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用于研究人肝培养物中生长因子传递方式的聚电解质多层平台。

A polyelectrolyte multilayer platform for investigating growth factor delivery modes in human liver cultures.

机构信息

School of Biomedical Engineering, Colorado State University, Fort Collins, Colorado.

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

出版信息

J Biomed Mater Res A. 2018 Apr;106(4):971-984. doi: 10.1002/jbm.a.36293. Epub 2017 Dec 4.

Abstract

Polyelectrolyte multilayers (PEMs) of chitosan and heparin are useful for mimicking growth factor (GF) binding to extracellular matrix (ECM) as in vivo. Here, we developed a PEM platform for delivering bound/adsorbed GFs to monocultures of primary human hepatocytes (PHHs) and PHH/non-parenchymal cell (NPC) co-cultures, which are useful for drug development and regenerative medicine. The effects of ECM protein coating (collagen I, fibronectin, and Matrigel®) and terminal PEM layer on PHH attachment/functions were determined. Then, heparin-terminated/fibronectin-coated PEMs were used to deliver varying concentrations of an adsorbed model GF, transforming growth factor β (TGFβ), to PHH monocultures while using soluble TGFβ delivery via culture medium as the conventional control. Soluble TGFβ delivery caused a severe, monotonic, and sustained downregulation of all PHH functions measured (albumin and urea secretions, cytochrome-P450 2A6 and 3A4 enzyme activities), whereas adsorbed TGFβ delivery caused transient upregulation of 3 out of 4 functions. Finally, functionally stable co-cultures of PHHs and 3T3-J2 murine embryonic fibroblasts were created on the heparin-terminated/fibronectin-coated PEMs modified with adsorbed TGFβ to elucidate similarities and differences in functional response relative to the monocultures. In conclusion, chitosan-heparin PEMs constitute a robust platform for investigating the effects of GF delivery modes on PHH monocultures and PHH/NPC co-cultures. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 106A: 971-984, 2018.

摘要

聚电解质多层(PEM)壳聚糖和肝素是有用的模拟生长因子(GF)结合到细胞外基质(ECM)作为在体内。在这里,我们开发了一个 PEM 平台用于传递绑定/吸附的 GF 到原代人肝细胞(PHH)和 PHH/非实质细胞(NPC)共培养物的单培养物,这是用于药物开发和再生医学。确定 ECM 蛋白涂层(胶原 I、纤连蛋白和基质胶®)和终端 PEM 层对 PHH 附着/功能的影响。然后,肝素端/纤连蛋白涂层的 PEM 用于传递不同浓度的吸附模型 GF,转化生长因子β(TGFβ),到 PHH 单培养物,同时使用培养基中的可溶性 TGFβ传递作为传统对照。可溶性 TGFβ传递导致所有 PHH 功能(白蛋白和尿素分泌、细胞色素 P450 2A6 和 3A4 酶活性)的严重、单调和持续下调,而吸附的 TGFβ传递导致 4 种功能中的 3 种功能短暂上调。最后,在肝素端/纤连蛋白涂层的 PEM 上创建 PHH 和 3T3-J2 鼠胚胎成纤维细胞功能稳定的共培养物,用吸附的 TGFβ进行修饰,以阐明相对于单培养物在功能反应方面的相似性和差异。总之,壳聚糖-肝素 PEM 构成了一个强大的平台,用于研究 GF 传递模式对 PHH 单培养物和 PHH/NPC 共培养物的影响。©2017 年 Wiley 期刊,公司。J 生物医学材料 Res 部分 A:971-984,2018 年。

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