A state‐of‐the‐science review of analytical methods for urinary dialkylphosphate metabolites in the assessment of exposure to organophosphate pesticides: From 2000 to 2022

Author:

Neves Ana Paula1ORCID,Rosa Ana Cristina Simões2ORCID,Larentis Ariane Leites2ORCID,da Silva Rodrigues Vidal Priscila Jeronimo1ORCID,Gonçalves Eline Simões3ORCID,Geraldino Barbara Rodrigues4ORCID,da Silveira Gabriel Rodrigues1ORCID,de Carvalho Leandro Vargas Barreto2ORCID,Alves Sergio Rabello25ORCID

Affiliation:

1. Oswaldo Cruz Foundation—Department of Health Public Health and Environment Postgraduation Program, Sergio Arouca National School of Public Health Rio de Janeiro Brazil

2. Oswaldo Cruz Foundation—Department of Health Toxicology Laboratory, Center for the Study of Workers' Health and Human Ecology, Sergio Arouca National School of Public Health Rio de Janeiro Brazil

3. Sergio Arouca National School of Public Health/Oswaldo Cruz Foundation—Department of Health Center for the Study of Workers’ Health and Human Ecology Rio de Janeiro Brazil

4. Jose Alencar Gomes da Silva National Cancer Institute—Department of Health Prevention and Surveillance Coordination Rio de Janeiro Brazil

5. General Superintendence of Scientific and Technical Police/Rio de Janeiro State Civil Police Secretariat Rio de Janeiro Brazil

Abstract

AbstractThe general population and workers are exposed to organophosphate insecticides, one of the leading chemical classes of pesticides used in rural and urban areas. This paper aims to conduct an integrative review of the most used analytical methods for identifying and quantifying dialkylphosphate—which are metabolites of organophosphate insecticides—in the urine of exposed workers, discussing their advantages, limitations and applicability. Searches utilized the PubMed, the Scientific Electronic Library Online and the Brazilian Digital Library of Theses and Dissertations databases between 2000 and 2021. Twenty‐five studies were selected. The extraction methods most used were liquid–liquid extraction (LLE) (36%) and solid‐phase extraction (SPE) (36%), with the SPE being more economical in terms of time and amount of solvents needed, and presenting the best percentage of recovery of analytes, when compared with LLE. Nineteen studies (76%) used the gas chromatography method of separation, and among these, 12 records (63%) indicated mass spectrometry used as a detection technology (analyzer). Studies demonstrate that dialkylphosphates are sensitive and representative exposure biomarkers for environmental and occupational organophosphate exposure.

Funder

Fundação Carlos Chagas Filho de Amparo à Pesquisa do Estado do Rio de Janeiro

Fundação Oswaldo Cruz

Ministry of Health, British Columbia

Publisher

Wiley

Subject

Clinical Biochemistry,Drug Discovery,Pharmacology,Molecular Biology,General Medicine,Biochemistry,Analytical Chemistry

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