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Fabrication of cartilage/natural rubber latex biocomposites derived from human mesenchymal stem cells in hypoxia

机译:缺氧中衍生自人间充质干细胞的软骨/天然橡胶胶乳生物复合材料的制备

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To broaden the knowledge regarding regenerative medicine in natural rubber latex (NRL) nanoparticles, we have examined the chondrogenesis of human mesenchymal stem cells (hMSCs) with NRL nanoparticles under hypoxia condition. We have successfully fabricated the cartilage/NRL biocomposites via hMSCs spheroid under hypoxic condition, where the administration of NRL nanoparticles exhibits the suppression of the spheroid contraction due to the cellular proliferation of hMSCs. It has been found that the NRL nanoparticles acted as a main component, which provides surface heterogeneity of the spheroid, leading to the mechanically stable structure with higher modulus in comparison with the control as revealed by atomic force microscopy microindentation. Under hypoxia condition, the effective gene expression of in?vitro chondrogenesis of hMSCs with administration of NRL was confirmed as revealed by the chondrogenic gene expression analysis compared with that under normoxia condition.
机译:为了扩大关于天然橡胶胶乳(NRL)纳米颗粒的再生药物的知识,我们研究了在缺氧条件下用NRL纳米颗粒的人间充质干细胞(HMSCs)的软骨发生。我们在缺氧条件下成功地通过HMSC Smheroid制造了软骨/ NRL生物复合材料,其中NRL纳米颗粒的给药由于HMSCs的细胞增殖而表现出球状体收缩的抑制。已经发现,NR1纳米颗粒用作主要成分,其提供球状体的表面异质性,导致具有更高模量的机械稳定的结构,与由原子力显微镜显微镜显微镜透露的控制相比。在缺氧条件下,通过在常氧条件下的情况下,确认了施用NRL施用NRL的HMSCs体外软骨发生的有效基因表达。

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