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在施加压缩应变过程中,交联密度会影响光包封于聚乙二醇水凝胶中的软骨细胞的形态。

Crosslinking density influences the morphology of chondrocytes photoencapsulated in PEG hydrogels during the application of compressive strain.

作者信息

Bryant Stephanie J, Anseth Kristi S, Lee David A, Bader Dan L

机构信息

Department of Chemical Engineering, University of Colorado, Campus Box 424, Engineering Center, ECCH 111, Boulder, CO 80309-0424, USA.

出版信息

J Orthop Res. 2004 Sep;22(5):1143-9. doi: 10.1016/j.orthres.2004.02.001.

Abstract

Chondrocyte deformation, which occurs during mechanical loading, is thought to play an important role in the mechanotransduction pathway. In designing a scaffold that can be gelled in situ for cartilage tissue engineering, an important consideration is the influence of mechanical loading. This study tested the hypothesis that changes in the crosslinking density of a hydrogel scaffold influence the morphology of encapsulated chondrocytes in response to an applied load. Chondrocytes were entrapped in photo-crosslinkable hydrogel scaffolds based on poly(ethylene glycol) (PEG) with two crosslinking densities, 0.119 and 0.376 mol/l, with the higher density having a 11-fold higher compressive modulus. The cell-embedded hydrogels were subjected to static compressive strains between 0% and 20% after 1 and 6 days of culture. Using confocal laser scanning microscopy, chondrocytes in the highly crosslinked gel at day 1 deformed more than gels in the more loosely crosslinked gel. By day 6, this finding was reversed. When single cells within a region were followed, heterogeneities in cell deformation were observed on both a macroscopic and microscopic scale. These heterogeneities were greater in the highly crosslinked gel. These findings demonstrate that different levels of cell deformation and heterogeneity may be obtained by varying the crosslinking density in PEG hydrogels.

摘要

软骨细胞变形发生在机械加载过程中,被认为在机械转导途径中起重要作用。在设计一种可原位凝胶化用于软骨组织工程的支架时,一个重要的考虑因素是机械加载的影响。本研究检验了以下假设:水凝胶支架交联密度的变化会影响包封的软骨细胞在施加负荷时的形态。软骨细胞被包裹在基于聚乙二醇(PEG)的具有两种交联密度(0.119和0.376 mol/l)的光可交联水凝胶支架中,较高密度的支架具有高11倍的压缩模量。在培养1天和6天后,将包埋细胞的水凝胶施加0%至20%的静态压缩应变。使用共聚焦激光扫描显微镜观察,在第1天,高度交联凝胶中的软骨细胞比交联较松散凝胶中的软骨细胞变形更大。到第6天,这一发现发生了逆转。当追踪一个区域内的单个细胞时,在宏观和微观尺度上均观察到细胞变形的异质性。在高度交联的凝胶中,这些异质性更大。这些发现表明,通过改变PEG水凝胶中的交联密度,可以获得不同程度的细胞变形和异质性。

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