Development and Validation of Matrix-Validated LC-MS/MS Method for Simultaneous Quantification of 21 Neonicotinoids and Their Metabolites in Human Urine
Peer Reviewed
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2026/04/01
File Language:
English
Details
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Journal Article:Environmental Science and Pollution Research
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Personal Author:
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Description:Neonicotinoids (NEOs) are the most widely used class of insecticides worldwide. Consequently, human exposure occurs through multiple pathways, including dietary intake and environmental contact. Previous analytical methods have primarily focused on parent compounds, often excluding key metabolites due to matrix effects and poor quantification in complex biological samples. This gap severely limits the ability to accurately assess total NEO exposure and internal dose, highlighting the urgent need for more comprehensive and reliable biomonitoring approaches. This study developed a comprehensive LC-MS/MS method to quantify 21 NEOs and metabolites in human urine, uniquely including key transformation products such as clothianidin-n-desmethyl, clothianidin-urea, imidacloprid-urea, imidacloprid-olefin, 5-hydroxy-imidacloprid, thiamethoxam-urea, and thiamethoxam-n-desmethyl, thereby enabling a more thorough assessment of human exposure to NEOs. The method was validated using both synthetic and pooled human urine, providing a critical assessment of matrix-dependent variations in detection limits, accuracy, and precision. Method performance demonstrated high sensitivity, specificity, accuracy, and precision, with limits of quantification (LOQ) from 0.017 to 0.46 ng/mL and limits of detection (LOD) from 0.0050 to 0.14 ng/mL. The method was applied to urine samples from 246 pregnant women and 47 farmers in eastern Iowa to assess exposure levels. Results indicated widespread NEO exposure with detection frequencies of 99% of pregnant women and 100% in farmers, with 18 different NEOs and metabolites detected across both populations. Metabolite monitoring revealed that imidacloprid metabolites (IMI-O, 5-OH-IMI) were stronger predictors of total neonicotinoid burden than parent compounds alone (rs = 0.735 vs < 0.6 for parents), with some metabolites showing higher concentrations in pregnant women than farmers despite farmers having higher overall exposure. These findings demonstrate that parent-only biomonitoring substantially underestimates internal neonicotinoid exposure and fails to capture critical exposure pathways, particularly for vulnerable populations where metabolite patterns may differ significantly from occupational exposure profiles. Description provided by NIOSH
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Keywords:
- Insecticides; Biomonitoring; Exposure assessment; Urine; Liquid chromatography; Mass spectrometry; Environmental exposure; Agricultural chemicals; Metabolites; Analytical methods;
- Author Keywords: Neonicotinoid insecticides; Clothianidin-n-desmethyl; Imidacloprid olefin; Thiamethoxam urea; LC-MS/MS; Urine; Human exposure assessment risk
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Source:Environ Sci Pollut Res 2026 Apr; 33(16):7576-7593
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ISSN:0944-1344
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Pages in Document:18 pdf pages
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Volume:33
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NIOSHTIC Number:nn:20071546
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Contact Point Address:Wenjing Xi, Center for Health Effects of Environmental Contamination, University of Iowa, Iowa City, IA, USA
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Email:wenjing-xi@uiowa.edu
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Federal Fiscal Year:2026
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Performing Organization:University of Iowa
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Peer Reviewed:True
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Start Date:20050701
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End Date:20290630
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Main Document Checksum:urn:sha-512:d8dc19bd090a21204be15df6d8fbe91f8602998a302c291702130834d7bbc6dd8e307e27af5c806be0f244ae2c55b9595348496f58efccb93b8242973cc024a0
File Language:
English
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