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Statin therapy increases vascular sensitivity to angiotensin II in hypercholesterolaemic patients
Justein Sn Sim1, John B C Dick, Allan D Struthers
1Division of Medicine and Therapeutics, Ninewells Hospital and Medical School, Dundee DD1 9SY, UK.
Insights
High cholesterol (hypercholesterolaemia) impairs blood vessel response to angiotensin II. Statin therapy improves this response, suggesting a role for statins in regulating vascular function and receptor balance.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
Background:
- Cardiovascular risk factors often interact.
- The relationship between hypercholesterolaemia and the renin-angiotensin system in humans requires further investigation.
Purpose of the Study:
- To investigate the in vivo interaction between hypercholesterolaemia and the renin-angiotensin system in humans.
- To assess the effect of statin therapy on vascular responses in hypercholesterolaemic patients.
Main Methods:
- A randomized, placebo-controlled, double-blind crossover study was conducted on 40 hypercholesterolaemic patients.
- Brachial artery function was assessed using plethysmography with intra-arterial infusions of angiotensin I, angiotensin II, and noradrenaline.
- Vascular responses were analyzed using multiple analysis of variance.
Main Results:
- Statin therapy significantly reduced total cholesterol levels compared to placebo.
- Hypercholesterolaemia increased vasoconstriction to noradrenaline and significantly reduced it to angiotensin II.
- A trend towards reduced vasoconstriction to angiotensin I was observed with hypercholesterolaemia.
Conclusions:
- Hypercholesterolaemia is associated with down-regulation of the vasoconstrictor response to angiotensin II.
- Statin therapy up-regulates the local vasoconstrictor response to angiotensin II.
- Statins may alter the balance between AT(1) and AT(2) receptors in humans.
Unlabelled:
Cross-talk between various cardiovascular risk factors has been suggested by a number of studies. This study examines the interaction between hypercholesterolaemia and the renin-angiotensin system in vivo in man.
Methods:
We performed a randomised, placebo-controlled, double-blind crossover study on 40 hypercholesterolaemic patients, comparing cholesterol-lowering therapy with a statin for six months versus placebo. Brachial artery function was assessed by bilateral venous occlusion plethysmography using intra-arterial infusions of the endothelial-dependent vasoconstrictors, angiotensin I (Ang I) and angiotensin II (Ang II), to measure vascular angiotensin-converting enzyme (ACE) and Ang II receptor response respectively. The endothelial-independent vasoconstrictor, noradrenaline, was used as a control vasoconstrictor. Results were analysed by multiple analysis of variance and statistical significance was taken as a p value <0.05.
Results:
Cholesterol-lowering treatment with a statin significantly reduced the mean total cholesterol level to 5.71 mmol/L vs. 7.57 mmol/L on placebo (p<0.0001). Hypercholesterolaemia significantly increased the vasoconstriction response to noradrenaline (placebo versus statin treatment; p=0.046). In hypercholesterolaemia, there was a strong trend towards a reduction in the vasoconstriction response to Ang I (placebo versus statin treatment; p=0.089). In hypercholesterolaemia, the vasoconstriction response to Ang II was significantly reduced (placebo versus statin treatment; p=0.01).
Conclusions:
Our in vivo results show that, unlike some other previous work, hypercholesterolaemia is associated with down-regulation of the vasoconstrictor response to Ang II and that statin therapy up-regulates the local vasoconstrictor response to Ang II. The possibility now arises that, in man, statins alter the balance between AT(1)-receptors and AT(2)-receptors.
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