Pulmonary Responses to Welding Fumes: Role of Metal Constituents
- 1 February 2004
- journal article
- review article
- Published by Taylor & Francis in Journal of Toxicology and Environmental Health, Part A
- Vol. 67 (3) , 233-249
- https://doi.org/10.1080/15287390490266909
Abstract
It is estimated that more than 1 million workers worldwide perform some type of welding as part of their work duties. Epidemiology studies have shown that a large number of welders experience some type of respiratory illness. Respiratory effects seen in full-time welders have included bronchitis, siderosis, asthma, and a possible increase in the incidence of lung cancer. Pulmonary infections are increased in terms of severity, duration, and frequency among welders. Inhalation exposure to welding fumes may vary due to differences in the materials used and methods employed. The chemical properties of welding fumes can be quite complex. Most welding materials are alloy mixtures of metals characterized by different steels that may contain iron, manganese, chromium, and nickel. Animal studies have indicated that the presence and combination of different metal constituents is an important determinant in the potential pneumotoxic responses associated with welding fumes. Animal models have demonstrated that stainless steel (SS) welding fumes, which contain significant levels of nickel and chromium, induce more lung injury and inflammation, and are retained in the lungs longer than mild steel (MS) welding fumes, which contain mostly iron. In addition, SS fumes generated from welding processes using fluxes to protect the resulting weld contain elevated levels of soluble metals, which may affect respiratory health. Recent animal studies have indicated that the lung injury and inflammation induced by SS welding fumes that contain water-soluble metals are dependent on both the soluble and insoluble fractions of the fume. This article reviews the role that metals play in the pulmonary effects associated with welding fume exposure in workers and laboratory animals.Keywords
This publication has 45 references indexed in Scilit:
- Pulmonary effects of welding fumes: Review of worker and experimental animal studiesAmerican Journal of Industrial Medicine, 2003
- Health Effects of WeldingCritical Reviews in Toxicology, 2003
- EFFECT OF WELDING FUME SOLUBILITY ON LUNG MACROPHAGE VIABILITY AND FUNCTION IN VITROJournal of Toxicology and Environmental Health, Part A, 1999
- Cancer Mortality Among Arc Welders Exposed to Fumes Containing Chromium and NickelJournal of Occupational and Environmental Medicine, 1999
- Responses to Welding Fumes: Lung Injury, Inflammation, and the Release of Tumor Necrosis Factor-α and Interleukin-1βExperimental Lung Research, 1997
- An epidemiologic investigation of asthma in welders.American Journal of Respiratory and Critical Care Medicine, 1996
- Pneumotoxicity and Pulmonary Clearance of Different Welding Fumes after Intratracheal Instillation in the RatToxicology and Applied Pharmacology, 1996
- Introduction of Luminol-Dependent Chemiluminescence as a Method to Study Silica Inflammation in the Tissue and Phagocytic Cells of Rat LungEnvironmental Health Perspectives, 1994
- An in vivo hamster bioassay to assess the toxicity of particulates for the lungsToxicology and Applied Pharmacology, 1982
- Long-Term Effects of Welding Fumes upon Respiratory Symptoms and Pulmonary FunctionJournal of Occupational and Environmental Medicine, 1980