内皮细胞NOX5过表达诱导心脏基因谱改变:对心肌梗死的潜在影响?

IF 3.7 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of physiology and biochemistry Pub Date : 2023-11-01 Epub Date: 2023-08-11 DOI:10.1007/s13105-023-00975-z
Adriana Cortés, Javier Marqués, Álvaro Pejenaute, Elena Ainzúa, Eduardo Ansorena, Gloria Abizanda, Felipe Prósper, Carlos de Miguel, Guillermo Zalba
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引用次数: 0

摘要

心血管疾病和缺血性心脏病是世界范围内死亡的主要原因。缺血性心脏病可能导致心肌梗死,进而触发心脏修复和重塑的许多机制和途径。我们在本研究中的目标是表征健康和梗死敲除小鼠中NADPH氧化酶5(NOX5)内皮表达对不同信号通路的影响。在小鼠心脏中研究的机制包括氧化还原途径、金属蛋白酶和胶原途径、信号因子如NFκB、AKT或Bcl-2以及粘附分子等。最近的研究支持,NOX5在动物模型中的表达可以改变环境,并在病理过程之前使器官对有害刺激产生反应。我们发现参与心脏纤维化的成分(如I型胶原或TGF-β)以及心脏细胞凋亡的关键参与者(如AKT、Bcl-2或p53)的mRNA表达发生了许多变化。在慢性心肌梗死后表达NOX5的小鼠的心脏中,基因改变在氧化还原途径(NOX2、NOX4、p22phox或SOD1)中占主导地位,但我们也发现VCAM-1和β-MHC表达的改变。我们的研究结果表明,NOX5在小鼠中的内皮表达是心脏的先决条件,我们认为NOX5具有心脏保护作用。超声心动图参数与心脏mRNA表达之间的相关性研究支持NOX5的保护作用。
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Endothelial NOX5 overexpression induces changes in the cardiac gene profile: potential impact in myocardial infarction?

Cardiovascular diseases and the ischemic heart disease specifically constitute the main cause of death worldwide. The ischemic heart disease may lead to myocardial infarction, which in turn triggers numerous mechanisms and pathways involved in cardiac repair and remodeling. Our goal in the present study was to characterize the effect of the NADPH oxidase 5 (NOX5) endothelial expression in healthy and infarcted knock-in mice on diverse signaling pathways. The mechanisms studied in the heart of mice were the redox pathway, metalloproteinases and collagen pathway, signaling factors such as NFκB, AKT or Bcl-2, and adhesion molecules among others. Recent studies support that NOX5 expression in animal models can modify the environment and predisposes organ response to harmful stimuli prior to pathological processes. We found many alterations in the mRNA expression of components involved in cardiac fibrosis as collagen type I or TGF-β and in key players of cardiac apoptosis such as AKT, Bcl-2, or p53. In the heart of NOX5-expressing mice after chronic myocardial infarction, gene alterations were predominant in the redox pathway (NOX2, NOX4, p22phox, or SOD1), but we also found alterations in VCAM-1 and β-MHC expression. Our results suggest that NOX5 endothelial expression in mice preconditions the heart, and we propose that NOX5 has a cardioprotective role. The correlation studies performed between echocardiographic parameters and cardiac mRNA expression supported NOX5 protective action.

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来源期刊
Journal of physiology and biochemistry
Journal of physiology and biochemistry 生物-生化与分子生物学
CiteScore
6.60
自引率
0.00%
发文量
86
审稿时长
6-12 weeks
期刊介绍: The Journal of Physiology and Biochemistry publishes original research articles and reviews describing relevant new observations on molecular, biochemical and cellular mechanisms involved in human physiology. All areas of the physiology are covered. Special emphasis is placed on the integration of those levels in the whole-organism. The Journal of Physiology and Biochemistry also welcomes articles on molecular nutrition and metabolism studies, and works related to the genomic or proteomic bases of the physiological functions. Descriptive manuscripts about physiological/biochemical processes or clinical manuscripts will not be considered. The journal will not accept manuscripts testing effects of animal or plant extracts.
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