Effect of Intensive Blood Pressure Control on Troponin and Natriuretic Peptide Levels: Findings From SPRINT
Jarett D Berry1,2, Haiying Chen3, Vijay Nambi4
1Department of Internal Medicine, University of Texas at Tyler School of Medicine (J.D.B.).
Insights
Intensive blood pressure lowering increased cardiac troponin T (hs-cTnT) due to reduced kidney function but decreased NT-proBNP, explained by lower blood pressure. These findings question hs-cTnT
Area of Science:
- Cardiology
- Nephrology
- Hypertension Research
Background:
- Hypertension contributes to heart failure via cardiac injury and neurohormonal activation.
- High-sensitivity cardiac troponin T (hs-cTnT) and NT-proBNP levels correlate with hypertension sequelae.
- Hypothesized that intensive systolic blood pressure (SBP) lowering reduces hs-cTnT and NT-proBNP.
Purpose of the Study:
- To investigate the impact of intensive SBP lowering on hs-cTnT and NT-proBNP levels.
- To determine the mediating factors for changes in these cardiac biomarkers.
- To assess the association between biomarker changes and risks of heart failure and death.
Main Methods:
- Utilized stored specimens from the SPRINT trial for hs-cTnT and NT-proBNP measurements at baseline and 1 year.
- Employed linear and multinomial logistic regression to analyze continuous and categorical biomarker changes.
- Applied multivariable-adjusted Cox proportional hazards models to assess associations with heart failure and death.
Main Results:
- Intensive SBP lowering increased hs-cTnT by 3% (geometric mean ratio 1.03) and the proportion of participants with a ≥50% increase (OR 1.47).
- Intensive SBP lowering decreased NT-proBNP by 10% (geometric mean ratio 0.90) and the probability of a ≥50% increase (OR 0.57).
- hs-cTnT changes were linked to kidney function (eGFR), while NT-proBNP changes were linked to SBP reduction; both biomarkers predicted heart failure and death risk.
Conclusions:
- Intensive SBP lowering elevates hs-cTnT, mediated by reduced kidney filtration.
- Intensive SBP lowering decreases NT-proBNP, attributed to SBP reduction.
- Findings emphasize noncardiac factors in cardiac biomarker variability and question hs-cTnT's role as a surrogate marker in SBP-lowering studies.
Background:
Given the important role of cardiac injury and neurohormonal activation in the pathways leading from hypertension to heart failure and strong associations observed between hypertension and its sequelae on hs-cTnT (high-sensitivity cardiac troponin T) and NT-proBNP (N-terminal pro-B-type natriuretic peptide) levels, we hypothesized that intensive systolic blood pressure (SBP) lowering would decrease levels of hs-cTnT and NT-proBNP.
Methods:
hs-cTnT and NT-proBNP were measured at baseline and 1 year from stored specimens in SPRINT (Systolic Blood Pressure Intervention Trial). Changes in biomarkers were evaluated continuously on the log scale and according to categories (≥50% increase, ≥50% decrease, or <50% change). The effect of intensive SBP lowering on continuous and categorical changes in biomarker levels were assessed using linear and multinomial logistic regression models, respectively. The association between changes in biomarkers on heart failure and death was assessed using multivariable-adjusted Cox proportional hazards models.
Results:
Randomization to intensive SBP lowering (versus standard SBP management) resulted in a 3% increase in hs-cTnT levels over 1-year follow-up (geometric mean ratio, 1.03 [95% CI, 1.01-1.04]) and a higher proportion of participants with ≥50% increase (odds ratio, 1.47 [95% CI, 1.13, 1.90]). In contrast, randomization to intensive SBP lowering led to a 10% decrease in NT-proBNP (geometric mean ratio, 0.90 [95% CI, 0.87-0.93]) and a lower probability of ≥50% increase in NT-proBNP (odds ratio, 0.57 [95% CI, 0.46-0.72]). The association of randomized treatment assignment on change in hs-cTnT was completely attenuated after accounting for changes in estimated glomerular filtration rate over follow-up, whereas the association of treatment with NT-proBNP was completely attenuated after adjusting for change in SBP. Increases in hs-cTnT and NT-proBNP from baseline to 1 year were associated with higher risk for heart failure and death, with no significant interactions by treatment assignment.
Conclusions:
Intensive SBP lowering increased hs-cTnT, mediated by the effect of SBP lowering on reduced kidney filtration. In contrast, intensive SBP lowering decreased NT-proBNP, a finding that was explained by the decrease in SBP. These findings highlight the importance of noncardiac factors influencing variation in cardiac biomarkers and raise questions about the potential role of hs-cTnT as a surrogate marker for heart failure or death in SBP-lowering studies.
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