首页> 外文期刊>Annals of the New York Academy of Sciences >Stress, Heat Shock Proteins, and Autoimmunity How Immune Responses to Heat Shock Proteins Are to Be Used for the Control of Chronic Inflammatory Diseases
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Stress, Heat Shock Proteins, and Autoimmunity How Immune Responses to Heat Shock Proteins Are to Be Used for the Control of Chronic Inflammatory Diseases

机译:压力,热激蛋白和自身免疫性如何将对热激蛋白的免疫反应用于控制慢性炎症性疾病

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摘要

Especially since the (re-)discovery of T cell subpopulations with specialized regulatory activities, mechanisms of anti-inflammatory T cell regulation are studied very actively and are expected to lead to the development of novel immunotherapeutic approaches, especially in chronic inflammatory diseases. Heat shock proteins (Hsp) are possible targets for regulatory T cells due to their enhanced expression in inflamed (stressed) tissues and the evidence that Hsp induce anti-inflammatory im-munoregulatory T cell responses. Initial evidence for an immunoregula-tory role of Hsp in chronic inflammation was obtained through analysis of T cell responses in the rat model of adjuvant arthritis and the findings that Hsp immunizations protected against the induction of various forms of autoimmune arthritis in rat and mouse models. Since then, immune reactivity to Hsp was found to result from inflammation in various disease models and human inflammatory conditions, such as rheumatoid arthritis (RA), type 1 diabetes, and atherosclerosis. Now, also in the light of a growing interest in T cell regulation, it is of interest to further explore the mechanisms through which Hsp can be utilized to trigger immunoregulatory pathways, capable of suppressing such a wide and diversified spectrum of inflammatory diseases.
机译:尤其是由于具有专门调节活性的T细胞亚群的(重新)发现,抗炎T细胞调节的机制得到了积极研究,并有望导致新型免疫治疗方法的发展,尤其是在慢性炎性疾病中。热休克蛋白(Hsp)可能是调节性T细胞的靶标,因为它们在发炎(受压)组织中的表达增强,并且有证据表明Hsp会诱导抗炎性免疫调节性T细胞应答。通过分析佐剂性关节炎大鼠模型中的T细胞反应以及在大鼠和小鼠模型中Hsp免疫可防止诱导各种形式的自身免疫性关节炎的发现,获得了Hsp在慢性炎症中的免疫调节作用的初步证据。从那时起,人们发现对Hsp的免疫反应性是由各种疾病模型和人类炎症状况(例如类风湿关节炎(RA),1型糖尿病和动脉粥样硬化)引起的炎症引起的。现在,也鉴于对T细胞调节的兴趣日益浓厚,有兴趣进一步探索可利用Hsp触发免疫调节途径的机制,该机制能够抑制如此广泛多样的炎性疾病。

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