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Microwell-Mediated Micro Cartilage-Like Tissue Formation of Adipose-Derived Stem Cell

机译:微孔介导的脂肪干细胞的微软骨样组织形成

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In cartilage tissue engineering, various technical approaches using postnatal stem cells, three-dimensional (3D) scaffolds composed of synthetic or natural polymers, and culture systems have been applied to develop 3D cartilage-like tissue. In this study, scaffold-free 3D micro-cartilage-like tissue was developed via microwell-mediated cell spheroid formation and 3D dynamic chondrogenic culture in a bioreactor. First, homogenous micro-cell spheroids were generated by the self-condensation of adipose tissue-derived stem cells (ADSCs) in microfabricated poly(ethylene glycol) (PEG) hydrogel microwells. Next, chondrogenic differentiation of the micro-ADSC spheroids was induced in the presence of transforming growth factor-beta 3 under dynamic 3D culture conditions using a high aspect ratio vessel bioreactor. Several hundred viable ADSC spheroids could be generated at a time from ADSC culture in PEG microwells. The 3D dynamic chondrogenic culture of ADSCs in the bioreactor facilitated the chondrogenic mRNA expression of proteins such as sox-9, runx2, osterix, type II collagen, and aggrecan, and the well deposition of glycosaminoglycan and type II collagen, which finally generated micro-cartilage-like tissue. Therefore, the hydrogel microwell arrays could be useful for efficiently deriving initial cell condensation-mediated chondrogenic differentiation, and for developing 3D cell-based micro-cartilage-like tissue with stem cells in a controlled manner.
机译:在软骨组织工程中,使用产后干细胞,由合成或天然聚合物组成的三维(3D)支架以及培养系统的各种技术方法已被用于开发3D软骨样组织。在这项研究中,通过在生物反应器中通过微孔介导的细胞球体形成和3D动态软骨形成培养来开发无支架的3D微软骨样组织。首先,在微细加工的聚乙二醇(PEG)水凝胶微孔中,脂肪组织来源的干细胞(ADSC)的自缩合产生均质的微细胞球体。接下来,使用高纵横比容器生物反应器,在动态3D培养条件下,在存在转化生长因子β3的情况下,诱导微ADSC球体的软骨形成分化。在PEG微孔中从ADSC培养一次可以产生数百个可行的ADSC球体。在生物反应器中进行ADSC的3D动态软骨培养,促进了诸如sox-9,runx2,osterix,II型胶原蛋白和聚集蛋白聚糖的蛋白质的软骨生成mRNA表达,以及糖胺聚糖和II型胶原蛋白的良好沉积,最终产生了微量的软骨样组织。因此,水凝胶微孔阵列可用于有效地获得初始细胞凝缩介导的软骨形成分化,以及以可控方式用干细胞发育基于3D细胞的微软骨样组织。

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