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Homocysteine levels, H-Hypertension, and the MTHFR C677T genotypes: A complex interaction
Cynthia Al Hageh1, Eman Alefishat1,2,3, Michella Ghassibe-Sabbagh4
1College of Medicine and Health Sciences, Khalifa University of Science and Technology, Abu Dhabi, United Arab Emirates.
Insights
High homocysteine levels increase hypertension and stroke risk. The methylenetetrahydrofolate reductase (MTHFR) T allele and TT genotype are linked to higher homocysteine, hypertension, and stroke risk, especially with diuretic use.
Area of Science:
- Genetics and Cardiovascular Health
- Biochemistry and Disease Risk
- Pharmacogenomics
Background:
- Elevated homocysteine levels are a known risk factor for hypertension and stroke.
- The methylenetetrahydrofolate reductase (MTHFR) enzyme plays a key role in homocysteine metabolism.
- The C677T polymorphism in the MTHFR gene may influence homocysteine levels and associated health risks.
Purpose of the Study:
- To investigate homocysteine levels in relation to MTHFR C677T genotypes.
- To examine the association between homocysteine, hypertension, stroke, and antihypertensive medication use.
- To identify potential genotype-specific risks and therapeutic implications.
Main Methods:
- Genotyping for MTHFR C677T polymorphism in 2,640 Lebanese adults.
- Measurement of plasma homocysteine levels.
- Documentation of hypertension, stroke history, and medication use.
Main Results:
- The MTHFR TT genotype and T allele were more prevalent in patients with hyperhomocysteinemia and hypertension.
- Hypertensive patients, particularly those on diuretics, exhibited significantly higher homocysteine levels.
- Homocysteine levels correlated with stroke risk in MTHFR T allele carriers.
Conclusions:
- An association exists between homocysteine, hypertension, medication use, and stroke risk in individuals with the MTHFR T allele and TT genotype.
- Diuretic therapy is linked to increased homocysteine levels, suggesting a need for monitoring and management.
- Routine homocysteine measurement and control in patients on diuretics may improve health outcomes.
Background And Objectives:
High homocysteine levels are associated with increased risk of hypertension and stroke. Homocysteine is metabolized by the methylenetetrahydrofolate reductase (MTHFR). We aimed to investigate the levels of homocysteine and their association with hypertension, stroke, and antihypertensive medication usage in patients with different MTHFR C677T genotypes.
Methods And Results:
Genotype frequency of MTHFR polymorphism was performed, and plasma homocysteine levels were measured in 2,640 adult Lebanese patients. Hypertension, history of stroke, and list of medications were documented, among other clinical and demographic parameters. The TT mutant genotype and the T mutant allele of MTHFR were more prevalent in hyperhomocysteinemia (HHcy) and H-hypertensive (H-HTN, defined as hypertension with hyperhomocysteinemia) patients when compared to non-HHcy subjects and non H-HTN patients respectively. Homocysteine levels were significantly higher in hypertensive patients specifically among those on diuretics. A higher level of homocysteine was found in hypertensive patients with the MTHFR T allele compared to patients carrying the C allele. Among the T allele carriers, the average plasma homocysteine level was 13.3 ± 0.193 μmol/L for hypertensive subjects compared to 11.9 ± 0.173 μmol/L (non-hypertensives). Furthermore, homocysteine levels significantly correlated with stroke risk in patients with the T alleles.
Conclusions:
We found an association of homocysteine with hypertension, hypertensive medication, and stroke risk among patients with the MTHFR T allele and the TT genotype. The association of diuretics therapy with higher homocysteine levels calls for routine measurements and therapeutic control of homocysteine in patients on diuretic, to improve health-related outcomes.
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