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水凝胶微粒与三维肝祖细胞球体的整合

Integration of Hydrogel Microparticles With Three-Dimensional Liver Progenitor Cell Spheroids.

作者信息

Gentile Stefan D, Kourouklis Andreas P, Ryoo Hyeon, Underhill Gregory H

机构信息

Department of Bioengineering, University of Illinois at Urbana-Champaign, Champaign, IL, United States.

出版信息

Front Bioeng Biotechnol. 2020 Jul 21;8:792. doi: 10.3389/fbioe.2020.00792. eCollection 2020.

Abstract

The study of the liver progenitor cell microenvironment has demonstrated the important roles of both biochemical and biomechanical signals in regulating the progenitor cell functions that underlie liver morphogenesis and regeneration. While controllable two-dimensional culture systems have provided key insights into the effects of growth factors and extracellular matrix composition and mechanics on liver differentiation, it remains unclear how microenvironmental signals may differentially affect liver progenitor cell responses in a three-dimensional (3D) culture context. In addition, there have only been limited efforts to engineer 3D culture models of liver progenitor cells through the tunable presentation of microenvironmental stimuli. We present an model of 3D liver progenitor spheroidal cultures with integrated polyethylene glycol hydrogel microparticles for the internal presentation of modular microenvironmental cues and the examination of the combinatorial effects with an exogenous soluble factor. In particular, treatment with the growth factor TGFβ1 directs differentiation of the spheroidal liver progenitor cells toward a biliary phenotype, a behavior which is further enhanced in the presence of hydrogel microparticles. We further demonstrate that surface modification of the hydrogel microparticles with heparin influences the behavior of liver progenitor cells toward biliary differentiation. Taken together, this liver progenitor cell culture system represents an approach for controlling the presentation of microenvironmental cues internalized within 3D spheroidal aggregate cultures. Overall, this strategy could be applied toward the engineering of instructive microenvironments that control stem and progenitor cell differentiation within a 3D context for studies in tissue engineering, drug testing, and cellular metabolism.

摘要

肝祖细胞微环境的研究表明,生化信号和生物力学信号在调节肝形态发生和再生所依赖的祖细胞功能方面均发挥着重要作用。虽然可控的二维培养系统为生长因子、细胞外基质组成和力学对肝分化的影响提供了关键见解,但在三维(3D)培养环境中,微环境信号如何差异性地影响肝祖细胞反应仍不清楚。此外,通过微环境刺激的可调呈现来构建肝祖细胞的3D培养模型的努力也很有限。我们提出了一种3D肝祖细胞球体培养模型,该模型集成了聚乙二醇水凝胶微粒,用于内部呈现模块化微环境线索,并研究其与外源性可溶性因子的组合效应。特别是,用生长因子TGFβ1处理可引导球体肝祖细胞向胆管表型分化,在存在水凝胶微粒的情况下,这种行为会进一步增强。我们进一步证明,用肝素对水凝胶微粒进行表面修饰会影响肝祖细胞向胆管分化的行为。综上所述,这种肝祖细胞培养系统代表了一种控制3D球体聚集体培养物中内化的微环境线索呈现的方法。总体而言,该策略可应用于构建指导性微环境,以在3D环境中控制干细胞和祖细胞分化,用于组织工程、药物测试和细胞代谢研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/690c/7385057/0d1d53a5c707/fbioe-08-00792-g001.jpg

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