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首页> 外文期刊>Immunological Investigations: A Journal of Molecular and Cellular Immunology >Harnessing the immunomodulatory properties of Sertoli cells to enable xenotransplantation in type I diabetes.
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Harnessing the immunomodulatory properties of Sertoli cells to enable xenotransplantation in type I diabetes.

机译:利用Sertoli细胞的免疫调节特性,可以在I型糖尿病中进行异种移植。

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摘要

Islet transplantation has emerged as a viable long-term means of treating type I diabetes. This is largely due to the success of the "Edmonton protocol" which has produced insulin independence in 85% of patients 1 year after transplantation of allogeneic islets together with a non-steroid immunosuppressive regimen. While these data provide a clear and unequivocal demonstration that islet transplantation is a viable treatment strategy, the shortage of suitable donor tissue together with the debilitating consequences of life-long immunosuppression necessitate the development of novel means to enable transplantation of all type 1 diabetics including the young juvenile diabetics. One potential means of enabling islet transplantation takes advantage of the ability of Sertoli cells to provide local immunoprotection to co-grafted islets, including those from xenogeneic sources. Sertoli cells are normally found in the testes where one of their functions is to provide local immunologic protection to developing germ cells. In animal models, allogeneic and xenogeneic islets survive and function for extended periods of time when grafted into the testes. Moreover, isolated Sertoli cells protect co-grafted allogeneic and xenogeneic islets from immune destruction and reverse diabetes in immunocompetent and autoimmune animals. These benefits are discussed in the context of several potential underlying biological mechanisms.
机译:胰岛移植已成为治疗I型糖尿病的可行的长期手段。这在很大程度上归功于“埃德蒙顿方案”的成功,该方案在同种异体胰岛以及非类固醇免疫抑制方案移植后1年内,在85%的患者中产生了胰岛素独立性。尽管这些数据清楚表明了胰岛移植是一种可行的治疗策略,但由于缺乏合适的供体组织以及终生免疫抑制所致的衰弱后果,必须开发新颖的方法来移植所有1型糖尿病,包括年轻的青少年糖尿病患者。一种实现胰岛移植的潜在手段是利用支持细胞的能力为共移植的胰岛(包括异种来源的胰岛)提供局部免疫保护。睾丸支持细胞通常在睾丸中发现,其功能之一是为发育中的生殖细胞提供局部免疫保护。在动物模型中,同种异体和异种胰岛移植到睾丸后可以存活并长时间运行。此外,分离的支持细胞可以保护移植的同种异体和异种胰岛免于免疫功能正常和自身免疫动物的免疫破坏和糖尿病逆转。在几种潜在的潜在生物学机制的背景下讨论了这些益处。

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