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Updated: Oct 11, 2025

Modeling and Evaluation of Murine Diabetic Cardiomyopathy Model
Published on: November 29, 2024
Persistent subclinical myocardial dysfunction among infants of diabetic mothers
Jyothi Samanth1, R Padmakumar2, Akhila Vasudeva3
1Department of Cardiovascular Technology, Manipal College of Health Professions, MAHE, Manipal, India.
Insights
Infants born to diabetic mothers show increased risks of cardiac abnormalities. Poorly controlled diabetes in mothers leads to significant subclinical structural and functional heart changes in neonates, including thickened myocardial walls.
Area of Science:
- Cardiology
- Neonatology
- Maternal-Fetal Medicine
Background:
- Offspring of diabetic mothers face a fivefold higher risk of cardiovascular abnormalities.
- These anomalies manifest as fetal cardiac morphological and functional changes.
- Subclinical cardiovascular changes in infants of diabetic mothers require investigation.
Purpose of the Study:
- To investigate subclinical cardiovascular abnormalities in infants of diabetic mothers.
- To assess structural and functional cardiac changes in neonates based on maternal glycemic control.
- To compare cardiac parameters between infants of non-diabetic, well-controlled diabetic, and poorly controlled diabetic mothers.
Main Methods:
- Prospective cohort study involving 198 newborns (March 2017-September 2020).
- Infants categorized into non-diabetic (control), well-controlled diabetic mothers (WCDM), and poorly controlled diabetic mothers (PCDM) groups.
- Echocardiographic imaging (2D, M-mode, Conventional Doppler, Tissue Doppler) performed at multiple infant ages.
Main Results:
- Poorly controlled diabetic mothers' infants exhibited shorter gestational ages, higher incidence of neonatal hypoglycemia, NICU stays, and persistent fetal cardiac shunts.
- Tissue deformation imaging revealed reduced left ventricular global strain and strain rate in neonates from PCDM.
- Increased myocardial wall thickness and elevated Tei index (LV and RV) were observed in neonates of diabetic mothers, particularly PCDM.
Conclusions:
- Infants of diabetic mothers are at elevated risk for cardiac abnormalities.
- Poor maternal glycemic control is associated with significant subclinical cardiac structural and functional defects in neonates.
- Interventricular septal thickening in neonates of PCDM can disrupt ventricular function.
Introduction:
Offspring of diabetic mothers have five times higher risk of cardiovascular abnormalities than in normal pregnancies. These cardiac anomalies involve fetal cardiac morphological and functional changes. Here, we investigate subclinical cardiovascular abnormalities, including structural and functional changes among infants of diabetic mothers.
Material And Methods:
A prospective cohort study was carried out from March 2017 to September 2020 at a South Indian tertiary care center. One hundred ninety-eight newborns delivered from non-diabetic mothers, well-controlled diabetic mothers (WCDM), and poorly controlled diabetic mothers (PCDM) were studied. Neonates and infantile echocardiographic imaging were performed at the first week of life, at 6-weeks, and 6-months of life. Cardiac structure and function were assessed using 2D, M-mode, Conventional Doppler, and Tissue Doppler imaging.
Results:
Out of the total (198) infants, 66 (33.3%) were from the non-diabetic (control) mothers, 60 (30.3%) from the WCDM, and 72 (36.4%) were from the PCDM groups. In both WCDM and PCDM groups, the mean gestational ages at birth were shorter than the control group (37.19 ± 0.82, 36.02 ± 2.15, and 37.91 ± 1.33 weeks respectively). There was a high incidence of neonatal hypoglycemia (p-value <0.001), NICU stay >7 days (p-value <0.018), and persistent fetal transitional cardiac shunt (p-value <0.03) among poorly controlled DM group in comparison to others. Tissue deformation imaging showed a significant reduction in left ventricular global strain and strain rate in the neonatal heart from poorly controlled diabetic mothers. Myocardial wall thickness among neonates of diabetic mothers was higher compared to controls. LV TEI was higher in PCDM groups in comparison with WCDM and control groups; (0.59 ± 0.11, 0.46 ± 0.35, and 0.37 ± 0.12 respectively, p-value =0.01). Similarly, RV TEI was high in the PCDM (0.56 ± 0.09) group compared to the WCDM group (0.33 ± 0.12) and control group (0.28 ± 0.10).
Conclusions:
Infants of diabetic mothers are at higher risk of developing cardiac abnormalities, including structural and functional defects. The highest increase in interventricular septal thickening found in poorly controlled diabetic mothers' neonates will disrupt both ventricles' functions, followed by WCDM and the control group.
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