Pathogenesis of autoimmune endocarditis: roles for Fc receptors and integrins?
Pathogenesis of autoimmune endocarditis: roles for Fc receptors and integrins?
批准号:
7869026
负责人:
Bryce Binstadt
金额:
$6.83万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-05-24 至 2013-03-31
关键词:
AddressAffectAntiphospholipid SyndromeArthritisAutoantibodiesAutoimmune DiseasesAutoimmune ProcessAutoimmunityBone MarrowCardiovascular systemCarditisCell AdhesionCell Adhesion MoleculesCellsCellular InfiltrationComplement component C5Coronary ArteriosclerosisDataDevelopmentDiseaseDisease ProgressionElementsEndocarditisFamilyFc ReceptorGoalsHeart ValvesHumanITGB2 geneImmuneImmune ToleranceImmune systemImmunologic ReceptorsIndividualInflammationInflammatoryIntegrinsJointsK/BxN modelLeadLigandsLupusMediatingModelingMononuclearMusOrganPathogenesisPathologyPathway interactionsPatientsProductionRecruitment ActivityResearchRheumatic FeverRheumatoid ArthritisRiskRoleStromal CellsStudy modelsSystemic Lupus ErythematosusT-Cell ReceptorT-LymphocyteTissuesTransgenic MiceUp-Regulationadhesion receptorbasebody systemcell typeimprovedmacrophagemembermouse modelneutrophilprogramspublic health relevancereceptorreceptor bindingreceptor expressionsystemic autoimmune disease
中文摘要
描述(由申请人提供):许多全身性自身免疫性疾病影响滑膜关节和心血管系统。例如,类风湿性关节炎或系统性红斑狼疮(SLE)患者发生冠状动脉疾病的风险增加。特别是,心脏瓣膜的炎症发生在风湿热(风湿性心脏炎)和SLE及相关的抗磷脂综合征(Libman-Sacks心内膜炎)中。在这些人类系统性自身免疫性疾病中,引起滑膜关节和心脏瓣膜伴随炎症的免疫机制仍然不清楚。我们最近发现自发性心脏瓣膜炎症(心内膜炎)在一个良好的研究模型的自身抗体相关性关节炎。该模型提供了独特的机会来解剖介导对关节与心脏瓣膜的自身免疫攻击的免疫机制。本文提供的初步数据表明,心内膜炎和关节炎依赖于相同的适应性免疫系统元素,最初破坏免疫耐受,导致自身抗体的产生。相反,关键的先天免疫系统效应子途径在两种靶组织之间不同。该小鼠模型中的关节炎主要依赖于补体C5而不是Fc受体;相反,心内膜炎基本上依赖于Fc受体而不是C5。与嗜中性粒细胞为主的关节浸润相反,这些小鼠中的心脏瓣膜浸润包括携带22种整联蛋白粘附受体的T细胞和巨噬细胞,以及这些受体的内皮配体的上调。目前的建议调查如何两个家庭的先天免疫受体,Fc受体和22整合素,有助于发展的自身免疫性心内膜炎。我们将确定哪些细胞类型必须表达Fc受体,哪些特定的Fc受体对心内膜炎的发展至关重要。此外,我们将调查的可能性,22整合素受体家族的成员不同的关节炎和心内膜炎的发展作出贡献,通过研究的影响,特定的22整合素的缺陷对疾病的进展,在这两种组织。希望这些研究将为进一步研究单一系统性自身抗体相关自身免疫疾病差异性地参与先天免疫系统以引起离散靶组织损伤的机制提供重要基础。了解这些差异可能有助于开发针对系统性自身免疫性疾病的更具针对性的治疗方法,基于个体患者涉及的器官系统。
公共卫生相关性:在风湿热和系统性红斑狼疮等疾病中,心脏瓣膜会被免疫系统破坏。我们的研究项目使用小鼠模型深入研究免疫系统损害心脏瓣膜的机制。我们希望我们的发现最终能为风湿热、狼疮和相关自身免疫性疾病患者开发新的治疗方法。
英文摘要
DESCRIPTION (provided by applicant): Many systemic autoimmune diseases affect both the synovial joints and the cardiovascular system. For example, patients with rheumatoid arthritis or systemic lupus erythematosus (SLE) are at increased risk for developing coronary artery disease. In particular, inflammation of the cardiac valves occurs in rheumatic fever (rheumatic carditis) and in SLE and the related antiphospholipid syndrome (Libman-Sacks endocarditis). The immune mechanisms that provoke concomitant inflammation of synovial joints and cardiac valves in these human systemic autoimmune disorders remain poorly defined. We have recently discovered spontaneous cardiac valve inflammation (endocarditis) in a well-studied model of autoantibody-associated arthritis. This model affords the unique opportunity to dissect the immune mechanisms mediating autoimmune attack on the joints versus the heart valves. The preliminary data presented herein demonstrate that endocarditis and arthritis depend on the same adaptive immune system elements for the initial breach of immunologic tolerance leading to autoantibody production. In contrast, the key innate immune system effector pathways differ between the two target tissues. Arthritis in this mouse model depends primarily on complement C5 and not Fc receptors; conversely, endocarditis depends essentially on Fc receptors and not C5. In contrast to the neutrophil-predominated joint infiltrate, the cardiac valve infiltrate in these mice comprises T cells and macrophages bearing 22 integrin adhesion receptors, as well as up-regulation of the endothelial ligands for these receptors. The current proposal investigates how two families of innate immune receptors, Fc receptors and 22 integrins, contribute to the development of autoimmune endocarditis. We will determine what cell types must express Fc receptors and which particular Fc receptor is critical for the development of endocarditis. In addition, we will investigate the possibility that members of the 22 integrin receptor family contribute differentially to the development of arthritis and endocarditis by studying the effects that deficiencies of specific 22 integrins have on the progression of disease in both tissues. It is hoped that these studies will provide important groundwork for additional research into the mechanisms by which a single systemic, autoantibody-associated autoimmune disease differentially engages the innate immune system to provoke damage in discrete target tissues. Understanding these differences may allow the development of more targeted therapies for systemic autoimmune diseases, based on which organ systems are involved in an individual patient.
PUBLIC HEALTH RELEVANCE: The valves of the heart can be damaged by the immune system in diseases such as rheumatic fever and systemic lupus erythematosus. Our research program uses a mouse model to study in depth the mechanisms by which the immune system damages the heart valves. We expect that our findings will lead eventually to the development of new therapies for patients with rheumatic fever, lupus, and related autoimmune diseases.
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