Objective: Agricultural pesticide handlers are at an elevated risk for overexposure to organophosphate (OP) pesticides, but symptoms can be difficult to recognise, making biomarkers invaluable for diagnosis. Occupational monitoring programmes for cholinesterase depression generally rely on measuring activity of either of the two common blood cholinesterases which serve as proxy measurements for nervous-system acetylcholinesterase activity: red blood cell acetylcholinesterase (AChE) and plasma butyrylcholinesterase (BChE). These biomarkers, however, may be affected differentially by some OPs and the relationship between them has not been well characterised. We aim to determine the association between blood AChE and BChE activity levels and assess whether they produce comparable classifications of clinical cholinesterase depression among OP pesticide handlers.
Methods: Using blood samples from 215 participants of the Washington State Cholinesterase Monitoring Program, we quantified changes in AChE and BChE activity from before and after exposure to OP pesticides and calculated Pearson correlation statistics for correlation of AChE and BChE changes in activity, as well as weighted κ statistics for agreement of classification of clinical cholinesterase depression based on AChE versus BChE measurements.
Results: AChE and BChE activity measurements are weakly negatively correlated in our study population. Reaching a clinical threshold for diagnosis of cholinesterase depression based on the AChE marker did not correlate with reaching clinical depression based on the BChE marker.
Conclusions: Both AChE and BChE should be measured in monitoring programmes because they may both give potentially important but disparate classifications of clinical cholinesterase depression.
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http://dx.doi.org/10.1136/oemed-2014-102315 | DOI Listing |
Biomolecules
January 2025
Programa de Pós-Graduação em Biodiversidade e Biotecnologia da Rede Bionorte, Universidade Federal do Pará, Belém 66075-110, PA, Brazil.
Aromatic plants are rich sources of essential oils (EOs), recognized for their therapeutic properties due to their diversity of phytochemicals. This study investigated the anxiolytic and antidepressant effects of essential oil (MsEO) through inhalation in an animal model and its in vitro anticholinesterase (AChE) activity. The EO was obtained by hydrodistillation, and its volatile constituents were analyzed by GC-MS.
View Article and Find Full Text PDFJ ECT
December 2024
Pharmacy Service, Durham VA Health Care System, Durham, NC.
Although electroconvulsive therapy (ECT) is effective for treating depression, schizophrenia, and mania, cognitive adverse effects may limit use. One possible mechanism for these effects includes cholinergic transmission alterations, supporting potential use of cholinesterase inhibitors for prevention and treatment of these cognitive deficits. The objective of this review is to determine efficacy and safety of cholinesterase inhibitors clinically used for dementia in reducing ECT cognitive adverse effects.
View Article and Find Full Text PDFBehav Brain Res
February 2025
Pharmaceutical Sciences Graduate Program, Health Sciences Centre, Federal University of Espírito Santo, Vitória, ES, Brazil; Department of Pharmaceutical Sciences, Health Science Centre, Federal University of Espírito Santo, Vitória, ES, Brazil. Electronic address:
Reprod Toxicol
January 2025
Neurobiology Lab., Department of Zoology, University of Allahabad, Prayagraj, UP 211002, India. Electronic address:
Depression in pregnant women raises concerns about the safety of antidepressants use, particularly its impact on offspring's neurocognition. This study investigates the effects of maternal exposure to vortioxetine (VOX) on the neurocognitive development of rat offspring. Pregnant Wistar rats were administered clinically pertinent doses of VOX, 1 mg/kg/day or 2 mg/kg/day from gestational day 6-21.
View Article and Find Full Text PDFAnal Chim Acta
December 2024
Key Laboratory of Flexible Electronics (KLOFE), School of Flexible Electronics (Future Technologies) & Institute of Advanced Materials (IAM), Nanjing Tech University (NanjingTech), 30 South Pu-zhu Road, Nanjing, 211816, China. Electronic address:
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