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No evidence for a J-shaped curve in treated hypertensive patients with increased cardiovascular risk: The VALUE trial
Sverre E Kjeldsen1,2, Eivind Berge1, Sripal Bangalore3
1a University of Oslo, Ullevaal Hospital , Oslo , Norway.
Insights
Low blood pressure (BP) does not increase cardiovascular risk in high-risk hypertensive patients. The study found no J-curve, indicating that very low BP is not associated with adverse outcomes in this population.
Area of Science:
- Cardiology
- Hypertension Research
- Clinical Trials
Background:
- Debate exists regarding whether low blood pressure (BP), particularly diastolic (DBP), during antihypertensive treatment increases cardiovascular disease (CVD) risk.
- High-risk hypertensive patients, especially those with coronary artery disease (CAD), require careful BP management.
- Previous studies have yielded conflicting results on the association between low BP and adverse cardiovascular outcomes.
Purpose of the Study:
- To evaluate the impact of low on-treatment BP on cardiovascular outcomes in a large cohort of high-risk hypertensive patients.
- To investigate the presence of a J-shaped curve relating DBP to cardiovascular events in this population.
- To determine optimal BP targets for preventing major adverse cardiovascular events in hypertensive patients with established cardiovascular disease.
Main Methods:
- Analysis of data from the Valsartan Antihypertensive Long-term Use Evaluation (VALUE) trial, a prospective study of 15,244 hypertensive patients.
- Randomization of patients to valsartan or amlodipine, with a mean follow-up of 4.2 years.
- Use of Cox proportional hazards models to assess the relationship between average on-treatment BP and clinical outcomes, adjusted for multiple covariates.
Main Results:
- DBP ≥ 90 mmHg was associated with increased cardiovascular events, but DBP < 70 mmHg was not associated with increased incidence after adjustment (no J-curve).
- Optimal DBP for myocardial infarction (MI) was 76 mmHg and for stroke was 60 mmHg, with an increased MI to stroke ratio at lower DBPs.
- Systolic BP ≥ 150 mmHg, but not < 130 mmHg, was associated with increased risk for the primary outcome.
Conclusions:
- High-risk hypertensive patients with BP strata ≥ 150/90 mmHg are at increased risk for adverse outcomes.
- BP strata < 130/70 mmHg were not associated with increased risk in this population.
- These findings do not support a J-curve for BP treatment in high-risk hypertensive patients, but suggest target organ heterogeneity in BP management goals.
Abstract:
Previous studies have debated the notion that low blood pressure (BP) during treatment, particularly diastolic (DBP), is associated with increased risk of cardiovascular disease. We evaluated the impact of low BP on cardiovascular outcomes in a high-risk population of 15,244 hypertensive patients, almost half of whom had a history of coronary artery disease (CAD). In the prospective Valsartan Antihypertensive Long-term Use Evaluation (VALUE) trial, patients were randomized to valsartan or amlodipine regimens and followed for 4.2 years (mean) with no difference in the primary cardiovascular endpoint. A Cox proportional hazards model was used to evaluate the relationship between average on-treatment BP and clinical outcomes. The relationship between BP and cardiovascular events was adjusted for age, gender and body mass index, and baseline qualifying risk factors and diseases (smoking, high total cholesterol, diabetes mellitus, proteinuria, CAD, previous stroke and left ventricular hypertrophy). DBP ≥ 90 mmHg, compared with < 90 mmHg, was associated with increased incidence of the primary cardiovascular endpoint (all cardiac events); however, DBP < 70 mmHg, compared with ≥ 70 mmHg, was not associated with increased incidence after covariate adjustment (no J-shaped curve). Similar results were observed for death, myocardial infarction (MI), heart failure and stroke, considered separately. Nadir for MI was at DBP of 76 mmHg and for stroke 60 mmHg. The ratio of MI to stroke increased with lower DBP. In CAD patients the MI to stroke ratio was more pronounced than in patients without CAD but there was no significant J-curve in either group. Systolic BP ≥ 150 but not < 130 mmHg, compared with 130-149 mmHg, similarly was associated with increased risk for primary outcome. In conclusion, patients in BP strata ≥ 150/90 mmHg, but not patients in BP strata < 130/70 mmHg, were at increased risk for adverse outcomes in this hypertensive, high-risk population. Although benefit in preventing MI in relation to preventing stroke levels off for the lowest BPs, these data provide no support for a J-curve in the treatment of high-risk hypertensive patients . The increase in the ratio of MI to stroke with lower DBP indicates target organ heterogeneity in that the optimal on-treatment DBP for cerebroprotection is below that for cardioprotection.
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