异种移植
医学
血栓性微血管病
移植
肾
体内
病理
小型猪
动物研究
补体系统
抗体
灌注
肾移植
动物模型
重症监护医学
肾功能
离体
机器灌注
转基因生物
肾脏疾病
急性肾损伤
外科
动物试验
免疫学
人体研究
器官移植
器官捐献
临床试验
作者
Paige M. Porrett,Babak J. Orandi,Vineeta Kumar,Julie Houp,Douglas Anderson,A. Cozette Killian,Vera Hauptfeld-Dolejsek,Dominique E. Martin,Sara Macedon,Natalie Budd,Katherine L. Stegner,Amy Dandro,Maria Kokkinaki,Kasinath V. Kuravi,Rhiannon D. Reed,Huma Fatima,John T. Killian,Gavin Baker,Jackson Perry,Emma D. Wright
摘要
A radical solution is needed for the organ supply crisis, and the domestic pig is a promising organ source. In preparation for a clinical trial of xenotransplantation, we developed an in vivo pre-clinical human model to test safety and feasibility tenets established in animal models. After performance of a novel, prospective compatible crossmatch, we performed bilateral native nephrectomies in a human brain-dead decedent and subsequently transplanted two kidneys from a pig genetically engineered for human xenotransplantation. The decedent was hemodynamically stable through reperfusion, and vascular integrity was maintained despite the exposure of the xenografts to human blood pressure. No hyperacute rejection was observed, and the kidneys remained viable until termination 74 h later. No chimerism or transmission of porcine retroviruses was detected. Longitudinal biopsies revealed thrombotic microangiopathy that did not progress in severity, without evidence of cellular rejection or deposition of antibody or complement proteins. Although the xenografts produced variable amounts of urine, creatinine clearance did not recover. Whether renal recovery was impacted by the milieu of brain death and/or microvascular injury remains unknown. In summary, our study suggests that major barriers to human xenotransplantation have been surmounted and identifies where new knowledge is needed to optimize xenotransplantation outcomes in humans.
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