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.

Related Concept Videos

Asthma: Pathogenesis and Management01:20

Asthma: Pathogenesis and Management

Asthma is a chronic pulmonary condition involving inflammation of the airways, hyper-reactivity, and reversible obstruction of the airways. This condition can significantly impact a person's quality of life, making breathing difficult and leading to distressing symptoms.
Asthma is classified as allergic and non-allergic. Allergens such as dust mites, pollen, and pet dander trigger allergic asthma, while factors like cold air, intense emotions, or exercise can induce non-allergic asthma.
462
Asthma-II: Pathophysiology and Classification01:26

Asthma-II: Pathophysiology and Classification

Asthma is a prevalent chronic respiratory condition marked by inflammation and hyperresponsiveness of the airways. Its pathophysiology involves complex interactions among inflammatory pathways, immune responses, and neural mechanisms.
Additionally, environmental and genetic factors play crucial roles in determining an individual's susceptibility to asthma and the severity of their condition.
Critical processes in asthma pathophysiology include:
2.7K
Asthma-I: Introduction01:29

Asthma-I: Introduction

Asthma is a chronic respiratory ailment that requires careful management due to its varying symptoms and influencing factors. It is characterized by airway inflammation, bronchial hyperresponsiveness, and reversible airflow obstruction, leading to symptoms like wheezing, shortness of breath, chest tightness, and coughing. The symptom frequency and intensity may vary considerably over time. It is also linked to immune system responses to allergens and irritants, highlighting the complex...
2.7K
Upper Respiratory Drugs: Antitussives, Expectorants, and Mucolytics01:23

Upper Respiratory Drugs: Antitussives, Expectorants, and Mucolytics

Respiratory symptoms, such as congestion and cough, commonly accompany respiratory tract conditions. Various medications, such as antitussives, expectorants, and mucolytics, play crucial roles in providing relief.
Antitussives include codeine, dextromethorphan (Robitussin), and benzonatate (Tessalon). Codeine and dextromethorphan exert their effects centrally by suppressing the cough reflex center in the medulla.  Benzonatate operates peripherally within the respiratory tract by...
354
Gross Anatomy of the Lungs01:17

Gross Anatomy of the Lungs

The lungs are a pair of vital organs connected to the trachea via the left and right bronchi. The base of these organs meets the dome-shaped muscle known as the diaphragm. Encased by the pleurae, the lungs contact the mediastinum. The right lung is shorter yet wider, and has a larger volume than the left lung. The left lung has an indentation known as the cardiac notch. The superior region of the lungs is referred to as the apex, whereas the base is the lower region near the diaphragm. The...
2.3K
Chronic Obstructive Pulmonary Disease-II: Pathophysiology01:20

Chronic Obstructive Pulmonary Disease-II: Pathophysiology

Chronic Obstructive Pulmonary Disease (COPD) pathophysiology is intricate and multifaceted, involving a complex interplay of physiological processes. Understanding these mechanisms is crucial for effectively managing and treating COPD. Here is an in-depth look at the critical elements in the pathophysiology of COPD:
Chronic Inflammation
2.9K