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首页> 外文期刊>Journal of orthopaedic research >Co-cultures of programmable cells of monocytic origin and mesenchymal stem cells do increase osteogenic differentiation
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Co-cultures of programmable cells of monocytic origin and mesenchymal stem cells do increase osteogenic differentiation

机译:单核细胞来源的可编程细胞与间充质干细胞的共培养确实会增加成骨分化

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摘要

Impaired bone healing can occur with numerous pathologic conditions like trauma, osteoporosis, and infection. Therefore tissue-engineering strategies that aim to enhance osteogenic differentiation of stem cells in order to accelerate bone healing are a major goal of contemporary regenerative research. In this study we cultivated mesenchymal stem cells (MSC) together with the recently patented programmable cells of monocytic origin (PCMO) to test whether co-cultures promote an osteogenic differentiation process. PCMO have recently been shown to have pluripotent characteristics and do support the regeneration processes of liver and heart diseases. Quantitative real time PCR expression profiles of osteogenic marker genes such as alkaline phosphatase in co-cultures of PCMO and MSC showed that MSC differentiated into osteoblast-like cells more rapidly as compared to mono-cultures. Alkaline phosphatase expression and enzyme activity levels were highly increased in co-cultures compared to mono-cultures of MSC. Tests for mineralized matrix formation also indicated that PCMO have a positive effect on co-cultured MSC under osteogenic culture conditions. However, analysis of collagen 1A did not show enhanced expression. In summary, PCMO obviously have the ability to promote osteogenic differentiation of MSC in vitro while their own pluripotent potential is not sufficient to develop osteoblast-like characteristics themselves.
机译:骨骼愈合受损可能会伴随多种病理状况发生,例如外伤,骨质疏松和感染。因此,旨在增强干细胞的成骨分化以加速骨愈合的组织工程策略是当代再生研究的主要目标。在这项研究中,我们与最近获得专利的单核细胞可编程细胞(PCMO)一起培养了间充质干细胞(MSC),以测试共培养是否促进成骨分化过程。最近已证明PCMO具有多能性特征,并确实支持肝脏和心脏病的再生过程。在PCMO和MSC的共培养物中,成骨标志物基因(如碱性磷酸酶)的实时定量PCR表达谱显示,与单培养相比,MSC分化为成骨样细胞的速度更快。与MSC的单培养相比,共培养中的碱性磷酸酶表达和酶活性水平大大提高。矿化基质形成的测试还表明,在成骨培养条件下,PCMO对共培养的MSC具有积极作用。但是,胶原蛋白1A的分析未显示出增强的表达。总之,PCMO显然具有促进MSC体外成骨分化的能力,而它们自身的多能潜能不足以自身发展成骨样特征。

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