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Effects of Low Oxygen Tension during Expansion on Chondrogenic Potential of Osteoarthritic Chondrocytes

机译:扩张过程中低氧张力对骨关节炎软骨细胞软骨形成电位的影响

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Primary human chondrocytes, although a promising cell source for cartilage tissue engineering, tend to dedifferentiate and lose their characteristic gene expression and protein production during monolayer expansion. Low O2 tension in vitro culture has been studied to examine its effect on preventing dedifferentiation, and results have been conflicting. In particular, low O2 expansion effects on human osteoarthritis (OA) chondrocytes are poorly understood. In this study, we expanded chondrocytes collected from patients with osteoarthritis (OA) under normal (21%) and low (5%) O2 tension then continued with micromass culture under 21% O2 for 3 weeks. Our results suggest that low O2 condition may promote chondrogenic characteristic gene expression in monolayer cells. But improved ECM production, which was seen earlier in animal models, may not be relevant to human OA chondrocytes. Further examination of the mechanical properties of the engineered pellets is needed to confirm the effects of low O2 expansion on human OA chondrocytes and their use in cartilage tissue engineering.
机译:原代人软骨细胞尽管是用于软骨组织工程的有前途的细胞来源,但在单层扩增过程中倾向于去分化并失去其特征基因表达和蛋白质产生。已经研究了低氧体外培养中的张力,以检查其对防止去分化的作用,并且结果存在矛盾。尤其是,人们对O2对人骨关节炎(OA)软骨细胞的低膨胀作用知之甚少。在这项研究中,我们扩增了在正常(21%)和低(5%)O2张力下从骨关节炎(OA)患者那里收集的软骨细胞,然后继续在21%O2下进行微质量培养3周。我们的结果表明,低氧条件可能会促进单层细胞中软骨形成特性基因的表达。但是,在动物模型中较早发现的改善的ECM产量可能与人OA软骨细胞无关。需要进一步检查工程颗粒的机械性能,以确认低氧气膨胀对人OA软骨细胞的影响及其在软骨组织工程中的用途。

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