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用于药物测试和细胞分化研究的生物工程肝脏模型

Bioengineered Liver Models for Drug Testing and Cell Differentiation Studies.

作者信息

Underhill Gregory H, Khetani Salman R

机构信息

Department of Bioengineering, University of Illinois at Urbana-Champaign, Urbana, Illinois.

Department of Bioengineering, University of Illinois at Chicago, Chicago, Illinois.

出版信息

Cell Mol Gastroenterol Hepatol. 2017 Dec 6;5(3):426-439.e1. doi: 10.1016/j.jcmgh.2017.11.012. eCollection 2018 Mar.

Abstract

In vitro models of the human liver are important for the following: (1) mitigating the risk of drug-induced liver injury to human beings, (2) modeling human liver diseases, (3) elucidating the role of single and combinatorial microenvironmental cues on liver cell function, and (4) enabling cell-based therapies in the clinic. Methods to isolate and culture primary human hepatocytes (PHHs), the gold standard for building human liver models, were developed several decades ago; however, PHHs show a precipitous decline in phenotypic functions in 2-dimensional extracellular matrix-coated conventional culture formats, which does not allow chronic treatment with drugs and other stimuli. The development of several engineering tools, such as cellular microarrays, protein micropatterning, microfluidics, biomaterial scaffolds, and bioprinting, now allow precise control over the cellular microenvironment for enhancing the function of both PHHs and induced pluripotent stem cell-derived human hepatocyte-like cells; long-term (4+ weeks) stabilization of hepatocellular function typically requires co-cultivation with liver-derived or non-liver-derived nonparenchymal cell types. In addition, the recent development of liver organoid culture systems can provide a strategy for the enhanced expansion of therapeutically relevant cell types. Here, we discuss advances in engineering approaches for constructing in vitro human liver models that have utility in drug screening and for determining microenvironmental determinants of liver cell differentiation/function. Design features and validation data of representative models are presented to highlight major trends followed by the discussion of pending issues that need to be addressed. Overall, bioengineered liver models have significantly advanced our understanding of liver function and injury, which will prove useful for drug development and ultimately cell-based therapies.

摘要

人类肝脏的体外模型对于以下方面具有重要意义

(1)降低药物性肝损伤对人类的风险;(2)模拟人类肝脏疾病;(3)阐明单一和组合微环境线索对肝细胞功能的作用;(4)实现临床中的细胞疗法。分离和培养原代人肝细胞(PHHs)的方法在几十年前就已开发出来,它是构建人类肝脏模型的金标准;然而,在二维细胞外基质包被的传统培养模式下,PHHs的表型功能会急剧下降,这种模式不允许对药物和其他刺激进行长期处理。一些工程工具的发展,如细胞微阵列、蛋白质微图案化、微流体技术、生物材料支架和生物打印技术,现在能够精确控制细胞微环境,以增强PHHs和诱导多能干细胞衍生的人肝细胞样细胞的功能;肝细胞功能的长期(4周以上)稳定通常需要与肝脏来源或非肝脏来源的非实质细胞类型共培养。此外,肝脏类器官培养系统的最新发展可以为治疗相关细胞类型的增强扩增提供一种策略。在此,我们讨论构建体外人类肝脏模型的工程方法的进展,这些模型在药物筛选以及确定肝细胞分化/功能的微环境决定因素方面具有实用性。展示了代表性模型的设计特点和验证数据,以突出主要趋势,随后讨论了需要解决的悬而未决的问题。总体而言,生物工程肝脏模型显著推进了我们对肝功能和损伤的理解,这将被证明对药物开发以及最终的细胞疗法有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b972/5904032/b7673c812b8b/gr1.jpg

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