Pérez-Campo Flor M, Riancho José A
Department of Internal Medicine, Hospital U. Marqués de Valdecilla-IDIVAL Universidad de Cantabria, 39008 Santander, Cantabria, Spain.
Curr Genomics. 2015 Dec;16(6):368-83. doi: 10.2174/1389202916666150817202559.
Human Mesenchymal Stem Cells (hMSCs) have emerged in the last few years as one of the most promising therapeutic cell sources and, in particular, as an important tool for regenerative medicine of skeletal tissues. Although they present a more restricted potency than Embryonic Stem (ES) cells, the use of hMCS in regenerative medicine avoids many of the drawbacks characteristic of ES cells or induced pluripotent stem cells. The challenge in using these cells lies into developing precise protocols for directing cellular differentiation to generate a specific cell lineage. In order to achieve this goal, it is of the upmost importance to be able to control de process of fate decision and lineage commitment. This process requires the coordinate regulation of different molecular layers at transcriptional, posttranscriptional and translational levels. At the transcriptional level, switching on and off different sets of genes is achieved not only through transcriptional regulators, but also through their interplay with epigenetic modifiers. It is now well known that epigenetic changes take place in an orderly way through development and are critical in the determination of lineage-specific differentiation. More importantly, alteration of these epigenetic changes would, in many cases, lead to disease generation and even tumour formation. Therefore, it is crucial to elucidate how epigenetic factors, through their interplay with transcriptional regulators, control lineage commitment in hMSCs.
在过去几年中,人骨髓间充质干细胞(hMSCs)已成为最具前景的治疗性细胞来源之一,尤其是作为骨骼组织再生医学的重要工具。尽管它们的分化潜能比胚胎干细胞(ES)更有限,但在再生医学中使用hMCS避免了ES细胞或诱导多能干细胞的许多典型缺点。使用这些细胞的挑战在于制定精确的方案来引导细胞分化以产生特定的细胞谱系。为了实现这一目标,能够控制命运决定和谱系定向过程至关重要。这个过程需要在转录、转录后和翻译水平上对不同分子层进行协调调节。在转录水平上,不仅通过转录调节因子,而且通过它们与表观遗传修饰因子的相互作用来实现不同基因集的开启和关闭。现在众所周知,表观遗传变化在发育过程中以有序的方式发生,并且在谱系特异性分化的决定中至关重要。更重要的是,在许多情况下,这些表观遗传变化的改变会导致疾病产生甚至肿瘤形成。因此,阐明表观遗传因子如何通过与转录调节因子的相互作用来控制hMSCs中的谱系定向至关重要。