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首页> 外文期刊>Stem Cell Research & Therapy >From cytogenomic to epigenomic profiles: monitoring the biologic behavior of in vitro cultured human bone marrow mesenchymal stem cells
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From cytogenomic to epigenomic profiles: monitoring the biologic behavior of in vitro cultured human bone marrow mesenchymal stem cells

机译:从细胞基因组到表观基因组概况:监测体外培养的人骨髓间充质干细胞的生物学行为

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Introduction Bone marrow mesenchymal stem cells (BM-MSCs) are multipotent cells that can differentiate into different cell lineages and have emerged as a promising tool for cell-targeted therapies and tissue engineering. Their use in a therapeutic context requires large-scale in vitro expansion, increasing the probability of genetic and epigenetic instabilities. Some evidence shows that an organized program of replicative senescence is triggered in human BM-MSCs (hBM-MSCs) on prolonged in vitro expansion that includes alterations in phenotype, differentiation potential, telomere length, proliferation rates, global gene-expression patterns, and DNA methylation profiles. Methods In this study, we monitored the chromosomal status, the biologic behavior, and the senescence state of hBM-MSCs derived from eight healthy donors at different passages during in vitro propagation. For a more complete picture, the telomere length was also monitored in five of eight donors, whereas the genomic profile was evaluated in three of eight donors by array-comparative genomic hybridization (array-CGH). Finally, an epigenomic profile was delineated and compared between early and late passages, by pooling DNA of hBM-MSCs from four donors. Results Our data indicate that long-term culture severely affects the characteristics of hBM-MSCs. All the observed changes (that is, enlarged morphology, decreased number of cell divisions, random loss of genomic regions, telomere shortening) might be regulated by epigenetic modifications. Gene Ontology analysis revealed that specific biologic processes of hBM-MSCs are affected by variations in DNA methylation from early to late passages. Conclusions Because we revealed a significant decrease in DNA methylation levels in hBM-MSCs during long-term culture, it is very important to unravel how these modifications can influence the biologic features of hBM-MSCs to keep track of this organized program and also to clarify the conflicting observations on hBM-MSC malignant transformation in the literature.
机译:简介骨髓间充质干细胞(BM-MSC)是能分化为不同细胞谱系的多能细胞,已成为用于细胞靶向疗法和组织工程的有前途的工具。它们在治疗中的用途需要大规模的体外扩增,增加了遗传和表观遗传不稳定性的可能性。一些证据表明,在长时间的体外扩增中,人BM-MSC(hBM-MSC)会触发有组织的复制衰老程序,其中包括表型,分化潜能,端粒长度,增殖速率,整体基因表达模式和DNA的改变甲基化配置文件。方法在本研究中,我们监测了来自8位健康供体的hBM-MSC在体外繁殖过程中不同传代的染色体状态,生物学行为和衰老状态。为了获得更完整的图像,还通过八个供体中的五个供体监测了端粒长度,而通过阵列比较基因组杂交(array-CGH)在八个供体中的三个供体中评估了基因组谱。最后,通过汇集来自四个供体的hBM-MSC的DNA,描绘并比较了早期和晚期传代的表观基因组概况。结果我们的数据表明长期培养会严重影响hBM-MSC的特性。所有观察到的变化(即形态扩大,细胞分裂数目减少,基因组区域随机丢失,端粒缩短)都可能受到表观遗传修饰的调节。基因本体分析显示,hBM-MSC的特定生物学过程受早期传代到后期传代的DNA甲基化变化的影响。结论由于我们揭示了长期培养过程中hBM-MSC的DNA甲基化水平显着降低,因此弄清这些修饰如何影响hBM-MSC的生物学特性以跟踪该有组织的程序并弄清这一点非常重要。文献中有关hBM-MSC恶性转化的矛盾观察。

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