TY - THES A1 - Karl, Franziska T1 - The role of miR-21 in the pathophysiology of neuropathic pain using the model of B7-H1 knockout mice T1 - Die Rolle von miR-21 in der Pathophysiologie von neuropathischem Schmerz am Model der B7-H1 defizienten Maus N2 - The impact of microRNA (miRNA) as key players in the regulation of immune and neuronal gene expression and their role as master switches in the pathophysiology of neuropathic pain is increasingly recognized. miR-21 is a promising candidate that could be linked to the immune and the nociceptive system. To further investigate the pathophysiological role of miR-21 in neuropathic pain, we assesed mice deficient of B7 homolog 1 (B7-H1 ko), a protein with suppressive effect on inflammatory responses. B7-H1 ko mice and wildtype littermates (WT) of three different age-groups, young (8 weeks), middle-aged (6 months), and old (12 months) received a spared nerve injury (SNI). Thermal withdrawal latencies and mechanical withdrawal thresholds were determined. Further, we investigated anxiety-, depression-like and cognitive behavior. Quantitative real time PCR was used to determine miR-21 relative expression in peripheral nerves, dorsal root ganglia and white blood cells (WBC) at distinct time points after SNI. Naïve B7-H1 ko mice showed mechanical hyposensitivity with increasing age. Young and middle-aged B7-H1 ko mice displayed lower mechanical withdrawal thresholds compared to WT mice. From day three after SNI both genotypes developed mechanical and heat hypersensitivity, without intergroup differences. As supported by the results of three behavioral tests, no relevant differences were found for anxiety-like behavior after SNI in B7-H1 ko and WT mice. Also, there was no indication of depression-like behavior after SNI or any effect of SNI on cognition in both genotypes. The injured nerves of B7-H1 ko and WT mice showed higher miR-21 expression and invasion of macrophages and T cells 7 days after SNI without intergroup differences. Perineurial miR-21 inhibitor injection reversed SNI-induced mechanical and heat hypersensitivity in old B7-H1 ko and WT mice. This study reveals that reduced mechanical thresholds and heat withdrawal latencies are associated with miR-21 induction in the tibial and common peroneal nerve after SNI, which can be reversed by perineurial injection of a miR-21 inhibitor. Contrary to expectations, miR-21 expression levels were not higher in B7-H1 ko compared to WT mice. Thus, the B7-H1 ko mouse may be of minor importance for the study of miR-21 related pain. However, these results spot the contribution of miR-21 in the pathophysiology of neuropathic pain and emphasize the crucial role of miRNA in the regulation of neuronal and immune circuits that contribute to neuropathic pain. N2 - Die Beteiligung von microRNA (miRNA) an der Genregulation immunologischer und neuronaler Prozesse und deren Rolle als Schlüsselelement in der Pathophysiologie von neuropathischem Schmerz gewinnt zunehmend an Bedeutung. miR-21 ist ein vielversprechender Kandidat, der sowohl das Immunsystem, als auch das nozizeptive System beeinflusst. Um die pathophysiologische Rolle von miR-21 bei neuropathischem Schmerz besser zu verstehen wurden Mäuse mit B7 homolog 1 Defizienz (B7-H1 ko), einem immunsupprimierendem Protein, untersucht. Eine frühere Studie zeigte eine Hochregulierung von miR-21 in murinen Lymphozyten. Junge (8 Wochen), mittelalte (6 Monate) und alte (12 Monate) B7-H1 ko Mäuse und Wildtypwurfgeschwister (WT) erhielten eine spared nerve injury (SNI) als neuropathischem Schmerzmodell. Es wurden thermische Rückzugslatenzen und mechanische Rückzugsschwellen bestimmt. Des weiteren wurde sowohl das Angstverhalten, das depressive Verhalten, als auch das kognitive Verhalten untersucht. Um die relative Expression von miR-21 in den peripheren Nerven, den Spinalganglien und in den weißen Blutzellen zu verschiedenen Zeitpunkten zu bestimmen, wurde die quantitative real time PCR angewandt. Naive B7-H1 ko Mäuse zeigten mit zunehmendem Alter eine mechanische Hyposensitivität. Bereits 3 Tage nach SNI entwickelten beide Genotypen eine Überempfindlichkeit gegenüber Hitze und mechanischer Stimulation. In drei durchgeführten Verhaltenstests konnten keine relevanten Unterschiede im Angstverhalten nach SNI von B7-H1 ko und WT Mäusen festgestellt werden. Bei beiden Genotypen gab es weder Hinweise auf depressives Verhalten nach SNI, noch wurde das kognitive Verhalten durch SNI beeinträchtigt. Die verletzen Nerven der B7-H1 ko und WT Mäuse zeigten 7 Tage nach SNI eine höhere miR-21 Expression und eine Invasion durch Makrophagen und T-Zellen ohne Gruppenunterschiede. Die perineurale Injektion eines miR-21 Inhibitors konnte die durch SNI induzierte mechanische und thermische Hypersensitivität lindern. Diese Studie zeigt, dass der Anstieg von miR-21 im N. tibialis und N. peroneus communis mit reduzierten Rückzugsschwellen gegen mechanische Reize und verkürzten Wegzugslatenzen bei Hitzestimulation einhergeht, welche durch perineurale Injektion eines miR-21 Inhibitors verringert werden können. Entgegen der Erwartungen zeigten B7-H1 ko Mäuse im Vergleich zu WT Mäusen keine erhöhte miR-21 Expression und sind daher möglicherweise von geringer Bedeutung für die Untersuchung von miR-21 assoziiertem Schmerz. Jedoch bekräftigen diese Ergebnisse eine Beteiligung von miR-21 an der Pathophysiologie von neuropathischem Schmerz und bestätigen die wichtige Rolle von miRNA bei der Regulation von neuronalen und immunologischen Prozessen, die zu neuropathischem Schmerz beitragen. KW - neuropathic pain KW - inflammation KW - B7-H1 KW - immune system KW - neuropathic pain KW - miRNA KW - miR-21 Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-156004 ER - TY - THES A1 - Schwab, Nicholas T1 - The importance of CD8\(^+\) T cells and antigen-presenting cells in the immune reaction of primary inflammatory versus degenerative diseases T1 - Die Bedeutung CD8\(^+\) T-Zellen und Antigen-präsentierender Zellen in der Immunreaktion primär inflammatorischer gegenüber degenerativen Erkrankungen N2 - The bidirectional influence of parenchymal cells and cells of the immune system, especially of antigen-presenting and CD8\(^+\) T cells, in situations of putative auto- immune pathogenicity and degeneration was the main topic of this thesis. In the first part, the influence of human muscle cells on antigen-presenting cells was investigated. In inflammatory myopathies prominent infiltrates of immune cells containing T cells and antigen-presenting cells like macrophages and dendritic cells are present. The hypothesis was that human myoblasts have an inhibiting influence on these antigen-presenting cells under homeostatic conditions. A dysfunction or impairment under inflammatory circumstances might contribute to the development of myopathic conditions. The surface analysis of dendritic cells cocultured with myoblasts showed that immature dendritic cells could be driven into a reversible semi- mature state with significantly elevated levels of CD80. These dendritic cells were additionally characterized by their inhibiting function on T-cell proliferation. It was also shown that the lysates of healthy myoblasts could strongly enhance the phagocytic ability of macrophages, which could help with muscle regeneration and which might be disturbed in myositis patients. The second part of this thesis was about the clonal specificity of CD8\(^+\) T cells in a mouse model with genetically induced over-expression of PLP in oligodendrocytes. Here, we could show that the cytotoxic T lymphocytes, which had previously been shown to be pathogenic, were clonally expanded in the CNS of the transgenic mice. The amino acid sequences of the corresponding receptor chains were not identical, yet showed some similarities, which could mean that these clones recognize similar antigens (or epitopes of the same antigen). The knockout of PD-1 in this setting allowed for an analysis of the importance of tissue immune regulation. It became evident that the absence of PD-1 induced a larger number of clonal expansions in the CNS, hinting towards a reduced threshold for clonal disturbance and activation in these T cells. The expansions were, however, not pathogenic by themselves. Only in the presence of tissue damage and an antigenic stimulus (in our case the overexpression of PLP), the PD-1 limitation exacerbated the immune pathogenicity. Therefore, only in the presence of a “tissue damage signal”, the dyshomeostasis of T cells lacking PD-1 achieved high pathogenetic relevance. Finally, we investigated the pathogenetic role of CD8 T cells in Rasmussen encephalitis, a rare and chronic neurological disease mainly affecting children. The analysis of the T-cell receptor repertoire in Rasmussen encephalitis patients in the peripheral CD4\(^+\) and CD8\(^+\) T-cell compartments as well as the brain revealed the involvement of T cells in the pathogenicity of this disease. Many clonal expansions in the brain matched CD8\(^+\) T-cell expansions in the periphery on the sequence level. These putatively pathogenic clones could be visualized by immunohistochemistry in the brain and were found in close proximity to astrocytes and neurons. Additionally, the expanded clones could be found in the periphery of patients for at least one year. N2 - Der Einfluss von Parenchymzellen auf Immunzellen und umgekehrt, im Besonderen von Antigen-präsentierenden Zellen und CD8\(^+\) T-Zellen, im Zusammenhang von auto- immuner Pathogenese und Degeneration war das Hauptthema dieser Dissertation. Im ersten Teil wurde der Einfluss menschlicher Muskelzellen auf Antigen- präsentierende Zellen untersucht. In entzündlichen Myopathien kommt es zu massiven Infiltraten von Immunzellen, die T-Zellen und auch Antigen-präsentierende Zellen wie Makrophagen und dendritische Zellen enthalten. Die Hypothese war, dass menschliche Myoblasten einen hemmenden Einfluss auf die Antigen-präsentierenden Zellen unter homöostatischen Bedingungen haben. Eine Störung dieses Einflusses oder eine Beeinträchtigung unter entzündlichen Rahmenbedingungen könnte eventuell zur Entwicklung eines myopathischen Zustands beitragen. In der Oberflächenanalyse der dendritischen Zellen, die mit Myoblasten kultiviert wurden, zeigte sich, dass unreife dendritische Zellen in einen halb-reifen Zustand versetzt werden konnten, der sich beispielsweise durch stark erhöhte CD80 Expression kennzeichnet. Diese dendritischen Zellen wurden weiterhin charakterisiert über ihre hemmende Funktion auf die T-Zell Proliferation. Außerdem wurde gezeigt, dass Zelllysate gesunder Myoblasten die Phagozytoserate von Makrophagen enorm verstärken, was die Regeneration des Muskelgewebes erhöhen und möglicherweise in Myositispatienten gestört sein könnte. Im zweiten Teil der Dissertation ging es um die klonale Spezifität von CD8\(^+\) T-Zellen in einem Mausmodell mit genetisch induzierter Überexpression von PLP in Oligodendrozyten. Hier konnte gezeigt werden, dass die zytotoxischen T-Zellen, deren Pathogenität Gegenstand früherer Arbeiten war, im ZNS der transgenen Mäuse klonal expandiert waren. Die Aminosäuresequenzen der TCRβ Kette der expandierten Klone waren nicht identisch, zeigten jedoch einige Ähnlichkeiten, die darauf hinweisen könnten, dass diese Klone ähnliche Antigene (oder Epitope des gleichen Antigens) erkennen. Die genetisch induzierte Abwesenheit von PD-1 ermöglichte es, in diesem Zusammenhang den Einfluss von spezifischer Immunregulation im Gewebe zu untersuchen. Es zeigte sich, dass die Deletion von PD-1 eine erhöhte Anzahl von klonalen Expansionen im ZNS der Mäuse erzeugte, was auf eine herabgesetzte Schwelle für klonale Störungen und Aktivierung schließen lässt. Diese Expansionen 
 waren jedoch für sich genommen nicht pathogen. Nur in der Anwesenheit eines Gewebeschadens und eines zusätzlicher Antigenstimulus (in unserem Fall in Form der PLP Überexpression) konnte man die erhöhte Pathogenität durch die PD-1 Deletion erkennen. Deswegen erreichten die PD-1 deletierten T-Zellen nur in der Gegenwart eines „Gewebeschaden-Signals“ hohe pathogenetische Relevanz. Schließlich untersuchten wir die pathogenetische Rolle von CD8\(^+\) T-Zellen in der Rasmussen Enzephalitis, einer seltenen, chronischen Erkrankung des Gehirns, die hauptsächlich in Kindern vorkommt. Die Analyse des T-Zell-Rezeptor Repertoires in Rasmussen Enzephalitis Patienten in peripheren CD4\(^+\) und CD8\(^+\) T-Zell Populationen und im Gehirn zeigte die Beteiligung von T-Zellen in der Pathogenese dieser Krankheit auf. Viele klonale Expansionen waren zwischen Gehirn und der peripheren CD8\(^+\) Population bis hin zur Aminosäuresequenz identisch. Diese vermutlich pathogenen Klone konnten in Gehirnbiopsien von Rasmussenpatienten histochemisch nachgewiesen werden und wurden in enger Nachbarschaft zu Astrozyten und Neuronen gefunden. Zusätzlich konnten diese expandierten Kone in der Peripherie von Patienten für die beobachteten Zeiträume (mindestens ein Jahr) nachgewiesen werden. KW - T-Lymphozyt KW - Entzündung KW - Degeneration KW - Immunsystem KW - Rasmussen-Syndrom KW - T lymphocyte KW - inflammation KW - degeneration KW - immune system KW - rasmussen encephalitis Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-37330 ER - TY - JOUR A1 - Höhne, Christin A1 - Prokopov, Dmitry A1 - Kuhl, Heiner A1 - Du, Kang A1 - Klopp, Christophe A1 - Wuertz, Sven A1 - Trifonov, Vladimir A1 - Stöck, Matthias T1 - The immune system of sturgeons and paddlefish (Acipenseriformes): a review with new data from a chromosome‐scale sturgeon genome JF - Reviews in Aquaculture N2 - Sturgeon immunity is relevant for basic evolutionary and applied research, including caviar‐ and meat‐producing aquaculture, protection of wild sturgeons and their re‐introduction through conservation aquaculture. Starting from a comprehensive overview of immune organs, we discuss pathways of innate and adaptive immune systems in a vertebrate phylogenetic and genomic context. The thymus as a key organ of adaptive immunity in sturgeons requires future molecular studies. Likewise, data on immune functions of sturgeon‐specific pericardial and meningeal tissues are largely missing. Integrating immunological and endocrine functions, the sturgeon head kidney resembles that of teleosts. Recently identified pattern recognition receptors in sturgeon require research on downstream regulation. We review first acipenseriform data on Toll‐like receptors (TLRs), type I transmembrane glycoproteins expressed in membranes and endosomes, initiating inflammation and host defence by molecular pattern‐induced activation. Retinoic acid‐inducible gene‐I‐like (RIG‐like) receptors of sturgeons present RNA and key sensors of virus infections in most cell types. Sturgeons and teleosts share major components of the adaptive immune system, including B cells, immunoglobulins, major histocompatibility complex and the adaptive cellular response by T cells. The ontogeny of the sturgeon innate and onset of adaptive immune genes in different organs remain understudied. In a genomics perspective, our new data on 100 key immune genes exemplify a multitude of evolutionary trajectories after the sturgeon‐specific genome duplication, where some single‐copy genes contrast with many duplications, allowing tissue specialization, sub‐functionalization or both. Our preliminary conclusion should be tested by future evolutionary bioinformatics, involving all >1000 immunity genes. This knowledge update about the acipenseriform immune system identifies several important research gaps and presents a basis for future applications. KW - evolution KW - genomics KW - immune genes KW - immune organs KW - immune system KW - sturgeon Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-239865 VL - 13 IS - 3 SP - 1709 EP - 1729 ER - TY - JOUR A1 - Gupta, Shishir K. A1 - Kupper, Maria A1 - Ratzka, Carolin A1 - Feldhaar, Heike A1 - Vilcinskas, Andreas A1 - Gross, Roy A1 - Dandekar, Thomas A1 - Förster, Frank T1 - Scrutinizing the immune defence inventory of Camponotus floridanus applying total transcriptome sequencing JF - BMC Genomics N2 - Background Defence mechanisms of organisms are shaped by their lifestyle, environment and pathogen pressure. Carpenter ants are social insects which live in huge colonies comprising genetically closely related individuals in high densities within nests. This lifestyle potentially facilitates the rapid spread of pathogens between individuals. In concert with their innate immune system, social insects may apply external immune defences to manipulate the microbial community among individuals and within nests. Additionally, carpenter ants carry a mutualistic intracellular and obligate endosymbiotic bacterium, possibly maintained and regulated by the innate immune system. Thus, different selective forces could shape internal immune defences of Camponotus floridanus. Results The immune gene repertoire of C. floridanus was investigated by re-evaluating its genome sequence combined with a full transcriptome analysis of immune challenged and control animals using Illumina sequencing. The genome was re-annotated by mapping transcriptome reads and masking repeats. A total of 978 protein sequences were characterised further by annotating functional domains, leading to a change in their original annotation regarding function and domain composition in about 8 % of all proteins. Based on homology analysis with key components of major immune pathways of insects, the C. floridanus immune-related genes were compared to those of Drosophila melanogaster, Apis mellifera, and other hymenoptera. This analysis revealed that overall the immune system of carpenter ants comprises many components found in these insects. In addition, several C. floridanus specific genes of yet unknown functions but which are strongly induced after immune challenge were discovered. In contrast to solitary insects like Drosophila or the hymenopteran Nasonia vitripennis, the number of genes encoding pattern recognition receptors specific for bacterial peptidoglycan (PGN) and a variety of known antimicrobial peptide (AMP) genes is lower in C. floridanus. The comparative analysis of gene expression post immune-challenge in different developmental stages of C. floridanus suggests a stronger induction of immune gene expression in larvae in comparison to adults. Conclusions The comparison of the immune system of C. floridanus with that of other insects revealed the presence of a broad immune repertoire. However, the relatively low number of PGN recognition proteins and AMPs, the identification of Camponotus specific putative immune genes, and stage specific differences in immune gene regulation reflects Camponotus specific evolution including adaptations to its lifestyle. KW - immune system KW - transcriptome KW - carpenter ant KW - camponotus floridanus KW - re-annotation Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-125279 VL - 16 IS - 540 ER - TY - JOUR A1 - Karl, Franziska A1 - Grießhammer, Anne A1 - Üçeyler, Nurcan A1 - Sommer, Claudia T1 - Differential Impact of miR-21 on Pain and Associated Affective and Cognitive Behavior after Spared Nerve Injury in B7-H1 ko Mouse JF - Frontiers in Molecular Neuroscience N2 - MicroRNAs (miRNAs) are increasingly recognized as regulators of immune and neuronal gene expression and are potential master switches in neuropathic pain pathophysiology. miR-21 is a promising candidate that may link the immune and the pain system. To investigate the pathophysiological role of miR-21 in neuropathic pain, we assessed mice deficient of B7 homolog 1 (B7-H1), a major inhibitor of inflammatory responses. In previous studies, an upregulation of miR-21 had been shown in mouse lymphocytes. Young (8 weeks), middle-aged (6 months), and old (12 months) B7-H1 ko mice and wildtype littermates (WT) received a spared nerve injury (SNI). We assessed thermal withdrawal latencies and mechanical withdrawal thresholds. Further, we performed tests for anxiety-like and cognitive behavior. Quantitative real time PCR was used to determine miR-21 relative expression in peripheral nerves, and dorsal root ganglia (DRG) at distinct time points after SNI. We found mechanical hyposensitivity with increasing age of naïve B7-H1 ko mice. Young and middle-aged B7-H1 ko mice were more sensitive to mechanical stimuli compared to WT mice (young: p < 0.01, middle-aged: p < 0.05). Both genotypes developed mechanical and heat hypersensitivity (p < 0.05) after SNI, without intergroup differences. No relevant differences were found after SNI in three tests for anxiety like behavior in B7-H1 ko and WT mice. Also, SNI had no effect on cognition. B7-H1 ko and WT mice showed a higher miR-21 expression (p < 0.05) and invasion of macrophages and T cells in the injured nerve 7 days after SNI without intergroup differences. Our study reveals that increased miR-21 expression in peripheral nerves after SNI is associated with reduced mechanical and heat withdrawal thresholds. These results point to a role of miR-21 in the pathophysiology of neuropathic pain, while affective behavior and cognition seem to be spared. Contrary to expectations, B7-H1 ko mice did not show higher miR-21 expression than WT mice, thus, a B7-H1 knockout may be of limited relevance for the study of miR-21 related pain. KW - B7-H1 KW - PD-L1 KW - immune system KW - neuropathic pain KW - SNI KW - miRNA KW - miR-21 Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-170722 VL - 10 IS - 219 ER - TY - JOUR A1 - Kader, Hidaya A. A1 - Azeem, Muhammad A1 - Jwayed, Suhib A. A1 - Al-Shehhi, Aaesha A1 - Tabassum, Attia A1 - Ayoub, Mohammed Akli A1 - Hetta, Helal F. A1 - Waheed, Yasir A1 - Iratni, Rabah A1 - Al-Dhaheri, Ahmed A1 - Muhammad, Khalid T1 - Current insights into immunology and novel therapeutics of atopic dermatitis JF - Cells N2 - Atopic dermatitis (AD) is one of the most prevalent inflammatory disease among non-fatal skin diseases, affecting up to one fifth of the population in developed countries. AD is characterized by recurrent pruritic and localized eczema with seasonal fluctuations. AD initializes the phenomenon of atopic march, during which infant AD patients are predisposed to progressive secondary allergies such as allergic rhinitis, asthma, and food allergies. The pathophysiology of AD is complex; onset of the disease is caused by several factors, including strong genetic predisposition, disrupted epidermal barrier, and immune dysregulation. AD was initially characterized by defects in the innate immune system and a vigorous skewed adaptive Th2 response to environmental agents; there are compelling evidences that the disorder involves multiple immune pathways. Symptomatic palliative treatment is the only strategy to manage the disease and restore skin integrity. Researchers are trying to more precisely define the contribution of different AD genotypes and elucidate the role of various immune axes. In this review, we have summarized the current knowledge about the roles of innate and adaptive immune responsive cells in AD. In addition, current and novel treatment strategies for the management of AD are comprehensively described, including some ongoing clinical trials and promising therapeutic agents. This information will provide an asset towards identifying personalized targets for better therapeutic outcomes. KW - atopic dermatitis KW - immune system KW - T cells KW - B cells KW - keratinocytes Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-241008 SN - 2073-4409 VL - 10 IS - 6 ER -