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Molecular Mechanisms of Maternal Diabetes Effects on Fetal and Neonatal Surfactant
Hilal Yildiz Atar1, John E Baatz2, Rita M Ryan1
1Departments of Pediatrics (Neonatology), UH Rainbow Babies and Children's Hospital, Case Western Reserve University, Cleveland, OH 44106, USA.
Insights
Infants of diabetic mothers (IDMs) face higher risks of respiratory distress syndrome (RDS) due to impaired surfactant production. Understanding these mechanisms can improve neonatal outcomes for babies born to mothers with diabetes.
Area of Science:
- Neonatal Medicine
- Endocrinology
- Biochemistry
Background:
- Respiratory distress syndrome (RDS) is a major cause of newborn illness and death.
- Infants of diabetic mothers (IDMs) have a recognized higher risk of RDS.
- Increasing rates of maternal obesity and diabetes exacerbate this risk.
Purpose of the Study:
- To explore the molecular mechanisms linking maternal diabetes to surfactant dysfunction in infants.
- To understand how hyperglycemia and hyperinsulinemia affect fetal lung development and surfactant production.
Main Methods:
- Review of in vitro cell line studies.
- Analysis of in vivo animal studies using diabetic rat models.
- Examination of clinical data from human pregnancies.
Main Results:
- Hyperglycemia and hyperinsulinemia in diabetic pregnancies disrupt surfactant lipid and protein synthesis.
- This disruption leads to delayed surfactant maturation in infants of diabetic mothers (IDMs).
Conclusions:
- Maternal diabetes adversely affects fetal lung surfactant development.
- Further understanding of these molecular pathways can guide clinical interventions to improve neonatal outcomes and prevent RDS in IDMs.
Abstract:
Respiratory distress is a significant contributor to newborn morbidity and mortality. An association between infants of diabetic mothers (IDMs) and respiratory distress syndrome (RDS) has been well recognized for decades. As obesity and diabetes prevalence have increased over the past several decades, more women are overweight and diabetic in the first trimester, and many more pregnant women are diagnosed with gestational diabetes. Glycemic control during pregnancy can be challenging due to the maternal need for higher caloric intake and higher insulin resistance. Surfactant is a complex molecule at the alveolar air-liquid interface that reduces surface tension. Impaired surfactant synthesis is the primary etiology of RDS. In vitro cell line studies, in vivo animal studies with diabetic rat offspring, and clinical studies suggest hyperglycemia and hyperinsulinemia can disrupt surfactant lipid and protein synthesis, causing delayed maturation in surfactant in IDMs. A better understanding of the molecular mechanisms responsible for surfactant dysfunction in IDMs may improve clinical strategies to prevent diabetes-related complications and improve neonatal outcomes.
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