Published December 2021 | Version v1
Journal article

Lung developmental is altered after inhalation exposure to various concentrations of calcium arsenate

  • 1. Department of Cellular & Molecular Medicine, University of Arizona College of Medicine, Tucson, AZ 85719 (United States)
  • 2. Phoenix Biometrics, Inc., Tucson, AZ 85710 (United States)
  • 3. Department of Pharmacology and Toxicology, University of Arizona College of Pharmacy (United States)

Description

Highlights: • Early life calcium arsenate inhalation alters adult lung function and structure. • Responses were dependent on the level of calcium arsenate in the simulated dust. • Responses were correlated with decreases in the expression of Club cell protein 16. • In utero or postnatal exposures alone or combined led to decreased CC16 levels. • Exposures to real world mine tailing dust also resulted in decreased CC16 levels. Exposure to dust from active and abandoned mining operations may be a very significant health hazard, especially to sensitive populations. We have previously reported that inhalation of real-world mine tailing dusts during lung development can alter lung function and structure in adult male mice. These real-world dusts contain a mixture of metal(loid)s, including arsenic. To determine whether arsenic in inhaled dust plays a role in altering lung development, we exposed C57Bl/6 mice to a background dust (0 arsenic) or to the background dust containing either 3% or 10% by mass, calcium arsenate. Total level of exposure was kept at 100 μg/m3. Calcium arsenate was selected since arsenate is the predominant species found in mine tailings. We found that inhalation exposure during in utero and postnatal lung development led to significant increases in pulmonary baseline resistance, airway hyper-reactivity, and airway collagen and smooth muscle expression in male C57Bl/6 mice. Responses were dependent on the level of calcium arsenate in the simulated dust. These changes were not associated with increased expression of TGF-β1, a marker of epithelial to mesenchymal transition. However, responses were correlated with decreases in the expression of club cell protein 16 (CC16). Dose-dependent decreases in CC16 expression and increases in collagen around airways was seen for animals exposed in utero only (GD), animals exposed postnatally only (PN) and animals continuously exposed throughout development (GDPN). These data suggest that arsenic inhalation during lung development can decrease CC16 expression leading to functional and structural alterations in the adult lung.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.taap.2021.115754

Additional details

Identifiers

DOI
10.1016/j.taap.2021.115754;
PII
S0041008X21003586;

Publishing Information

Journal Title
Toxicology and Applied Pharmacology
Journal Volume
432
Journal Page Range
vp.
ISSN
0041-008X
CODEN
TXAPA9

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
54051750
Subject category
S60: APPLIED LIFE SCIENCES;
Descriptors DEI
ARSENATES; ARSENIC; CALCIUM; COLLAGEN; DUSTS; HEALTH HAZARDS; INHALATION; LUNGS; MICE; MINING; MUSCLES; REACTIVITY; SIMULATION; TAILINGS
Descriptors DEC
ALKALINE EARTH METALS; ANIMALS; ARSENIC COMPOUNDS; BODY; ELEMENTS; HAZARDS; INTAKE; MAMMALS; METALS; ORGANIC COMPOUNDS; ORGANS; OXYGEN COMPOUNDS; PROTEINS; RESPIRATORY SYSTEM; RODENTS; SCLEROPROTEINS; SEMIMETALS; SOLID WASTES; VERTEBRATES; WASTES

Optional Information

Copyright
Copyright (c) 2021 Elsevier Inc. All rights reserved.