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首页> 外文期刊>Developmental Immunology: Journal of Immunology Research >Inhibition of Arterial Allograft Intimal Hyperplasia Using Recipient Dendritic Cells Pretreated with B7 Antisense Peptide
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Inhibition of Arterial Allograft Intimal Hyperplasia Using Recipient Dendritic Cells Pretreated with B7 Antisense Peptide

机译:使用B7反义肽预处理的受体树突状细胞抑制同种异体动脉内膜增生

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Background. Low expression or absence of dendritic cell (DC) surface B7 molecules can induce immune tolerance or hyporesponse. Whether DCs could induce indirect allogeneic-specific cross-tolerance or hyporesponse to recipient T cells remains unclear.Methods. Generated from C3H/He mice bone marrow cells pulsed with donor antigen from C57BL/6 mice, recipient DCs were incubated with B7 antisense peptide (B7AP). Immune regulatory activities were examinedin vitroby a series of mixed lymphocyte reactions. Murine allogeneic carotid artery orthotopic transplantation was performed from C57BL/6 to C3H/He. Recipients were given B7AP-treated DCs 7 days before transplantation. Allograft pathological analysis was done 2 months after transplantation.Results. B7AP-pretreated DCs markedly inhibited T-cell proliferation compared with untreated group. Pretreated T cells exhibited markedly reduced response to alloantigen versus third-party antigen. Pathological analysis of arterial allografts demonstrated significant reduction of intimal hyperplasia in B7-AP pretreated group versus control.Conclusion. Blockade of B7 molecules by B7AP could induce indirect allogeneic-specific hyporesponse and inhibit arterial allograft intimal hyperplasia, which may be involved in future strategies for human allograft chronic rejection.
机译:背景。树突状细胞(DC)表面B7分子的低表达或缺乏会诱导免疫耐受或反应低下。 DC是否可以诱导间接的同种异体特异性交叉耐受或对受体T细胞的反应低下尚不清楚。从C3H / He小鼠骨髓细胞产生的细胞中,用来自C57BL / 6小鼠的供体抗原脉冲,将受体DC与B7反义肽(B7AP)孵育。通过一系列混合淋巴细胞反应在体外检查免疫调节活性。从C57BL / 6到C3H / He进行小鼠同种异体颈动脉原位移植。移植前7天给接受B7AP处理的DC。移植后2个月进行同种异体移植病理分析。与未治疗组相比,经B7AP预处理的DC显着抑制T细胞增殖。与第三方抗原相比,预处理的T细胞对同种抗原的反应明显降低。动脉同种异体移植物的病理分析表明,与对照组相比,B7-AP预处理组的内膜增生明显减少。 B7AP对B7分子的阻断可诱导间接的同种异体特异性反应减退并抑制动脉同种异体内膜增生,这可能与人类同种异体移植慢性排斥反应的未来策略有关。

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