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Treatment of acute organophosphate poisoning by using a cocaine hydrolase engineered from human butyrylcholinesterase

Producción científica: Articlerevisión exhaustiva

5 Citas (Scopus)

Resumen

Organophosphate (OP) chemical warfare nerve agents and pesticides are potent, irreversible inhibitors of acetylcholinesterase (AChE), and paraoxon is often used as a surrogate compound in the studies of OP poisoning. For a truly effective treatment of OP poisoning, it is desirable that a protein-based OP bioscavenger can react with OP significantly faster than AChE reacting with OP to protect AChE from further inhibition reaction with OP. In the present study, our in vitro reactivity assays revealed that CocH3-Fc(M3), a potent cocaine hydrolase engineered from human butyrylcholinesterase (BChE), has a ∼20-fold improved bimolecular rate constant for the reaction with paraoxon compared to wild-type BChE. Due to the improved in vitro reactivity with paraoxon, CocH3-Fc(M3) at a modest dose of 25 mg/kg was able to effectively rescue all mice that had been injected with a lethal dose of 0.66 mg/kg paraoxon and accelerate the recovery of the mice from paraoxon-induced toxicity symptoms. All the in silico, in vitro, and in vivo data consistently suggest that CocH3-Fc(M3) can be used to effectively detoxify paraoxon.

Idioma originalEnglish
Número de artículo111552
PublicaciónChemico-Biological Interactions
Volumen416
DOI
EstadoPublished - ago 1 2025

Nota bibliográfica

Publisher Copyright:
© 2025 Elsevier B.V.

Financiación

This work was supported in part by the National Institutes of Health (NIH grants UG3/UH3 NS134920, U01 DA051079, UH2/UH3 DA041115, R01 DA056646, U18 DA052319, R01 DA035552, R01 DA032910, and R01 DA013930) and the Molecular Modeling and Biopharmaceutical Center (MMBC).The authors declare the following financial interests/personal relationships which may be considered as potential competing interests:Chang-Guo Zhan reports financial support was provided by National Institutes of Health. Fang Zheng reports a relationship with National Institutes of Health that includes: funding grants. Chang-Guo Zhan has patent #Cocaine Hydrolase-Fc Fusion Proteins for Cocaine and Methods for Utilizing the Same (U.S. Patent No. 10, 772, 940); Increased polypeptide production yields of butyrylcholinesterase polypeptides for therapeutic use (U.S. Patent No. 11, 473, 070). Issued to Not yet licensed. The patents are owned by the University of Kentucky. Fang Zheng has patent #Cocaine Hydrolase-Fc Fusion Proteins for Cocaine and Methods for Utilizing the Same (U.S. Patent No. 10, 772, 940); Increased polypeptide production yields of butyrylcholinesterase polypeptides for therapeutic use (U.S. Patent No. 11, 473, 070). Issued to Not yet licensed. The patents are owned by the University of Kentucky. None. If there are other authors, they declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper. This work was supported in part by the National Institutes of Health (NIH grants UG3/UH3 NS134920 , U01 DA051079 , UH2/UH3 DA041115 , R01 DA056646 , U18 DA052319 , R01 DA035552 , R01 DA032910 , and R01 DA013930 ) and the Molecular Modeling and Biopharmaceutical Center (MMBC) .

FinanciadoresNúmero del financiador
University of Kentucky
National Institutes of Health (NIH)R01 DA035552, UG3/UH3 NS134920, R01 DA013930, U01 DA051079, UH2/UH3 DA041115, R01 DA056646, R01 DA032910, U18 DA052319
Molecular Modeling and Biopharmaceutical Center772, 940, 070

    ASJC Scopus subject areas

    • Toxicology

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