PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 31, 2026Heart Rhythm0 citations

Sex hormones and arrhythmia risk in women with long QT syndrome

View Full Paper
AGAndrea GrecoVDValeria DONNOEMEstefanía Martínez-Barrios

Key Result

Physiological and exogenous hormonal fluctuations across the female lifespan impact the QT interval and arrhythmia risk in women with long QT syndrome, with potential genotype-specific differences.

Key Points

  • This review summarizes how hormonal fluctuations affect the QT interval in women with long QT syndrome (LQTS) throughout different stages of life.
  • Narrative review focusing on hormonal influences during menstrual cycle, pregnancy, postpartum, and menopause.
  • Analysis of exogenous hormonal effects like oral contraceptives and assisted reproductive technologies.
  • Evaluation of genotype-specific differences in response to hormonal changes.
  • Hormonal fluctuations correlate with significant QT interval variability in women with LQTS.
  • Specific hormonal stages such as menopause and pregnancy demonstrate varying impacts on arrhythmia risk.
  • Genotype-specific responses highlight the need for individualized management approaches.

Structured PICO

How do physiological and exogenous hormonal fluctuations impact the QT interval and arrhythmia risk in women with long QT syndrome?

P
Population
Women with inherited long-QT syndrome (LQTS)
I
Intervention
Physiological and exogenous hormonal fluctuations (menstrual cycle, pregnancy, postpartum, menopause, oral contraceptives, ovarian stimulation)
O
Outcome
QT interval variability and arrhythmia risk

Hormonal fluctuations across the female lifespan significantly impact QT interval variability in women with LQTS, necessitating individualized risk stratification and management.

Abstract

Sex-related differences in the QT interval become evident from puberty through menopause. Sex steroid hormones have been suggested to play a role in cardiac repolarization, although their impact remains a matter of debate. These effects are especially pronounced in women with inherited long-QT syndrome (LQTS), and may face a higher risk of QT variability associated with endogenous or exogenous hormonal fluctuations. This narrative review aims to summarize the impact of physiological hormonal fluctuations on QT interval in LQTS women across the female lifespan, including menstrual cycle, pregnancy and postpartum, menopause, and concluding with exogenous hormonal administration such as oral contraceptives, and ovarian stimulation in assisted reproductive technologies (ART), highlighting potential genotype-specific differences. Insights gained from this review may inform more precise risk stratification, optimize individualized management, and improve safety for women with LQTS across their reproductive lifespan.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Greco et al. (2026) conducted a review in Long QT syndrome. Sex hormones (endogenous and exogenous) was evaluated on QT interval and arrhythmia risk. Physiological and exogenous hormonal fluctuations across the female lifespan impact the QT interval and arrhythmia risk in women with long QT syndrome, with potential genotype-specific differences.

synapsesocial.com/papers/6a025ca9edf6f4813859485bhttps://doi.org/10.1016/j.hrthm.2026.02.040
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Identification of a common genetic substrate underlying postpartum cardiac events in congenital long QT syndrome2004 · 147 citations
  2. 2An International, Multicentered, Evidence-Based Reappraisal of Genes Reported to Cause Congenital Long QT Syndrome2020 · 409 citations
  3. 3Non-Genomic Regulation of Cardiac Ion Channels by Sex Hormones2008 · 39 citations
  4. 4Sex Modulates the Arrhythmogenic Substrate in Prepubertal Rabbit Hearts with Long QT 22005 · 35 citations
  5. 5Congenital Hyperinsulinism and Long QT Syndrome Attributable to a Variant in KCNE12025 · 1 citations