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用于肝脏再生的去细胞肝脏支架

Decellularized Liver Scaffold for Liver Regeneration.

作者信息

Yang Wei, Xia Renpei, Zhang Yujun, Zhang Hongyu, Bai Lianhua

机构信息

Hepatobiliary Institute, Southwest Hospital, Third Military Medical University, No. 30 Gaotan Yan, ShapingBa District, Chongqing, 400038, China.

出版信息

Methods Mol Biol. 2018;1577:11-23. doi: 10.1007/7651_2017_53.

Abstract

After being initially hailed as the ultimate solution to end-stage organ failure, such as end-stage liver disease (ESLD), engineering of vascularized tissues has stalled because of the need for a well-structured circulatory system that can maintain the cells to be seeded inside the construct.In the field of regenerative medicine, decellularized scaffolds, derived mainly from various non-autologous whole organs, have become an emerging treatment technique to overcome this obstacle. As a result of significant progress made in recent years, organogenesis through whole-organ decellularization scaffolds may now become more feasible than ever before. In this chapter, we describe in detail the necessary steps for liver organogenesis using a decellularized acellular scaffold (DAS), seed cell isolation, and recellularization in a bioreactor-like culture system. This new technique to re-engineer organs may have major implications for the fields of drug discovery, organ transplantation, and ultimately regenerative medicine.

摘要

在最初被誉为终末期器官衰竭(如终末期肝病,ESLD)的终极解决方案后,由于需要一个能够维持构建体内接种细胞的结构良好的循环系统,血管化组织工程陷入了停滞。在再生医学领域,主要源自各种非自体全器官的脱细胞支架已成为克服这一障碍的新兴治疗技术。由于近年来取得的重大进展,通过全器官脱细胞支架进行器官发生现在可能比以往任何时候都更加可行。在本章中,我们详细描述了使用脱细胞无细胞支架(DAS)进行肝脏器官发生、种子细胞分离以及在类似生物反应器的培养系统中重新细胞化的必要步骤。这种重新构建器官的新技术可能对药物发现、器官移植以及最终的再生医学领域产生重大影响。

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