促进血管内皮对压力的恢复能力

IF 2.7 4区 医学 Q2 PHARMACOLOGY & PHARMACY
Maria J. Jaramillo-Torres, Rachel H. Limpert, William J. Butak, Katie E. Cohen, Alicen A. Whitaker-Hilbig, Matthew J. Durand, Julie K. Freed, Gopika SenthilKumar
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引用次数: 0

摘要

到2050年,大约60%的人口将患有心血管疾病。虽然在过去的几十年里产生了大量的数据,这些数据有助于我们理解心血管疾病的病理学,但对于如何提高个人每天接触到的心血管风险因素的弹性,我们所知甚少。血管内皮被认为是抵御循环有害刺激的第一道防线,当功能失调时,是心血管疾病发展的早期危险因素。大量的数据已经证明了外部压力是如何损害血管内皮的;然而,关于如何扩大保护途径、抵御压力和疾病发展的知识缺乏,这是本文的重点。针对已知的保护性内皮通路可能是可行的,以增加血管应激的弹性。利用压力来增强血管内皮内的防御机制也被提出,这可能有助于确定新的治疗靶点,以保护个体免受日常生活压力的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Promoting Resiliency to Stress in the Vascular Endothelium

Promoting Resiliency to Stress in the Vascular Endothelium

By 2050, roughly 60% of the population will have cardiovascular disease. While a substantial amount of data has been generated over the last few decades that has aided in our understanding of cardiovascular disease pathology, less is known about how to increase resiliency to cardiovascular risk factors that individuals are exposed to on a daily basis. The vascular endothelium is considered the first line of defence against circulating noxious stimuli and, when dysfunctional, is an early risk factor for the development of cardiovascular disease. A vast amount of data has been generated demonstrating how external stress impairs the vascular endothelium; however, there is a paucity of knowledge regarding how to amplify protective pathways and ward off stress and the development of disease, which is the focus of this review. Targeting known protective endothelial pathways may be feasible to increase resiliency to vascular stress. Leveraging stress to boost defence mechanisms within the vascular endothelium is also proposed and may help identify novel therapeutic targets to protect individuals from the stress of everyday life.

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来源期刊
CiteScore
5.60
自引率
6.50%
发文量
126
审稿时长
1 months
期刊介绍: Basic & Clinical Pharmacology and Toxicology is an independent journal, publishing original scientific research in all fields of toxicology, basic and clinical pharmacology. This includes experimental animal pharmacology and toxicology and molecular (-genetic), biochemical and cellular pharmacology and toxicology. It also includes all aspects of clinical pharmacology: pharmacokinetics, pharmacodynamics, therapeutic drug monitoring, drug/drug interactions, pharmacogenetics/-genomics, pharmacoepidemiology, pharmacovigilance, pharmacoeconomics, randomized controlled clinical trials and rational pharmacotherapy. For all compounds used in the studies, the chemical constitution and composition should be known, also for natural compounds.
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