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Published on: June 24, 2020
Maternal high-fat diet increases airway sensory innervation and reflex bronchoconstriction in adult offspring
Gina N Calco1, Yem J Alharithi2, Kayla R Williams1
1Division of Pulmonary and Critical Care Medicine, Oregon Health & Science University, Portland, Oregon, United States.
Insights
Maternal high-fat diet in mice programs offspring for asthma. This diet increases airway sensory nerves, leading to airway hyperresponsiveness in offspring, even on a regular diet.
Area of Science:
- Immunology
- Developmental Biology
- Respiratory Medicine
Background:
- Maternal obesity is linked to increased asthma risk in offspring.
- Mechanisms underlying this association remain unclear.
- Existing models lack human metabolic relevance.
Purpose of the Study:
- To investigate the impact of maternal high-fat diet on offspring airway function and innervation.
- To establish a mouse model mimicking human metabolic abnormalities in offspring of obese mothers.
Main Methods:
- Developed a mouse model of maternal diet-induced obesity.
- Assessed metabolic parameters (adiposity, insulin resistance) and airway responsiveness in offspring.
- Utilized 3-D confocal imaging to analyze airway sensory innervation and substance P expression.
Main Results:
- Offspring of high-fat diet (HFD) dams exhibited increased adiposity, hyperinsulinemia, and insulin resistance.
- Increased bronchoconstriction was observed in offspring of HFD dams, mediated by airway nerves.
- Elevated epithelial sensory innervation and substance P expression were found in offspring airways.
Conclusions:
- Maternal high-fat diet programs offspring airways, increasing sensory innervation and leading to reflex airway hyperresponsiveness.
- This study identifies a novel mechanism linking maternal diet to asthma risk in offspring.
- Findings suggest the need for preventive strategies targeting maternal nutrition.
Abstract:
Children born to obese mothers are prone to develop asthma and airway hyperresponsiveness, but the mechanisms behind this are unclear. Here we developed a mouse model of maternal diet-induced obesity that recapitulates metabolic abnormalities seen in humans born to obese mothers. Offspring of dams fed a high-fat diet (HFD) showed increased adiposity, hyperinsulinemia, and insulin resistance at 16 wk of age despite being fed only a regular diet (RD). Bronchoconstriction induced by inhaled 5-hydroxytriptamine was also significantly increased in offspring of HFD-fed versus RD-fed dams. Increased bronchoconstriction was blocked by vagotomy, indicating this reflex was mediated by airway nerves. Three-dimensional (3-D) confocal imaging of tracheas collected from 16-wk-old offspring showed that both epithelial sensory innervation and substance P expression were increased in the offspring of HFD-fed dams compared with offspring of RD-fed dams. For the first time, we show that maternal high-fat diet increases airway sensory innervation in offspring, leading to reflex airway hyperresponsiveness.NEW & NOTEWORTHY Our study reveals a novel potential mechanism, by which maternal high-fat diet increases the risk and severity of asthma in offspring. We found that exposure to maternal high-fat diet in mice leads to hyperinnervation of airway sensory nerves and increased reflex bronchoconstriction in offspring fed a regular diet only. These findings have important clinical implications and provide new insights into the pathophysiology of asthma, highlighting the need for preventive strategies in this patient population.
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