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Analysis of Congenital Heart Defects in Mouse Embryos Using Qualitative and Quantitative Histological Methods
Published on: March 10, 2020
Risk and protective factors in the origin of conotruncal defects of heart--a population-based case-control study
Melinda Csáky-Szunyogh1, Attila Vereczkey, Zsolt Kósa
1Hungarian Congenital Abnormality Registry, National Institute for Health Development, Budapest, Hungary.
Insights
Maternal high fever during pregnancy increases the risk of congenital heart defects (CHDs), specifically conotruncal defects (CTDs). However, high doses of folic acid in early pregnancy significantly reduce the prevalence of CTDs, particularly transposition of the great arteries.
Area of Science:
- Cardiology
- Epidemiology
- Teratology
Background:
- Congenital heart defects (CHDs) are a diverse group of conditions with largely unknown etiologies.
- Previous studies often grouped CHDs, overlooking specific risk factors for distinct subtypes.
Purpose of the Study:
- To investigate the association between maternal diseases and the risk of four specific conotruncal defects (CTDs): truncus arteriosus, d-transposition of the great arteries, tetralogy of Fallot, and double-outlet right ventricle.
- To evaluate the impact of maternal infections and folic acid supplementation on CTD development.
Main Methods:
- A population-based case-control study utilizing the Hungarian Case-Control Surveillance of Congenital Abnormalities dataset.
- Compared maternal medical records (diseases, drug treatments, supplementations) of 598 CTD cases against 902 matched controls and 38,151 population controls.
Main Results:
- Maternal influenza or common cold with complications during gestational months 2-3 were associated with a 2.22-fold increased risk of CTDs, potentially linked to high fever.
- High-dose folic acid supplementation in early pregnancy showed a protective effect, reducing CTD prevalence by 46% (OR 0.54).
- This protective effect was particularly significant for transposition of the great arteries.
Conclusions:
- Maternal infections causing high fever in early pregnancy may contribute to the etiology of CTDs.
- High-dose folic acid intake during early pregnancy is a potential preventive measure against CTDs, especially transposition of the great arteries.
Abstract:
Congenital heart defect (CHD) cases have been evaluated together as a group in some previous epidemiological studies. However, different CHD entities have different etiologies, and the underlying causes are unclear in the vast majority of patients. Thus the aim of this study was to analyze the possible association of different maternal diseases with the risk of four types of conotruncal defects (CTD), that is, truncus arteriosus, d-transposition of the great arteries, tetralogy of Fallot, and double-outlet right ventricle based on autopsy or surgical report diagnosis. Acute and chronic diseases with related drug treatments and peri-conceptual folic acid or multivitamin supplementations were compared in mothers of 598 CTD cases, of 902 matched controls, and 38,151 population controls without any defects, and with 20,896 malformed controls with other isolated non-cardiac defects in the population-based large dataset of the Hungarian Case-Control Surveillance of Congenital Abnormalities. Mothers who had medically recorded influenza and the common cold with secondary complications in the prenatal maternity logbook during the second and/or third gestational months were associated with a higher risk of CTD (OR with 95% CI: 2.22, 1.19-3.88). The common denominator of these maternal diseases may be high fever, which could be prevented by antifever therapies. On the other hand, high doses of medically recorded folic acid in early pregnancy were able to reduce the birth prevalence of CTD (OR with 95% CI: 0.54, 0.39-0.73), and this reduction was significant in transposition of the great arteries (0.46, 0.29-0.71) as well. In conclusion, high fever related maternal diseases may have a role in the origin of CTD, while high doses of folic acid in early pregnancy were able to reduce of CTD, particularly transposition of great vessels.
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