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Published on: December 2, 2014
[Drugs and arterial stiffness in hypertensive patients]
1Inserm EMI 0107, Hôpital Européen Georges Pompidou, Paris, France. stephane.laurent@egp-ap-hop-paris.fr
Insights
Arterial stiffness and pulse pressure are key risk factors for mortality. Reducing arterial stiffness through hypertension and heart failure treatments is crucial for better cardiovascular outcomes.
Area of Science:
- Cardiovascular Medicine
- Vascular Physiology
- Pharmacology
Context:
- Epidemiological studies identify pulse pressure and arterial stiffness as significant risk factors for mortality.
- Hypertension and congestive heart failure (CHF) management requires addressing arterial stiffness to reduce afterload and improve cardiac output.
- Elevated diastolic blood pressure is crucial for coronary perfusion, particularly in coronary heart disease (CHD).
Purpose:
- To explore the role of arterial stiffness in cardiovascular health and mortality.
- To evaluate the impact of antihypertensive agents on arterial stiffness.
- To discuss the need for further research and clinical guidelines on managing arterial stiffness.
Summary:
- Antihypertensive agents across various classes have demonstrated the ability to decrease arterial stiffness.
- This reduction is partly due to blood pressure lowering, but long-term treatment may also modify arterial wall composition.
- Further large-scale, long-term trials are needed to confirm differential efficacy of drug classes and establish the prognostic value of reducing arterial stiffness.
Impact:
- Highlights the importance of targeting arterial stiffness in cardiovascular disease management.
- Suggests potential for novel therapeutic strategies beyond simple blood pressure reduction.
- Provides a framework for future research to validate the clinical significance of arterial stiffness reduction.
Abstract:
Epidemiological studies have demonstrated that pulse pressure and arterial stiffness are strong independent risk factors for all-cause and cardiovascular mortality, primary coronary heart disease (CHD) and stroke. Thus, treatment of hypertension and congestive heart failure (CHF) should aim to reduce arterial stiffness in order to lower afterload and pulse pressure, promote regression of left ventricular and arterial wall hypertrophy and, in CHF, increase cardiac output. Elevation of diastolic blood pressure appears to be beneficial to coronary perfusion and this may be particularly relevant in the setting of CHD. In patients with essential hypertension, numerous studies have shown a decrease in arterial stiffness with various pharmacological classes of antihypertensive agents (including beta-blockers, diuretics, ACE inhibitors, angiotensin II receptor antagonists and calcium antagonists), either acutely or during long-term studies. Their efficacy is not surprising, since blood pressure reduction unloads the stiff components of the arterial wall, such as collagen. However, it seems likely that pharmacological treatment has the capacity to decrease arterial stiffness beyond blood pressure reduction, because long-term drug administration can modify the wall components, including a reduction in collagen density or changes in the spatial arrangement of the wall materials. Whether classes of antihypertensive agents vary in their efficacy to affect arterial structure and thus influence arterial stiffness via a pressure-independent mechanism is more controversial and has yet to be evaluated in large-scale trials. A Consensus Conference on the 'Clinical Applications of Arterial Stiffness', held in Paris, June 17, 2000, recommended guidelines for further pharmacological and therapeutic studies on arterial stiffness. Among them were the following: 'To reach full normalisation of arterial stiffness, pharmacological and therapeutic trials should aim at lowering systolic and diastolic blood pressure to a larger extent than in previous studies and giving treatments for a longer duration than in most previous studies;Mainly, studies designed to demonstrate the prognostic value of the reduction of arterial stiffness are urgently needed. They should be performed in patients at high cardiovascular risk, on a large scale and a long-term basis, and include all-cause and cardiovascular mortality and cardiovascular morbidity'.
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