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T.R.A.N.S.I.T. Electrical Stimulation to Improve Muscle Quality In Older Individuals: A Case SeriesLeach, Eric Thomas 12 May 2016 (has links)
No description available.
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Estudo clínico, histológico e molecular da miopatia centronuclear / A clinical, histological and molecular study of centronuclear myopathyAbath Neto, Osório Lopes 02 October 2014 (has links)
Introdução: A miopatia centronuclear é uma doença muscular congênita com apresentação clínica heterogênea, caracterizada histologicamente pela proeminência de fibras musculares com núcleos centralizados. Três formas são reconhecidas: neonatal grave, com herança ligada ao X e envolvimento do gene MTM1; autossômica dominante, com início geralmente tardio e curso mais leve, associada a mutações no gene DNM2; e autossômica recessiva, com gravidade intermediária entre as outras formas e envolvimento dos genes BIN1, RYR1 ou TTN. Apesar da identificação dos principais genes responsáveis pela doença, os métodos usuais de diagnóstico genético não encontram mutações em cerca da metade dos casos. Objetivo: O objetivo deste estudo foi a caracterização clínica, histológica e molecular de pacientes brasileiros portadores de miopatia centronuclear. Métodos: Laudos de dois bancos de biópsia muscular foram usados para identificar pacientes com diagnóstico de miopatia centronuclear nos últimos dez anos. As lâminas das biópsias foram revisadas e analisadas, e as famílias correspondentes convocadas para aplicação de protocolo clínico e coleta de sangue periférico para extração de DNA genômico. As famílias foram estudadas para os genes conhecidos por sequenciamento Sanger, MLPA, painel de genes implicados em doenças neuromusculares ou sequenciamento de exoma. Resultados: Foram convocados 24 pacientes provenientes de 21 famílias, em 16 das quais foi possível estabelecer o diagnóstico molecular. As 7 famílias com a forma neonatal grave constituíam um grupo homogêneo clínica e histologicamente, e mutações novas e conhecidas foram encontradas no gene MTM1 em 6 destas. Dois meninos deste grupo, com evolução estável, tiveram óbito súbito por choque hipovolêmico subsequente a rompimento de cisto hepático. O gene MTM1 também foi implicado em uma menina portadora manifestante, com quadro mais leve, na forma de uma macrodeleção em heterozigose, detectada por MPLA. Duas famílias em cuja histologia foram encontradas fibras com aspecto em \"roda de carroça\" apresentaram mutações no gene DNM2, uma das quais, p.Phe372Cys, nunca havia sido descrita. Em 7 famílias, o gene RYR1 foi o responsável, em todas sob a forma de heterozigose composta, com 14 mutações, das quais 13 novas, encontradas ao longo de todo o gene. Este grupo, apesar de heterogêneo clinicamente, apresentou em comum a presença de falhas focais na atividade oxidativa das fibras musculares na maioria dos indivíduos. O gene TTN está provavelmente implicado em uma família com um único afetado, no qual o sequenciamento de exoma mostrou mutação nula em heterozigose composta. Nesta coorte de pacientes brasileiros, não houve famílias com alterações no gene BIN1, e três famílias seguem sem diagnóstico molecular, com prováveis novos genes implicados. Conclusões: Os achados clínicos e histológicos de pacientes brasileiros com miopatia centronuclear seguem os padrões descritos na literatura, e em conjunto podem direcionar o estudo molecular adequado. Nesta coorte de pacientes, o gene RYR1, estudado por sequenciamento de alto débito de exoma, foi o mais frequentemente acometido, sugerindo que sua implicação na miopatia centronuclear vem sendo subestimada. Novas mutações encontradas nos genes MTM1, DNM2 e RYR1 contribuíram para confirmar regiões de patogenicidade e ampliar o espectro de alterações nestes genes / Introduction: Centronuclear myopathy is a heterogeneous congenital muscle disease, characterized by the prominence of centralized nuclei in muscle fibers. Three disease forms are recognized: a severe neonatal, X-linked form caused by mutations in the MTM1 gene; an autosomal dominant, late-onset milder form, associated to the DNM2 gene; and an autosomal recessive form, with intermediate severity, so far with the BIN1, RYR1 or TTN genes implicated. In spite of the identification of these genes, usual molecular diagnostic methods don\'t yield a molecular diagnosis in about half of cases. Objetives: The aim of this work was to study clinical, histological, and molecular aspects of centronuclear myopathy Brazilian patients. Methods: Reports taken from two muscle biopsy banks were used to identify centronuclear myopathy patients in the last ten years. Biopsy slides were reviewed and analyzed, and corresponding families recruited to apply a clinical protocol and to draw peripheral blood to extract genomic DNA. Families were studied for known genes via Sanger sequencing, MLPA, panel of genes implicated in neuromuscular diseases, or exome sequencing. Results: Twentyfour patients out of 21 families were recruited, and in 16 families molecular diagnosis was established. The 7 families with the severe neonatal form amounted to a clinically and histologically homogeneous group, and mutations, both known and novel, were found in the MTM1 gene in 6 of these. Two boys of this group, with a stable course, died suddenly of hypovolemic shock due to a hepatic cyst rupture. The MTM1 gene was also implicated in the case of a mild manifesting carrier girl with a heterozygous macrodeletion detected via MLPA. Two families whose histology contained fibers with a \"spoke of wheels\" aspect had mutations in the DNM2 gene, one of which, p.Phe372Cys, had never been described. In 7 families, the RYR1 gene was the culprit, in all of them in a compound heterozygous state, with 14 mutations, 13 of which novel, found throughout the length of the gene. This group, despite clinically heterogeneous, had in common the presence of focal disruptions in the oxidative activity of muscle fibers in the majority of individuals. The TTN gene is probably implicated in a family with a single affected, whose exome sequencing showed compound heterozygous null mutations. In this cohort of Brazilian patients, no family was found to have alterations in the BIN1 gene, and three families remain without molecular diagnosis, with probable new implicated genes. Conclusions: Clinical and histological findings of Brazilian patients with centronuclear myopathy follow patterns already described in the literature, and taken as a whole can direct the adequate molecular study. In this patient cohort, the RYR1 gene, sequenced though hight-throughput techniques, was the most frequently involved, suggesting that its implication in centronuclear myopathy is underestimated. Novel mutations found in the MTM1, DNM2 and RYR1 genes contributed to confirm pathogenic regions and expand the spectrum of alterations in these genes
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Estudo clínico, histológico e molecular da miopatia centronuclear / A clinical, histological and molecular study of centronuclear myopathyOsório Lopes Abath Neto 02 October 2014 (has links)
Introdução: A miopatia centronuclear é uma doença muscular congênita com apresentação clínica heterogênea, caracterizada histologicamente pela proeminência de fibras musculares com núcleos centralizados. Três formas são reconhecidas: neonatal grave, com herança ligada ao X e envolvimento do gene MTM1; autossômica dominante, com início geralmente tardio e curso mais leve, associada a mutações no gene DNM2; e autossômica recessiva, com gravidade intermediária entre as outras formas e envolvimento dos genes BIN1, RYR1 ou TTN. Apesar da identificação dos principais genes responsáveis pela doença, os métodos usuais de diagnóstico genético não encontram mutações em cerca da metade dos casos. Objetivo: O objetivo deste estudo foi a caracterização clínica, histológica e molecular de pacientes brasileiros portadores de miopatia centronuclear. Métodos: Laudos de dois bancos de biópsia muscular foram usados para identificar pacientes com diagnóstico de miopatia centronuclear nos últimos dez anos. As lâminas das biópsias foram revisadas e analisadas, e as famílias correspondentes convocadas para aplicação de protocolo clínico e coleta de sangue periférico para extração de DNA genômico. As famílias foram estudadas para os genes conhecidos por sequenciamento Sanger, MLPA, painel de genes implicados em doenças neuromusculares ou sequenciamento de exoma. Resultados: Foram convocados 24 pacientes provenientes de 21 famílias, em 16 das quais foi possível estabelecer o diagnóstico molecular. As 7 famílias com a forma neonatal grave constituíam um grupo homogêneo clínica e histologicamente, e mutações novas e conhecidas foram encontradas no gene MTM1 em 6 destas. Dois meninos deste grupo, com evolução estável, tiveram óbito súbito por choque hipovolêmico subsequente a rompimento de cisto hepático. O gene MTM1 também foi implicado em uma menina portadora manifestante, com quadro mais leve, na forma de uma macrodeleção em heterozigose, detectada por MPLA. Duas famílias em cuja histologia foram encontradas fibras com aspecto em \"roda de carroça\" apresentaram mutações no gene DNM2, uma das quais, p.Phe372Cys, nunca havia sido descrita. Em 7 famílias, o gene RYR1 foi o responsável, em todas sob a forma de heterozigose composta, com 14 mutações, das quais 13 novas, encontradas ao longo de todo o gene. Este grupo, apesar de heterogêneo clinicamente, apresentou em comum a presença de falhas focais na atividade oxidativa das fibras musculares na maioria dos indivíduos. O gene TTN está provavelmente implicado em uma família com um único afetado, no qual o sequenciamento de exoma mostrou mutação nula em heterozigose composta. Nesta coorte de pacientes brasileiros, não houve famílias com alterações no gene BIN1, e três famílias seguem sem diagnóstico molecular, com prováveis novos genes implicados. Conclusões: Os achados clínicos e histológicos de pacientes brasileiros com miopatia centronuclear seguem os padrões descritos na literatura, e em conjunto podem direcionar o estudo molecular adequado. Nesta coorte de pacientes, o gene RYR1, estudado por sequenciamento de alto débito de exoma, foi o mais frequentemente acometido, sugerindo que sua implicação na miopatia centronuclear vem sendo subestimada. Novas mutações encontradas nos genes MTM1, DNM2 e RYR1 contribuíram para confirmar regiões de patogenicidade e ampliar o espectro de alterações nestes genes / Introduction: Centronuclear myopathy is a heterogeneous congenital muscle disease, characterized by the prominence of centralized nuclei in muscle fibers. Three disease forms are recognized: a severe neonatal, X-linked form caused by mutations in the MTM1 gene; an autosomal dominant, late-onset milder form, associated to the DNM2 gene; and an autosomal recessive form, with intermediate severity, so far with the BIN1, RYR1 or TTN genes implicated. In spite of the identification of these genes, usual molecular diagnostic methods don\'t yield a molecular diagnosis in about half of cases. Objetives: The aim of this work was to study clinical, histological, and molecular aspects of centronuclear myopathy Brazilian patients. Methods: Reports taken from two muscle biopsy banks were used to identify centronuclear myopathy patients in the last ten years. Biopsy slides were reviewed and analyzed, and corresponding families recruited to apply a clinical protocol and to draw peripheral blood to extract genomic DNA. Families were studied for known genes via Sanger sequencing, MLPA, panel of genes implicated in neuromuscular diseases, or exome sequencing. Results: Twentyfour patients out of 21 families were recruited, and in 16 families molecular diagnosis was established. The 7 families with the severe neonatal form amounted to a clinically and histologically homogeneous group, and mutations, both known and novel, were found in the MTM1 gene in 6 of these. Two boys of this group, with a stable course, died suddenly of hypovolemic shock due to a hepatic cyst rupture. The MTM1 gene was also implicated in the case of a mild manifesting carrier girl with a heterozygous macrodeletion detected via MLPA. Two families whose histology contained fibers with a \"spoke of wheels\" aspect had mutations in the DNM2 gene, one of which, p.Phe372Cys, had never been described. In 7 families, the RYR1 gene was the culprit, in all of them in a compound heterozygous state, with 14 mutations, 13 of which novel, found throughout the length of the gene. This group, despite clinically heterogeneous, had in common the presence of focal disruptions in the oxidative activity of muscle fibers in the majority of individuals. The TTN gene is probably implicated in a family with a single affected, whose exome sequencing showed compound heterozygous null mutations. In this cohort of Brazilian patients, no family was found to have alterations in the BIN1 gene, and three families remain without molecular diagnosis, with probable new implicated genes. Conclusions: Clinical and histological findings of Brazilian patients with centronuclear myopathy follow patterns already described in the literature, and taken as a whole can direct the adequate molecular study. In this patient cohort, the RYR1 gene, sequenced though hight-throughput techniques, was the most frequently involved, suggesting that its implication in centronuclear myopathy is underestimated. Novel mutations found in the MTM1, DNM2 and RYR1 genes contributed to confirm pathogenic regions and expand the spectrum of alterations in these genes
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<b>A MULTISCALE MODEL TO STUDY ATP-INDUCED CALCIUM SIGNALING IN LARVAL ZEBRAFISH TAILFIN WOUND RESPONSE</b>Mothieshwar Jayaraman Krishnan (19250446) 29 July 2024 (has links)
<p dir="ltr">Wound healing is a complex biological process orchestrated by intricate cellular and biochemical interactions. This study leverages a multiscale modeling approach, integrating agent-based and ordinary differential equation (ODE) methods within CompuCell3D, to investigate wound detection and calcium signaling in juvenile zebrafish. Calcium as a ubiquitous secondary messenger plays a crucial role in translating wound stimuli into cellular responses. We focus on the initial phase of wound detection, a multi-step process beginning at the subcellular level with the release of Damage-Associated Molecular Patterns (DAMPs) and subsequent calcium signaling. We hypothesize that an ATP diffusion wave acts as the primary trigger, initiating a downstream calcium signaling cascade mediated by inositol triphosphate (IP3). Calcium and IP3 production and movement from the injured cells to healthy ones would then coordinate a tightly regulated wound response. To investigate this hypothesis, we adapted existing equations from a Drosophila wing disc injury model. We carefully modified them to accurately represent the zebrafish system in our in-silico setup, specifically focusing on relevant agonists. Model predictions were rigorously compared to the zebrafish’s experimental data to validate the computational approach. Our findings provide preliminary evidence suggesting that ATP diffusion through the interstitial spaces of injured tissue may be a potent agonist, triggering localized calcium release closely resembling experimental observations. This multiscale modeling framework offers a promising avenue for significant advancements in wound healing research. It has the potential to facilitate the development of novel therapeutic strategies and discoveries by enabling the integration of cell signaling pathways and tissue engineering.</p>
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Modulation of human antigen-specific T cell response - therapeutic implications for multiple sclerosisWaiczies, Sonia 22 September 2003 (has links)
Multiple Sklerose (MS) ist eine heterogene Krankheit des Zentralnervensystems, deren pathologische Mechanismen noch nicht vollständig aufgeklärt sind. Die gegenwärtige Hypothese ist, daß pro-inflammatorische T-Zellen entscheidend an der Pathogenese der MS beteiligt sind. Man geht davon aus, daß eine Fehlregulation der T-Zell-Kontrolle, möglicherweise bedingt durch ein Ungleichgewicht an Apoptose-regulierenden Molekülen, dabei eine Rolle spielt. Tatsächlich zielen therapeutische Strategien darauf ab, T-Zell-Aktivierung, Proliferation und Produktion von Zytokinen zu verringern, oder T-Zell-Eliminierung zu fördern. Diese Arbeit sollte zum einen die Bedeutung regulatorischer Faktoren klären, die für das überleben der T-Zellen von MS-Patienten verantwortlich sind. Zum anderen sollten die antiproliferative oder Apoptose-fördende Wirkung potentiell therapeutisch wirksamer Moleküle untersucht werden. Eine eingeschränkte Regulation der autoreaktiven T-Zellen durch Apoptose in der Peripherie und im ZNS trägt möglicherweise zur Pathophysiologie der MS bei. Als Schlüsselfaktoren der Regulation von Apoptose wurden Mitglieder der Bcl-2-Familie in MS-Patienten und Probanden untersucht. Diese Faktoren wurden in Relation zu der Suszeptibilität der T-Zellen gegenüber aktivierungsinduziertem Zelltod (sog. Activation-induced cell death oder AICD) überprüft. Um die in-vivo-Elimination der Antigen-reaktiven T-Zellen nachzuahmen, wurde ein in-vitro-Modell des AICD mit repetitiver T-Zell-Stimulation verwendet. Tatsächlich zeigten polyklonale T-Zellen von MS-Patienten eine verringerte Suszeptibilität für AICD, nachgewiesen sowohl durch verminderte Caspaseaktivtät (p=0.013) als auch durch DNA-Fragmentierung (p=0.0071). Weiter wurden höhere Spiegel des Proteins Bcl-XL in den Immunzellen von MS-Patienten mit Immunoblotting gemessen (p=0.014). Eine inverse Korrelation zwischen der Expression an Bcl-XL und der Empfindlichkeit der T-Zellen gegenüber AICD steht in Übereinstimmung mit vorhergehenden Daten bezüglich der Bedeutung dieses Proteins für die Apoptose-Resistenz von T-Zellen. Es wurde bereits gezeigt, daß dieses Molekül die Ausprägung der experimentell-autoimmun Enzephalomyelitis, des Tiermodells der MS, verstärkt. Zusammen mit den erhöhten Bcl-XL-Werten bei MS-Patienten, ergeben sich nun Perspektiven für einen therapeutischen Ansatz. Abgesehen von dem Konzept die apoptotische Eliminierung von T-Zellen zu unterstützen, streben gegenwärtige therapeutische Strategien an, die Aktivierung und weitere Proliferation der schädlichen T-Zellen zu hemmen. Basierend auf klinischer Erfahrung mit eher unselektiven Therapien, ist es ein therapeutisches Ziel, neue immunomodulatorische Substanzen mit besserer Selektivität zu finden, um das Nutzen/Risiko-Verhältnis zu maximieren. Aus diesem Grund wurden zwei unterschiedliche Substanzen untersucht die beide den Zellzyklus beeinflussen. Als erster Kandidat wurde der kürzlich entdeckte Todesligand TRAIL (engl.: TNF-related apoptosis inducing ligand) aus der TNF/NGF-Familie untersucht, da diesem bereits T-Zell-regulatorische Funktionen zugeschrieben worden waren, humane Antigen-spezifische T-Zellen jedoch resistent gegenüber TRAIL-induzierter Apoptose sind. Der zweite Kandidat mit potenziell therapeutischer Wirkung bei MS ist Atorvastatin, ein HMG-CoA-Reduktase-Hemmer, der bereits als Lipidsenker bei Patienten eingesetzt wird. Um die Hypothese zu überprüfen, daß diese Substanzen T-Zell-Rezeptor-Signale beeinflussen können, wurden humane Antigen-spezifische T-Zell-Linien von MS-Patienten und gesunden Probanden eingesetzt. Diese wurden hinsichtlich T-Helfer-Phänotyp und Peptid-Spezifität charakterisiert. Eine Behandlung mit TRAIL führte zur Hemmung der Proliferation in unterschiedlichem Ausmaß (6.2% - 63.8%). Atorvastatin hemmte in Abhängigkeit von der Dosis ebenso die Proliferation Antigen-spezifischer T-Zellen. Beide Substanzen wirkten antiproliferativ unabhängig von der Antigenpräsentation, aufgrund ihrer Fähigkeit, die Proliferation in Abwesenheit von professionellen Antigen-präsentierenden Zellen zu vermindern. Diese Eigenschaft weißt auf einen direkten Einfluß auf die T-Zell-Funktion hin. Die TRAIL-induzierte Hypoproliferation war assoziiert mit einer Herunterregulation der Zyklin-abhängigen Kinase CDK4 (engl.: cyclin dependent kinase 4), einem Schlüsselenzym für die nach T-Zell-Rezeptor-Stimulation einsetzende Transition von der G1- zur S-Phase des Zellzyklus. Inkubation mit Atorvastatin induzierte ebenso eine Verminderung von CDK4, begleitet von einer Erhöhung von p27Kip1. Die Atorvastatin-vermittelte Proliferations- und Zellzyklus-Blockade konnte durch Mevalonat rückgängig gemacht werden. Mevalonat ist ein Zwischenprodukt des HMG-CoA-Reduktaseweges. Atorvastatin scheint demnach einen direkten Einfluß auf diese Enzymkaskade zu haben, der wichtig für die Isoprenylierung von GTPase-Proteinen der Rho-Familie ist. T-Zell-Rezeptor-Stimulation führt zur Freisetzung von Kalzium aus intrazellulären Speichern und nachfolgend zur Öffnung transmembranöser Kalzium-Kanäle (sog. calcium release-activated calcium oder CRAC-Kanäle), die eine für die T-Zellaktivierung notwendige und anhaltende Erhöhung der intrazellulären Kalzium-Konzentration hervorruft. Nach Behandlung mit TRAIL wurde eine konzentrationsabhängige Inhibition des Einstroms extrazellulärer Kalzium-Ionen durch die CRAC-Kanäle beobachtet. Dies wurde mit löslichem TRAIL-Rezeptor-Fusionsprotein, einem TRAIL-Antagonisten, rückgängig gemacht. Die Blockade von Kalzium-abhängigen Aktivierungssignalen stellt damit möglicherweise einen primären immunregulatorischen Mechanismus für diese Todesliganden dar. Jedoch wurde keine Auswirkung von Atorvastatin auf die T-Zellaktivierung beobachtet, da der Einstrom von extrazellulärem Kalzium nicht beeinflußt wurde. Während Studien zum TRAIL-vermittelten Einfluß auf die T-Zell-Aktivierung und dem Zellzyklus erst in der präklinischen Phase sind, werden Statine, die ebenfalls den Zellzyklus beeinflussen, bereits in der Therapie anderer Erkrankungen angewand. Darüber hinaus werden derzeit bereits klinische Studien mit Statinen zur MS-Therapie durchgeführt. Weitere Untersuchungen zu den detaillierten Mechanismen antiproliferativer Substanzen mit potenziellem therapeutischen Effekt in der MS ermöglichen die Entwicklung von selektiveren immunomodulatorischen Therapien mit höherem therapeutischen Nutzen für MS-Patienten. / Multiple sclerosis (MS) is a heterogeneous disease of the central nervous system whose pathological mechanisms are far from completely understood. The current hypothesis is that pro-inflammatory T cells are orchestrating the pathogenesis of this condition. It is considered that a dysregulation in T cell control to be involved, with an imbalance in apoptosis-regulating molecules possibly playing a role. In fact, therapeutic strategies aim to reduce T cell activation, proliferation and cytokine production or to promote T cell elimination. The focus of this thesis was to identify the role of regulatory molecules for T cell survival in the immune pathogenesis of MS, and to investigate antiproliferative or apoptosis-promoting effects on T cells by potential therapeutic molecules. A limitation in the apoptotic regulation of autoreactive T cells in the periphery and in the CNS may contribute to the pathophysiology of MS. As key regulators of apoptosis, members of the Bcl-2 family were investigated in both MS patients and controls. These factors were examined in relation to the susceptibility of T cells, from both groups, towards activation-induced cell death (AICD). To mimic the in vivo elimination of antigen-reactive T cells, an in vitro model of AICD involving repetitive T cell receptor mediated stimulation was utilized. In fact, polyclonal T cells from MS patients showed a decreased susceptibility to undergo AICD as shown by both caspase activity (p=0.013) and DNA fragmentation (p=0.0071) assays. Furthermore, Bcl-XL protein levels, as measured by immunoblotting, were increased in the peripheral immune cells of MS patients (p=0.014). An inverse correlation observed between Bcl-XL levels and susceptibility of T cells to undergo AICD is in line with previous data on the significance of this anti-apoptotic protein in T cell resistance. Since this molecule has already been shown to aggravate the outcome of experimental autoimmune encephalitis, the animal model for MS, the observation of elevated Bcl-XL levels in patients offers perspectives towards therapeutic manipulation in MS. Apart from promoting apoptotic elimination, current therapeutic strategies aim at inhibiting activation and further proliferation of potentially harmful T cells. Based on clinical experience with rather non-selective therapies that promote T cell elimination, a therapeutic goal is to identify newer immunomodulatory substances with better selectivity in order to maximize the therapy's benefit to risk ratio. Thus, two different substances, both interfering with cell cycle regulation, were investigated. The first candidate was the recently discovered member of the TNF/NGF family of death ligands, TNF-related apoptosis inducing ligand (TRAIL) since it has been reported to have immunoregulatory functions and since human antigen-specific T cells were shown to be resistant towards apoptosis induction by this ligand. The second candidate drug with potential in MS therapy is atorvastatin, a 3-hydroxy-3-methylglutaryl coenzyme (HMG-CoA) reductase inhibitor and lipid-lowering drug, already indicated for anomalies in lipid metabolism. In order to prove the hypothesis that these substances interfere with T cell receptor signaling, human antigen-specific T cell lines from both MS patients and controls, characterized with regards to T helper differentiation and peptide specificity, were employed. Exogenous treatment of TRAIL resulted in an inhibition in proliferation, albeit to varying degrees (6.2% - 63.8% inhibition). Atorvastatin also inhibited proliferation of antigen-specific T cell lines in a dose-dependent manner. Both compounds induced hypoproliferation independently of antigen presentation, as shown by their ability to block T cell proliferation in response to direct T cell receptor engagement, thus indicating a direct influence on T cell function. The growth inhibition by TRAIL was associated with a downregulation of the cell cycle regulator CDK4, indicative of an inhibition of cell cycle progression at the G1/S transition. Incubating T cells with atorvastatin also induced a downregulation of CDK4 expression, which was accompanied by an upregulation of p27Kip1 expression. The atorvastatin-mediated inhibition in proliferation and cell cycle progression could be reversed by mevalonate, an intermediate product of the HMG-CoA reductase pathway, suggesting a direct involvement of atorvastatin in this pathway, necessary for the isoprenylation of small GTPase proteins of the Rho family. Utilizing a thapsigargin model of calcium influx to activate the same calcium-release activated calcium (CRAC) channels as T cell receptor-stimulation by antigen, an inhibition in calcium influx could be observed on pre-incubating T cells with TRAIL. Co-incubating with human recombinant TRAIL receptor 2 fusion protein, a competitive antagonist for TRAIL, reversed this inhibition. A direct influence on calcium influx is indicative of an influence of TRAIL on the activation status of human T cells. Therefore, TRAIL directly inhibits activation of these cells via blockade of calcium influx. However, no impact of atorvastatin on early T cell activation was observed, since calcium influx was unaffected. While TRAIL-mediated interference with T cell activation and further cell cycle progression is still in the pre-clinical phase, statins, which have also been shown here to interfere with the T cell cycle, are already employed in the clinic for other ailments. In fact, clinical trials are currently being undertaken with this group of drugs for MS. Further studies on detailed mechanisms of antiproliferative substances effective in MS will allow the development of highly selective immunomodulatory agents with increased beneficial profile as MS therapy.
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Über die differentielle Regulation von Ionenkanälen in spezifischen Nanodomänen atrialer und ventrikulärer Kardiomyozyten / Differential Regulation of Ion Channels in Specific Nanodomains of Atrial and Ventricular CardiomyocytesBrandenburg, Sören 29 June 2017 (has links)
No description available.
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