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Assessment of Vascular Tone Responsiveness using Isolated Mesenteric Arteries with a Focus on Modulation by Perivascular Adipose Tissues
Published on: June 3, 2019
Arterial structure and function in vascular ageing: are you as old as your arteries?
Dick H J Thijssen1,2, Sophie E Carter1, Daniel J Green1,3
1Research Institute for Sport and Exercise Sciences, Liverpool John Moores University, UK.
Insights
Aging significantly impacts cardiovascular health, with arterial function and structure changes predicting future events. Direct assessment of arteries offers deeper insights beyond traditional risk factors.
Area of Science:
- Cardiovascular Science
- Aging Biology
- Vascular Physiology
Background:
- Advancing age is a key predictor of cardiovascular events, not fully explained by traditional risk factors.
- Arterial function and structure undergo age-related changes, influencing cardiovascular health.
- Differential susceptibility of arteries to atherosclerosis necessitates direct assessment.
Purpose of the Study:
- To investigate age-related changes in arterial function and structure.
- To determine if direct measures of arterial health predict cardiovascular events.
- To explore the role of oxidative stress, inflammation, and cellular senescence in vascular aging.
Main Methods:
- In vivo assessment of coronary and peripheral arterial function (conduit, resistance, skin).
- Evaluation of arterial structural changes (wall thickening, elastin content, diameter).
- Analysis of arterial stiffness (small and large arteries).
Main Results:
- Age-related decline in vascular function linked to reduced nitric oxide and increased vasoconstrictors.
- Structural changes include arterial wall thickening and increased diameter.
- Increased arterial stiffness is a hallmark of aging, predicting cardiovascular events independently.
Conclusions:
- Direct measures of arterial function and structure are crucial for understanding age-related cardiovascular risk.
- These measures can differentiate biological from chronological aging effects on arteries.
- Assessing arterial health provides direct insight into cardiovascular event prediction.
Abstract:
Advancing age may be the most potent independent predictor of future cardiovascular events, a relationship that is not fully explained by time-related changes in traditional cardiovascular risk factors. Since some arteries exhibit differential susceptibility to atherosclerosis, generalisations regarding the impact of ageing in humans may be overly simplistic, whereas in vivo assessment of arterial function and health provide direct insight. Coronary and peripheral (conduit, resistance and skin) arteries demonstrate a gradual, age-related impairment in vascular function that is likely to be related to a reduction in endothelium-derived nitric oxide bioavailability and/or increased production of vasoconstrictors (e.g. endothelin-1). Increased exposure and impaired ability for defence mechanisms to resist oxidative stress and inflammation, but also cellular senescence processes, may contribute to age-related changes in vascular function and health. Arteries also undergo structural changes as they age. Gradual thickening of the arterial wall, changes in wall content (i.e. less elastin, advanced glycation end-products) and increase in conduit artery diameter are observed with older age and occur similarly in central and peripheral arteries. These changes in structure have important interactive effects on artery function, with increases in small and large arterial stiffness representing a characteristic change with older age. Importantly, direct measures of arterial function and structure predict future cardiovascular events, independent of age or other cardiovascular risk factors. Taken together, and given the differential susceptibility of arteries to atherosclerosis in humans, direct measurement of arterial function and health may help to distinguish between biological and chronological age-related change in arterial health in humans.
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