规律运动和白藜芦醇对高血压大鼠肾和血管组织细胞应激反应及衰老的影响。

IF 2.2 4区 医学 Q2 CARDIAC & CARDIOVASCULAR SYSTEMS
Nur Banu Bal, Gökhan Sadi, Aykut Bostanci, Saba Kiremitci, Inga Adanir, Mecit Orhan Uludag, Emine Demirel-Yilmaz
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引用次数: 0

摘要

高血压仍然是世界范围内发病率和死亡率的主要原因,需要对其分子基础有更多的了解。本研究探讨了doca盐高血压大鼠血管和肾组织的细胞应激反应和衰老信号,以及白藜芦醇和运动对这些过程的影响。进行血浆生化检测、分子生化检测(Western Blot和qRT-PCR)和肾、主动脉组织病理学检测(苏木精-伊红和马松三色染色)。运动和白藜芦醇可改善高血压动物的肾重、肾/体重比、血浆BUN和肌酐水平的升高。两种干预措施都降低了GRP78/p- perk介导的内质网应激,并通过PINK1-SIRT3恢复高血压肾和血管组织的有丝分裂。白藜芦醇可增强高血压大鼠血管enos mRNA的表达。高血压动物两种组织中NLRP3炎性小体相关分子和nf-ĸb的表达均升高。两种治疗对炎症参数的积极作用在肾脏中比在主动脉中更为明显。运动和白藜芦醇可逆转高血压大鼠两种组织中细胞衰老相关分子p53和il-6的增加。高血压引起肾组织比血管组织更明显的结构和炎症组织病理学改变。经常运动比白藜芦醇更能改善这些高血压引起的肾脏改变。这项研究表明,高血压诱导细胞应激反应,包括内质网应激、线粒体自噬受损、炎症和衰老,导致组织依赖的结构改变。经常运动和白藜芦醇对高血压引起的肾和血管损害有不同的正向调节作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of regular exercise and resveratrol on hypertension-induced cellular stress response and senescence in renal and vascular tissues of rats.

Hypertension remains the leading cause of morbidity and mortality worldwide and requires more understanding of its molecular basis. This study investigated cellular stress responses and senescence signaling in vascular and renal tissues of DOCA-salt hypertensive rats and the effect of resveratrol and exercise on these processes. Biochemical measurements in plasma and molecular (using Western Blot and qRT-PCR methods) and histopathologic (Hematoxylin-Eosin and Masson's Trichrome staining) examinations in the kidney and aorta were performed. The increase in kidney weight, kidney/body weight ratio, plasma BUN and creatinine levels of hypertensive animals was improved by exercise and resveratrol. Both interventions reduced GRP78/p-PERK-mediated ER stress and restored mitophagy via PINK1-SIRT3 in hypertensive renal and vascular tissues. Decreased vascular enos mRNA expression in hypertensive rats was enhanced by resveratrol treatment. The expression of NLRP3 inflammasome-related molecules and nf-ĸb in both tissues was increased in hypertensive animals. The positive effect of both treatments on inflammatory parameters was more pronounced in the kidney than in the aorta. The increased cellular senescence-related molecules p53 and il-6 were reversed by exercise and resveratrol in both tissues of hypertensive rats. Hypertension caused more obvious structural and inflammatory histopathologic changes in renal tissue than in vascular tissue. Regular exercise ameliorated these hypertension-induced renal alterations more than resveratrol. This study revealed that hypertension induces cellular stress responses including ER stress, impaired mitophagy, inflammation and consequently senescence, leading to structural alterations in a tissue-dependent manner. Regular exercise and resveratrol have different positive regulatory effects on these renal and vascular impairments caused by hypertension.

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来源期刊
CiteScore
5.10
自引率
3.30%
发文量
367
审稿时长
1 months
期刊介绍: Journal of Cardiovascular Pharmacology is a peer reviewed, multidisciplinary journal that publishes original articles and pertinent review articles on basic and clinical aspects of cardiovascular pharmacology. The Journal encourages submission in all aspects of cardiovascular pharmacology/medicine including, but not limited to: stroke, kidney disease, lipid disorders, diabetes, systemic and pulmonary hypertension, cancer angiogenesis, neural and hormonal control of the circulation, sepsis, neurodegenerative diseases with a vascular component, cardiac and vascular remodeling, heart failure, angina, anticoagulants/antiplatelet agents, drugs/agents that affect vascular smooth muscle, and arrhythmias. Appropriate subjects include new drug development and evaluation, physiological and pharmacological bases of drug action, metabolism, drug interactions and side effects, application of drugs to gain novel insights into physiology or pathological conditions, clinical results with new and established agents, and novel methods. The focus is on pharmacology in its broadest applications, incorporating not only traditional approaches, but new approaches to the development of pharmacological agents and the prevention and treatment of cardiovascular diseases. Please note that JCVP does not publish work based on biological extracts of mixed and uncertain chemical composition or unknown concentration.
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