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首页> 外文期刊>Annals of Biomedical Engineering >The Response of Bone Marrow-Derived Mesenchymal Stem Cells to Dynamic Compression Following TGF-β3 Induced Chondrogenic Differentiation
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The Response of Bone Marrow-Derived Mesenchymal Stem Cells to Dynamic Compression Following TGF-β3 Induced Chondrogenic Differentiation

机译:TGF-β3诱导软骨分化后骨髓源间充质干细胞对动态压缩的反应

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摘要

The objective of this study was to investigate the hypothesis that the application of dynamic compression following transforming growth factor-β3 (TGF-β3) induced differentiation will further enhance chondrogenesis of mesenchymal stem cells (MSCs). Porcine MSCs were encapsulated in agarose hydrogels and cultured in a chemically defined medium with TGF-β3 (10 ng/mL). Dynamic compression (1 Hz, 10% strain, 1 h/day) was initiated at either day 0 or day 21 and continued until day 42 of culture; with TGF-β3 withdrawn from some groups at day 21. Biochemical and mechanical properties of the MSC-seeded constructs were evaluated up to day 42. The application of dynamic compression from day 0 inhibited chondrogenesis of MSCs. This inhibition of chondrogenesis in response to dynamic compression was not observed if MSC-seeded constructs first underwent 21 days of chondrogenic differentiation in the presence of TGF-β3. Spatial differences in sGAG accumulation in response to both TGF-β3 stimulation and dynamic compression were observed within the constructs. sGAG release from the engineered construct into the surrounding culture media was also dependent on TGF-β3 stimulation, but was not effected by dynamic compression. Continued supplementation with TGF-β3 appeared to be a more potent chondrogenic stimulus than the application of 1 h of daily dynamic compression following cytokine initiated differentiation. In the context of cartilage tissue engineering, the results of this study suggest that MSC seeded constructs should be first allowed to undergo chondrogenesis in vitro prior to implantation in a load bearing environment.
机译:这项研究的目的是调查以下假设,即在转化生长因子-β3(TGF-β3)诱导的分化后施加动态压缩将进一步增强间充质干细胞(MSCs)的软骨形成。猪MSC封装在琼脂糖水凝胶中,并在具有TGF-β3(10 ng / mL)的化学成分明确的培养基中培养。在第0天或第21天开始动态压缩(1 Hz,10%应变,每天1小时),并持续到培养的第42天;在第21天从某些组中撤出TGF-β3。在第42天之前评估了接种MSC的构建体的生化和力学性能。从第0天开始的动态压缩可抑制MSC的软骨形成。如果在TGF-β3存在的情况下首先对MSC播种的构建体进行了21天的软骨分化,则没有观察到这种对动态压缩的软骨生成的抑制。在构建体中观察到响应于TGF-β3刺激和动态压缩的sGAG积累的空间差异。 sGAG从工程构建体释放到周围培养基中也取决于TGF-β3刺激,但不受动态压缩的影响。连续补充TGF-β3似乎是比细胞因子引发的分化后每天动态压缩1 h更有效的软骨刺激。在软骨组织工程的背景下,这项研究的结果表明,在植入负重环境之前,应首先允许MSC接种的构建体在体外进行软骨形成。

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