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January 29, 2009Birth Defects Research Part A Clinical and Molecular Teratology136 citations

Fetal cardiac effects of maternal hyperglycemia during pregnancy

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NCNiamh CorriganDBDerek P. BrazilFMFionnuala M. McAuliffe

Key Result

Maternal pregestational diabetes and hyperglycemia are associated with up to a five-fold increased risk of fetal cardiac defects compared to pregnancies without diabetes.

Key Points

  • This review aims to investigate how maternal hyperglycemia affects fetal cardiac development and associated anomalies.
  • Summarized data from human studies on pregestational diabetic mothers and fetal cardiac outcomes.
  • Reviewed findings from rodent models of type 1 and type 2 diabetes regarding hyperglycemia's impact on fetal development.
  • Considered variables such as genetic background and obesity in assessing their influence on fetal abnormalities.
  • Fetal cardiac defects are up to five times more likely in infants of mothers with pregestational diabetes.
  • Associated anomalies include transposition of great arteries and tetralogy of Fallot, linked to elevated maternal glycosylated hemoglobin levels.
  • Hyperglycemia is identified as a primary teratogen adversely affecting cardiovascular development.

Structured PICO

Does maternal hyperglycemia during pregnancy increase the risk of fetal cardiac defects?

P
Population
Fetuses of human pregestational diabetic mothers and rodent models of diabetic cardiac teratogenesis
E
Exposure
Maternal hyperglycemia / pregestational diabetes
C
Comparator
Mothers without diabetes
O
Outcome
Fetal cardiac defects and malformations

Maternal pregestational diabetes and hyperglycemia significantly increase the risk of various fetal cardiac defects, highlighting the need for glycemic control during pregnancy.

Abstract

Maternal diabetes mellitus is associated with increased teratogenesis, which can occur in pregestational type 1 and type 2 diabetes. Cardiac defects and with neural tube defects are the most common malformations observed in fetuses of pregestational diabetic mothers. The exact mechanism by which diabetes exerts its teratogenic effects and induces embryonic malformations is unclear. Whereas the sequelae of maternal pregestational diabetes, such as modulating insulin levels, altered fat levels, and increased reactive oxygen species, may play a role in fetal damage during diabetic pregnancy, hyperglycemia is thought to be the primary teratogen, causing particularly adverse effects on cardiovascular development. Fetal cardiac defects are associated with raised maternal glycosylated hemoglobin levels and are up to five times more likely in infants of mothers with pregestational diabetes compared with those without diabetes. The resulting anomalies are varied and include transposition of the great arteries, mitral and pulmonary atresia, double outlet of the right ventricle, tetralogy of Fallot, and fetal cardiomyopathy.A wide variety of rodent models have been used to study diabetic teratogenesis. Both genetic and chemically induced models of type 1 and 2 diabetes have been used to examine the effects of hyperglycemia on fetal development. Factors such as genetic background as well as confounding variables such as obesity appear to influence the severity of fetal abnormalities in mice. In this review, we will summarize recent data on fetal cardiac effects from human pregestational diabetic mothers, as well as the most relevant findings in rodent models of diabetic cardiac teratogenesis.

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Cite This Study

Corrigan et al. (2009) conducted a review in Fetal cardiac defects and maternal pregestational diabetes. Maternal pregestational diabetes / hyperglycemia vs. Mothers without diabetes was evaluated on Fetal cardiac defects. Maternal pregestational diabetes and hyperglycemia are associated with up to a five-fold increased risk of fetal cardiac defects compared to pregnancies without diabetes.

synapsesocial.com/papers/6a21cb3d033871db2707c7c8https://doi.org/10.1002/bdra.20567
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Also Consider

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

  1. 1Maternal hyperglycemia leads to fetal cardiac hyperplasia and dysfunction in a rat model2013 · 39 citations
  2. 2Pregestational Diabetes and Congenital Heart Defects2022 · 21 citations
  3. 3Maternal Pre-Existing Diabetes: A Non-Inherited Risk Factor for Congenital Cardiopathies2023 · 22 citations
  4. 4Cardiac Aftermath of Gestational Diabetes—From Intrauterine Impact to Lifelong Complications: A Systematic Review2025
  5. 5Changes in the shape and function of the fetal heart of pre- and gestational diabetes mothers2024 · 10 citations