The relationship between maternal obesity and diabetes during pregnancy on offspring kidney structure and function in
Y Q Lee1, C E Collins2, A Gordon3
1School of Biomedical Sciences and Pharmacy, Faculty of Health and Medicine, University of Newcastle,Newcastle,NSW,Australia.
Abstract:
Evidence from animal models indicates that exposure to an obesogenic or hyperglycemic intrauterine environment adversely impacts offspring kidney development and renal function. However, evidence from human studies has not been evaluated systematically. Therefore, the aim of this systematic review was to synthesize current research in humans that has examined the relationship between gestational obesity and/or diabetes and offspring kidney structure and function. Systematic electronic database searches were conducted of five relevant databases (CINAHL, Cochrane, EMBASE, MEDLINE and Scopus). Preferred Reporting Items for Systematic Reviews and Meta-analysis guidelines were followed, and articles screened by two independent reviewers generated nine eligible papers for inclusion. Six studies were assessed as being of 'neutral' quality, two of 'negative' and one 'positive' quality. Observational studies suggest that offspring exposed to a hyperglycemic intrauterine environment are more likely to display markers of renal dysfunction and are at higher risk of end-stage renal disease. There was limited and inconsistent evidence for a link between exposure to an obesogenic intrauterine environment and offspring renal outcomes. Offspring renal outcome measures across studies were diverse, with a large variation in offspring age at follow-up, limiting comparability across studies. The collective current body of evidence suggests that intrauterine exposure to maternal obesity and/or diabetes adversely impacts renal programming in offspring, with an increased risk of kidney disease in adulthood. Further high-quality, longitudinal, prospective cohort studies that measure indicators of offspring renal development and function, including fetal kidney volume and albuminuria, at standardized follow-up time points, are warranted.
Insights
Maternal diabetes during pregnancy increases offspring
Area of Science:
- Perinatal Medicine
- Nephrology
- Public Health
Background:
- Animal models suggest maternal obesity and hyperglycemia impact fetal kidney development.
- Human evidence on this relationship requires systematic evaluation.
Purpose of the Study:
- To systematically review human studies on the association between gestational diabetes/obesity and offspring kidney outcomes.
- To synthesize current research on intrauterine environmental impacts on renal programming.
Main Methods:
- Systematic literature search across five major databases (CINAHL, Cochrane, EMBASE, MEDLINE, Scopus).
- Adherence to PRISMA guidelines with dual independent reviewer screening.
- Inclusion of nine eligible studies with quality assessment.
Main Results:
- Offspring exposed to maternal hyperglycemia show increased renal dysfunction markers and higher end-stage renal disease risk.
- Limited, inconsistent evidence links maternal obesity to adverse offspring renal outcomes.
- Study heterogeneity in outcome measures and follow-up ages limits comparability.
Conclusions:
- Intrauterine exposure to maternal diabetes and/or obesity adversely affects offspring renal programming.
- Increased risk of adult kidney disease is associated with these exposures.
- High-quality, longitudinal studies are needed to further elucidate these associations.
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