Zhang Lei, Zhao Yong-Hen, Guan Zheng, Ye Jun-Song, de Isla Natalia, Stoltz Jean-François
Affiliated Calmette Hospital of Kun Ming Medical University, Kun Ming, China.
Affiliated Calmette Hospital of Kun Ming Medical University, Kun Ming, China CNRS, UMR 7365, Biopole, Faculté de Médecine, Vandœuvre-lés-Nancy, France.
Biomed Mater Eng. 2015;25(1 Suppl):137-43. doi: 10.3233/BME-141232.
The shortage of organ resource has been limiting the application of liver transplantation. Bioartificial liver construction is increasingly focused as a replacement treatment. To product a bioartificial liver, three elements must be considered: seeding cells, scaffold and bioreactor. Recent studies have shown that several methods can successfully differentiate MSC (mesenchymal stem cells) derived from Wharton's jelly into hepatocyte, such as stimulating MSC by cytokines and growth factors, direct and indirect co-culture MSC with hepatocytes, or promote MSC differentiation by 3-dimensional matrix. In some cases, differentiation of MSC into hepatocytes can also be an alternative approach for whole organ transplantation in treatment of acute and chronic liver diseases. In this review, the characterization of MSC from Wharton's jelly, their potential of application in liver tissue engineering on base of decellularized scaffold, their status of banking and their preclinical work performed will be discussed.
器官资源的短缺一直限制着肝移植的应用。生物人工肝的构建作为一种替代治疗方法越来越受到关注。要生产生物人工肝,必须考虑三个要素:种子细胞、支架和生物反应器。最近的研究表明,有几种方法可以成功地将源自华通氏胶的间充质干细胞(MSC)分化为肝细胞,例如通过细胞因子和生长因子刺激MSC、将MSC与肝细胞直接和间接共培养,或通过三维基质促进MSC分化。在某些情况下,将MSC分化为肝细胞也可以作为治疗急慢性肝病的全器官移植的替代方法。在这篇综述中,将讨论源自华通氏胶的MSC的特性、它们在基于脱细胞支架的肝组织工程中的应用潜力、它们的储存状况以及已开展的临床前工作。