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体外肝脏模型的进展:在药物筛选和治疗中的应用

Advancements in in vitro hepatic models: application for drug screening and therapeutics.

作者信息

Damania Apeksha, Jain Era, Kumar Ashok

机构信息

Department of Biological Sciences and Bioengineering, Indian Institute of Technology Kanpur, Kanpur, 208016, UP, India.

Department of Chemical Engineering, Virginia Polytechnic Institute and State University, Blacksburg, VA, USA.

出版信息

Hepatol Int. 2014 Jan;8(1):23-38. doi: 10.1007/s12072-013-9490-8. Epub 2013 Dec 5.

Abstract

The liver is one of the most complex organs in the body, performing a multitude of functions. Liver tissue engineering is a combination of various strategies that aim at generating functional liver tissue that can help restore and/or support the ailing liver as it recuperates. Conventionally, in vitro culture has involved growing cells in different media compositions or layering them on matrices largely composed of native ECM components such as collagen or Matrigel. With recent advances in technology, more sophisticated techniques are being devised that are better equipped to capture distinct features of the liver in an in vivo microenvironment. Three-dimensional (3D) cultures of liver cells in 3D scaffolds, as spheroids or cell sheets, allow for a high degree of cell-cell and cell-matrix interaction and an in vivo-like architecture. More recently, decellularized matrices have been used as scaffolds that support ideal cell-matrix interactions. Microfabrication technologies initially used to pattern semiconductors in the integrated circuit industry have grown out of this field and now encompass a variety of methods to etch patterns onto both 2D and 3D scaffolds to allow incorporation of custom-made features resembling the fluid network and organization in native liver. This improvisation permits for enhanced vascularization and oxygen diffusion to the in vitro liver tissue. In this review, we discuss the various configurations that have been implemented in the in vitro culture of liver cells and their application in liver therapeutics in the form of implantable liver tissue constructs and tools for drug screening.

摘要

肝脏是人体最复杂的器官之一,执行多种功能。肝脏组织工程是多种策略的组合,旨在生成功能性肝脏组织,以帮助在患病肝脏恢复过程中对其进行修复和/或支持。传统上,体外培养涉及在不同的培养基成分中培养细胞,或将它们分层接种在主要由天然细胞外基质成分(如胶原蛋白或基质胶)组成的基质上。随着技术的最新进展,人们正在设计更复杂的技术,这些技术更有能力在体内微环境中捕捉肝脏的独特特征。肝细胞在三维(3D)支架中以球体或细胞片的形式进行三维培养,可实现高度的细胞-细胞和细胞-基质相互作用以及类似体内的结构。最近,脱细胞基质已被用作支持理想细胞-基质相互作用的支架。微制造技术最初用于集成电路行业中对半导体进行图案化,现已从该领域发展而来,现在包括多种将图案蚀刻到二维和三维支架上的方法,以允许纳入类似于天然肝脏中流体网络和组织的定制特征。这种改进可增强体外肝脏组织的血管化和氧气扩散。在本综述中,我们讨论了在肝细胞体外培养中已实施的各种配置及其在肝脏治疗中的应用,形式为可植入肝脏组织构建体和药物筛选工具。

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