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Fibrogenic potential of welding fumes
Abstract:
A search of 3600 indexed pathology cases has disclosed pulmonary fibrosis in 29 welders. Scanning electron microscopy of biopsy material revealed macrophages laden with inorganic particulates which have characteristics compatible with welding aerosols. In order to establish a possible relationship between fibrotic reaction and welding-fume exposure, the fibrogenic potential fo some 11 different welding fumes and metallic aerosols, considered to be reference standard surrogates for the commonly used welding technologies and applications responsible for 70% of welders exposure, were screened using the Rat Peritoneal Macrophage in vitro bioassay. Only one class of fumes, that from the manual metal arc welding of stainless steel, showed distinct fibrogenic potential. This fume is, however, not common to more than four or five of the heretofore 90 cases of pulmonary fibrosis reported among welders. Thus, although insoluble Cr(VI) is probably the active fibrogen in stainless steel fumes, an etiological factor common to all fibrogenic welding exposures must be sought. It is tentatively proposed to be NO2, a potential experimental in vivo fibrogen copiously produced by certain welding processes and ubiquitous at low concentrations in the welding environment.
Insights
Pulmonary fibrosis in welders may be linked to inorganic particulates from welding aerosols. While stainless steel welding fumes show fibrogenic potential, nitrogen dioxide (NO2) is proposed as a common factor in welding-related lung disease.
Area of Science:
- Occupational Health
- Pulmonary Medicine
- Toxicology
Background:
- Pulmonary fibrosis is a concern among welders.
- Inorganic particulates from welding aerosols have been observed in lung biopsies.
Purpose of the Study:
- To investigate the fibrogenic potential of various welding fumes.
- To identify etiological factors in welding-related pulmonary fibrosis.
Main Methods:
- Screening of 11 welding fumes and metallic aerosols using the Rat Peritoneal Macrophage in vitro bioassay.
- Scanning electron microscopy of biopsy material from welders with pulmonary fibrosis.
Main Results:
- Manual metal arc welding of stainless steel fumes exhibited distinct fibrogenic potential.
- Insoluble Cr(VI) is a likely fibrogen in stainless steel fumes.
- A common etiological factor for all fibrogenic welding exposures is yet to be definitively identified.
Conclusions:
- Nitrogen dioxide (NO2) is tentatively proposed as a common fibrogenic factor in welding exposures.
- Further research is needed to confirm the role of NO2 in welding-related pulmonary fibrosis.