Literature DB >> 15177657

Future applications of phosphotriesterases in the prophylaxis and treatment of organophosporus insecticide and nerve agent poisonings.

Miguel A Sogorb1, Eugenio Vilanova, Victoria Carrera.   

Abstract

Organophosphorus compounds (OPs) are being used as insecticides and warfare agents. OP insecticides represent an important problem of public health, causing around 200,000 deaths annually. The World Health Organization has pointed to the necessity to introduce new medical practices that improve the results of classical treatments. Many studies have shown that the administration of phosphotriesterases (enzymes that detoxify OPs through hydrolysis) is a promising treatment of persons poisoned with OPs. Such an enzyme-based treatment might introduce important improvements in the treatment of patients having ingested large amounts of OPs. Phosphotriesterases might also be suitable for prophylactic treatment of persons at risk to be severely exposed. The new experimental treatments do not exhibit the intrinsic neurotoxicity of the classical prophylaxis based on carbamates and antimuscarinic drugs. Experimental data suggest that might be time to initiate clinical trials in order to study the efficacy of phosphotriesterases in the therapy and prophylaxis of OP intoxication.

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Year:  2004        PMID: 15177657     DOI: 10.1016/j.toxlet.2004.01.022

Source DB:  PubMed          Journal:  Toxicol Lett        ISSN: 0378-4274            Impact factor:   4.372


  18 in total

Review 1.  Pharmacological treatment of organophosphorus insecticide poisoning: the old and the (possible) new.

Authors:  Michael Eddleston; Fazle Rabbi Chowdhury
Journal:  Br J Clin Pharmacol       Date:  2015-10-30       Impact factor: 4.335

Review 2.  Organophosphorus pesticide determination in biological specimens: bioanalytical and toxicological aspects.

Authors:  Sofia Soares; Tiago Rosado; Mário Barroso; Duarte Nuno Vieira; Eugenia Gallardo
Journal:  Int J Legal Med       Date:  2019-07-12       Impact factor: 2.686

Review 3.  Organophosphorus poisoning (acute).

Authors:  Peter G Blain
Journal:  BMJ Clin Evid       Date:  2011-05-17

4.  Kinetics and efficacy of an organophosphorus hydrolase in a rodent model of methyl-parathion poisoning.

Authors:  Chip Gresham; Christopher Rosenbaum; Romolo J Gaspari; Colin J Jackson; Steven B Bird
Journal:  Acad Emerg Med       Date:  2010-07       Impact factor: 3.451

5.  Development of an autofluorescent whole-cell biocatalyst by displaying dual functional moieties on Escherichia coli cell surfaces and construction of a coculture with organophosphate-mineralizing activity .

Authors:  Chao Yang; Yaran Zhu; Jijian Yang; Zheng Liu; Chuanling Qiao; Ashok Mulchandani; Wilfred Chen
Journal:  Appl Environ Microbiol       Date:  2008-10-24       Impact factor: 4.792

6.  What's new in emergencies, trauma, and shock? Snake envenomation and organophosphate poisoning in the emergency department.

Authors:  Praveen Aggarwal; Nayer Jamshed
Journal:  J Emerg Trauma Shock       Date:  2008-07

7.  Cotranslocation of methyl parathion hydrolase to the periplasm and of organophosphorus hydrolase to the cell surface of Escherichia coli by the Tat pathway and ice nucleation protein display system.

Authors:  Chao Yang; Roland Freudl; Chuanling Qiao; Ashok Mulchandani
Journal:  Appl Environ Microbiol       Date:  2009-11-20       Impact factor: 4.792

Review 8.  Organophosphorus-degrading bacteria: ecology and industrial applications.

Authors:  Brajesh K Singh
Journal:  Nat Rev Microbiol       Date:  2008-12-22       Impact factor: 60.633

Review 9.  Organophosphorus poisoning (acute).

Authors: 
Journal:  BMJ Clin Evid       Date:  2007-03-01

10.  Organophosphate pesticide in agricultural soils from the Yangtze River Delta of China: concentration, distribution, and risk assessment.

Authors:  Lili Pan; Jianteng Sun; Zhiheng Li; Yu Zhan; Shen Xu; Lizhong Zhu
Journal:  Environ Sci Pollut Res Int       Date:  2016-09-29       Impact factor: 4.223

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