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Integrating miRNA and mRNA expression profiles in response to heat stress-induced injury in rat small intestine

机译:整合miRNA和mRNA表达谱以响应热应激诱导的大鼠小肠损伤

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The molecular mechanisms underlying the pathophysiology of heat stress in the small intestine remain undefined. Furthermore, little information is available concerning changes in microRNA (miRNA) expression following heat stress. The present study sought to evaluate miRNA and mRNA expression profiles in the rat small intestine in response to heat stress. Male Sprague-Dawley rats were subjected to 2 h of heat stress daily for ten consecutive days. Rats were sacrificed at specific time points immediately following heat treatment, and morphological changes in the small intestine were determined. The miRNA and mRNA expression profiles from sample of small intestine were evaluated by microarray analysis. Heat stress caused pronounced morphological damage in the rat small intestine, most severe within the jejunum after 3 days of heat treatment. A mRNA microarray analysis found 270 genes to be up-regulated and 122 genes down-regulated (P≤0.01, ≥2.0-fold change) in the jejunum after heat treatment. A miRNA microarray analysis found 18 miRNAs to be up-regulated and 11 down-regulated in the jejunum after heat treatment (P≤0.05). Subsequent bioinformatic analyses of the differentially expressed mRNAs and miRNAs were carried out to integrate miRNA and mRNA expression and revealed that alterations in mRNA following heat stress were negatively correlated with miRNA expression. These findings significantly advance our understanding of the regulatory mechanisms underlying the pathophysiology of heat stress-induced injury in the small intestine, specifically with regard to miRNAs.
机译:小肠热应激病理生理的分子机制仍未确定。此外,关于热应激后microRNA(miRNA)表达变化的信息很少。本研究旨在评估大鼠小肠响应热应激的miRNA和mRNA表达谱。雄性Sprague-Dawley大鼠每天连续2天遭受2小时的热应激。热处理后立即在特定时间点处死大鼠,并确定小肠的形态变化。通过微阵列分析评估了来自小肠样品的miRNA和mRNA表达谱。热应激在大鼠小肠中引起明显的形态损伤,在热处理3天后空肠内最为严重。 mRNA微阵列分析发现热处理后空肠中有270个基因上调,而122个基因下调(P≤0.01,≥2.0倍变化)。进行miRNA芯片分析发现,热处理后空肠中的18个miRNA上调(11个下调)(P≤0.05)。随后进行了差异表达的mRNA和miRNA的生物信息学分析,以整合miRNA和mRNA表达,并揭示了热应激后mRNA的变化与miRNA表达负相关。这些发现大大提高了我们对小肠热应激诱导的损伤的病理生理基础的调控机制的理解,特别是对于miRNA。

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