Upper airway irritation and small airways hyperreactivity due to exposure to potassium aluminium tetrafluoride flux: an extended case report

OBJECTIVES--22 workers, exposed to potassium aluminium tetrafluoride used as flux for soldering aluminium, were studied as clinical outpatients for symptoms of irritation of the nose, eye, skin, and airways. METHODS--16 volunteered for spirometry with methacholine provocation test including a test f...

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Published inOccupational and environmental medicine (London, England) Vol. 51; no. 10; pp. 706 - 709
Main Authors Hjortsberg, U, Orbaek, P, Arborelius, M, Karlsson, J E
Format Journal Article
LanguageEnglish
Published London BMJ Publishing Group Ltd 01.10.1994
BMJ
BMJ Publishing Group LTD
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ISSN1351-0711
1470-7926
DOI10.1136/oem.51.10.706

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Abstract OBJECTIVES--22 workers, exposed to potassium aluminium tetrafluoride used as flux for soldering aluminium, were studied as clinical outpatients for symptoms of irritation of the nose, eye, skin, and airways. METHODS--16 volunteered for spirometry with methacholine provocation test including a test for small airways function by volume of trapped gas (VTG). RESULTS--Median (range) latency time before respiratory symptoms developed was 6 (1-60) months. Symptoms of airways irritation diminished in all subjects after flux exposure ended. The FEV1 was within the normal range in 16 of 17 subjects before the methacholine provocation test. The FEV1 decreased by > or = 20% in two out of 16 subjects after the 0.1% methacholine provocation. Four out of the 17 subjects had a high VTG before methacholine provocation. After inhalation of 0.1% methacholine eight out of 16 subjects (50%) had an abnormal increase of VTG indicating hyperreactivity in small airways. DISCUSSION--Potassium aluminium tetrafluoride flux seems to induce an increase of bronchial reactivity in small airways. A setting of an occupational standard for potassium aluminium tetrafluoride is proposed.
AbstractList OBJECTIVES--22 workers, exposed to potassium aluminium tetrafluoride used as flux for soldering aluminium, were studied as clinical outpatients for symptoms of irritation of the nose, eye, skin, and airways. METHODS--16 volunteered for spirometry with methacholine provocation test including a test for small airways function by volume of trapped gas (VTG). RESULTS--Median (range) latency time before respiratory symptoms developed was 6 (1-60) months. Symptoms of airways irritation diminished in all subjects after flux exposure ended. The FEV1 was within the normal range in 16 of 17 subjects before the methacholine provocation test. The FEV1 decreased by > or = 20% in two out of 16 subjects after the 0.1% methacholine provocation. Four out of the 17 subjects had a high VTG before methacholine provocation. After inhalation of 0.1% methacholine eight out of 16 subjects (50%) had an abnormal increase of VTG indicating hyperreactivity in small airways. DISCUSSION--Potassium aluminium tetrafluoride flux seems to induce an increase of bronchial reactivity in small airways. A setting of an occupational standard for potassium aluminium tetrafluoride is proposed.
22 workers, exposed to potassium aluminium tetrafluoride used as flux for soldering aluminium, were studied as clinical outpatients for symptoms of irritation of the nose, eye, skin, and airways. 16 volunteered for spirometry with methacholine provocation test including a test for small airways function by volume of trapped gas (VTG). Median (range) latency time before respiratory symptoms developed was 6 (1-60) months. Symptoms of airways irritation diminished in all subjects after flux exposure ended. The FEV1 was within the normal range in 16 of 17 subjects before the methacholine provocation test. The FEV1 decreased by > or = 20% in two out of 16 subjects after the 0.1% methacholine provocation. Four out of the 17 subjects had a high VTG before methacholine provocation. After inhalation of 0.1% methacholine eight out of 16 subjects (50%) had an abnormal increase of VTG indicating hyperreactivity in small airways. Potassium aluminium tetrafluoride flux seems to induce an increase of bronchial reactivity in small airways. A setting of an occupational standard for potassium aluminium tetrafluoride is proposed.
Objectives - 22 workers, exposed to potassium aluminium tetrafluoride used as flux for soldering aluminium, were studied as clinical outpatients for symptoms of irritation of the nose, eye, skin, and airways. Methods - 16 volunteered for spirometry with methacholine provocation test including a test for small airways function by volume of trapped gas (VTG). Results - Median (range) latency time before respiratory symptoms developed was 6 (1-60) months. Symptoms of airways irritation diminished in all subjects after flux exposure ended. The FEV sub(1) was within the normal range in 16 of 17 subjects before the methacholine provocation test. The FEV sub(1) decreased by greater than or equal to 20% in two out of 16 subjects after the 0.1% methacholine provocation. Four out of the 17 subjects had a high VTG before methacholine provocation. After inhalation of 0.1% methacholine eight out of 16 subjects (50%) had an abnormal increase of VTG indicating hyperreactivity in small airways. Discussion - Potassium aluminium tetrafluoride flux seems to induce an increase of bronchial reactivity in small airways. A setting of an occupational standard for potassium aluminium tetrafluoride is proposed.
22 workers, exposed to potassium aluminium tetrafluoride used as flux for soldering aluminium, were studied as clinical outpatients for symptoms of irritation of the nose, eye, skin, and airways.OBJECTIVES22 workers, exposed to potassium aluminium tetrafluoride used as flux for soldering aluminium, were studied as clinical outpatients for symptoms of irritation of the nose, eye, skin, and airways.16 volunteered for spirometry with methacholine provocation test including a test for small airways function by volume of trapped gas (VTG).METHODS16 volunteered for spirometry with methacholine provocation test including a test for small airways function by volume of trapped gas (VTG).Median (range) latency time before respiratory symptoms developed was 6 (1-60) months. Symptoms of airways irritation diminished in all subjects after flux exposure ended. The FEV1 was within the normal range in 16 of 17 subjects before the methacholine provocation test. The FEV1 decreased by > or = 20% in two out of 16 subjects after the 0.1% methacholine provocation. Four out of the 17 subjects had a high VTG before methacholine provocation. After inhalation of 0.1% methacholine eight out of 16 subjects (50%) had an abnormal increase of VTG indicating hyperreactivity in small airways.RESULTSMedian (range) latency time before respiratory symptoms developed was 6 (1-60) months. Symptoms of airways irritation diminished in all subjects after flux exposure ended. The FEV1 was within the normal range in 16 of 17 subjects before the methacholine provocation test. The FEV1 decreased by > or = 20% in two out of 16 subjects after the 0.1% methacholine provocation. Four out of the 17 subjects had a high VTG before methacholine provocation. After inhalation of 0.1% methacholine eight out of 16 subjects (50%) had an abnormal increase of VTG indicating hyperreactivity in small airways.Potassium aluminium tetrafluoride flux seems to induce an increase of bronchial reactivity in small airways. A setting of an occupational standard for potassium aluminium tetrafluoride is proposed.DISCUSSIONPotassium aluminium tetrafluoride flux seems to induce an increase of bronchial reactivity in small airways. A setting of an occupational standard for potassium aluminium tetrafluoride is proposed.
Author Orbaek, P
Karlsson, J E
Hjortsberg, U
Arborelius, M
AuthorAffiliation Department of Occupational and Environmental Medicine, Malmö General Hospital, Sweden
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Cites_doi 10.1111/j.1475-097X.1989.tb00992.x
10.1056/NEJM197603252941302
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10.1136/thx.22.6.533
10.1164/ajrccm/140.1.225
10.1002/ajim.4700090306
10.1016/0306-3623(91)90068-H
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Hyperreactivity
Respiratory disease
Toxicity
Aluminium fluoride
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Occupational exposure
Occupational medicine
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Snippet OBJECTIVES--22 workers, exposed to potassium aluminium tetrafluoride used as flux for soldering aluminium, were studied as clinical outpatients for symptoms of...
22 workers, exposed to potassium aluminium tetrafluoride used as flux for soldering aluminium, were studied as clinical outpatients for symptoms of irritation...
Objectives - 22 workers, exposed to potassium aluminium tetrafluoride used as flux for soldering aluminium, were studied as clinical outpatients for symptoms...
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SubjectTerms Adolescent
Adult
Aluminum
Aluminum Compounds - adverse effects
Biological and medical sciences
Bronchial Hyperreactivity - chemically induced
Chemical and industrial products toxicology. Toxic occupational diseases
Conjunctivitis - chemically induced
Cough - chemically induced
Fluctuations
Fluorides - adverse effects
Forced Expiratory Volume - drug effects
Humans
Hypersensitivity
Inhalation
Male
Medical sciences
Metals and various inorganic compounds
Methacholine Chloride
Middle Aged
Occupational Diseases - chemically induced
Occupational exposure
Pruritus - chemically induced
Rhinitis - chemically induced
Time Factors
Toxicology
Title Upper airway irritation and small airways hyperreactivity due to exposure to potassium aluminium tetrafluoride flux: an extended case report
URI https://oem.bmj.com/content/51/10/706.full
https://api.istex.fr/ark:/67375/NVC-FZDKTTSN-N/fulltext.pdf
https://www.ncbi.nlm.nih.gov/pubmed/8000497
https://www.proquest.com/docview/1771263981
https://www.proquest.com/docview/16789372
https://www.proquest.com/docview/76894630
https://pubmed.ncbi.nlm.nih.gov/PMC1128081
Volume 51
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