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Published on: December 2, 2014
Determinants of aortic sclerosis progression: implications regarding impairment of nitric oxide signalling and
Aaron L Sverdlov1, Doan T M Ngo, Wai P A Chan
1Cardiology Unit, The Queen Elizabeth Hospital, University of Adelaide, 28 Woodville Road, Woodville, South Australia 5011, Australia.
Insights
Progression of aortic valve sclerosis (ASc) is common in aging populations. Higher calcium, poor nitric oxide (NO) responsiveness, and arterial stiffness predict progression, while ACE-I/ARB use may slow it.
Area of Science:
- Cardiovascular Medicine
- Gerontology
- Biochemistry
Background:
- Aortic valve stenosis (AS) and its precursor, aortic valve sclerosis (ASc), are prevalent in Western populations.
- Previous attempts to slow AS progression with statins have been unsuccessful.
- ASc development is linked to increased aortic valve backscatter (AVBS) and impaired nitric oxide (NO) responsiveness.
Purpose of the Study:
- To identify factors associated with the progression of aortic valve sclerosis (ASc) in humans.
- To investigate the role of nitric oxide (NO) signaling in ASc progression.
- To examine the impact of ACE-I/ARB use on ASc progression.
Main Methods:
- Longitudinal study of 204 subjects (mean age 63 years) over 4 years.
- Echocardiography with AVBS measurement, platelet NO responsiveness, and plasma asymmetric dimethylarginine.
- Assessment of lipid profile, high-sensitivity-C-reactive protein, and 25-hydroxy-vitamin D levels.
Main Results:
- 68% of subjects showed detectable AVBS progression over 4 years.
- Independent predictors of ASc progression included higher calcium, poor platelet NO responsiveness, and increased arterial stiffness.
- Angiotensin-converting enzyme-inhibitors/angiotensin II receptor blockers (ACE-I/ARB) use predicted reduced disease progression.
Conclusions:
- ASc progression is common in the aging population over a 4-year period.
- The nitric oxide (NO) signaling pathway plays a crucial role in ASc development and progression.
- ACE-I/ARB use is associated with a retardation of ASc progression.
Aims:
Aortic valve stenosis (AS) and its precursor, aortic valve sclerosis (ASc), occur frequently in Western populations. Investigations to retard the progression of AS using statins have been unsuccessful. Development of ASc in humans is associated with increased aortic valve backscatter (AVBS) and poor tissue nitric oxide (NO) responsiveness. In an animal model, ramipril retarded AS/ASc development. We have now set out to identify factors associated with the progression of ASc in humans.
Methods And Results:
At baseline and after 4 years, 204 randomly selected subjects (age 63 ± 6 years at study entry) underwent echocardiography with the determination of AVBS values, measurements of platelet NO responsiveness, plasma asymmetric dimethylarginine concentrations, lipid profile, high-sensitivity-C-reactive protein, routine biochemistry, and 25-hydroxy-vitamin D levels. During the study period, 68% of subjects had detectable AVBS progression. On multivariate analysis, higher calcium concentrations (β = 0.22; P = 0.004), poor platelet NO responsiveness (β = 0.18; P = 0.018), and increased arterial stiffness (β = 0.15; P = 0.044) were independent predictors of disease progression. The use of angiotensin-converting enzyme-inhibitors/angiotensin II receptor blockers (ACE-I/ARB) predicted the lack of disease progression (assessed categorically) in the overall cohort and in those without ASc at baseline (n = 159) (β = 0.8; P = 0.025 and β = 1.3; P = 0.001, respectively). No conventional coronary risk factors were associated with disease progression.
Conclusion:
This study of early aortic valve disease (i) demonstrates that disease progression occurs in the majority of the normal ageing population over a 4-year period; (ii) provides evidence of the importance of the NO signalling cascade in disease development and progression; and (iii) provides additional data linking ACE-I/ARB use with the retardation of ASc.
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