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Priming Adipose-Derived Mesenchymal Stem Cells with Hyaluronan Alters Growth Kinetics and Increases Attachment to Articular Cartilage

机译:用透明质酸灌注脂肪衍生的间充质干细胞改变生长动力学并增加对关节软骨的附着物

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Background. Biological therapeutics such as adipose-derived mesenchymal stem cell (MSC) therapy are gaining acceptance for knee-osteoarthritis (OA) treatment. Reports of OA-patients show reductions in cartilage defects and regeneration of hyaline-like-cartilage with MSC-therapy. Suspending MSCs in hyaluronan commonly occurs in animals and humans, usually without supporting data. Objective. To elucidate the effects of different concentrations of hyaluronan on MSC growth kinetics. Methods. Using a range of hyaluronan concentrations, we measured MSC adherence and proliferation on culture plastic surfaces and a novel cartilage-adhesion assay. We employed time-course and dispersion imaging to assess MSC binding to cartilage. Cytokine profiling was also conducted on the MSC-secretome. Results. Hyaluronan had dose-dependent effects on growth kinetics of MSCs at concentrations of entanglement point (1mg/mL). At higher concentrations, viscosity effects outweighed benefits of additional hyaluronan. The cartilage-adhesion assay highlighted for the first time that hyaluronan-primed MSCs increased cell attachment to cartilage whilst the presence of hyaluronan did not. Our time-course suggested patients undergoing MSC-therapy for OA could benefit from joint-immobilisation for up to 8 hours. Hyaluronan also greatly affected dispersion of MSCs on cartilage. Conclusion. Our results should be considered in future trials with MSC-therapy using hyaluronan as a vehicle, for the treatment of OA.
机译:背景。脂肪衍生的间充质干细胞(MSC)治疗等生物治疗剂正在接受膝关节骨关节炎(OA)处理。 OA-患者的报道显示用MSC治疗的透明化软骨软骨缺陷和再生的减少。通常在动物和人类中暂停透明质酸的MSCs,通常没有支持数据。客观的。阐明不同浓度透明质酸对MSC生长动力学的影响。方法。使用一系列透明质酸浓度,我们测量了培养塑料表面和新型软骨粘附测定的MSC粘附和增殖。我们使用时间过程和分散成像来评估MSC与软骨结合。在MSC沉淀上也进行了细胞因子谱。结果。透明质酸对缠结点(1mg / mL)的MSCs生长动力学进行剂量依赖性作用。在较高的浓度下,粘度效应超过透明质酸的益处。在透明质酸的透明质植物灌注的MSCs第一次增加透明质酸的粘合剂测定的第一次突出显示了软骨 - 粘附试验。我们的时间课程建议接受OA的MSC治疗的患者可以从关节固定中受益,长达8小时。 Hyaluronan也很大地影响了软骨上MSCs的分散。结论。我们的结果应在未来试验中考虑使用透明质酸作为载体的MSC治疗,用于治疗OA。

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