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Updated: Apr 17, 2026

Measuring the Stiffness of Ex Vivo Mouse Aortas Using Atomic Force Microscopy
Published on: October 19, 2016
The conundrum of arterial stiffness, elevated blood pressure, and aging
Majd AlGhatrif1, Edward G Lakatta
1Laboratory of Cardiovascular Science, NIA, NIH, Baltimore, MD, USA, Majd.alghatrif@nih.gov.
Insights
Arterial stiffness and hypertension are intricately linked, making it difficult to determine which causes the other. Aging alters aortic function, leading to complex changes in blood pressure that necessitate personalized therapies.
Area of Science:
- Cardiovascular Physiology
- Gerontology
- Biomedical Engineering
Background:
- Isolated systolic hypertension is a growing health concern in aging populations.
- A complex, bidirectional relationship exists between central arterial stiffness and systolic blood pressure (SBP).
- The interplay between arterial stiffness and SBP has led to controversy regarding causality.
Purpose of the Study:
- To explore the intricate relationship between arterial stiffness and blood pressure regulation.
- To understand the age-associated hemodynamic and mechanical changes in the aorta.
- To challenge the "one-size-fits-all" approach in hypertension management.
Main Methods:
- Analysis of the physiological functions of the aorta under varying pressure ranges.
- Observation of age-associated alterations in aortic hemodynamic and mechanical properties.
- Examination of the effects of aortic remodeling on pulse pressure dynamics.
Main Results:
- Early adulthood shows decreased aortic strain and distensibility, with increased diastolic blood pressure.
- Aortic remodeling leads to stiffening and dilation, affecting pulse pressure differently in men and women.
- Advanced remodeling in men shows increased diameter effects, while women experience a slower rise in pulse pressure.
Conclusions:
- The "initial insult" in the arterial stiffness-hypertension relationship is difficult to pinpoint due to their interdependence.
- Age-related changes in aortic mechanics disrupt homeostasis, influencing blood pressure regulation.
- Therapies should be tailored to individual vascular profiles rather than solely focusing on blood pressure values.
Abstract:
Isolated systolic hypertension is a major health burden that is expanding with the aging of our population. There is evidence that central arterial stiffness contributes to the rise in systolic blood pressure (SBP); at the same time, central arterial stiffening is accelerated in patients with increased SBP. This bidirectional relationship created a controversy in the field on whether arterial stiffness leads to hypertension or vice versa. Given the profound interdependency of arterial stiffness and blood pressure, this question seems intrinsically challenging, or probably naïve. The aorta's function of dampening the pulsatile flow generated by the left ventricle is optimal within a physiological range of distending pressure that secures the required distal flow, keeps the aorta in an optimal mechanical conformation, and minimizes cardiac work. This homeostasis is disturbed by age-associated, minute alterations in aortic hemodynamic and mechanical properties that induce short- and long-term alterations in each other. Hence, it is impossible to detect an "initial insult" at an epidemiological level. Earlier manifestations of these alterations are observed in young adulthood with a sharp decline in aortic strain and distensibility accompanied by an increase in diastolic blood pressure. Subsequently, aortic mechanical reserve is exhausted, and aortic remodeling with wall stiffening and dilatation ensue. These two phenomena affect pulse pressure in opposite directions and different magnitudes. With early remodeling, there is an increase in pulse pressure, due to the dominance of arterial wall stiffness, which in turn accelerates aortic wall stiffness and dilation. With advanced remodeling, which appears to be greater in men, the effect of diameter becomes more pronounced and partially offsets the effect of wall stiffness leading to plateauing in pulse pressure in men and slower increase in pulse pressure (PP) than that of wall stiffness in women. The complex nature of the hemodynamic changes with aging makes the "one-size-fits-all" approach suboptimal and urges for therapies that address the vascular profile that underlies a given blood pressure, rather than the blood pressure values themselves.
Related Concept Videos
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