehen. Im Einklang hiermit konnten humane Daten eine Neutrophilen-dominierte Immunantwort und lokale Thrombozyten Aktivierung und deren Sekretion, anhand der Detektion der α-Granula Hauptkomponenten, im verschlossenen Gefäßsystem von ischämischen Schlaganfall Patienten nachweisen. Diese anfänglichen Beobachtungen konnten im Rahmen dieser Arbeit anhand durchflusszytometrischer Untersuchungen von lokal abgenommenen ischämischen Blutproben erweitert werden. Die Phänotypisierung von Immunzellen enthüllte eine bisher unbekannte Verschiebung der Lymphozyten Population hin zu CD4+ T-Zellen und bekräftigte zusätzlich das Konzept einer unmittelbaren intravaskulären Immunantwort, welche durch Granulozyten dominiert wird. Darüber hinaus konnte in dieser Thesis das erste Mal das erhöhte Auftreten von Thrombozyten-Leukozyten-Aggregaten in dem verschlossenen humanen Gefäßsystem nachgewiesen werden. Demzufolge könnte eine Beeinflussung von Immunzellen und/oder Thrombozyten bereits unter Okklusion als potentiell vielversprechende Strategie genutzt werden, um die Ausweitung des Infarktes einzuschränken und klinische Endpunkte nach einem ischämischen Schlaganfall zu verbessern. KW - Schlaganfall KW - Thrombozyt KW - Entzündung KW - Thrombo-inflammation KW - Ischemic stroke KW - Platelets KW - Inflamamtion KW - Immune cells KW - Vascular system Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-302850 ER - TY - THES A1 - Zeumer, Karolina T1 - Die Rolle dendritischer Zellen beim ischämischen Schlaganfall T1 - The role of dendritic cells in ischemic stroke N2 - Ziel dieser Studie war es, zu untersuchen, ob dendritische Zellen eine Rolle beim ischämischen Schlaganfall spielen. Zur Beantwortung dieser Fragestellung wurde ein Mausmodell gewählt, in dem es nach Administration von Diphterietoxin zur selektiven Depletion CD11c positiver Zellen kommt (C.FVB-Tg(Itgax-DTR/EGFP)57Lan/J). Hierbei wird der Diphterietoxinrezeptor unter dem CD11c Promotor (ITGAX) exprimiert. Aufgrund der Wiederherstellung dendritischer Zellen nach ca. 24 Stunden waren wiederholte Applikationen von Diphterietoxin notwendig. Die Zusammensetzung anderer Immunzellen wurde dabei im Wesentlichen nicht geändert. Für eine Schlaganfallinduktion wurde eine tMCAO (transient middle cerebral artery occlusion) durchgeführt. Hierbei wird durch Okklusion der A. cerebri media mittels Verschlussfilament für 30 oder 60 Minuten ein Schlaganfall im Mediastromgebiet induziert. Es wurden unterschiedliche Verschlusszeiten, Zeitpunkte und Depletionsraten untersucht. In keinem der Versuchsansätze kam es zu einer signifikanten Veränderung des Schlaganfallvolumens nach Depletion CD11c positiver Zellen. Mittels quantitativer real-time PCR wurde die Expression unterschiedlicher Zytokine nach tMCAO und CD11c-Depletion untersucht. An Tag 1 nach Schlaganfallinduktion und hoher Depletionsrate ergab sich eine Verminderung der Expression von IL-1β und IL-6, während an Tag 3 und niedriger Depletionsrate die Expression dieser Zytokine nach CD11c-Depletion zunahm. Grund hierfür könnte die Expression dieser Zytokine durch andere Zellen des Immunsystems, wie etwa neutrophile Granulozyten oder Mikroglia/Makrophagen sein, die möglicherweise einer regulatorischen Funktion durch die Interaktion von Dendritischen Zellen und regulatorischen T-Zellen unterliegen. Weitere experimentelle Ansätze sind notwendig, um diese Fragestellung beantworten zu können. TGF-β zeigte durchgehend in allen Versuchsanordnungen eine verminderte Expression nach der Depletion dendritischer Zellen. Es ist naheliegend, dass dieses neuroprotektiv-regulatorische Zytokin direkt einer Produktion durch dendritische Zellen oder von nachfolgend aktivierten T-Zellen unterliegt. In immunhistochemischen Studien konnte des Weiteren keine Änderung des Immigrationsverhaltens von CD11b+ Zellen ins Gehirn gesehen werden. Diese Studie unterliegt jedoch einigen Limitationen. So stellte sich im Laufe der Experimente heraus, dass die wiederholte Applikation von Diphterietoxin zu einer erhöhten Mortalität der Versuchstiere führte. Nach Fertigstellung der Experimente erschien hierzu eine Publikation, welche die wiederholte Administration von DTX und die Entwicklung einer Myokarditis im gewählten Mausmodell in Zusammenhang brachte. N2 - The aim of this study was to investigate whether dendritic cells play a role in ischemic stroke. To address the subject we chose a mouse model in which administration of diphteria toxin induces selective depletion of CD11c positive cells (C.FVB-Tg(Itgax-DTR/EGFP)57Lan/J). In these the diphteria toxin receptor is expressed under the CD11c promotor (ITGAX). Due to reconstitution of dendric cells after 24 hours repeated application of diptheria toxin was necessary. In general, the composition of other immune cells was not affected. To induce ischemic stroke, we performed tMCAO (transient middle cerebral artery occlusion). Here ischemic stroke in the perfusion area of the middle cerebral artery is induced by occlusion of the middle cerebral artery via insertion of a blocking filament for 30 or 60 minutes. Different times of blocking, points in time and depletion rates were examined. None of our experimental setups showed significant changes in stroke volumetry after depletion of CD11c positive cells. By means of quantitative real-time PCR we assessed the expression of different cytokines after tMCAO and CD11c depletion. On day 1 after stroke induction and high depletion rate we found a reduction in IL-1β and IL-6 expression, whereas on day 3 and low depletion rate there was an increase of the expression of these two cytokines. This might be due to expression of these cytokines by other cell types of the immune system like neutrophils or microglia/macrophages which may underly regulatory functions due to interaction with dendritic cells and regulatory T cells. Further experiments will be necessary to address these issues thoroughly. In all our experiments TGF-β expression was reduced after depletion of dendritic cells. It appears likely that this neuroprotective-regulatory cytokine is regulated by the production of dendric cells or activated T cells. In immune-histochemical studies there was no change in the migration of CD11b+ cells into the brain. There are some limitations to this study. During our experiments there was evidence that repeated application of diphteria toxin increases mortality in our test animals. After completion of our studies, it was published that repeated administration of DTX favours the development of myocarditis in the chosen mouse model. KW - Schlaganfall KW - Neuroimmunologie KW - Dendritische Zelle Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-302580 ER - TY - JOUR A1 - Zeller, Daniel A1 - Heidemeier, Anke A1 - Grigoleit, Götz Ulrich A1 - Müllges, Wolfgang T1 - Case report: subacute tetraplegia in an immunocompromised patient JF - BMC Neurology N2 - Background: Clinical reasoning in Neurology is based on general associations which help to deduce the site of the lesion. However, even “golden principles” may occasionally be deceptive. Here, we describe the case of subacute flaccid tetraparesis due to motor cortical lesions. To our knowledge, this is the first report to include an impressive illustration of nearly symmetric motor cortical involvement of encephalitis on brain MRI. Case presentation: A 51 year old immunocompromized man developed a high-grade pure motor flaccid tetraparesis over few days. Based on clinical presentation, critical illness polyneuromyopathy was suspected. However, brain MRI revealed symmetrical hyperintensities strictly limited to the subcortical precentral gyrus. An encephalitis, possibly due to CMV infection, turned out to be the most likely cause. Conclusion: While recognition of basic clinical patterns is indispensable in neurological reasoning, awareness of central conditions mimicking peripheral nervous disease may be crucial to detect unsuspected, potentially treatable conditions. KW - tetraparesis KW - motor cortex KW - CMV KW - encephalitis KW - case report Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-157576 VL - 17 IS - 31 ER - TY - JOUR A1 - Zeller, Daniel A1 - Dang, Su-Yin A1 - Weise, David A1 - Rieckmann, Peter A1 - Toyka, Klaus V. A1 - Classen, Joseph T1 - Excitability decreasing central motor plasticity is retained in multiple sclerosis patients N2 - Background: Compensation of brain injury in multiple sclerosis (MS) may in part work through mechanisms involving neuronal plasticity on local and interregional scales. Mechanisms limiting excessive neuronal activity may have special significance for retention and (re-)acquisition of lost motor skills in brain injury. However, previous neurophysiological studies of plasticity in MS have investigated only excitability enhancing plasticity and results from neuroimaging are ambiguous. Thus, the aim of this study was to probe long-term depression-like central motor plasticity utilizing continuous theta-burst stimulation (cTBS), a non-invasive brain stimulation protocol. Because cTBS also may trigger behavioral effects through local interference with neuronal circuits, this approach also permitted investigating the functional role of the primary motor cortex (M1) in force control in patients with MS. Methods: We used cTBS and force recordings to examine long-term depression-like central motor plasticity and behavioral consequences of a M1 lesion in 14 patients with stable mild-to-moderate MS (median EDSS 1.5, range 0 to 3.5) and 14 age-matched healthy controls. cTBS consisted of bursts (50 Hz) of three subthreshold biphasic magnetic stimuli repeated at 5 Hz for 40 s over the hand area of the left M1. Corticospinal excitability was probed via motor-evoked potentials (MEP) in the abductor pollicis brevis muscle over M1 before and after cTBS. Force production performance was assessed in an isometric right thumb abduction task by recording the number of hits into a predefined force window. Results: cTBS reduced MEP amplitudes in the contralateral abductor pollicis brevis muscle to a comparable extent in control subjects (69 ± 22% of baseline amplitude, p < 0.001) and in MS patients (69 ± 18%, p < 0.001). In contrast, postcTBS force production performance was only impaired in controls (2.2 ± 2.8, p = 0.011), but not in MS patients (2.0 ± 4.4, p = 0.108). The decline in force production performance following cTBS correlated with corticomuscular latencies (CML) in MS patients, but did not correlate with MEP amplitude reduction in patients or controls. Conclusions: Long-term depression-like plasticity remains largely intact in mild-to-moderate MS. Increasing brain injury may render the neuronal networks less responsive toward lesion-induction by cTBS. KW - Medizin KW - Multiple sclerosis KW - LTD KW - Motor plasticity KW - TMS KW - Motor cortex Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-76333 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 - 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 -