Porcine genome engineering for xenotransplantation

异种移植 免疫系统 生物 炎症 医学 生物信息学 免疫学 移植 内科学
作者
Dong Niu,Xiang Ma,Taoyan Yuan,Yifan Niu,Yibin Xu,Zhongxin Sun,Ping Yuan,Weifen Li,Jufang Zhang,Tao Wang,George M. Church
出处
期刊:Advanced Drug Delivery Reviews [Elsevier BV]
卷期号:168: 229-245 被引量:39
标识
DOI:10.1016/j.addr.2020.04.001
摘要

The extreme shortage of human donor organs for treatment of patients with end-stage organ failures is well known. Xenotransplantation, which might provide unlimited organ supply, is a most promising strategy to solve this problem. Domestic pigs are regarded as ideal organ-source animals owing to similarity in anatomy, physiology and organ size to humans as well as high reproductive capacity and low maintenance cost. However, several barriers, which include immune rejection, inflammation and coagulative dysfunctions, as well as the cross-species transmission risk of porcine endogenous retrovirus, blocked the pig-to-human xenotransplantation. With the rapid development of genome engineering technologies and the potent immunosuppressive medications in recent years, these barriers could be eliminated through genetic modification of pig genome together with the administration of effective immunosuppressants. A number of candidate genes involved in the regulation of immune response, inflammation and coagulation have been explored to optimize porcine xenograft survival in non-human primate recipients. PERV inactivation in pigs has also been accomplished to firmly address the safety issue in pig-to-human xenotransplantation. Many encouraging preclinical milestones have been achieved with some organs surviving for years. Therefore, the clinical trials of some promising organs, such as islet, kidney and heart, are aimed to be launched in the near future.
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