异种移植
医学
血栓性微血管病
生物人工肝装置
肝切除术
肝移植
凝结
肝组织
生物信息学
免疫学
计算生物学
肝再生
肝衰竭
人肝
重症监护医学
猪肝
癌症研究
肝静脉
生物
移植物排斥
摘要
Genetically engineered porcine organs are redefining the boundaries of clinical xenotransplantation. Zhang et al. now report the first functional pig-to-human liver xenotransplantation in a living patient, demonstrating that a 10-gene-edited auxiliary porcine liver can engraft, produce bile, and synthesize metabolic and coagulation factors in vivo. The xenograft supported a high-risk hepatectomy with borderline remnant volume and contributed to early postoperative stability, although xenotransplant-associated thrombotic microangiopathy ultimately required graft removal. The case highlights both the promise of xenogeneic hepatic support and the physiologic limits that currently preclude durable therapy, including thrombocytopenia, complement-coagulation incompatibility, portal-flow competition, and challenges in assessing dual-graft function. These results establish proof-of-concept for temporary porcine liver support in humans and outline key priorities for next-generation designs: optimized thromboregulation, mitigation of xTMA, improved immunomodulation, and strategies for controlled transition to native-liver autonomy.
科研通智能强力驱动
Strongly Powered by AbleSci AI