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首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Alloantibody and intragraft cellular response to MHC class I-disparate kidney allografts in recipients tolerized by donor-specific transfusion and cyclosporine.
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Alloantibody and intragraft cellular response to MHC class I-disparate kidney allografts in recipients tolerized by donor-specific transfusion and cyclosporine.

机译:供体特异性输血和环孢菌素耐受的受体中同种抗体和移植物中细胞对MHC I类异种肾脏同种异体移植的反应。

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Congenic PVG.RT1u rats rapidly reject Aa class I-disparate kidney allografts from recombinant PVG R8 donors and we recently demonstrated that anti-class I MHC alloantibody plays a critical role in effecting acute rejection in this experimental model. In this article, we show that PVG.RT1u recipients can be rendered permanently and specifically tolerant to R8 kidney allografts by administration of four weekly donor-specific transfusions (DST) combined with a 7-day course of cyclosporine given with the first DST. Tolerance induction correlated with abrogation of a cytotoxic alloantibody response by thymus-independent, i.e., peripheral mechanisms; IgM and all IgG subclasses of anti-class I alloantibody were abolished. In contrast, nonrejecting kidney allografts in tolerant rats and rejecting grafts from unmodified recipients were similarly infiltrated by mononuclear cells, and intragraft transcripts for interleukin (IL)-2, interferon-gamma, and IL-13 were readily detected by reverse transcriptase polymerase chain reaction with no apparent quantitative difference between the two groups. Messenger RNA for IL-4 and IL-10 was present in rejecting grafts but barely detectable in grafts from tolerant animals. These results suggest that tolerance induction by DST and cyclosporine is, in this experimental model, associated with a selective impairment in humoral alloimmunity.
机译:同系PVG.RT1u大鼠迅速排斥来自重组PVG R8供体的Aa类I异种肾脏同种异体移植物,我们最近证明,抗I类MHC同种抗体在该实验模型中对急性排斥起关键作用。在本文中,我们显示可以通过每周进行四次供体特异性输血(DST)联合首日DST给予7天的环孢素疗程,使PVG.RT1u受体永久且特异地耐受R8肾移植。耐受诱导与不依赖胸腺即周围机制的细胞毒性同种抗体应答的消除有关;消除了IgM和抗I类同种抗体的所有IgG亚类。相比之下,单核细胞浸润耐受性大鼠的同种异体肾移植和未修饰受体的排斥同种异体移植物,逆转录酶聚合酶链反应可轻松检测出白介素(IL)-2,干扰素-γ和IL-13的移植物转录本。两组之间没有明显的定量差异。 IL-4和IL-10的Messenger RNA存在于排斥反应的移植物中,但在耐性动物的移植物中几乎检测不到。这些结果表明,在该实验模型中,DST和环孢菌素诱导的耐受性与体液同种免疫的选择性损伤有关。

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