Occupational Exposure to Metals in Shooting Ranges: A Biomonitoring Study

Background: Lead (Pb) exposure in shooting ranges has been reduced by various measures such as jacketed ammunition and lead-free primers. Nevertheless, this may lead to exposure to other metals, potentially resulting in adverse health effects. Methods: In a cross-sectional study, 35 subjects from se...

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Main Authors: Eline Vandebroek, Vincent Haufroid, Erik Smolders, Luc Hons, Benoit Nemery
Format: Article
Language:English
Published: Elsevier 2019-03-01
Series:Safety and Health at Work
Online Access:http://www.sciencedirect.com/science/article/pii/S2093791118300192
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spelling doaj-792c87ea4ad346e0b99991854ea42fae2020-11-25T00:47:43ZengElsevierSafety and Health at Work2093-79112019-03-011018794Occupational Exposure to Metals in Shooting Ranges: A Biomonitoring StudyEline Vandebroek0Vincent Haufroid1Erik Smolders2Luc Hons3Benoit Nemery4Occupational Health Service, Premed VZW, Leuven, Belgium; Centre for Environment and Health, Department of Public Health and Primary Care, KU Leuven, Leuven, Belgium; Corresponding author. Occupational Health Service, Premed VZW, Tiensevest 61(Bus 2), B-3010 Leuven, Belgium.Louvain Centre for Toxicology and Applied Pharmacology (LTAP), Institut de Recherche Expérimentale et Clinique (IREC), Université catholique de Louvain, Brussels, BelgiumDivision of Soil and Water Management, KU Leuven, Leuven, BelgiumOccupational Health Service, Premed VZW, Leuven, BelgiumCentre for Environment and Health, Department of Public Health and Primary Care, KU Leuven, Leuven, BelgiumBackground: Lead (Pb) exposure in shooting ranges has been reduced by various measures such as jacketed ammunition and lead-free primers. Nevertheless, this may lead to exposure to other metals, potentially resulting in adverse health effects. Methods: In a cross-sectional study, 35 subjects from seven different shooting ranges were studied: four shooting instructors, 10 police officers, 15 Special Forces, and six maintenance staff members. Metals and metalloids were determined in blood and urine by inductively coupled plasma–mass spectrometry. Results: The concentrations of most elements did not differ significantly between groups or compared to reference values, except for Sb and Pt in urine and Pb in blood. Mean values for Sb were considerably higher in urine from the Special Forces (0.34 μg/L), the maintenance staff (0.13 μg/L), and shooting instructors (0.32 μg/L) compared to the police officers before shooting (0.06 μg/L) and a Belgian reference value (0.04 μg/L). For Pt, the Special Forces showed higher mean urinary concentrations (0.078 μg/L) compared to a Belgian reference value (<0.061 μg/L). Mean values for blood lead were markedly higher in the Special Forces (3.9 μg/dL), maintenance staff (5.7 μg/dL), and instructors (11.7 μg/dL) compared to police officers (1.4 μg/dL). One instructor exceeded the biological exposure index for blood Pb (38.8 μg/dL). Conclusion: Since both Pb and Sb were found to be higher in shooting range employees, especially among frequent shooters, it is advisable to provide appropriate protective equipment, education, and medical follow-up for shooting range personnel in addition to careful choice of ammunition. Keywords: Biomonitoring, Metals, Occupational healthhttp://www.sciencedirect.com/science/article/pii/S2093791118300192
collection DOAJ
language English
format Article
sources DOAJ
author Eline Vandebroek
Vincent Haufroid
Erik Smolders
Luc Hons
Benoit Nemery
spellingShingle Eline Vandebroek
Vincent Haufroid
Erik Smolders
Luc Hons
Benoit Nemery
Occupational Exposure to Metals in Shooting Ranges: A Biomonitoring Study
Safety and Health at Work
author_facet Eline Vandebroek
Vincent Haufroid
Erik Smolders
Luc Hons
Benoit Nemery
author_sort Eline Vandebroek
title Occupational Exposure to Metals in Shooting Ranges: A Biomonitoring Study
title_short Occupational Exposure to Metals in Shooting Ranges: A Biomonitoring Study
title_full Occupational Exposure to Metals in Shooting Ranges: A Biomonitoring Study
title_fullStr Occupational Exposure to Metals in Shooting Ranges: A Biomonitoring Study
title_full_unstemmed Occupational Exposure to Metals in Shooting Ranges: A Biomonitoring Study
title_sort occupational exposure to metals in shooting ranges: a biomonitoring study
publisher Elsevier
series Safety and Health at Work
issn 2093-7911
publishDate 2019-03-01
description Background: Lead (Pb) exposure in shooting ranges has been reduced by various measures such as jacketed ammunition and lead-free primers. Nevertheless, this may lead to exposure to other metals, potentially resulting in adverse health effects. Methods: In a cross-sectional study, 35 subjects from seven different shooting ranges were studied: four shooting instructors, 10 police officers, 15 Special Forces, and six maintenance staff members. Metals and metalloids were determined in blood and urine by inductively coupled plasma–mass spectrometry. Results: The concentrations of most elements did not differ significantly between groups or compared to reference values, except for Sb and Pt in urine and Pb in blood. Mean values for Sb were considerably higher in urine from the Special Forces (0.34 μg/L), the maintenance staff (0.13 μg/L), and shooting instructors (0.32 μg/L) compared to the police officers before shooting (0.06 μg/L) and a Belgian reference value (0.04 μg/L). For Pt, the Special Forces showed higher mean urinary concentrations (0.078 μg/L) compared to a Belgian reference value (<0.061 μg/L). Mean values for blood lead were markedly higher in the Special Forces (3.9 μg/dL), maintenance staff (5.7 μg/dL), and instructors (11.7 μg/dL) compared to police officers (1.4 μg/dL). One instructor exceeded the biological exposure index for blood Pb (38.8 μg/dL). Conclusion: Since both Pb and Sb were found to be higher in shooting range employees, especially among frequent shooters, it is advisable to provide appropriate protective equipment, education, and medical follow-up for shooting range personnel in addition to careful choice of ammunition. Keywords: Biomonitoring, Metals, Occupational health
url http://www.sciencedirect.com/science/article/pii/S2093791118300192
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