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硫酸软骨素浓度和基质硬度对间充质干细胞软骨分化的影响。

The effect of chondroitin sulfate concentration and matrix stiffness on chondrogenic differentiation of mesenchymal stem cells.

机构信息

Integrative Sciences and Engineering Programme, NUS Graduate School, National University of Singapore, Singapore.

Department of Biomedical Engineering, National University of Singapore, Singapore.

出版信息

Biomater Sci. 2023 Jun 27;11(13):4557-4573. doi: 10.1039/d2bm01980a.

Abstract

Chondroitin sulfate (CS), a glycosaminoglycan of native cartilage, has shown its potential in promoting chondrogenesis of mesenchymal stem cells (MSCs), whereas the effect of matrix stiffness in a CS-containing 3D environment on chondrogenesis is still poorly understood. Herein, this study aimed at assessing the effect of CS concentration and stiffness of CS-containing hydrogels on the chondrogenesis of MSCs. Hydrogels composed of 6% (w/v) gelatin methacryloyl (GelMA) and three concentrations, , 4%, 6%, or 10% (w/v), of methacrylated chondroitin sulfate (CSMA) were prepared. The hydrogels of each composition were prepared with two stiffness values (33.36 ± 8.25 kPa 8.42 ± 2.83 kPa). Physical characterization showed similar microporous structures among the six groups, higher swelling ratios and faster degradation in the soft hydrogel groups. MSCs were encapsulated in the six groups of hydrogels and they underwent 28-day chondrogenic differentiation. The cell viability in each group on day 1 was similar and most cells exhibited a round shape without spreading. Afterwards, cellular protrusions in soft hydrogels remained filopodium-like from day 14 to day 28, while most protrusions were lamellipodium-like in stiff hydrogels on day 14 and then transformed into a spherical shape on day 28. The expression of chondrogenic markers analysed by real-time qPCR and immunohistochemical staining demonstrated that the optimal CS concentration for chondrogenesis was 6% (w/v) regardless of the stiffness of hydrogels. In addition, with the same CSMA concentration, the trend was observed that the stiff hydrogels supported superior chondrogenesis of MSCs compared to the soft hydrogel. To summarize, this study presents an advancement in the optimization of CSMA concentration and stiffness of hydrogels for chondrogenesis. In the CSMA/GelMA hydrogel, 6% (w/v) CSMA with an initial Young's modulus around 33 kPa was recommended for cartilage tissue engineering.

摘要

硫酸软骨素(CS)是天然软骨的糖胺聚糖,已显示出其在促进间充质干细胞(MSCs)软骨形成中的潜力,而 CS 含量的 3D 环境中的基质硬度对软骨形成的影响仍知之甚少。本研究旨在评估 CS 浓度和 CS 含量水凝胶的硬度对 MSCs 软骨形成的影响。制备了由 6%(w/v)明胶甲基丙烯酰(GelMA)和三种浓度(w/v)、、4%、6%或 10%甲基丙烯酰化硫酸软骨素(CSMA)组成的水凝胶。每组组成的水凝胶均具有两种硬度值(33.36±8.25kPa 和 8.42±2.83kPa)。物理特性表明,六组水凝胶具有相似的微孔结构,软水凝胶组的溶胀比更高,降解速度更快。将 MSC 包封在六组水凝胶中,并进行 28 天的软骨分化。第 1 天,每组的细胞活力相似,大多数细胞呈圆形,没有伸展。随后,软水凝胶中的细胞突起从第 14 天到第 28 天仍保持丝状,而硬水凝胶中的大多数突起在第 14 天呈片状,然后在第 28 天变成球形。实时 qPCR 和免疫组织化学染色分析的软骨形成标志物的表达表明,无论水凝胶的硬度如何,CS 形成软骨的最佳浓度均为 6%(w/v)。此外,在相同的 CSMA 浓度下,观察到的趋势是,硬水凝胶比软水凝胶更能支持 MSCs 的软骨形成。总之,本研究在 CSMA 浓度和水凝胶硬度优化方面取得了进展,以促进软骨形成。在 CSMA/GelMA 水凝胶中,建议使用初始杨氏模量约为 33kPa 的 6%(w/v)CSMA 用于软骨组织工程。

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