Barlabé Paula, Aranguren Xabier L, Coppiello Giulia
Biomedical Engineering Program, Enabling Technologies Division, CIMA Universidad de Navarra, 31008, Pamplona, Spain.
Stem Cell Res Ther. 2025 Jun 23;16(1):321. doi: 10.1186/s13287-025-04426-y.
The generation of organs derived from pluripotent stem cells can be achieved in vivo through the blastocyst complementation technique. This method is based on the introduction of pluripotent stem cells into organogenesis-disabled pre-implantation embryos, where environmental signals instruct donor cells to colonize the vacant niche and to develop into the missing organ. When applied interspecies, this approach has the potential to produce human organs in genetically engineered livestock, offering a promising solution to the global transplants' shortage crisis. In this review, we summarize the current progress in blastocyst complementation research and highlight the key challenges that must be addressed to advance this field.
通过囊胚互补技术可在体内实现多能干细胞衍生器官的生成。该方法基于将多能干细胞引入器官发生缺陷的植入前胚胎,在这种胚胎中,环境信号引导供体细胞占据空缺的生态位并发育成缺失的器官。当应用于种间时,这种方法有可能在基因工程家畜中产生人类器官,为全球移植短缺危机提供一个有前景的解决方案。在本综述中,我们总结了囊胚互补研究的当前进展,并强调了推进该领域必须解决的关键挑战。