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Transcriptome and DNA Methylome Dynamics during Triclosan-Induced Cardiomyocyte Differentiation Toxicity

机译:三氯生诱导的心肌细胞分化毒性的转录组和DNA甲基汞动力学

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摘要

Cardiac development is a dynamic process and sensitive to environmental chemicals. Triclosan is widely used as an antibacterial agent and reported to transport across the placenta and affect embryonic development. Here, we used human embryonic stem cell- (hESC-) derived cardiomyocytes (CMs) to determine the effects of TCS exposure on cardiac development. After TCS treatment, the differentiation process was significantly blocked and spontaneous beating rates of CMs were also decreased. Transcriptome analysis showed the dysregulation of genes involved in cardiogenesis, including GATA4 and TNNT2. Additionally, DNA methylation was also altered by TCS exposure, especially in those regions with GATA motif enrichment. These alterations of transcriptome and DNA methylation were all associated with signaling pathways integral to heart development. Our findings indicate that TCS exposure might cause cardiomyocyte differentiation toxicity and provide the new insights into how environmental factors regulate DNA methylation and gene expressions during heart development.
机译:心脏发育是一种动态过程和对环境化学品敏感。三氯烷广泛用作抗菌剂,并据报道,在胎盘上运输并影响胚胎发育。在这里,我们使用人的胚胎干细胞 - (HESC-)衍生的心肌细胞(CMS)来确定TCS暴露对心脏发育的影响。在TCS治疗后,分化过程显着阻断,CMS的自发性搏率也降低。转录组分析显示患有血管发生的基因的失调,包括GATA4和TNNT2。另外,DNA甲基化也通过TCS暴露而改变,特别是在具有Gata Motif富集的那些区域中。这些转录组和DNA甲基化的这些改变均与心发育的信号通路一体化相关。我们的研究结果表明,TCS暴露可能导致心肌细胞分化毒性,并为环境因素调节心脏发育过程中DNA甲基化和基因表达的新见解。

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