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Surface modification of pig endothelial cells with a branched heparin conjugate improves their compatibility with human blood

机译:用分支肝素结合物对猪内皮细胞进行表面修饰可改善其与人血的相容性

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摘要

Corline Heparin Conjugate (CHC), a compound of multiple unfractionated heparin chains, coats cells with a glycocalyx-like layer and may inhibit (xeno) transplant-associated activation of the plasma cascade systems. Here, we investigated the use of CHC to protect WT and genetically modified (GTKO. hCD46. hTBM) pig aortic endothelial cells (PAEC) in two pig-to-human in vitro xenotransplantation settings. Model 1: incubation of untreated or hTNFa-treated PAEC with 10% human plasma induced complement C3b/c and C5b-9 deposition, cellular activation and coagulation activation in WT and GTKO. hCD46. hTBM PAEC. Coating of untreated or hTNFa-treated PAEC with CHC (100 mu g/ml) protected against human plasma-induced endothelial activation and damage. Model 2: PAEC were grown on microcarrier beads, coated with CHC, and incubated with non-anticoagulated whole human blood. Genetically modified PAEC significantly prolonged clotting time of human blood (115.0 +/- 16.1 min, p < 0.001) compared to WT PAEC (34.0 +/- 8.2 min). Surface CHC significantly improved the human blood compatibility of PAEC, as shown by increased clotting time (WT: 84.3 +/- 11.3 min, p < 0.001; GTKO. hCD46. hTBM: 146.2 +/- 20.4 min, p < 0.05) and reduced platelet adhesion, complement activation, coagulation activation and inhibition of fibrinolysis. The combination of CHC coating and genetic modification provided the greatest compatibility with human blood, suggesting that pre-transplant perfusion of genetically modified porcine organs with CHC may benefit post-transplant xenograft function.
机译:Corline Heparin Conjugate(CHC)是多种未分级肝素链的化合物,在细胞上覆盖了糖萼状层,并可能抑制血浆异种级联系统的(异种)移植相关活化。在这里,我们研究了使用CHC在两个猪到人的体外异种移植环境中保护野生型和转基因(GTKO。hCD46。hTBM)猪主动脉内皮细胞(PAEC)。模型1:将未处理或hTNFa处理的PAEC与10%人血浆诱导的补体C3b / c和C5b-9沉积,WT和GTKO中的细胞活化和凝血活化孵育。 hCD46。 hTBM PAEC。未处理的或hTNFa处理的PAEC涂有CHC(100μg / ml),可防止人血浆诱导的内皮细胞活化和损伤。模型2:PAEC在微载体珠粒上生长,涂有CHC,并与非抗凝全人类血液孵育。与WT PAEC(34.0 +/- 8.2分钟)相比,转基因PAEC显着延长了人类血液的凝结时间(115.0 +/- 16.1分钟,p <0.001)。表面CHC显着改善了PAEC与人血液的相容性,凝血时间增加(WT:84.3 +/- 11.3分钟,p <0.001; GTKO。hCD46。hTBM:146.2 +/- 20.4 min,p <0.05)并降低了血小板粘附,补体激活,凝血激活和纤溶抑制。 CHC涂层和基因修饰的结合提供了与人类血液的最大相容性,这表明对具有CHC的转基因猪器官进行移植前灌注可能有益于移植后异种移植功能。

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