转基因内皮细胞异种移植植入血管内支架。

M J Kutryk, L M van Dortmont, R P de Crom, A W van der Kamp, P D Verdouw, W J van der Giessen
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引用次数: 0

摘要

提出了一种利用异种移植内皮细胞植入支架的新方法。这种方法的优点是,这些双重转基因动物将提供无限的内皮细胞供应,产生可控水平的活性化合物。这些外来细胞将扮演特洛伊木马的角色,表面上被宿主接受,但能够改变血管损伤的病理生理反应,典型的是再狭窄过程。一旦植入,生物活性化合物的生产就受到外源控制,通过编码修饰细胞表面受体的“设计”基因,这些基因与转基因一起引入,以提供可控制的化合物水平。口服给药的化合物与修饰的细胞受体的相互作用将开启转基因,而在没有它的情况下,转基因仍处于休眠状态。我们已经能够证明这种方法对其他动物物种的可行性,并且它显示出应用于人类的巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seeding of intravascular stents by the xenotransplantation of genetically modified endothelial cells.

A novel approach of cell seeding of stents using xenotransplanted endothelium is proposed. The advantages of this approach are that these doubly transgenic animals will provide a limitless supply of endothelial cells producing controllable levels of active compound. These foreign cells will act as Trojan horses, graciously accepted at face value by the host organism, but capable of modifying the pathophysiological response to vessel damage, typified by the process of restenosis. Once implanted, the production of the bioactive compound is under exogenous control by means of 'designer' genes coding for modified cell surface receptors, which are introduced with the transgene to provide controllable levels of compound. Interaction of an orally administered compound with the modified cell receptor will switch on the transgene, while in its absence the transgene remains dormant. We have been able to show the feasibility this type of approach has for other animal species, and it shows great potential for application to humans.

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