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Published on: September 26, 2018
Cardiovascular risk prediction in women: rethinking traditional approaches through precision medicine
Zainab Atiyah Dakhil1,2, Sama Atta Gitti1, Rasha Kaddoura3
1Al-Kindy College of Medicine, University of Baghdad, Baghdad, Iraq.
Insights
Cardiovascular disease (CVD) prediction in women needs improvement. Precision medicine, integrating women-specific factors like biomarkers and imaging, offers a tailored approach for better risk assessment and prevention.
Area of Science:
- Cardiology and Precision Medicine
Background:
- Cardiovascular disease (CVD) is the primary cause of death in women.
- Current risk prediction models lack accuracy due to omission of women-specific factors.
Purpose of the Study:
- To explore precision medicine's role in improving cardiovascular risk prediction for women.
- To highlight the need for tailored approaches considering sex-specific determinants.
Main Methods:
- Review of current evidence on precision medicine in cardiovascular risk.
- Synthesis of data on sex-specific risk factors, biomarkers, and imaging modalities.
Main Results:
- Conventional models are limited; precision medicine offers a framework for integration.
- Sex-specific biomarkers, imaging, and pharmacokinetic modeling can enhance accuracy and personalization.
Conclusions:
- Precision medicine is crucial for addressing CVD burden in women.
- Future research must refine algorithms incorporating women-specific cardiovascular risk factors.
Abstract:
Cardiovascular disease (CVD) remains the leading cause of mortality in women. Estimating cardiovascular risk using prediction models is essential for guiding preventive strategies. Despite progress, conventional risk models still omit critical women-specific factors, limiting their accuracy. Precision medicine, supported by artificial intelligence, provides a framework to integrate these overlooked determinants. This approach may help close existing gaps in cardiovascular risk prediction. Sex-specific biomarkers that contribute to overall cardiovascular risk can be incorporated into risk assessment tools to improve prevention strategies, early detection, and personalized intervention. The integration of imaging-derived variables enhances diagnosis accuracy. Moreover, pharmacokinetic modeling may help optimize therapy and reduce adverse events. Future research should focus on refining risk prediction algorithms that incorporate women-specific cardiovascular risk. Herein, we explore how addressing the burden of CVD in women through precision medicine requires a tailored approach that considers sex-specific risk factors, hormonal influences, biomarkers, and imaging modalities. This review provides a descriptive synthesis of current evidence and highlights existing knowledge gaps and future directions in precision medicine for cardiovascular risk prediction in women.
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