Influence of Sex and Cardiometabolic Risk Factors on the High-Sensitivity Cardiac Troponins at the Concentrations

Katarzyna Bergmann1, Anna Stefanska1, Jacek Kubica2

  • 1Department of Laboratory Medicine, Nicolaus Copernicus University in Torun, Collegium Medicum in Bydgoszcz, 85-094 Bydgoszcz, Poland.

PubMed

Insights

Sex-specific cut-offs for high-sensitivity cardiac troponin (hs-cTn) are crucial for accurately assessing cardiovascular risk in healthy individuals. Using these tailored thresholds, alongside other cardiometabolic factors, improves risk stratification in the general population.

Area of Science:

  • Cardiology
  • Biomarkers
  • Preventive Medicine

Background:

  • Low cardiac troponin (cTn) levels can indicate cardiovascular (CV) risk in primary prevention.
  • Assessing the impact of sex and cardiometabolic factors on high-sensitivity cTn (hs-cTn) concentrations in healthy individuals is important for risk stratification.

Purpose of the Study:

  • To evaluate the influence of sex and cardiometabolic risk factors on hs-cTn concentrations in a healthy population.
  • To compare the effectiveness of sex-specific versus non-sex-specific cut-offs for hs-cTn in CV risk stratification.

Main Methods:

  • A prospective study of 597 healthy individuals (313 women, 284 men).
  • Measurement of hs-cTnI, hs-cTnT, lipid profile, C-reactive protein, glycated hemoglobin, eGFR, and BNP.
  • CV risk categorization using a non-sex-specific hs-cTn cut-off (5.0 ng/L) and sex-specific hs-cTnI cut-offs (≥4.0 ng/L for females, ≥6.0 ng/L for males).

Main Results:

  • Increased CV risk (hs-cTn ≥ 5.0 ng/L) associated with age > 40, male sex, obesity, and elevated BNP.
  • hs-TnT identified twice as many individuals at risk compared to hs-cTnI using the 5.0 ng/L threshold, especially in males.
  • Sex-specific hs-cTnI cut-offs resulted in similar risk proportions for females (8%) and males (9%), unlike non-sex-specific cut-offs (6% females, 13% males).
  • BNP and eGFR significantly impacted CV risk stratification when using sex-specific hs-cTnI cut-offs.

Conclusions:

  • Sex-specific cut-offs for hs-cTn are necessary for accurate cardiovascular risk assessment in the general population.
  • Incorporating hs-cTn with other cardiometabolic factors enhances CV risk stratification.
  • Tailored hs-cTn thresholds improve the identification of individuals at risk, particularly when considering sex differences.

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