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包裹在水凝胶微球中的沃顿胶间充质干细胞(WJMSC)的模量依赖性特征。

Modulus-dependent characteristics of Wharton's jelly mesenchymal stem cells (WJMSC) encapsulated in hydrogel microspheres.

作者信息

Ramesh Archana, Kanafi Mohammad Mahboob, Bhonde Ramesh Ramachandra

机构信息

a Manipal Institute of Regenerative Medicine , Manipal University , GKVK Post, Bellary Road, Allalasandra, Yelahanka, Bangalore 560065 , India.

出版信息

J Biomater Sci Polym Ed. 2014;25(17):1946-61. doi: 10.1080/09205063.2014.960698. Epub 2014 Sep 23.

Abstract

Recent studies revealing stem cell behavior dependence on mechanical properties of a substrate has initiated the need to probe matrix mechanics and its influence on stem cell fate in a physiologically relevant three-dimensional (3D) microenvironment. We investigated the proliferative and osteogenic potentials of Wharton's jelly mesenchymal stem cells (WJMSCs) immobilized in alginate microspheres with respect to the mechanical properties of alginate hydrogels (1, 1.5 and 2% (w/v)) post incubation in a simulated in vivo environment. Compressive moduli, degradation profile, and swelling kinetics of the hydrogels varied proportionally with alginate concentration and with exposure to simulated conditions. Degradation profile and morphological analysis showed that hydrogels exhibiting high modulus (2% w/v) remained the most intact at the end of day 21. High cell viability in all conditions was observed throughout the culture period. Low-modulus hydrogels (1% w/v) facilitated proliferation of WJMSCs whereas high-modulus hydrogels demonstrated better osteogenic differentiation inferred by an up regulation of osteo-specific genes, expressions of osteocalcin, and quantification of calcium deposition. These findings present a step forward in the development of application-specific hydrogel matrices for stem cell-based tissue engineering.

摘要

最近的研究表明干细胞行为依赖于基质的力学性能,这引发了在生理相关的三维(3D)微环境中探究基质力学及其对干细胞命运影响的需求。我们研究了在模拟体内环境中孵育后,固定在藻酸盐微球中的沃顿胶间充质干细胞(WJMSCs)的增殖和成骨潜力,该潜力与藻酸盐水凝胶(1%、1.5%和2%(w/v))的力学性能有关。水凝胶的压缩模量、降解曲线和溶胀动力学随藻酸盐浓度以及暴露于模拟条件而呈比例变化。降解曲线和形态分析表明,在第21天结束时,表现出高模量(2% w/v)的水凝胶保持最完整。在整个培养期间,在所有条件下均观察到高细胞活力。低模量水凝胶(1% w/v)促进了WJMSCs的增殖,而高模量水凝胶通过骨特异性基因的上调、骨钙素的表达以及钙沉积的定量分析表明具有更好的成骨分化能力。这些发现为开发用于基于干细胞的组织工程的特定应用水凝胶基质迈出了一步。

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