首页> 外文期刊>Tissue and Cell >An autologous cell lysate extract from human embryonic stem cell (hESC) derived osteoblasts can enhance osteogenesis of hESC.
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An autologous cell lysate extract from human embryonic stem cell (hESC) derived osteoblasts can enhance osteogenesis of hESC.

机译:来自人类胚胎干细胞(hESC)的成骨细胞的自体细胞裂解物提取物可以增强hESC的成骨作用。

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摘要

It was recently demonstrated that osteogenesis of hESC was more efficient without the initial embryoid body formation step. This study sought to further improve this direct differentiation culture system, by developing an autologous osteogenic-inducing culture supplement extracted from hESC-derived osteogenic cells themselves. A whole cell lysate was prepared from hESC-derived osteogenic cells, simply by exposure to deionized water followed by free-thawing and subsequent filtration. The product was used to coat the surface of cell culture dishes together with gelatin, prior to culture of hESC under osteogenic-inducing conditions. The results showed that the autologous cell lysate extract promoted the aggregation and clustering of cells to form nodule-like structures. Immunohistochemical staining on day 9 demonstrated that these cellular aggregates strongly expressed STRO-1, while on day 14 the nodule-like structures stained positively for both osteocalcin and osteonectin (SPARC). By contrast, the negative control (gelatin coating alone) showed much less prominent cellular aggregation and clustering, and was stained much less intensely for these markers. Additionally, Von Kossa staining on day 14 was also more intense in the presence of the autologous cell lysate extract. Hence, this product can be used to further enhance the osteogenesis of hESC. This would save costs from the use of highly-expensive cytokines, growth factors and matrix components, as well as avoid pathogenic transmission from animal and human products.
机译:最近证明,没有初始拟胚体形成步骤,hESC的成骨作用更为有效。这项研究试图通过开发自hESC来源的成骨细胞本身提取的自体成骨诱导培养补充剂来进一步改善这种直接分化培养系统。从hESC衍生的成骨细胞制备全细胞裂解液,只需将其暴露于去离子水中,然后自由融化并随后过滤即可。在成骨诱导条件下培养hESC之前,将产品与明胶一起涂在细胞培养皿的表面。结果表明,自体细胞裂解物提取物促进细胞的聚集和聚集,形成结节状结构。第9天的免疫组织化学染色表明,这些细胞聚集体强烈表达STRO-1,而在第14天,结节样结构对骨钙蛋白和骨连接蛋白(SPARC)呈阳性染色。相比之下,阴性对照(仅使用明胶涂层)显示出的细胞聚集和聚集现象要少得多,并且这些标记的染色强度也要低得多。另外,在存在自体细胞裂解物提取物的情况下,第14天的Von Kossa染色也更强烈。因此,该产品可用于进一步增强hESC的成骨作用。这将节省因使用昂贵的细胞因子,生长因子和基质成分而产生的成本,并避免动物和人类产品的致病性传播。

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