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用于鉴定参与原代人肝细胞体外表型稳定的分子因子的高通量平台

High-Throughput Platform for Identifying Molecular Factors Involved in Phenotypic Stabilization of Primary Human Hepatocytes In Vitro.

作者信息

Shan Jing, Logan David J, Root David E, Carpenter Anne E, Bhatia Sangeeta N

机构信息

Harvard-MIT Division of Health Sciences and Technology, MIT, Cambridge, MA, USA.

The Broad Institute of MIT and Harvard, Cambridge, MA, USA Pfizer Neuroscience and Pain Research Unit, Cambridge, MA, USA.

出版信息

J Biomol Screen. 2016 Oct;21(9):897-911. doi: 10.1177/1087057116660277. Epub 2016 Aug 4.

Abstract

Liver disease is a leading cause of morbidity worldwide and treatment options are limited, with organ transplantation being the only form of definitive management. Cell-based therapies have long held promise as alternatives to whole-organ transplantation but have been hindered by the rapid loss of liver-specific functions over a period of days in cultured hepatocytes. Hypothesis-driven studies have identified a handful of factors that modulate hepatocyte functions in vitro, but our understanding of the mechanisms involved remains incomplete. We thus report here the development of a high-throughput platform to enable systematic interrogation of liver biology in vitro. The platform is currently configured to enable genetic knockdown screens and includes an enzyme-linked immunosorbent assay-based functional assay to quantify albumin output as a surrogate marker for hepatocyte synthetic functions as well as an image-based viability assay that counts hepatocyte nuclei. Using this platform, we identified 12 gene products that may be important for hepatocyte viability and/or liver identity in vitro. These results represent important first steps in the elucidation of mechanisms instrumental to the phenotypic maintenance of hepatocytes in vitro, and we hope that the tools reported here will empower additional studies in various fields of liver research.

摘要

肝脏疾病是全球发病的主要原因之一,治疗选择有限,器官移植是唯一的确定性治疗方式。长期以来,基于细胞的疗法有望成为全器官移植的替代方法,但培养的肝细胞在数天内肝脏特异性功能迅速丧失,阻碍了该疗法的发展。假设驱动的研究已经确定了一些在体外调节肝细胞功能的因素,但我们对其中涉及的机制仍不完全了解。因此,我们在此报告一种高通量平台的开发,以实现对体外肝脏生物学的系统研究。该平台目前配置用于进行基因敲低筛选,包括一种基于酶联免疫吸附测定的功能测定,以量化白蛋白输出作为肝细胞合成功能的替代标志物,以及一种基于图像的活力测定,用于计数肝细胞核。利用这个平台,我们确定了12种基因产物,它们可能对体外肝细胞活力和/或肝脏特性很重要。这些结果代表了阐明体外肝细胞表型维持机制的重要第一步,我们希望这里报道的工具将推动肝脏研究各个领域的更多研究。

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