microRNA-214-5p在人和啮齿动物肝纤维化中的诱导作用。

Masashi Iizuka, Tomohiro Ogawa, Masaru Enomoto, Hiroyuki Motoyama, Katsutoshi Yoshizato, Kazuo Ikeda, Norifumi Kawada
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引用次数: 76

摘要

背景:mirna是一种非编码rna,在包括多种疾病在内的广泛生物学环境中调节基因表达。本研究利用人类临床组织样本、啮齿动物模型肝脏和培养的肝星状细胞阐明了miR-214-5p在肝纤维化中的作用。方法:采用实时荧光定量PCR技术,分析丙型肝炎病毒感染的人肝脏、啮齿动物纤维化肝脏、人星状细胞系(LX-2)和完整小鼠肝脏细胞中miR-214-5p及肝纤维化相关基因的表达。研究LX-2细胞中miR-214-5p过表达对细胞功能的影响。并分析Twist-1在小鼠模型及原代培养的星状细胞肝组织中的表达。结果:miR-214-5p在人和小鼠肝脏中以纤维化进展依赖的方式上调。在小鼠原代星状细胞的培养依赖性激活过程中,miR-214-5p的表达增加,并且在星状细胞中的表达明显高于肝细胞。LX-2细胞中miR-214-5p的过表达增加了基质金属蛋白酶(MMP)-2、MMP-9、α-平滑肌肌动蛋白、转化生长因子(TGF)-β1等纤维化相关基因的表达。TGF-β刺激诱导LX-2细胞中miR-214-5p的表达。Twist-1在纤维化小鼠肝脏中升高,并在小鼠星状细胞激活过程中被诱导。结论:miR-214-5p可能在星状细胞活化和肝纤维化进程中发挥重要作用。Twist-1可能调节miR-214-5p在肝脏中的表达,特别是在星状细胞中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Induction of microRNA-214-5p in human and rodent liver fibrosis.

Induction of microRNA-214-5p in human and rodent liver fibrosis.

Induction of microRNA-214-5p in human and rodent liver fibrosis.

Induction of microRNA-214-5p in human and rodent liver fibrosis.

Background: miRNAs are non-coding RNAs that regulate gene expression in a wide range of biological contexts, including a variety of diseases. The present study clarified the role of miR-214-5p in hepatic fibrogenesis using human clinical tissue samples, livers from rodent models, and cultured hepatic stellate cells.

Methods: The expression of miR-214-5p and genes that are involved in liver fibrosis were analyzed in hepatitis C virus-infected human livers, rodent fibrotic livers, a human stellate cell line (LX-2), and the cells from intact mouse livers using real-time PCR. The effect of miR-214-5p overexpression in LX-2 cells on cell function was investigated. Twist-1 expression in the liver tissues of mouse models and primary-cultured stellate cells was also analyzed.

Results: miR-214-5p was upregulated in human and mouse livers in a fibrosis progression-dependent manner. miR-214-5p expression increased during the culture-dependent activation of mouse primary stellate cells and was significantly higher in stellate cells than in hepatocytes. The overexpression of miR-214-5p in LX-2 cells increased the expression of fibrosis-related genes, such as matrix metalloproteinase (MMP)-2, MMP-9, α-smooth muscle actin, and transforming growth factor (TGF)-β1. TGF-β stimulation induced miR-214-5p in LX-2 cells. Twist-1 was increased in fibrotic mouse livers and induced during mouse stellate cell activation.

Conclusion: miR-214-5p may play crucial roles in the activation of stellate cells and the progression of liver fibrosis. Twist-1 may regulate miR-214-5p expression in the liver, particularly in stellate cells.

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