Balasubramanian Satheeswaran, Gunasekaran Kanmani, Sasidharan Saranyadevi, Jeyamanickavel Mathan Vignesh, Perumal Ekambaram
Molecular Toxicology Laboratory, Department of Biotechnology, Bharathiar University, Coimbatore, 641 046, India.
Toxicol Rep. 2020 May 4;7:583-595. doi: 10.1016/j.toxrep.2020.04.010. eCollection 2020.
The advent of new technologies has paved the rise of various chemicals that are being employed in industrial as well as consumer products. This leads to the accumulation of these xenobiotic compounds in the environment where they pose a serious threat to both target and non-target species. miRNAs are one of the key epigenetic mechanisms that have been associated with toxicity by modulating the gene expression post-transcriptionally. Here, we provide a comprehensive view on miRNA biogenesis, their mechanism of action and, their possible role in xenobiotic toxicity. Further, we review the recent and studies involved in xenobiotic exposure induced miRNA alterations and the mRNA-miRNA interactions. Finally, we address the challenges associated with the miRNAs in toxicological studies.
新技术的出现推动了各种用于工业和消费品的化学品的兴起。这导致这些外源性化合物在环境中积累,对目标物种和非目标物种都构成严重威胁。微小RNA(miRNA)是关键的表观遗传机制之一,通过转录后调节基因表达与毒性相关。在此,我们全面阐述了miRNA的生物合成、作用机制及其在外源性毒性中的可能作用。此外,我们综述了近期关于外源性暴露诱导的miRNA改变以及mRNA-miRNA相互作用的研究。最后,我们探讨了毒理学研究中与miRNA相关的挑战。