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Non-physiological mineral deposition in vitro by primary human osteoblasts under osteogenic conditions

机译:成骨条件下原代人成骨细胞在体外的非生理性矿物质沉积

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The pluripotency of human embryonic stem cells (hESCs) provides the unique opportunity to derive tissue specific cells, an ability of particular interest in regenerative medicine. In the study of bone regeneration, there is interest in directing hESCs to mesenchymal stem cells (MSCs), which under the appropriate conditions gives rise to mineral-producing osteoblasts. To evaluate the efficiency of such a process and cellular functionality, standard in vitro mineralization tests are employed to determine the cells' ability to generate a mineralized matrix. To guide the cells in these tests from their progenitor state to functional osteoblasts, osteogenic supplements must be provided in culture. However, it is critical to discern between physiological (cell-mediated) and non-physiological mineralization in vitro. Here, we investigated the mineralization pattern of human osteoprogenitor cells in the presence of varying concentrations of the common osteogenic supplements fetal bovine serum, ß-glycerol phosphate, and dexamethasone.
机译:人类胚胎干细胞(hESCs)的多能性提供了获得组织特异性细胞的独特机会,这是再生医学特别感兴趣的能力。在骨再生的研究中,有兴趣将hESCs引导至间充质干细胞(MSCs),在适当的条件下,MSCs可产生矿物质。为了评估这种过程和细胞功能的效率,采用标准的体外矿化测试来确定细胞生成矿化基质的能力。为了将这些测试中的细胞从祖先状态转变为功能性成骨细胞,必须在培养物中提供成骨补充剂。但是,区分体外的生理性(细胞介导的)矿化和非生理性矿化是至关重要的。在这里,我们调查了人类成骨祖细胞在不同浓度的常见成骨补品胎牛血清,ƒγβ-甘油磷酸和地塞米松的存在下的矿化模式。

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