首页> 外文期刊>Journal of biomedical materials research, Part A >Chondrogenic differentiation of human mesenchymal stem cell aggregates via controlled release of TGF-β1 from incorporated polymer microspheres
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Chondrogenic differentiation of human mesenchymal stem cell aggregates via controlled release of TGF-β1 from incorporated polymer microspheres

机译:掺入聚合物微球的TGF-β1受控释放人间充质干细胞聚集体的软弱化分化

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摘要

Aggregate culture is a useful method for inducing chondrogenic differentiation of human mesenchymal stem cells (hMSC) in a three-dimensional in vitro culture environment. Conventional aggregate culture, however, typically requires repeated growth factor supplementation during media changes, which is both expensive and time-intensive. In addition, homogenous cell differentiation is limited by the diffusion of chondrogenic growth factor from the culture medium into the aggregate and peripheral cell consumption of the growth factor. We have engineered a technology to incorporate growth factor-loaded polymer microspheres within hMSC aggregates themselves. Here, we report on the system's capacity to induce chondrogenesis via sustained delivery of transforming growth factor-b1 (TGF-β1). Cartilage formation after 3 weeks in the absence of externally supplied growth factor approached that of aggregates cultured by conventional methods. Chondrogenesis in the central region of the aggregates is enabled at TGF-β1 levels much lower than those required by conventional culture using exogenously supplied TGF-β1, which is likely a result of the system's ability to overcome limitations of growth factor diffusion from cell culture media surrounding the exterior of the aggregates. Importantly, the inclusion of growth factor-releasing polymer microspheres in hMSC aggregates could enable in vivo chondrogenesis for cartilage tissue engineering applications without extensive in vitro culture.
机译:聚集培养物是一种有用的方法,用于在三维体外培养环境中诱导人间充质干细胞(HMSC)的软弱化分化。然而,常规综合培养通常需要在介质变化期间重复的生长因子补充,这既昂贵且时间密集。此外,均匀细胞分化受到软骨生长因子从培养基的扩散到生长因子的骨料和周围细胞消耗中的限制。我们已经设计了一种技术来掺入HMSC聚集体本身内的生长因子加载的聚合物微球。在这里,我们报告系统通过持续递送转化生长因子-B1(TGF-β1)来诱导软骨发生的能力。在没有外部供应的生长因子的情况下3周后3周后的软骨形成接近通过常规方法培养的聚集体。聚集体的中央区域中的软骨发生在TGF-β1水平,远低于常规供应TGF-β1的常规培养所需的水平,这可能是系统克服细胞培养基中生长因子扩散的限制的能力的结果围绕聚集体的外部。重要的是,在HMSC聚集体中包含生长因子释放聚合物微球可用于软骨组织工程应用中的体内软骨发生,而无需大量体外培养。

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