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基质硬度和组成对预浓缩 3D 微环境中软骨祖细胞反应的协同作用。

The Synergistic Effects of Matrix Stiffness and Composition on the Response of Chondroprogenitor Cells in a 3D Precondensation Microenvironment.

机构信息

Biomedical Engineering, University of Michigan, Ann Arbor, 48109, USA.

Chemistry, University of Michigan, Ann Arbor, 48109, USA.

出版信息

Adv Healthc Mater. 2016 May;5(10):1192-202. doi: 10.1002/adhm.201501017. Epub 2016 Mar 9.

Abstract

Improve functional quality of cartilage tissue engineered from stem cells requires a better understanding of the functional evolution of native cartilage tissue. Therefore, a biosynthetic hydrogel was developed containing RGD, hyaluronic acid and/or type-I collagen conjugated to poly(ethylene glycol) acrylate to recapitulate the precondensation microenvironment of the developing limb. Conjugation of any combination of the three ligands did not alter the shear moduli or diffusion properties of the PEG hydrogels; thus, the influence of ligand composition on chondrogenesis could be investigated in the context of varying matrix stiffness. Gene expression of ligand receptors (CD44 and the b1-integrin) as well as markers of condensation (cell clustering and N-cadherin gene expression) and chondrogenesis (Col2a1 gene expression and sGAG production) by chondroprogenitor cells in this system were modulated by both matrix stiffness and ligand composition, with the highest gene expression occurring in softer hydrogels containing all three ligands. Cell proliferation in these 3D matrices for 7 d prior to chondrogenic induction increased the rate of sGAG production in a stiffness-dependent manner. This biosynthetic hydrogel supports the features of early limb-bud condensation and chondrogenesis and is a novel platform in which the influence of the matrix physicochemical properties on these processes can be elucidated.

摘要

为了提高由干细胞构建的组织工程软骨的功能质量,需要更好地了解天然软骨组织的功能演变。因此,开发了一种含有 RGD、透明质酸和/或与聚乙二醇丙烯酸酯结合的 I 型胶原的生物合成水凝胶,以再现发育中肢体的预凝聚微环境。任何三种配体的组合的共轭都不会改变 PEG 水凝胶的剪切模量或扩散特性;因此,可以在基质刚度变化的情况下研究配体组成对软骨形成的影响。在该系统中,软骨祖细胞的配体受体(CD44 和 b1-整合素)以及凝聚标志物(细胞聚类和 N-钙粘蛋白基因表达)和软骨形成标志物(Col2a1 基因表达和 sGAG 产生)的基因表达均受基质刚度和配体组成的调节,在包含所有三种配体的较软水凝胶中基因表达最高。在软骨形成诱导前在这些 3D 基质中进行 7d 的细胞增殖,以依赖于刚度的方式增加了 sGAG 产生的速率。这种生物合成水凝胶支持早期肢体芽凝聚和软骨形成的特征,是一个新的平台,可以阐明基质物理化学性质对这些过程的影响。

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