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Maternal diabetes promotes offspring lung dysfunction and inflammation in a sex-dependent manner
Christopher D Pascoe1,2, Sujata Basu1,2, Jacquie Schwartz1,2
1Department of Physiology and Pathophysiology, University of Manitoba, Winnipeg, Manitoba, Canada.
Insights
Maternal diabetes during pregnancy impacts offspring lung health differently based on sex. Female offspring exposed to gestational diabetes show higher risks for inflammatory lung conditions like asthma.
Area of Science:
- Reproductive biology and immunology
- Pediatric respiratory medicine
- Endocrinology
Background:
- Maternal diabetes is a growing concern for pediatric respiratory health.
- The sex-specific effects of gestational diabetes on offspring lung development are not well understood.
Purpose of the Study:
- To investigate the sex-specific impact of diet-induced gestational diabetes (GDM) on offspring lung function and airway inflammation in a murine model.
- To identify potential sex-based differences in long-term respiratory disease risk.
Main Methods:
- Female mice were fed a high-fat diet to induce GDM before mating.
- Offspring lung function and airway inflammation markers were assessed at 10 weeks of age.
- Lung lavage was collected to measure cytokine and matrix metalloproteinase (MMP) levels.
Main Results:
- Male GDM offspring exhibited increased lung compliance and reduced airway resistance.
- Female GDM offspring showed heightened airway hyperresponsiveness to methacholine.
- Elevated pro-inflammatory cytokines (IL-1β, IL-5, CXCL1) and MMPs (MMP-3, MMP-8) were found in female GDM offspring airways.
Conclusions:
- Gestational diabetes has distinct effects on male and female offspring lung health.
- Female offspring exposed to GDM may face a greater risk of asthma-like inflammatory lung conditions.
- Male offspring exposed to GDM showed lung function changes resembling chronic obstructive pulmonary disease models.
Abstract:
Exposure to maternal diabetes is increasingly recognized as a risk factor for chronic respiratory disease in children. It is currently unclear; however, whether maternal diabetes affects the lung health of male and female offspring equally. This study characterizes the sex-specific impact of a murine model of diet-induced gestational diabetes (GDM) on offspring lung function and airway inflammation. Female adult mice are fed a high-fat (45% kcal) diet for 6 wk prior to mating. Control offspring are from mothers fed a low-fat (10% kcal) diet. Offspring were weaned and fed a chow diet until 10 wk of age, at which point lung function was measured and lung lavage was collected. Male, but not female, offspring exposed to GDM had increased lung compliance and reduced lung resistance at baseline. Female offspring exposed to GDM displayed increased methacholine reactivity and elevated levels of proinflammatory cytokines [e.g., interleukin (IL)-1β, IL-5, and CXCL1] in lung lavage. Female GDM offspring also displayed elevated abundance of matrix metalloproteinases (MMP) within their airways, namely, MMP-3 and MMP-8. These results indicate disparate effects of maternal diabetes on lung health and airway inflammation of male and female offspring exposed to GDM. Female mice may be at greater risk of inflammatory lung conditions, such as asthma, whereas male offspring display changes that more closely align with models of chronic obstructive pulmonary disease. In conclusion, there are important sex-based differences in the impact of maternal diabetes on offspring lung health that could signal differences in future disease risk.
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