Effects of nicotine on microRNA-124 expression in bile duct ligation-induced liver fibrosis in rats

Khalil Hajiasgharzadeh, Parviz Shahabi, Elham Karimi-Sales, Mohammad Reza Alipour
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Abstract

Nicotine, the main compound of smoking may exert its effects by changing the expression of microRNAs (miRNAs). This study was conducted to further investigate the molecular mechanisms of miRNA-dependent effects of nicotine in an animal model of liver fibrosis. The bile duct ligation (BDL) approach was used to create a model of liver fibrosis. Twenty-four male Wistar rats were used in the study. The effects of nicotine administration on miRNA-124 expression, as well as alpha-smooth muscle actin (liver fibrosis marker) and chemokine ligand 2 (an inflammatory chemokine), were investigated using RT-qPCR. In addition, the mRNA and protein expression of signal transducer and activator of transcription 3 (STAT-3; as a potential target for miRNA-124) were investigated by RT-qPCR and immunofluorescence, respectively. Liver enzyme activity levels were measured using a colorimetric assay. In addition, the effects of nicotine on the process of liver fibrosis were investigated with histological studies. The development of liver fibrosis in BDL rats and nicotine administration led to a decrease in miRNA-124 expression. The decrease in the expression is accompanied by the increase in the expression of fibrotic and proinflammatory genes. Also, an increase in STAT-3 mRNA and protein expression was observed in the fibrotic rats that received nicotine. In addition, the significant increase in bilirubin and liver enzymes in fibrotic rats worsens with nicotine administration. The results of histological studies also confirm these results. Considering that miRNA-124 is an anti-inflammatory miRNA, it can be concluded that the decrease in its expression due to nicotine exposure leads to an increase in inflammatory processes and subsequently to an increase in liver fibrosis.
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尼古丁对胆管结扎诱发大鼠肝纤维化的 microRNA-124 表达的影响
尼古丁是吸烟的主要化合物,可能通过改变微RNA(miRNA)的表达来发挥其作用。本研究旨在进一步研究尼古丁在肝纤维化动物模型中依赖于miRNA效应的分子机制。研究采用胆管结扎(BDL)法建立肝纤维化模型。研究使用了24只雄性Wistar大鼠。研究人员利用 RT-qPCR 技术研究了尼古丁给药对 miRNA-124 以及α-平滑肌肌动蛋白(肝纤维化标志物)和趋化因子配体 2(一种炎性趋化因子)表达的影响。此外,还分别用 RT-qPCR 和免疫荧光法检测了信号转导和转录激活因子 3(STAT-3,miRNA-124 的潜在靶标)的 mRNA 和蛋白质表达。肝酶活性水平采用比色法测定。此外,还通过组织学研究探讨了尼古丁对肝纤维化过程的影响。BDL大鼠肝纤维化的发展和尼古丁的施用导致了miRNA-124表达的减少。在表达减少的同时,纤维化和促炎基因的表达也增加了。此外,在接受尼古丁治疗的纤维化大鼠中,还观察到 STAT-3 mRNA 和蛋白质表达的增加。此外,服用尼古丁后,纤维化大鼠胆红素和肝酶的显著增加也会加剧。组织学研究结果也证实了这些结果。考虑到 miRNA-124 是一种抗炎 miRNA,可以得出结论,尼古丁暴露导致 miRNA-124 表达减少,会导致炎症过程增加,进而导致肝纤维化加重。
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