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应激诱导的心脏组织差异基因表达。

Stress-induced differential gene expression in cardiac tissue.

机构信息

Laboratory of Stress Biology, Department of Biosciences, Institute of Health and Society, Campus Baixada Santista, Federal University of São Paulo (UNIFESP), Rua Silva Jardim,136, sala 310, Santos, São Paulo, 11020-015, Brazil.

出版信息

Sci Rep. 2021 Apr 28;11(1):9129. doi: 10.1038/s41598-021-88267-8.

Abstract

The stress response is adaptive and aims to guarantee survival. However, the persistence of a stressor can culminate in pathology. Catecholamines released as part of the stress response over activate beta adrenoceptors (β-AR) in the heart. Whether and how stress affects the expression of components of the intracellular environment in the heart is still, however, unknown. This paper used microarray to analyze the gene expression in the left ventricle wall of rats submitted to foot shock stress, treated or not treated with the selective β-AR antagonist ICI118,551 (ICI), compared to those of non-stressed rats also treated or not with ICI, respectively. The main findings were that stress induces changes in gene expression in the heart and that β-AR plays a role in this process. The vast majority of genes disregulated by stress were exclusive for only one of the comparisons, indicating that, in the same stressful situation, the profile of gene expression in the heart is substantially different when the β-AR is active or when it is blocked. Stress induced alterations in the expression of such a large number of genes seems to be part of stress-induced adaptive mechanism.

摘要

应激反应具有适应性,旨在保证生存。然而,应激原的持续存在可能导致病理状态。作为应激反应的一部分释放的儿茶酚胺过度激活心脏中的β肾上腺素受体(β-AR)。然而,应激是否以及如何影响心脏细胞内环境成分的表达仍然未知。本文使用微阵列分析了经历足部电击应激的大鼠左心室壁的基因表达情况,并与未经历应激的大鼠进行了比较,其中一些大鼠接受了选择性β-AR 拮抗剂 ICI118,551(ICI)的治疗,而另一些大鼠则未接受治疗。主要发现是,应激诱导了心脏基因表达的变化,β-AR 在这个过程中发挥了作用。应激引起的大多数基因失调仅存在于其中一种比较中,这表明在相同的应激情况下,当β-AR 活跃或被阻断时,心脏中基因表达的特征有很大的不同。应激诱导如此大量基因表达的改变似乎是应激诱导适应性机制的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8dd/8080723/258ac8ea73a7/41598_2021_88267_Fig1_HTML.jpg

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