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Development of Methods for Studying the Differentiation of Human Mesenchymal Stem Cells Under Cyclic Compressive Strain

机译:循环压缩应变下人间充质干细胞分化研究方法的发展

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摘要

Human mesenchymal stem cells (hMSC) have numerous potential advantages over terminally differentiated cells and embryonic stem cells for use in tissue engineering applications. The aims of this study were to develop methods to test the hypothesis that hMSC could be differentiated using cyclic compressive strain alone. hMSC were successfully isolated, purified using D7-FIB antibody, cloned, and characterized. The cells were subsequently analyzed using fluorescence-activated cell sorting using a panel of antibodies and differentiation into multiple cell lineages. D7FIB-positive cells were then seeded into collagen–alginate scaffolds and subjected to 10% or 15% cyclic compressive strain for 4 out of 24 hours for up to 21 days in a bespoke servo-assisted displacement-controlled device. Cells were analyzed using adenosine triphosphate assay to determine cell number, live–dead cell assay, and quantitative real-time polymerase chain reaction at 7 and 21 days. Cloned D7-FIB-positive hMSCs showed evidence of differentiation to an osteogenic lineage under 10% cyclic compressive strain alone (core binding factor alpha 1 (CBFA-1) was significantly upregulated at 7 and 21 days by a factor of 18.3 and 32.2, respectively) and to an osteo-chondrogenic lineage under 15% cyclic compressive strain alone (increased expression of CBFA-1, Sox9, and aggrecan). A combination of a composite viscoelastic scaffold and controlled cyclic compressive strain may be useful for study of the differentiation of MSC.
机译:人间充质干细胞(hMSC)与用于组织工程应用的终末分化细胞和胚胎干细胞相比具有许多潜在优势。这项研究的目的是开发方法来检验假说可以单独使用循环压缩应变来区分hMSC的假说。已成功分离hMSC,使用D7-FIB抗体纯化,克隆和鉴定。随后使用荧光激活的细胞分选(使用一组抗体)分析细胞,并分化为多个细胞谱系。然后将D7FIB阳性细胞播种到胶原藻酸盐支架中,并在定制的伺服辅助位移控制装置中进行24小时内的10%或15%循环压缩应变,历时24天达4天。使用三磷酸腺苷分析法分析细胞,以测定细胞数,活死细胞分析法以及7天和21天定量实时聚合酶链反应。克隆的D7-FIB阳性hMSCs在单独10%循环压缩应变下显示出分化为成骨细胞的证据(核心结合因子α1(CBFA-1)在第7天和第21天显着上调分别为18.3和32.2倍) )和仅在15%循环压缩应变下的骨软骨谱系(CBFA-1,Sox9和聚集蛋白聚糖的表达增加)。复合粘弹性支架与受控循环压缩应变的组合可能对研究MSC的分化有用。

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