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Association between genetic risk of high SBP and hypertension control: the CoLaus|PsyColaus study
Pedro Marques-Vidal1, Valeriya Chekanova2, Julien Vaucher1
1Lausanne university hospital and university of Lausanne, Lausanne, Switzerland.
Insights
A genetic risk score (GRS) for high systolic blood pressure (SBP) did not predict hypertension control in treated individuals. This genetic risk score is not recommended for managing hypertension in clinical practice.
Area of Science:
- Cardiovascular Genetics
- Hypertension Research
- Population Health Studies
Background:
- Hypertension remains a significant global health challenge, necessitating novel management strategies.
- Genetic risk scores (GRS) are emerging tools for assessing individual disease predispositions.
- The utility of a GRS for high systolic blood pressure (SBP) in predicting hypertension control is yet to be fully established.
Purpose of the Study:
- To determine if a GRS for high SBP is associated with inadequate hypertension control.
- To evaluate the predictive value of a GRS in individuals undergoing hypertension treatment.
Main Methods:
- A population-based, prospective study in Lausanne, Switzerland, analyzed data from four survey waves (2003-2021).
- Hypertension control was defined as SBP < 140 mmHg and DBP < 90 mmHg.
- A weighted GRS was calculated using 362 single nucleotide polymorphisms (SNPs).
Main Results:
- No significant association was found between the GRS and hypertension control rates in treated participants across all survey waves (P > 0.07).
- Power analysis indicated a need for at least 3410 participants to detect a significant association.
- A positive correlation between GRS and SBP levels was observed in participants not treated for hypertension (Spearman r: 0.05–0.09, P < 0.05).
Conclusions:
- A GRS for high SBP does not predict the control of hypertension in treated individuals.
- Current evidence does not support the use of this GRS for hypertension management in clinical practice.
- Further research with larger cohorts may be needed to fully elucidate the role of genetic factors in hypertension control.
Objective:
To assess whether a genetic risk score (GRS) for high SBP is associated with poor control of hypertension.
Methods:
Data from the four waves of a population-based, prospective study conducted in Lausanne, Switzerland. Control of hypertension was defined based on SBP less than 140 mmHg and DBP less than 90 mmHg. A weighted GRS was computed from 362 SNPs.
Results:
Overall, 1097 (51% men, mean age 61 years), 1126 (53% men, age 65 years), 1020 (52% men, age 69 years) and 809 (50% men, age 71 years) participants treated for hypertension were selected from the baseline (2003-2006), first (2009-2012), second (2014-2017) and third (2018-2021) surveys. Hypertension control rates were 50, 58, 52 and 59% for the baseline, first, second and third surveys, respectively. No association was found between GRS and hypertension control: multivariate-adjusted mean ± standard error for controlled vs. uncontrolled participants: 9.30 ± 0.09 vs. 9.50 ± 0.09 ( P = 0.12); 9.32 ± 0.08 vs. 9.53 ± 0.10 ( P = 0.10); 9.17 ± 0.08 vs. 9.34 ± 0.11 ( P = 0.22), and 9.18 ± 0.09 vs. 9.46 ± 0.11 ( P = 0.07) for the baseline, first, second and third surveys, respectively. Power analysis showed that a minimum of 3410 people treated for hypertension would be necessary to detect an association between the GRS and hypertension control rates. Notably, positive associations between the GRS and SBP levels were found among participants not treated for hypertension, with Spearman correlations ranging between 0.05 and 0.09 (all P < 0.05).
Conclusion:
Using a GRS associated with SBP levels is not predictive of hypertension control. The use of GRS for hypertension management is not warranted in clinical practice.
Abstract:
http://links.lww.com/HJH/C26.
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