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The expression profile analysis of atrial mRNA in rats with atrial fibrillation: the role of IGF1 in atrial fibrosis

机译:心房颤动大鼠心房mRNA表达谱分析:IGF1在心房纤维化中的作用

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Structural remodeling is critical to the initiation and maintenance of atrial fibrillation (AF). IGF1, insulin like growth factor 1, has been recognized as contributor to fibrosis. However, the roles and mechanisms of IGF1 in structural remodeling during AF is still unclear. We investigated the transcriptional expression profiles of left atria in AF and non-AF rat models by using microarray analysis. And quantitative real-time polymerase chain reaction (qRT-PCR) was performed to validate the accuracy. After bioinformatics analysis, IGF1 was selected to explore its effects and mechanisms on atrial fibrosis. The fibroblasts were extracted from atria of rats, and randomly divided into negative control group, mIGF1 overexpression group and mIGF1 silencing group. Then 30 healthy male Wistar rats were randomly divided into negative control group (n?=?10), pacing group (n?=?10), pacing + mIGF1 silencing viruses group (n?=?10). Then the intracardiac electrophysiological examination, qRT-PCR, Western Blotting, masson staining were conducted after IGF1 interfering experiments. A total of 956 differentially expressed transcripts were identified, in which 395 transcripts were down-regulated and 561 transcripts were up-regulated. Bioinformatics analysis was conducted to predict the functions and interactions of the aberrantly expressed genes. The inhibition of IGF1 function in AF model could ameliorate the inducibility of AF. The IGF1 plays a fibrotic role by activating the PI3K-Akt pathway to increase the expression of CTGF and AT1R. IGF1 develops vital function in regulating structural remodeling during AF, which could illustrate the mechanism of AF pathogenesis and supply potential targets for its precise treatment.
机译:结构重塑对于房颤(AF)的启动和维持至关重要。 IGF1(胰岛素样生长因子1)已被认为是纤维化的原因。然而,IGF1在房颤期间结构重构中的作用和机制仍不清楚。我们通过使用微阵列分析调查了AF和非AF大鼠模型中左心房的转录表达谱。并进行定量实时聚合酶链反应(qRT-PCR)以验证准确性。经过生物信息学分析后,选择了IGF1来研究其对心房纤维化的作用和机制。从大鼠心房提取成纤维细胞,随机分为阴性对照组,mIGF1过表达组和mIGF1沉默组。然后将30只健康的雄性Wistar大鼠随机分为阴性对照组(n≥10),起搏组(n≥10),起搏+ mIGF1沉默病毒组(n≥10)。然后在IGF1干扰实验后进行心内电生理检查,qRT-PCR,Western Blotting,Masson染色。共鉴定出956个差异表达的转录本,其中395个转录本被下调,而561个转录本被上调。进行生物信息学分析以预测异常表达基因的功能和相互作用。对AF模型中IGF1功能的抑制可改善AF的诱导性。 IGF1通过激活PI3K-Akt途径来增加CTGF和AT1R的表达,从而起到纤维化作用。 IGF1在调节房颤期间的结构重构中起着至关重要的作用,这可能说明房颤的发病机理,并为其精确治疗提供潜在的靶标。

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