Significance of Arsenic Metabolic Forms in Urine. Part I: Chemical Speciation
- 1 April 1984
- journal article
- Published by Taylor & Francis in International Journal of Environmental Analytical Chemistry
- Vol. 17 (1) , 25-34
- https://doi.org/10.1080/03067318408076965
Abstract
The aim of this research has been to develop analytical procedures whereby the various chemical forms of arsenic present in urine can be distinguished and further data on the biotransformation of absorbed arsenic can be acquired. The separation of inorganic arsenic ( InAs ), monomethylarsonic acid ( MMAA ), and dimethylarsinic acid ( DMAA ) in urine was performed by ion-exchange chromatography on AG 50 W-X8 resin. Arsenic was then measured directly on the eluted fractions by atomic absorption spectrophotometry, after the reduction of arsenic to the correspondent arsine. In 160 subjects with no occupational exposure to arsenic compounds, InAs , MMAA , DMAA each accounted for about 10% of the total arsenic urinary excretion (17.2 +/- 11.1 micrograms/1), thus indicating that in the normal population over 60% of arsenic in urine is present in other organic forms. After eating marine food, there was a marked increase of urinary output of arsenic, but no increase was observed in InAs , MMAA and DMAA urinary excretion. In the biological monitoring of exposure to inorganic arsenic, particularly in the case of high urinary excretion values, the differentiation of the excreted forms of arsenic is necessary to establish with certainty the source (industrial or alimentary) of arsenic.Keywords
This publication has 9 references indexed in Scilit:
- Comparison of the urinary excretion of arsenic metabolites after a single oral dose of sodium arsenite, monomethylarsonate, or dimethylarsinate in manInternationales Archiv für Arbeitsmedizin, 1981
- Human retention studies with 74AsToxicology and Applied Pharmacology, 1980
- Identification of arsenobetaine, a water soluble organo-arsenic compound in muscle and liver of a shark, Prionace glaucus.Agricultural and Biological Chemistry, 1980
- Clearance of arsenic ingested by man from arsenic contaminated fishBulletin of Environmental Contamination and Toxicology, 1979
- Metabolism of inorganic arsenic (74As) in humans following oral ingestionToxicology and Applied Pharmacology, 1979
- Confirmation of inorganic arsenic and dimethylarsinic acid in urine and plasma of dog by ion-exchange and TLCBulletin of Environmental Contamination and Toxicology, 1979
- Separation of arsenic metabolites in dog plasma and urine following intravenous injection of 74AsAnalytical Biochemistry, 1978
- Changes in the chemical speciation of arsenic following ingestion by man.Environmental Health Perspectives, 1977
- Isolation, crystal structure and synthesis of arsenobetaine, the arsenical constituent of the western rock lobster panulirus longipes cygnus GeorgeTetrahedron Letters, 1977