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基于液晶的复合基质通过机械调节过程对人脐带间充质干细胞细胞功能反应的影响。

The effects of liquid crystal-based composite substrates on cell functional responses of human umbilical cord-derived mesenchymal stem cells by mechano-regulatory process.

作者信息

Wu Hao, Shang Yupan, Zhang Jiaqing, Cheang Lek Hang, Zeng Xiaoli, Tu Mei

机构信息

1 Department of Orthopaedics, The First Affiliated Hospital, 47885 Jinan University , Guangzhou, China.

2 Department of Biochemistry and Molecular Biology, School of Medicine, 47885 Jinan University , Guangzhou, China.

出版信息

J Biomater Appl. 2017 Oct;32(4):492-503. doi: 10.1177/0885328217733378.

Abstract

Physical properties of extracellular matrix, including elasticity and microstructure, have been considered as important factors inducing stem cell differentiation. This study developed a novel type of liquid crystal-based matrix by combining the elastic property of polyurethane with viscoelastic liquid crystal to generate a soft elastic response resembling physical microenvironment of stem cell niche, and explored the mechano-driving cell behaviors. Addition of varying liquid crystal concentration (10 wt%, 30 wt% and 50 wt%) had great effects on surface morphology and elastic modulus of liquid crystal/ polyurethane composite substrates. Changes in microstructure and elastic modulus of the substrates could cause intense cell responses that influenced cell properties, including proliferation, adhesion, and osteogenic differentiation. Human umbilical cord-derived mesenchymal stem cells (hUC-MSCs) cultured on both liquid crystal-10/polyurethane and liquid crystal-30/polyurethane substrates exhibited higher viability, more actin filament, and larger spreading area while liquid crystal-50/polyurethane substrates seemed not to favor cell attachment and spreading. Alkaline phosphatase activity and calcium deposition were significantly improved with hUC-MSCs on both liquid crystal-10/ polyurethane and liquid crystal-30/ polyurethane substrates, and the maximal alkaline phosphatase activity was observed in liquid crystal-10/ polyurethane while the lowest in liquid crystal-50/ polyurethane. Osteopontin was upregulated to a high level in both liquid crystal-10/ polyurethane and liquid crystal-30/ polyurethane groups after 14 days culturing; the maximal expression of osteocalcin and related transcription factor 2 were found in liquid crystal-10/ polyurethane group on day 21. Our findings revealed that hUC-MSCs could intensely sense the bioactive patterns and soft-matter feature of liquid crystal domains and subsequently modulated cell behaviors, which may prove useful in the development of new class of biomaterials for applications in tissue engineering and regenerative medicine.

摘要

细胞外基质的物理性质,包括弹性和微观结构,被认为是诱导干细胞分化的重要因素。本研究通过将聚氨酯的弹性与粘弹性液晶相结合,开发了一种新型的基于液晶的基质,以产生类似于干细胞微环境物理微环境的软弹性响应,并探索了机械驱动的细胞行为。添加不同浓度的液晶(10 wt%、30 wt%和50 wt%)对液晶/聚氨酯复合基底的表面形态和弹性模量有很大影响。基底微观结构和弹性模量的变化会引起强烈的细胞反应,影响细胞特性,包括增殖、粘附和成骨分化。在液晶-10/聚氨酯和液晶-30/聚氨酯基底上培养的人脐带间充质干细胞(hUC-MSCs)表现出更高的活力、更多的肌动蛋白丝和更大的铺展面积,而液晶-50/聚氨酯基底似乎不利于细胞附着和铺展。hUC-MSCs在液晶-10/聚氨酯和液晶-30/聚氨酯基底上的碱性磷酸酶活性和钙沉积均显著提高,在液晶-10/聚氨酯中观察到最大的碱性磷酸酶活性,而在液晶-50/聚氨酯中最低。培养14天后,骨桥蛋白在液晶-10/聚氨酯和液晶-30/聚氨酯组中均上调至高水平;在第21天,液晶-10/聚氨酯组中骨钙素和相关转录因子2的表达最高。我们的研究结果表明,hUC-MSCs可以强烈感知液晶域的生物活性模式和软物质特征,并随后调节细胞行为,这可能有助于开发用于组织工程和再生医学的新型生物材料。

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