Associations of High-Sensitivity Troponin and Natriuretic Peptide Levels With Serious Adverse Events in SPRINT

Simon B Ascher1,2, Rebecca Scherzer1, Jame A de Lemos3

  • 1Department of Medicine Kidney Health Research CollaborativeSan Francisco Veterans Affairs Health Care System and University of California San Francisco San Francisco CA.

Insights

High-sensitivity cardiac troponin T (hs-cTnT) and N-terminal pro-B-type natriuretic peptide (NT-proBNP) predict serious adverse events (SAEs) in hypertension treatment. Combining these biomarkers may refine benefit-harm assessments for intensive blood pressure goals.

Area of Science:

  • Cardiology
  • Clinical Trials
  • Biomarkers

Background:

  • Assessing serious adverse events (SAEs) risk in hypertension treatment is crucial for evaluating benefit-harm trade-offs of lower blood pressure goals.
  • The predictive value of high-sensitivity cardiac troponin T (hs-cTnT) and N-terminal pro-B-type natriuretic peptide (NT-proBNP) for SAEs remains unclear.

Purpose of the Study:

  • To investigate the association of hs-cTnT and NT-proBNP with SAEs in the Systolic Blood Pressure Intervention Trial (SPRINT).
  • To determine if these biomarkers can help identify individuals with different benefit-harm profiles for intensive blood pressure lowering.

Main Methods:

  • Utilized data from 8828 (hs-cTnT) and 8836 (NT-proBNP) participants in the SPRINT trial.
  • Employed multivariable Cox proportional hazards models to assess biomarker associations with a composite of SAEs (hypotension, syncope, bradycardia, acute kidney injury, electrolyte abnormalities, injurious falls).

Main Results:

  • Elevated hs-cTnT and NT-proBNP levels were independently associated with increased composite SAE risk.
  • Individuals with both biomarkers in the highest tertile showed a significantly higher composite SAE risk (HR, 1.56) compared to those in the lowest tertiles.
  • The interaction between biomarker levels and intensive blood pressure treatment on SAE risk was significant (P=0.008).

Conclusions:

  • Both hs-cTnT and NT-proBNP, individually and combined, are associated with a higher risk of composite SAEs in the SPRINT population.
  • Biomarker levels may influence the safety of intensive blood pressure lowering strategies, suggesting personalized treatment approaches.

Related Concept Videos

Blood Studies for Cardiovascular System I: Cardiac Biomarkers01:20

Blood Studies for Cardiovascular System I: Cardiac Biomarkers

Cardiac biomarkers are enzymes, proteins, and hormones released into the blood when cardiac cells are injured. They are powerful tools for triaging.
The essential diagnostic tools for detecting myocardial necrosis and monitoring individuals suspected of having acute coronary syndrome (ACS) include:
Troponins
Troponins, particularly cardiac troponins I and T, are the most precise and sensitive markers of myocardial injury. They are detectable within 4-6 hours of myocardial injury and remain...
383
Blood Studies for Cardiovascular System II: CRP, Hcy, and Cardiac Natriuretic Peptide Markers01:19

Blood Studies for Cardiovascular System II: CRP, Hcy, and Cardiac Natriuretic Peptide Markers

Cardiac biomarkers are critical in diagnosing, prognosing, and managing cardiovascular diseases. Routine measurement of specific biomarkers such as B-type natriuretic peptide (BNP), C-reactive protein (CRP), and homocysteine (Hcy) is common practice in clinical settings to evaluate heart function and predict cardiovascular events.
These markers indicate stress or strain on the heart muscle:
Natriuretic Peptides (BNP)
Cardiac myocytes produce these hormones in response to ventricular stretching...
247
Acute Coronary Syndrome III: Diagnostic Studies01:30

Acute Coronary Syndrome III: Diagnostic Studies

Diagnosing acute coronary syndrome or ACS begins with a thorough patient history. Notable symptoms include central, crushing chest pain radiating to the left arm, neck, jaw, or back, along with shortness of breath, sweating (diaphoresis), nausea, vomiting, dizziness, and palpitations.It is crucial to note any history of cardiac illnesses and assess risk factors, including age, gender, smoking, hypertension, diabetes, hyperlipidemia, and a sedentary lifestyle.During physical examination, vital...
36
Acute Coronary Syndrome I: Introduction01:30

Acute Coronary Syndrome I: Introduction

Acute Coronary Syndrome (ACS) encompasses a spectrum of heart conditions caused by sudden obstruction of coronary arteries, typically resulting from the rupture of an atherosclerotic plaque and subsequent thrombus (blood clot) formation. This obstruction can lead to partial or complete blockage of blood flow, causing varying degrees of myocardial ischemia or infarction.ACS includes the following clinical entities:Unstable Angina (UA)Non-ST-Elevation Myocardial Infarction (NSTEMI)ST-Elevation...
103
Acute Coronary Syndrome II: Pathophysiology and Clinical Manifestations01:19

Acute Coronary Syndrome II: Pathophysiology and Clinical Manifestations

The pathophysiology of Acute Coronary Syndrome [ACD] involves several key processes:The main underlying cause of ACD is atherosclerosis, a chronic inflammatory disease characterized by the buildup of lipid-laden plaques within the coronary arteries.As the atherosclerotic plaque grows in the coronary artery, it may become unstable due to the formation of a lipid-rich core and a thin fibrous cap. Inflammatory cells within the plaque, such as macrophages, secrete enzymes that degrade the...
66
Heart Failure II: Pathophysiology01:29

Heart Failure II: Pathophysiology

Systolic Heart Failure and Compensatory MechanismsSystolic heart failure (also termed HFrEF, Heart Failure with Reduced Ejection Fraction) is the most prevalent type of heart filure. It results in a decreased volume of blood being pumped from the ventricle. The aortic arch and carotid sinuses have baroreceptors that detect reduced blood pressure, triggering the sympathetic nervous system (SNS) to release epinephrine and norepinephrine. Initially, this response aims to boost heart rate and...
85