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MicroRNA Profiling during Cardiomyocyte-Specific Differentiation of Murine Embryonic Stem Cells Based on Two Different miRNA Array Platforms

机译:基于两个不同的miRNA阵列平台的小鼠胚胎干细胞心肌特异性分化过程中的MicroRNA分析。

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MicroRNA (miRNA) plays a critical role in a wide variety of biological processes. Profiling miRNA expression during differentiation of embryonic stem cells will help to understand the regulation pathway of differentiation, which in turn may elucidate disease mechanisms. The identified miRNAs could then serve as a new group of possible therapeutic targets. In the present paper, miRNA expression profiles were determined during cardiomyocyte-specific differentiation and maturation of murine embryonic stem (ES) cells. For this purpose a homogeneous cardiomyocyte population was generated from a transgenic murine ES cell line. Two high throughput array platforms (Affymetrix and Febit) were used for miRNA profiling in order to compare the effect of the platforms on miRNA profiling as well as to increase the validity of target miRNA identification. Four time points (i.e. day 0, day 12, day 19 and day 26) were chosen for the miRNA profiling study, which corresponded to different stages during cardiomyocyte-specific differentiation and maturation. Fifty platform and pre-processing method-independent miRNAs were identified as being regulated during the differentiation and maturation processes. The identification of these miRNAs is an important step for characterizing and understanding the events involved in cardiomyocyte-specific differentiation of ES cells and may also highlight candidate target molecules for therapeutic purposes.
机译:MicroRNA(miRNA)在多种生物学过程中起着至关重要的作用。在胚胎干细胞分化过程中分析miRNA表达有助于了解分化的调控途径,进而阐明疾病的机制。然后,鉴定出的miRNA可以作为一组可能的治疗靶标。在本文中,在小鼠胚胎干细胞(ES)的心肌细胞特异性分化和成熟过程中确定了miRNA的表达谱。为此目的,从转基因鼠ES细胞系中产生均质的心肌细胞群。两个高通量阵列平台(Affymetrix和Febit)用于miRNA谱分析,以比较平台对miRNA谱分析的作用,并提高靶标miRNA鉴定的有效性。选择了四个时间点(即第0天,第12天,第19天和第26天)进行miRNA分析研究,这对应于心肌细胞特异性分化和成熟的不同阶段。五十个平台和预处理方法无关的miRNA被确定为在分化和成熟过程中受到调控。这些miRNA的鉴定是表征和了解与ES细胞心肌细胞特异性分化有关的事件的重要步骤,并且也可能突出用于治疗目的的候选靶分子。

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