Yuan Haijun, Yuan Mei, Tang Yonghong, Wang Biao, Zhan Xiangyang
The Second Affiliated Hospital, University Of South China, Department of Emergency.
The second affiliated Hospital, University Of South China, Department of Neurology.
Afr Health Sci. 2018 Jun;18(2):333-342. doi: 10.4314/ahs.v18i2.18.
Acute organophosphorus(OP) pesticide poisoning is associated with dysfunctions in multiple organs, especially skeletal muscles, the nervous system and the heart. However, little is known about the specific microRNA (miRNA) changes that control the pathophysiological processes of acute OP poisoning damage. We aimed to explore miRNA expression profiles and gain insight into molecular mechanisms of OP toxic effects.
MicroRNA expression was analyzed by TaqMan Human MicroRNA Array analysis and subsequent validated with quantitive PCR. The targets of the significantly different miRNAs were predicted with miRNA prediction databases, and pathway analysis of the predicted target genes was performed using bioinformatics resources.
37 miRNAs were significantly different in the sera of poisoned patients compared to the healthy controls, including 29 miRNAs that were up-regulated and 8 miRNAs that were down-regulated. Functional analysis indicated that many pathways potentially regulated by these miRNAs are involved in skeletal muscle, nervous system and heart disorders.
This study mapped changes in the serum miRNA expression profiles of poisoning patients and predicted functional links between miRNAs and their target genes in the regulation of acute OP poisoning. Our findings are an important resource for further understanding the role of these miRNAs in the regulation of OP-induced injury.
急性有机磷农药中毒与多器官功能障碍有关,尤其是骨骼肌、神经系统和心脏。然而,对于控制急性有机磷中毒损伤病理生理过程的特定微小RNA(miRNA)变化知之甚少。我们旨在探索miRNA表达谱,并深入了解有机磷毒性作用的分子机制。
通过TaqMan人类miRNA阵列分析来分析miRNA表达,并随后用定量PCR进行验证。使用miRNA预测数据库预测显著差异miRNA的靶标,并利用生物信息学资源对预测的靶标基因进行通路分析。
与健康对照相比,中毒患者血清中有37种miRNA存在显著差异,其中29种miRNA上调,8种miRNA下调。功能分析表明,这些miRNA潜在调控的许多通路都与骨骼肌、神经系统和心脏疾病有关。
本研究描绘了中毒患者血清miRNA表达谱的变化,并预测了miRNA与其靶标基因在急性有机磷中毒调控中的功能联系。我们的发现为进一步了解这些miRNA在有机磷诱导损伤调控中的作用提供了重要资源。