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Maternal Hyperglycemia Induces Autonomic Dysfunction and Heart Failure in Older Adult Offspring
Odair Alves da Silva1, Glória Pinto Duarte1, Saad Lahlou2
1Department of Physiology and Pharmacology, Federal University of Pernambuco, Recife, Brazil.
Insights
Gestational diabetes in mothers leads to cardiovascular problems in offspring, including hypertension and heart failure, increasing mortality risk. Optimal glycemic control during pregnancy is crucial for offspring cardiovascular health.
Area of Science:
- Endocrinology
- Cardiovascular Physiology
- Developmental Biology
Background:
- Adverse fetal environments, like gestational diabetes, increase offspring susceptibility to chronic diseases.
- Gestational diabetes can impact fetal development and long-term health outcomes.
Purpose of the Study:
- To evaluate the cardiovascular function of offspring from diabetic rats at different ages.
- To investigate the long-term effects of gestational diabetes on offspring cardiovascular health.
Main Methods:
- Gestational diabetes was induced in pregnant rats using streptozotocin.
- Offspring were assessed at 6, 12, and 18 months for cardiovascular parameters.
- In vivo and ex vivo cardiac function tests were performed.
Main Results:
- Offspring of diabetic rats exhibited increased fasting glycemia, mean arterial pressure, and sympathetic tonus with age.
- Cardiac hypertrophy was observed in all offspring of diabetic rats.
- Systolic and diastolic cardiac dysfunction, along with impaired baroreflex sensitivity, were evident in older offspring.
Conclusions:
- Gestational diabetes induces hyperglycemia, hypertension, and heart failure in aging offspring.
- These conditions represent significant risk factors for mortality.
- Maintaining glycemic control during pregnancy is vital for preventing cardiovascular disease in offspring.
Aims:
Offspring exposed to an adverse fetal environment, such as gestational diabetes, may manifest increased susceptibility to several chronic diseases later in life. In the present study, the cardiovascular function of three different ages of offspring from diabetic rats was evaluated.
Methods And Results:
Diabetes mellitus was induced in pregnant rats by a single dose of streptozotocin (50 mg/kg). The offspring from diabetic (OD) and control rats (OC) were evaluated at three different ages: 6, 12 or 18 months. In the corresponding OC groups, fasting glycemia, baseline mean arterial pressure, and sympathetic tonus increased in the OD rats at 12 (OD12) and 18 (OD18) months of age, while cardiac hypertrophy was observed in all OD groups. Cardiac function evaluation in vivo showed low left ventricular systolic pressure and+dP/dt in the OD18 rats, suggesting a systolic dysfunction. OD12 and OD18 groups showed high left ventricle end-diastolic pressure, suggesting a diastolic dysfunction. OD groups showed an age-related impairment of both baroreflex-mediated tachycardia and baroreflex-mediated bradycardia in OD12 and OD18 rats. In isolated hearts from OD18 rats, both inotropic and tachycardiac responses to increasing isoproterenol were significantly reduced compared to the corresponding OC group.
Conclusion:
These results suggest that gestational diabetes triggers the onset of hyperglycemia hypertension with impaired baroreflex sensitivity and heart failure in older age of offspring, representing important risk factors for death. Therefore, ensuring optimal glycemic control in diabetic pregnancy is important and serves as a key to preventing cardiovascular disease in the offspring in their older age.
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