异种移植排斥——分子机制和治疗意义。

Therapeutic immunology Pub Date : 1994-01-01
J C Magee, J L Platt
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引用次数: 0

摘要

系统发育较远物种间血管化异种移植物的排斥反应是自然抗体与移植物内皮结合和补体激活的结果。随后的内皮细胞生理功能障碍导致血管完整性丧失,最终导致移植物失败。在实验模型中,旨在阻止抗体结合和补体激活的初始步骤的策略已经成功地阻止了超急性排斥反应,从而显著延长了异种移植物的存活时间。对异种移植排斥机制的快速了解,以及利用分子生物学、免疫学和血管生物学的最新进展来对抗这些机制的潜在能力,鼓励了不协调异种移植可能被证明具有临床应用价值。
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Xenograft rejection--molecular mechanisms and therapeutic implications.

The rejection of a vascularized xenograft between phylogenetically distant species is a result of natural antibody binding to the graft endothelium and the activation of complement. The subsequent dysfunction of endothelial cell physiology results in the loss of vascular integrity and ultimately the failure of the graft. Strategies aimed at preventing the initial steps of antibody binding and complement activation have successfully prevented hyperacute rejection in experimental models resulting in a significant prolongation of xenograft survival. The rapidly increasing understanding of the mechanisms of xenograft rejection, and the potential ability to counter these mechanisms using recent advances in molecular biology, immunology, and vascular biology, provide encouragement that discordant xenotransplantation may prove clinically applicable.

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