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Bone marrow-derived immature dendritic cells prime in vivo alloreactive T cells for interleukin-4-dependent rejection of major histocompatibility complex class II antigen-disparate cardiac allograft

机译:骨髓来源的未成熟树突状细胞可在体内刺激同种异体反应性T细胞,从而对主要组织相容性复合物II类抗原不同的心脏同种异体白细胞介素4依赖性排斥

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摘要

BACKGROUND: Dendritic cells (DC) at the immature state express low levels of major histocompatibility complex and costimulatory molecules and are poor stimulators of primary T-cell response in vitro. Injection of immature bone marrow-derived DC, however, was shown to prime in vivo alloreactive CD4 T lymphocytes toward type 2 cytokine-producing cells in the absence of CD8 T-cell activation. METHODS: We undertook the present study to determine whether Th2-immunization by immature DC could lead to allograft rejection. We first analyzed, in the major histocompatibility complex class II antigen-disparate B6-anti-bm12 combination, the capacity of immature DC to regulate the activity of alloreactive CD4 T cells. We then determined, in this model of weak antigenicity, whether injection of bm12 DC in B6 recipients before transplantation could modify the survival of vascularized bm12 cardiac allografts. RESULTS: We confirmed that in vitro immature DC are poor stimulators of T-cell alloresponse. However, when given in vivo, immature bm12 DC primed anti-bm12 T cells for the production of interleukin (IL)-4. Moreover, they induced the acute rejection of bm12 cardiac allograft. The process of rejection was dependent on IL-4 because immunization of IL-4-deficient mice did not trigger rejection. CONCLUSIONS: Allogeneic immature DC generated with granulocyte-macrophage colony-stimulating factor are potent stimulators of primary alloreactive response in vivo and prime for transplant rejection. Our results indicate that strategies based on immature DC for the induction of transplantation tolerance should be considered with caution.
机译:背景:未成熟状态的树突状细胞(DC)表达低水平的主要组织相容性复合物和共刺激分子,并且在体外对原代T细胞反应的刺激性较差。然而,未成熟的骨髓来源的DC的注射显示,在没有CD8 T细胞活化的情况下,体内的同种异体反应性CD4 T淋巴细胞向2型细胞因子产生细胞致敏。方法:我们进行了本研究,以确定未成熟DC进行的Th2免疫是否可导致同种异体移植排斥。我们首先在主要的组织相容性复杂的II类抗原不同的B6-anti-bm12组合中分析了未成熟DC调节同种反应性CD4 T细胞活性的能力。然后,在这种弱抗原性模型中,我们确定了在移植前在B6受体中注射bm12 DC是否可以改变血管化bm12心脏同种异体移植的存活率。结果:我们证实体外未成熟的DC是T细胞过敏反应的不良刺激物。但是,当在体内给予时,未成熟的bm12 DC引发的抗bm12 T细胞可产生白介素(IL)-4。此外,他们诱导了bm12心脏异体移植的急性排斥反应。排斥反应的过程取决于IL-4,因为对IL-4缺陷小鼠的免疫接种不会触发排斥反应。结论:粒细胞巨噬细胞集落刺激因子产生的同种异体未成熟DC是体内主要的同种反应性反应的有效刺激物,并且是移植排斥的主要刺激物。我们的结果表明,应谨慎考虑基于未成熟DC诱导移植耐受的策略。

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