Biosensor assay of neuropathy target esterase in whole blood as a new approach to OPIDN risk assessment: review of progress

Author:

Makhaeva Galina F1,Malygin Vladimir V1,Strakhova Nadezhda N1,Sigolaeva Larisa V2,Sokolovskaya Lidia G2,Eremenko Arkady V2,Kurochkin Ilya N2,Richardson Rudy J3

Affiliation:

1. Institute of Physiologically Active Compounds, Russian Academy of Sciences, Chernogolovka, Moscow Region 142432, Russia

2. Faculty of Chemistry, M.V. Lomonosov Moscow State University, Moscow 119992, Russia

3. Toxicology Research Training Program, Department of Environmental Health Sciences, School of Public Health, The University of Michigan, Ann Arbor, MI 48109, USA,

Abstract

Organophosphates (OPs) that inhibit neuropathy target esterase (NTE) with subsequent ageing can produce OP-induced delayed neuropathy (OPIDN). NTE inhibition in lymphocytes can be used as a biomarker of exposure to neuropathic OPs. An electrochemical method was developed to assay NTE in whole blood. The high sensitivity of the tyrosinase carbon-paste biosensors for the phenol produced by hydrolysis of the substrate, phenyl valerate, allowed NTE activity to be measured in diluted samples of whole blood, which cannot be done using the standard colorimetric assay. The biosensor was used to establish correlations of NTE inhibitions in blood with that in lymphocytes and brain after dosing hens with a neuropathic OP. The results of further studies demonstrated that whole blood NTE is a reliable biomarker of neuropathic OPs for up to 96 hours after exposure. These validation results suggest that the biosensor NTE assay for whole blood could be developed to measure human exposure to neuropathic OPs as a predictor of OPIDN. The small blood volume required (100 μL), simplicity of sample preparation and rapid analysis times indicate that the biosensor should be useful in biomonitoring and epidemiological studies. The present paper is an overview of our previous and ongoing work in this area. Human & Experimental Toxicology (2007) 26, 273-282

Publisher

SAGE Publications

Subject

Health, Toxicology and Mutagenesis,Toxicology,General Medicine

Reference52 articles.

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2. Organophosphate Poisoning, Delayed Neurotoxicity

3. Johnson MK The target for initiation of delayed neurotoxicity by organophosphorus esters: biochemical studies and toxicological applications. In Hodgson E, Bend JR, Philpot RM eds. Reviews in biochemical toxicology , Volume 4. Elsevier, 1982: 141-212.

4. Organophosphorus Ester-Induced Delayed Neurotoxicity

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