N-substituted arylhydroxamic acids as acetylcholinesterase reactivators. 2022

Denys Bondar, and Illia V Kapitanov, and Lenka Pulkrabkova, and Ondřej Soukup, and Daniel Jun, and Fernanda D Botelho, and Tanos C C França, and Kamil Kuča, and Yevgen Karpichev
Department of Chemistry and Biotechnology, Tallinn University of Technology, Akadeemia Tee 15, 12618, Tallinn, Estonia.

The problem of the efficient treatment of acute organophosphorus (OP) poisoning needs more efforts in the development of a versatile antidote, applicable for treatment of the injuries of both peripheral and central nervous systems. A series of N-H, N-methyl, N-butyl, and N-phenyl derivatives of benzhydroxamic (1a-1d), 3-methoxybenzhydroxamic (2a-2d), 4-methoxybenzhydroxamic (3a-3d) acids, and corresponding salycilhydroxamates (4a-4d) was prepared. Their predicted hydrophobicity (log P) was evaluated as regards to ВВВ score by the open access cheminformatics tools; prediction of the passive transport across the BBB was found by means on the parallel artificial membrane permeability assay (PAMPA). The data on reactivation capacity of human acetylcholinesterase (HssAChE) inhibited by GB, VX, and paraoxon was supported by molecular docking study on binding to the active site of the AChE, viability study against mammalian cells (Chinese hamster ovary CHO-K1), and biodegradability (Closed Bottle test OECD 301D). Among the studied compounds, N-butyl derivatives have better balanced combination of properties; among them, N-butylsalicylhydroxamic acid is most promising. The studied compounds demonstrate modest reactivation capacity; change of N-H by N-Me ensures the reactivation capacity in studied concentrations on all studied OP substrates; among N-butyl derivatives, the N-butylsalicylhydroxamic acid demonstrates most promising results within the series. The found regularities may lead to selection of perspective structures to complement current formulations for medical countermeasures against poisoning by organophosphorus toxicants.

UI MeSH Term Description Entries
D010091 Oximes Compounds that contain the radical R2C Aldoximes,Hydroxyimino Compounds,Ketoxime,Ketoximes,Oxime,Compounds, Hydroxyimino
D002800 Cholinesterase Inhibitors Drugs that inhibit cholinesterases. The neurotransmitter ACETYLCHOLINE is rapidly hydrolyzed, and thereby inactivated, by cholinesterases. When cholinesterases are inhibited, the action of endogenously released acetylcholine at cholinergic synapses is potentiated. Cholinesterase inhibitors are widely used clinically for their potentiation of cholinergic inputs to the gastrointestinal tract and urinary bladder, the eye, and skeletal muscles; they are also used for their effects on the heart and the central nervous system. Acetylcholinesterase Inhibitor,Acetylcholinesterase Inhibitors,Anti-Cholinesterase,Anticholinesterase,Anticholinesterase Agent,Anticholinesterase Agents,Anticholinesterase Drug,Cholinesterase Inhibitor,Anti-Cholinesterases,Anticholinesterase Drugs,Anticholinesterases,Cholinesterase Inhibitors, Irreversible,Cholinesterase Inhibitors, Reversible,Agent, Anticholinesterase,Agents, Anticholinesterase,Anti Cholinesterase,Anti Cholinesterases,Drug, Anticholinesterase,Drugs, Anticholinesterase,Inhibitor, Acetylcholinesterase,Inhibitor, Cholinesterase,Inhibitors, Acetylcholinesterase,Inhibitors, Cholinesterase,Inhibitors, Irreversible Cholinesterase,Inhibitors, Reversible Cholinesterase,Irreversible Cholinesterase Inhibitors,Reversible Cholinesterase Inhibitors
D002801 Cholinesterase Reactivators Drugs used to reverse the inactivation of cholinesterase caused by organophosphates or sulfonates. They are an important component of therapy in agricultural, industrial, and military poisonings by organophosphates and sulfonates. Insecticides, Organophosphate, Antagonists,Insecticides, Organothiophosphate, Antagonists,Organophosphate Insecticide Antagonists,Organothiophosphate Insecticide Antagonists,Antagonists, Organophosphate Insecticide,Antagonists, Organothiophosphate Insecticide,Insecticide Antagonists, Organophosphate,Insecticide Antagonists, Organothiophosphate,Reactivators, Cholinesterase
D003412 Cricetulus A genus of the family Muridae consisting of eleven species. C. migratorius, the grey or Armenian hamster, and C. griseus, the Chinese hamster, are the two species used in biomedical research. Hamsters, Armenian,Hamsters, Chinese,Hamsters, Grey,Armenian Hamster,Armenian Hamsters,Chinese Hamster,Chinese Hamsters,Grey Hamster,Grey Hamsters,Hamster, Armenian,Hamster, Chinese,Hamster, Grey
D006224 Cricetinae A subfamily in the family MURIDAE, comprising the hamsters. Four of the more common genera are Cricetus, CRICETULUS; MESOCRICETUS; and PHODOPUS. Cricetus,Hamsters,Hamster
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000110 Acetylcholinesterase An enzyme that catalyzes the hydrolysis of ACETYLCHOLINE to CHOLINE and acetate. In the CNS, this enzyme plays a role in the function of peripheral neuromuscular junctions. EC 3.1.1.7. Acetylcholine Hydrolase,Acetylthiocholinesterase,Hydrolase, Acetylcholine
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D000931 Antidotes Agents counteracting or neutralizing the action of POISONS. Antidote,Theriacs
D013329 Structure-Activity Relationship The relationship between the chemical structure of a compound and its biological or pharmacological activity. Compounds are often classed together because they have structural characteristics in common including shape, size, stereochemical arrangement, and distribution of functional groups. Relationship, Structure-Activity,Relationships, Structure-Activity,Structure Activity Relationship,Structure-Activity Relationships

Related Publications

Denys Bondar, and Illia V Kapitanov, and Lenka Pulkrabkova, and Ondřej Soukup, and Daniel Jun, and Fernanda D Botelho, and Tanos C C França, and Kamil Kuča, and Yevgen Karpichev
December 2006, Arhiv za higijenu rada i toksikologiju,
Denys Bondar, and Illia V Kapitanov, and Lenka Pulkrabkova, and Ondřej Soukup, and Daniel Jun, and Fernanda D Botelho, and Tanos C C França, and Kamil Kuča, and Yevgen Karpichev
December 1979, Biochemical and biophysical research communications,
Denys Bondar, and Illia V Kapitanov, and Lenka Pulkrabkova, and Ondřej Soukup, and Daniel Jun, and Fernanda D Botelho, and Tanos C C França, and Kamil Kuča, and Yevgen Karpichev
October 1981, Journal of medicinal chemistry,
Denys Bondar, and Illia V Kapitanov, and Lenka Pulkrabkova, and Ondřej Soukup, and Daniel Jun, and Fernanda D Botelho, and Tanos C C França, and Kamil Kuča, and Yevgen Karpichev
January 1971, Journal of pharmaceutical sciences,
Denys Bondar, and Illia V Kapitanov, and Lenka Pulkrabkova, and Ondřej Soukup, and Daniel Jun, and Fernanda D Botelho, and Tanos C C França, and Kamil Kuča, and Yevgen Karpichev
November 1969, Archiv der Pharmazie und Berichte der Deutschen Pharmazeutischen Gesellschaft,
Denys Bondar, and Illia V Kapitanov, and Lenka Pulkrabkova, and Ondřej Soukup, and Daniel Jun, and Fernanda D Botelho, and Tanos C C França, and Kamil Kuča, and Yevgen Karpichev
November 1969, Archiv der Pharmazie und Berichte der Deutschen Pharmazeutischen Gesellschaft,
Denys Bondar, and Illia V Kapitanov, and Lenka Pulkrabkova, and Ondřej Soukup, and Daniel Jun, and Fernanda D Botelho, and Tanos C C França, and Kamil Kuča, and Yevgen Karpichev
October 1982, Journal of medicinal chemistry,
Denys Bondar, and Illia V Kapitanov, and Lenka Pulkrabkova, and Ondřej Soukup, and Daniel Jun, and Fernanda D Botelho, and Tanos C C França, and Kamil Kuča, and Yevgen Karpichev
October 1994, Environmental health perspectives,
Denys Bondar, and Illia V Kapitanov, and Lenka Pulkrabkova, and Ondřej Soukup, and Daniel Jun, and Fernanda D Botelho, and Tanos C C França, and Kamil Kuča, and Yevgen Karpichev
March 2006, Mini reviews in medicinal chemistry,
Denys Bondar, and Illia V Kapitanov, and Lenka Pulkrabkova, and Ondřej Soukup, and Daniel Jun, and Fernanda D Botelho, and Tanos C C França, and Kamil Kuča, and Yevgen Karpichev
January 2013, Expert opinion on drug metabolism & toxicology,
Copied contents to your clipboard!