Published February 2019 | Version v1
Journal article

Early life inhalation exposure to mine tailings dust affects lung development

  • 1. Phoenix Biometrics, Inc., Tucson, AZ 85710 (United States)
  • 2. Department of Cellular & Molecular Medicine, University of Arizona College of Medicine, Tucson, AZ 85724 (United States)
  • 3. Department of Chemical and Environmental Engineering, University of Arizona (United States)
  • 4. Department of Physiology, The Asthma and Airway Disease Research Center, University of Arizona Health Sciences Center, Tucson, AZ 85724 (United States)

Description

Highlights: • Early life inhalation exposure to dusts alters adult lung function and structure • Alterations occur only with continuous in utero and postnatal exposures • In utero or postnatal exposures alone did not lead to alterations • Alterations in lung function were only seen in male offspring • Alterations are accompanied by increased epithelial to mesenchymal transition -- Abstract: Exposure to mine tailings dust from active and abandoned mining operations may be a very significant health hazard, especially to sensitive populations living in arid and semi-arid climates like the desert southwest of the US. It is anticipated that early life exposures during sensitive times of development can lead to adult disease. However, very few studies have investigated the effects of inhalation exposure to real world dusts during lung development. Using a mouse model, we have examined the effect(s) of inhalation of real world mine tailing dusts under three separate conditions: (1) Exposure only during in utero development (exposure of the pregnant moms) (2) exposure only after birth and (3) exposures that occurred continuously during in utero development, through gestation and birth until the mice reached adulthood (28 days old). We found that the most significant changes in lung structure and function were observed in male mice when exposure occurred continuously throughout development. These changes included increased airway hyper-reactivity, increased expression of epithelial to mesenchymal (EMT) transition protein markers and increased expression of cytokines related to eosinophils. The data also indicate that in utero exposures through maternal inhalation can prime the lung of male mice for more severe responses to subsequent postnatal exposures. This may be due to epigenetic alterations in gene regulation, immune response, molecular signaling, and growth factors involved in lung development that may make the neonatal lung more susceptible to continued dust exposure.

Additional details

Identifiers

DOI
10.1016/j.taap.2019.01.009;
PII
S0041008X19300195;

Publishing Information

Journal Title
Toxicology and Applied Pharmacology
Journal Volume
365
Journal Page Range
p. 124-132
ISSN
0041-008X
CODEN
TXAPA9

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
55048858
Subject category
S60: APPLIED LIFE SCIENCES;
Descriptors DEI
CLIMATES; DESERTS; DUSTS; EOSINOPHILS; GENE REGULATION; HEALTH HAZARDS; INHALATION; LUNGS; LYMPHOKINES; MICE; MINING; PROGENY; TAILINGS
Descriptors DEC
ANIMALS; ARID LANDS; BIOLOGICAL MATERIALS; BLOOD; BLOOD CELLS; BODY; BODY FLUIDS; GROWTH FACTORS; HAZARDS; INTAKE; LEUKOCYTES; MAMMALS; MATERIALS; MITOGENS; ORGANIC COMPOUNDS; ORGANS; PROTEINS; RESPIRATORY SYSTEM; RODENTS; SOLID WASTES; VERTEBRATES; WASTES

Optional Information

Copyright
Copyright (c) 2019 Published by Elsevier Inc.