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Programming of growth, insulin resistance and vascular dysfunction in offspring of late gestation diabetic rats
Emily M Segar1, Andrew W Norris, Jian-Rong Yao
1Department of Pediatrics, University of Iowa Carver College of Medicine, Iowa City, IA 52242, USA.
Insights
Offspring of diabetic mothers (ODM) show gender-specific insulin resistance and vascular dysfunction. Gestational diabetes programs long-term metabolic and cardiovascular risks in offspring.
Area of Science:
- Endocrinology
- Cardiovascular Physiology
- Developmental Biology
Background:
- Offspring of diabetic mothers (ODM) face elevated risks of metabolic and cardiovascular issues.
- Limited research exists on offspring susceptibility when maternal diabetes develops during pregnancy.
Purpose of the Study:
- To investigate the long-term metabolic and vascular consequences in offspring from a rat model of late-gestation diabetic pregnancy.
- To characterize gender-specific differences in disease susceptibility in these offspring.
Main Methods:
- Developed a rat model by inducing diabetes in pregnant rats on gestational day 13 using streptozotocin, with partial insulin control.
- Assessed metabolic function (glucose tolerance, insulin resistance via clamp) and vascular function (aortic contractility and relaxation) in 2-8-month-old offspring.
Main Results:
- Male offspring exhibited insulin resistance by 6 months.
- Female offspring showed enhanced aortic contractility and impaired acetylcholine-induced relaxation.
- Male offspring displayed altered responses to vasodilators and vasoconstrictors compared to controls.
Conclusions:
- Maternal diabetes during pregnancy programs distinct, gender-specific insulin resistance and vascular dysfunction in adult offspring.
- These findings highlight the critical impact of the intrauterine environment on long-term offspring health.
Abstract:
ODM (offspring of diabetic mothers) have an increased risk of developing metabolic and cardiovascular dysfunction; however, few studies have focused on the susceptibility to disease in offspring of mothers developing diabetes during pregnancy. We developed an animal model of late gestation diabetic pregnancy and characterized metabolic and vascular function in the offspring. Diabetes was induced by streptozotocin (50 mg/kg of body weight, intraperitoneally) in pregnant rats on gestational day 13 and was partially controlled by twice-daily injections of insulin. At 2 months of age, ODM had slightly better glucose tolerance than controls (P<0.05); however, by 6 months of age this trend had reversed. A euglycaemic-hyperinsulinamic clamp revealed insulin resistance in male ODM (P<0.05). In 6-8-month-old female ODM, aortas had significantly enhanced contractility in response to KCl, ET-1 (endothelin-1) and NA (noradrenaline). No differences in responses to ET-1 and NA were apparent with co-administration of L-NNA (NG-nitro-L-arginine). Relaxation in response to ACh (acetylcholine), but not SNP (sodium nitroprusside), was significantly impaired in female ODM. In contrast, males had no between-group differences in response to vasoconstrictors, whereas relaxation to SNP and ACh was greater in ODM compared with control animals. Thus the development of diabetes during pregnancy programmes gender-specific insulin resistance and vascular dysfunction in adult offspring.
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