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自体耐受原性树突状细胞细胞治疗通过干扰素-γ和 Epstein-Barr 病毒诱导基因 3 诱导同种异体移植耐受。

Cell therapy with autologous tolerogenic dendritic cells induces allograft tolerance through interferon-gamma and epstein-barr virus-induced gene 3.

机构信息

INSERM, UMR 643, Nantes, France.

出版信息

Am J Transplant. 2011 Oct;11(10):2036-45. doi: 10.1111/j.1600-6143.2011.03651.x. Epub 2011 Jul 27.

DOI:10.1111/j.1600-6143.2011.03651.x
PMID:21794083
Abstract

Innovative therapeutic strategies are needed to diminish the impact of harmful immunosuppression in transplantation. Dendritic cell (DC)-based therapy is a promising approach for induction of antigen-specific tolerance. Using a heart allograft model in rats, we analyzed the immunoregulatory mechanisms by which injection of autologous tolerogenic DCs (ATDCs) plus suboptimal immunosuppression promotes indefinite graft survival. Surprisingly, we determined that Interferon-gamma (IFNG), a cytokine expected to be propathogenic, was threefold increased in the spleen of tolerant rats. Importantly, its blockade led to allograft rejection [Mean Survival Time (MST) = 25.6 ± 4 days], showing that IFNG plays a critical role in immunoregulatory mechanisms triggered by ATDCs. IFNG was expressed by TCRαβ(+) CD3(+) CD4(-) CD8(-) NKRP1(-) cells (double negative T cells, DNT), which accumulated in the spleen of tolerant rats. Interestingly, ATDCs specifically induced IFNG production by DNT cells. ATDCs expressed the cytokinic chain Epstein-Barr virus-induced gene 3 (EBI3), an IL-12 family member. EBI3 blockade or knock-down through siRNA completely abolished IFNG expression in DNT cells. Finally, EBI3 blockade in vivo led to allograft rejection (MST = 36.8 ± 19.7 days), demonstrating for the first time a role for EBI3 in transplantation tolerance. Taken together our results have important implications in the rationalization of DC-based therapy in transplantation as well as in the patient immunomonitoring follow-up.

摘要

需要创新的治疗策略来减轻移植中有害免疫抑制的影响。树突状细胞(DC)为基础的治疗是诱导抗原特异性耐受的一种很有前途的方法。我们使用大鼠心脏移植模型,分析了自体耐受诱导性 DC(ATDCs)联合次优免疫抑制促进无限期移植物存活的免疫调节机制。令人惊讶的是,我们确定干扰素-γ(IFNG),一种预期具有促病性的细胞因子,在耐受大鼠的脾脏中增加了三倍。重要的是,其阻断导致同种异体移植物排斥[平均存活时间(MST)= 25.6±4 天],表明 IFNG 在 ATDCs 触发的免疫调节机制中起关键作用。IFNG 由 TCRαβ(+)CD3(+)CD4(-)CD8(-)NKRP1(-)细胞(双阴性 T 细胞,DNT)表达,DNT 细胞在耐受大鼠的脾脏中积累。有趣的是,ATDCs 特异性诱导 DNT 细胞产生 IFNG。ATDCs 表达细胞因子链 Epstein-Barr 病毒诱导基因 3(EBI3),IL-12 家族成员。EBI3 阻断或通过 siRNA 完全敲低可完全消除 DNT 细胞中 IFNG 的表达。最后,体内 EBI3 阻断导致同种异体移植物排斥(MST=36.8±19.7 天),首次证明 EBI3 在移植耐受中的作用。综上所述,我们的结果对于合理应用 DC 为基础的治疗在移植中以及在患者免疫监测随访中具有重要意义。

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