Department of Orthopedics Surgery, 2nd Affiliated Hospital, School of Medicine, Zhejiang University, 88 Jiefang Road, Hangzhou, Zhejiang, 310009, People's Republic of China.
Department of Orthopedics, Research Institute of Zhejiang University, Hangzhou, Zhejiang, People's Republic of China.
J Biomed Mater Res A. 2018 May;106(5):1258-1268. doi: 10.1002/jbm.a.36325. Epub 2018 Jan 23.
Adipose-derived stem cells (ADSCs)-based tissue engineering was a promising method to treat intervertebral disc degeneration. Type II collagen is a native component in the nucleus pulposus (NP), and has the ability to promote ADSCs to differentiate into NP-like cells. In this article, we aimed to establish a genipin-cross-linked three-dimensional (3D) type II collagen scaffold, and determine the biological effects of the scaffold on ADSCs differentiating into a NP-like phenotype. Different concentrations of genipin were used to cross-link the 3D type II collagen scaffold. Microstructure, surface topography, mechanical strength, porosity, swelling property, and biological stability of the scaffolds were detected to evaluate the scaffold properties. Cell proliferation, gene and protein expression were measured to access the biological effects of the scaffolds on ADSCs, and the related molecular mechanism was investigated. Cross-linking by genipin increased the stability of the type II collagen scaffolds, but deformed the configuration of scaffolds and changed the intrinsic properties of type II collagen. scaffold cross-linked with 0.1% genipin improved the biostability on the basis of maintaining the configuration of scaffold. In addition, the 0.1% genipin-cross-linked scaffold promoted ADSCs proliferation and differentiation into NP-like cells, along with the increasing gene and protein expressions of Sonic Hedgehog (Shh). All these results suggested that 0.1% genipin was the optimal concentration to establish a bio-stable 3D type II collagen scaffold, which inducing ADSC proliferation and differentiation toward a NP-like phenotype through the activation of Shh signaling pathway. © 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 106A: 1258-1268, 2018.
脂肪来源干细胞(ADSCs)组织工程是治疗椎间盘退变的一种很有前途的方法。Ⅱ型胶原是髓核(NP)中的天然成分,具有促进 ADSCs 分化为 NP 样细胞的能力。本文旨在建立一种京尼平交联的三维(3D)Ⅱ型胶原支架,并确定支架对 ADSCs 向 NP 样表型分化的生物学效应。使用不同浓度的京尼平交联 3D 型Ⅱ胶原支架。检测支架的微观结构、表面形貌、力学强度、孔隙率、溶胀性能和生物稳定性,以评估支架性能。测量细胞增殖、基因和蛋白表达,以评估支架对 ADSCs 的生物学效应,并探讨相关的分子机制。京尼平交联增加了Ⅱ型胶原支架的稳定性,但改变了支架的结构和Ⅱ型胶原的固有性质。交联浓度为 0.1%的支架在保持支架结构的基础上提高了生物稳定性。此外,0.1%京尼平交联支架促进了 ADSCs 的增殖和向 NP 样细胞分化,同时 Sonic Hedgehog(Shh)基因和蛋白表达增加。这些结果表明,0.1%的京尼平是建立生物稳定的 3D 型Ⅱ胶原支架的最佳浓度,通过激活 Shh 信号通路诱导 ADSC 增殖和向 NP 样表型分化。© 2018 年 Wiley Periodicals, Inc. J 生物材料 res 部分 A:106A:1258-1268,2018。