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首页> 外文期刊>Cellular reprogramming >DNA aneuploidy in porcine bone marrow-derived mesenchymal stem cells undergoing osteogenic and adipogenic in vitro differentiation.
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DNA aneuploidy in porcine bone marrow-derived mesenchymal stem cells undergoing osteogenic and adipogenic in vitro differentiation.

机译:猪骨髓间充质干细胞中成骨和成脂的体外分化中的DNA非整倍性。

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摘要

In this study, we estimated the distribution of DNA diploidy and aneuploidy in porcine mesenchymal stem cells (pMSCs) that were subjected to osteoblast/osteocyte and adipocyte differentiation to determine the impact of long-term in vitro culture and differentiation on the cell cycle distribution and nuclear DNA profile. This determination could be helpful to confirm or exclude the suitability of physico-chemical culture conditions for the purposes of both the maintenance of an undifferentiated state and to promote differentiation in pMSCs. Flow cytometry was applied to analyze the cell cycle and occurrence of aneuploidy/diploidy, and real-time PCR was used to quantify aP2 and osteocalcin, markers of adipocytes and osteocytes, respectively. The chi-squared test was used to compare the total rates of G0/G1-, S-, and G2/M-phase cell fractions with diploid and aneuploid DNA and the DNA index ratios between three experimental groups of pMSCs. Five weeks of in vitro culture under differentiating conditions resulted in a considerable reduction of DNA stability and a remarkable increase in the rate of cells exhibiting an aneuploid DNA stem line; however, a similar dependence was not found in the nondifferentiated MSCs. Furthermore, the cell fraction rates in each phase of the mitotic cycle and the DNA index (DI) were calculated. The results of real-time PCR for aP2 and osteocalcin proved positive MSC differentiation toward adipocytes and osteocytes. In terms of the possible use of differentiated MSC lines in tissue engineering and regenerative medicine, we propose cytokinetic diagnostics using flow cytometry as an objective and useful method for screening the tumor-forming capacity and malignancy potential of both in vitro long-term cultured MSCs and MSCs subjected to ectopic differentiation.
机译:在这项研究中,我们估计了经过成骨细胞/骨细胞和脂肪细胞分化的猪间充质干细胞(pMSCs)中DNA二倍体和非整倍体的分布,以确定长期体外培养和分化对细胞周期分布和核DNA轮廓。该确定可能有助于确认或排除理化培养条件对于维持未分化状态和促进pMSCs分化的适用性。流式细胞仪用于分析细胞周期和非整倍性/二倍体的发生,实时荧光定量PCR分别定量aP2和骨钙素,脂肪细胞和骨细胞的标志物。卡方检验用于比较G0 / G1-,S-和G2 / M期细胞组分与二倍体和非整倍体DNA的总比率,以及三组pMSCs之间的DNA指数比率。在分化条件下进行的五周体外培养导致DNA稳定性大大降低,并且显示非整倍体DNA茎系的细胞速率显着增加。然而,在未分化的MSC中未发现类似的依赖性。此外,计算了有丝分裂周期每个阶段的细胞分数率和DNA指数(DI)。实时PCR检测aP2和骨钙素的结果证明MSC向脂肪细胞和骨细胞呈阳性分化。考虑到分化的MSC系在组织工程和再生医学中的可能用途,我们建议使用流式细胞术进行细胞动力学诊断,作为筛选长期体外培养的MSC和MSC异位分化。

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