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探究基质顺应性和传代历史对包埋于藻酸盐-明胶杂化水凝胶中的间充质干细胞软骨分化的相互作用。

Investigating the Interplay Between Matrix Compliance and Passaging History on Chondrogenic Differentiation of Mesenchymal Stem Cells Encapsulated Within Alginate-Gelatin Hybrid Hydrogels.

机构信息

Department of Mechanical Engineering, University of Michigan, Dearborn, 4901 Evergreen Road, Dearborn, MI, 48128, USA.

Amgen Bioprocessing Center, Henry E. Riggs School of Applied Life Sciences, Keck Graduate Institute, 535 Watson Drive, Claremont, CA, 91711, USA.

出版信息

Ann Biomed Eng. 2023 Dec;51(12):2722-2734. doi: 10.1007/s10439-023-03313-y. Epub 2023 Jul 15.

Abstract

Mesenchymal stem cells (MSCs) are used widely in tissue engineering and regenerative medicine because of their ease of isolation and their pluripotency. The low survival and retention rate of MSCs at the target site upon implantation can be addressed via encapsulation within hydrogels capable of directing their fate. In this study, the interplay between matrix mechanics and the passage number of MSCs on their chondrogenic differentiation was assessed. Human bone marrow-derived MSCs between passages 4 and 6 were encapsulated within alginate-gelatin hybrid gels. The stiffness of the gels was varied by varying alginate concentrations while maintaining the concentration of gelatin and consequently, the cell adhesion sites, constant. The study revealed that within 4.8 kPa gels, GAG deposition was higher by P4 MSCs compared to P6 MSCs. However, an opposite trend was observed with collagen type 2 deposition. Further, we observed enhanced chondrogenic differentiation upon encapsulation of MSCs within 6.7 kPa hydrogel irrespective of passaging history. However, the effect of matrix compliance was more prominent in the case of higher passaged MSCs suggesting that matrix stiffness can help rescue the reduced differentiation capability of these cells.

摘要

间充质干细胞(MSCs)因其易于分离和多能性而被广泛用于组织工程和再生医学。在植入时,MSC 到达靶部位的存活率和保留率较低,可以通过封装在能够指导其命运的水凝胶中来解决。在这项研究中,评估了基质力学与 MSC 传代数对其软骨分化的相互作用。第 4 代和第 6 代之间的人骨髓来源 MSC 被封装在藻酸盐-明胶杂化凝胶中。通过改变藻酸盐浓度来改变凝胶的刚度,同时保持明胶的浓度和细胞黏附部位不变。研究表明,在 4.8kPa 的凝胶中,P4 MSC 的 GAG 沉积高于 P6 MSC。然而,在胶原蛋白 2 的沉积方面观察到相反的趋势。此外,我们观察到无论传代史如何,MSC 封装在 6.7kPa 水凝胶中均可增强软骨分化。然而,在高传代 MSC 的情况下,基质顺应性的影响更为显著,这表明基质刚度可以帮助挽救这些细胞分化能力的降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b938/10632279/5448e62fa6f0/10439_2023_3313_Fig1_HTML.jpg

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