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The road to transplant tolerance is paved with good dendritic cells

机译:移植耐受的道路是铺着良好的树突细胞

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After transplantation, recipient T cells can recognize donor antigens either by interacting with MHC class II on donor bone marrow-derived cells (direct allorecognition), or by recognizing allogeneic peptides bound to self-MHC class II molecules on recipient antigen presenting cells (indirect allorecognition). The activation of pro-inflammatory T cells via either of these pathways leads to allograft rejection, so the suppression of both of these pathways is needed to achieve transplantation tolerance. A study in this issue of the European Journal of Immunology [Eur. J. Immunol. 2013. 43: 734-746] shows that allogeneic dendritic cells (DCs) modified to either lack expression of CD80/86 or over-express indoleamine 2,3-dioxygenase (IDO) are able to inhibit direct and/or indirect alloresponses in vitro and in vivo in mice. Notably, both allorecognition pathways were suppressed by the coexpression of self- and allo-MHC molecules on semi-allogeneic DCs. This Commentary discusses the challenges and potential of using genetically-modified DCs to suppress alloreactivity in the context of transplant tolerance. ? 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:移植后受体T细胞认识到供体抗原通过互动捐献骨髓来源与MHC II级细胞(直接allorecognition),或通过识别同种异体肽self-MHC二级分子抗原呈递细胞(间接allorecognition)。通过这两种炎性T细胞途径导致同种异体移植物排斥反应,所以抑制这两种途径是必要的实现移植耐受。这个问题的欧洲免疫学杂志》上(欧元。同种异体的树突状细胞(dc)修改缺乏表达CD80/86或过表达吲哚胺2,3-dioxygenase (IDO)都可以抑制直接和/或间接alloresponses体外和体内小鼠。allorecognition通路受到抑制coexpression自我和allo-MHC分子semi-allogeneic DCs。的挑战和潜在的使用转基因DCs抑制的上下文中alloreactivity移植KGaA, Weinheim .

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