首页> 外文期刊>Transplantation Proceedings >The hDAF exogene protects swine endothelial and peripheral blood mononuclear cells from xenoreactive antibody mediated cytotoxicity in hDAF transgenic pigs.
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The hDAF exogene protects swine endothelial and peripheral blood mononuclear cells from xenoreactive antibody mediated cytotoxicity in hDAF transgenic pigs.

机译:hDAF外源基因可保护猪内皮和外周血单核细胞免受hDAF转基因猪中异种反应抗体介导的细胞毒性的影响。

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Xenoreactive antibody-induced complement activation and cytotoxicity poses a major obstracle to xenograft survival in humans. Previously, we have generated transgenic pigs carrying the hDAF exogene to help overcome this problem. In this study, we examined whether the hDAF exogene in various swine cells shows an equally protective effect for the complement-mediated cytotoxicity induced by human xenoreactive antibodies. Pig peripheral blood mononuclear cells (PBMCs) and aortic endothelial cells (PAECs) were used as targets. Fresh human serum was harvested from a single healthy human donor as the source of human xenoreactive antibodies and complement. The target cells cocultured with medium containing various concentrations of human serum for 24 hours were evaluated using the 3-[4,5-dimethylthiaolyl]-2,5-diphenyl-tetrazolium bromide assay for cellular viability. We observed that xenoreactive antibody plus human complement-mediated cellular cytoxicity dose-dependently correlated with the concentration of human serum in the culture medium. As compared with the PBMCs from the normal pigs, PBMCs from hDAF transgenic pigs showed significantly better survival after treatment with human serum (P < .05). Similarly, the survival of PAECs from the hDAF transgenic pig were also significantly higher than that from normal pigs (P < .05). Our data demonstrated a protective effect from human xenoreactive antibodies and complement-mediated cytoxicity of hDAF exogenes in pig PBMCs and PAECs. These observations support the clinical value of the hDAF transgenic pig as an organ donor in xenotransplantation.
机译:异种反应性抗体诱导的补体激活和细胞毒性对人类异种移植物的存活构成主要障碍。以前,我们已经产生了携带hDAF外源基因的转基因猪,以帮助克服这一问题。在这项研究中,我们检查了各种猪细胞中的hDAF外源基因是否对人异种反应性抗体诱导的补体介导的细胞毒性具有同样的保护作用。猪外周血单核细胞(PBMC)和主动脉内皮细胞(PAEC)用作靶标。从单个健康人供体中收获新鲜的人血清作为人异种反应性抗体和补体的来源。使用3- [4,5-二甲基噻唑基] -2,5-二苯基溴化四溴化铵测定法评估与含有各种浓度的人血清的培养基共培养24小时的靶细胞的细胞活力。我们观察到异种反应抗体加人补体介导的细胞细胞毒性与培养基中人血清的浓度呈剂量相关。与正常猪的PBMC相比,转染hDAF的猪的PBMC在用人血清治疗后显示出明显更好的存活率(P <.05)。同样,hDAF转基因猪的PAEC存活率也显着高于正常猪(P <.05)。我们的数据证明了人异种反应性抗体的保护作用以及猪PBMC和PAEC中hDAF外源性补体介导的细胞毒性。这些观察结果支持了hDAF转基因猪作为异种移植中的器官供体的临床价值。

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