Key result
Estrogen-regulated myocardial post-translational modifications likely contribute to the higher female risk for HFpEF.
Why the study?
Disparities exist in understanding sex-specific heart failure differences, and how estrogen regulates post-translational modifications of myofilament proteins to contribute to heart failure development remains unclear.
This review emphasizes the need to understand sex-specific mechanisms in heart failure, particularly the role of estrogen and post-translational modifications in women.
May inform sex-specific HFpEF strategies; leaves open prospective validation of estrogen-PTM pathways.
The lifetime risk of heart failure (HF) is comparable in men and women; nevertheless, disparities exist in our understanding of how HF differs between sexes. Several differences in cardiac physiology exist between men and women including the propensity to develop specific HF phenotypes. Men are more likely to be diagnosed with HF failure with reduced ejection fraction, while women have a greater propensity to develop HF with preserved ejection fraction. The mechanisms responsible for these differences remain unclear. Post-translational modifications (PTMs) of myofilament proteins likely contribute to these sex-specific propensities. The role of PTMs in heart disease is an expanding field with immense potential therapeutic targets. However, numerous PTMs remain underexplored, particularly in the context of the female heart. Estrogen, a key gonadal hormone, cardioprotective in pre-menopausal women and its loss with menopause likely contributes to disease in aging women. However, how estrogen regulates PTMs to contribute to HF development is not fully clear. This review outlines key sex differences in HF along with characterizing the contributions of novel myocardial PTMs in cardiac physiology and their regulation by estrogen. Collectively, we highlight the necessity for further investigation into women's heart health and the distinctive mechanisms distinguishing women from men.
No takes yet. Share an insight, caveat, or question.
Shorthill et al. (2024) conducted a review in Heart failure. Estrogen was evaluated. Estrogen regulates myocardial post-translational modifications, which likely contributes to the sex-specific propensity for women to develop heart failure with preserved ejection fraction.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: