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Cardiac and Pregnancy Outcomes of Pregnant Patients With Congenital Heart Disease According to Risk Classification
Jill M Steiner1, Erica Lokken2, Elizabeth Bayley1
1Division of Cardiology.
Insights
Pregnancy in adult congenital heart disease (ACHD) patients requires careful risk assessment. Physiologic classification, more than anatomy or mWHO class, most accurately predicts adverse cardiac outcomes, suggesting pre-pregnancy hemodynamic optimization is key.
Area of Science:
- Cardiology
- Maternal-Fetal Medicine
- Congenital Heart Disease
Background:
- Pregnancy in adult congenital heart disease (ACHD) patients presents unique risks.
- Assessing these risks requires evaluating anatomic and physiologic factors.
- Standardized classifications are needed to predict maternal cardiac and pregnancy outcomes.
Purpose of the Study:
- To determine if maternal cardiac and pregnancy outcomes differ based on ACHD severity.
- To compare three classifications: ACHD anatomic severity, ACHD physiologic class, and modified World Health Organization (mWHO) class.
- To identify the most accurate classification for predicting adverse outcomes.
Main Methods:
- Retrospective analysis of 245 pregnancies in ACHD patients.
- Categorization of disease severity using anatomic, physiologic, and mWHO classifications.
- Generalized estimating equations used to analyze cardiac and pregnancy outcomes, accounting for multiple pregnancies.
Main Results:
- Increased cardiac risk was associated with more severe ACHD across all classifications.
- Physiologic class C or D showed a 9.4-fold increased risk of cardiac events.
- mWHO class III or IV showed a fourfold increased risk of cardiac events.
- Pregnancy outcomes were generally less prevalent or U-shaped with increasing disease severity, particularly for mWHO class II or II to III.
Conclusions:
- Physiologic classification appears most strongly associated with adverse cardiac outcomes in pregnant ACHD patients.
- Optimizing hemodynamics before pregnancy may reduce risks.
- Anatomic and mWHO classifications also provide valuable risk stratification, but physiologic status is a critical predictor.
Abstract:
Pregnancy risk assessment for patients with adult congenital heart disease (ACHD) must include physiologic and anatomic impacts. We aimed to determine whether maternal cardiac and pregnancy outcomes vary by disease severity defined according to the following 3 different classifications: ACHD anatomic severity, ACHD physiologic class, and modified World Health Organization (mWHO) class. Cardiac outcomes included a composite of arrhythmia, heart failure, stroke, and thromboembolism. Pregnancy outcomes included a composite of intrauterine growth restriction, preterm birth, preeclampsia, or postpartum hemorrhage. We employed generalized estimating equations to account for multiple pregnancies. Of the 245 pregnancies, 17.1% were preterm and 45.7% were cesarean deliveries. Cardiac hospitalizations occurred in 22.0% and arrhythmias in 12.7%. Cardiac outcomes tended to be more prevalent in people with more severe heart disease. Pregnancy outcomes were U-shaped or less prevalent in people with more severe disease. There was a 2.9-fold increased risk for the composite cardiac outcome for complex anatomy (adjusted incidence rate ratio 2.90, 95% confidence interval 1.08 to 7.81, p = 0.04), a 9.4-fold increased risk for physiologic class C or D (9.37, 1.28 to 68.79, p = 0.03), and a fourfold increased risk for mWHO class III or IV (3.99, 1.53 to 10.40, p = 0.005). There was a lower risk for the composite pregnancy outcome for mWHO class II or II to III (0.54, 0.36 to 0.79, p = 0.002) but no association with anatomy or physiology. In conclusion, physiologic class may be most accurately associated with adverse outcomes and therefore efforts to optimize hemodynamics before pregnancy may help to mitigate the risk.
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