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IXA Honorary Member Lecture 2017: The Long and Winding Road to Tolerance

机译:IXA荣誉会员演讲2017年:宽容之路

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摘要

The last 15 years or so have seen exciting progress in xenotransplantation, with porcine organ grafts surviving months or even years in non-human primates. These advances reflect the application of new scientific knowledge, improved immunosuppressive agents and genetic engineering. The field has recently enjoyed a renaissance of interest and hope, largely due to the exponential increase in our capacity to genetically engineer porcine source animals. However, immune responses to xenografts are very powerful and widespread clinical application of xenotransplantation will depend on the ability to suppress these immune responses while preserving the capacity to protect both the recipient and the graft from infectious microorganisms. Our work over the last three decades has aimed to engineer the immune system of the recipient in a manner that achieves specific tolerance to the xenogeneic donor while preserving otherwise normal immune function. Important proofs of principle have been obtained, first in rodents, and later in human immune systems in “humanized mice” and finally in non-human primates, demonstrating the capacity and potential synergy of mixed xenogeneic chimerism and xenogeneic thymic transplantation in tolerizing multiple arms of the immune system. Considering the fact that clinical tolerance has recently been achieved for allografts and the even greater importance of avoiding excessive immunosuppression for xenografts, it is my belief that it is both possible and imperative that we likewise achieve xenograft tolerance. I expect this to be accomplished through the availability of targeted approaches to recipient immune conditioning, understanding of immunological mechanisms of tolerance, advanced knowledge of physiological incompatibilities, and the availability of inbred miniature swine with optimized use of genetic engineering.
机译:在过去的15年左右的时间里,异种移植取得了令人振奋的进展,猪器官移植物在非人类灵长类动物中存活了数月甚至数年。这些进步反映了新的科学知识,改进的免疫抑制剂和基因工程的应用。最近,该领域引起了人们的兴趣和希望的复兴,这主要是由于我们对猪源动物进行基因工程的能力呈指数级增长。然而,对异种移植物的免疫反应非常强大,异种移植的广泛临床应用将取决于抑制这些免疫反应的能力,同时保留保护受体和移植物免受感染性微生物侵袭的能力。在过去的三十年中,我们的工作旨在以某种方式改造受体的免疫系统,以实现对异种供体的特异性耐受,同时保持正常的免疫功能。已经获得了重要的原理证明,首先是在啮齿动物中,然后是在“人源化小鼠”中的人类免疫系统中,最后是在非人类灵长类动物中,这证明了异种嵌合和异种胸腺移植在耐受多臂动物的能力和潜在协同作用。免疫系统。考虑到最近已经实现了同种异体移植物的临床耐受性以及避免对异种移植物过度免疫抑制的重要性,我相信我们同样必须实现异种移植物耐受性。我希望可以通过针对受体免疫条件的靶向方法的可用性,对耐受性免疫机制的理解,对生理不相容性的先进知识以及通过优化利用基因工程的自交小型猪的可用性来实现这一目标。

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