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NEW YORK DAWN™ > Blog > Health > Genetic variation could clarify why some kids uncovered to diabetes in utero turn out to be overweight and others do not
Genetic variation could clarify why some kids uncovered to diabetes in utero turn out to be overweight and others do not
Health

Genetic variation could clarify why some kids uncovered to diabetes in utero turn out to be overweight and others do not

Last updated: May 30, 2025 10:34 am
Editorial Board Published May 30, 2025
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Graphical summary. Credit score: Diabetes Care (2025). DOI: 10.2337/dc25-0194

Kids uncovered to gestational diabetes in utero with a particular variation of a standard gene are at the next threat of turning into obese or overweight throughout childhood, based on a brand new examine by researchers on the College of Colorado Anschutz Medical Campus.

The examine was revealed within the journal Diabetes Care.

Scientists have lengthy recognized that publicity to gestational diabetes is a robust predictor of each childhood weight problems and diabetes.

“But it’s not infallible,” stated the examine’s lead creator Kylie Harrall, Ph.D., who did the analysis whereas at CU Anschutz however is now an assistant analysis professor on the College of Florida in Gainesville. “Some children with in utero exposure to gestational diabetes never develop obesity.”

To know why, the researchers targeted on a receptor gene generally known as GLP-1R, the identical gene activated by the burden loss medication Ozempic and Wegovy. It regulates insulin and urge for food.

Earlier research have proven that polymorphisms or frequent variations of the gene had been related to physique mass index (BMI) trajectories throughout childhood, insulin sensitivity and insulin secretion.

The researchers examined 464 kids from the EPOCH examine group, a set of oldsters and their offspring monitored by researchers to find out the results of gestational diabetes on the metabolic well being of youngsters.

“Our hypothesis was that there were mutations in this receptor that made kids prone to higher BMI,” stated the examine’s senior creator, Dana Dabelea, MD, Ph.D., affiliate dean of analysis on the Colorado Faculty of Public Well being and director of the Lifecourse Epidemiology of Adiposity & Diabetes Heart (LEAD) on the CU Anschutz Medical Campus.

Dabelea and Harrall discovered that kids uncovered to gestational diabetes with a polymorphism of the GLP-1R gene gained weight sooner and had the next than common BMI in comparison with different kids.

“This is important because it highlights a joint effect of a genetic mutation and of an environmental exposure. It also shows how children can become overweight,” Dabelea stated. “In the future, clinicians can possibly test kids exposed to gestational diabetes for these genetic polymorphisms. They could then be good candidates for pharmacological interventions.”

Harrall agreed and stated the examine outcomes present that GLP-1R variations assist clarify why some kids uncovered to gestational diabetes are extra liable to the next BMI than others.

“This knowledge could help clinicians identify children who are at the highest risk for rapid BMI growth, which would allow for earlier intervention and potentially decrease the risk for childhood development of type 2 diabetes,” Harrall stated.

Extra info:
Kylie Ok. Harrall et al, GLP-1R Polymorphisms Modify the Relationship Between Publicity to Gestational Diabetes and Offspring BMI Development: The EPOCH Research, Diabetes Care (2025). DOI: 10.2337/dc25-0194

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CU Anschutz Medical Campus

Quotation:
Genetic variation could clarify why some kids uncovered to diabetes in utero turn out to be overweight and others do not (2025, Could 30)
retrieved 30 Could 2025
from https://medicalxpress.com/information/2025-05-genetic-variation-children-exposed-diabetes.html

This doc is topic to copyright. Other than any truthful dealing for the aim of personal examine or analysis, no
half could also be reproduced with out the written permission. The content material is offered for info functions solely.

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TAGGED:childrenDiabetesdontexplainexposedgeneticobeseuterovariation
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