Thebault P, Condamine T, Heslan M, Hill M, Bernard I, Saoudi A, Josien R, Anegon I, Cuturi M C, Chiffoleau E
INSERM, U643, Nantes, F44000 France.
Am J Transplant. 2007 Nov;7(11):2472-82. doi: 10.1111/j.1600-6143.2007.01960.x. Epub 2007 Sep 14.
Regulatory T cells have been described to specifically accumulate at the site of regulation together with effector T cells and antigen-presenting cells, establishing a state of local immune privilege. However the mechanisms of this interplay remain to be defined. We previously demonstrated, in a fully MHC mismatched rat cardiac allograft combination, that a short-term treatment with a deoxyspergualine analogue, LF15-0195, induces long-term allograft tolerance with a specific expansion of regulatory CD4+CD25+T cells that accumulate within the graft. In this study, we show that following transfer of regulatory CD4+T cells to a secondary irradiated recipient, regulatory CD25+Foxp3+ and CD25+Foxp3(-) CD4+T cells accumulate at the graft site and induce graft endothelial cell expression of Indoleamine 2, 3-dioxygenase (IDO) by an IFNgamma-dependent mechanism. Moreover, in vivo transfer of tolerance can be abrogated by blocking IFNgamma or IDO, and anti-IFNgamma reduces the survival/expansion of alloantigen-induced regulatory Foxp3+CD4+T cells. Together, our results demonstrate interrelated mechanisms between regulatory CD4+CD25+T cells and the graft endothelial cells in this local immune privilege, and a key role for IFNgamma and IDO in this process.
调节性T细胞已被描述为与效应T细胞和抗原呈递细胞一起特异性地在调节部位积聚,从而建立局部免疫特权状态。然而,这种相互作用的机制仍有待确定。我们之前在完全MHC不匹配的大鼠心脏同种异体移植组合中证明,用脱氧精胍菌素类似物LF15-0195进行短期治疗可诱导长期同种异体移植耐受,并使调节性CD4+CD25+T细胞在移植物内特异性扩增并积聚。在本研究中,我们表明,将调节性CD4+T细胞转移至二次照射的受体后,调节性CD25+Foxp3+和CD25+Foxp3(-) CD4+T细胞在移植物部位积聚,并通过IFNγ依赖性机制诱导移植物内皮细胞表达吲哚胺2,3-双加氧酶(IDO)。此外,阻断IFNγ或IDO可消除体内耐受转移,抗IFNγ可降低同种抗原诱导的调节性Foxp3+CD4+T细胞的存活/扩增。总之,我们的结果证明了调节性CD4+CD25+T细胞与移植物内皮细胞在这种局部免疫特权中的相互关联机制,以及IFNγ和IDO在此过程中的关键作用。