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Published on: October 12, 2017
S-adenosylhomocysteine is associated with subclinical atherosclerosis and renal function in a cardiovascular low-risk
Adam M Zawada1, Kyrill S Rogacev1, Björn Hummel2
1Department of Internal Medicine IV, Saarland University Medical Center, Homburg, Germany.
Insights
S-adenosylhomocysteine (SAH) shows stronger links to cardiovascular disease risk factors and kidney function than homocysteine. SAH may be a better target for preventing cardiovascular disease.
Area of Science:
- Cardiovascular Medicine
- Nephrology
- Metabolic Research
Background:
- Homocysteine is a proposed cardiovascular risk factor, but trials lowering it lack consistent clinical benefit.
- S-adenosylhomocysteine (SAH), a homocysteine metabolite, is implicated in cardiovascular disease and primarily excreted by kidneys.
- SAH levels are difficult to measure, limiting large-scale studies on its association with kidney function and cardiovascular disease.
Purpose of the Study:
- To investigate the association between SAH, homocysteine, kidney function, and subclinical atherosclerosis in apparently healthy individuals.
- To determine if SAH is a more relevant marker for cardiovascular risk than homocysteine.
Main Methods:
- Recruited 420 healthy subjects for the 'I Like HOMe FU' study.
- Assessed C1 metabolism (homocysteine, SAH, S-adenosylmethionine), estimated glomerular filtration rate (eGFR), and common carotid intima-media thickness (IMT).
- eGFR was calculated using the CKD-EPIcreat-cys equation.
Main Results:
- SAH, not homocysteine, correlated with subclinical atherosclerosis (IMT) and traditional cardiovascular risk factors.
- Renal function (eGFR) showed a stronger inverse correlation with SAH than with homocysteine.
- These associations remained significant after adjusting for traditional cardiovascular risk factors.
Conclusions:
- SAH is more strongly associated with cardiovascular risk factors, subclinical atherosclerosis, and kidney function than homocysteine in healthy subjects.
- SAH emerges as a potentially more promising therapeutic target for cardiovascular disease prevention compared to homocysteine.
Objective:
Although homocysteine has been proposed as a cardiovascular risk factor, interventional trials lowering homocysteine have not consistently demonstrated clinical benefit. Recent evidence proposed the homocysteine metabolite S-adenosylhomocysteine (SAH) rather than homocysteine itself as the real culprit in cardiovascular disease. Of note, SAH is predominantly excreted by the kidneys, and cannot be lowered by vitamin supplementation. Due to its cumbersome measurement, data from large studies on the association between SAH, kidney function and cardiovascular disease are not available.
Methods:
We recruited 420 apparently healthy subjects into our I Like HOMe FU study. Among all study participants, we assessed parameters of C1 metabolism (homocysteine, SAH and S-adenosylmethionine), renal function (estimated glomerular filtration rate [eGFR]) and subclinical atherosclerosis (common carotid intima-media-thickness [IMT]). eGFR was estimated by the CKD-EPIcreat-cys equation.
Results:
Traditional cardiovascular risk factors and subclinical atherosclerosis were associated with SAH, but not with homocysteine (IMT vs SAH: r = 0.129; p = 0.010; IMT vs homocysteine: r = 0.009; p = 0.853). Moreover, renal function was more closely correlated with SAH than with homocysteine (eGFR vs SAH: r = -0.335; p < 0.001; eGFR vs homocysteine: r = -0.250; p < 0.001). The association between eGFR and SAH remained significant after adjustment for traditional cardiovascular risk factors.
Conclusion:
In summary, cardiovascular risk factors, subclinical atherosclerosis and eGFR are more strongly associated with SAH than with homocysteine in apparently healthy subjects. Thus, SAH might represent a more promising target to prevent cardiovascular disease than homocysteine.
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