Cocaine is a powerful central nervous stimulant and among the most abused of drugs. Despite decades of efforts, however, no effective pharmacological treatments are available against cocaine addiction or toxic effects. Classical receptor-antagonist therapeutic approaches have not yielded significant effects, although cocaine targets are well known, thus fostering development of alternative therapeutic strategies. Recent evidence indicates that a sensible approach for treatment of cocaine abuse could be to interfere with cocaine pharmacokinetics, i.e. by preventing the drug from reaching the receptors responsible for its biological effects. Administration of cocaine binding antibodies as well as catalytic antibodies and enzymes that hydrolyze cocaine represent potential alternative therapeutic approach(es). The discovery of the cocaine esterase from the strain MB1 of the bacterium Rhodococcus sp. (cocE) could be a major breakthrough in this field; cocE hydrolyzes cocaine faster than any known cocaine esterase and catalytic antibody.

The Rhodococcus sp. Cocaine Esterase: A Bacterial Candidate for Novel Pharmacokinetic‐based Therapies for Cocaine Abuse / P. Ascenzi, E.C.. - In: IUBMB LIFE. - ISSN 1521-6543. - 55:7(2003 Jul), pp. 397-402. [10.1080/1521654031000138541]

The Rhodococcus sp. Cocaine Esterase: A Bacterial Candidate for Novel Pharmacokinetic‐based Therapies for Cocaine Abuse

E. Clementi
Penultimo
;
2003

Abstract

Cocaine is a powerful central nervous stimulant and among the most abused of drugs. Despite decades of efforts, however, no effective pharmacological treatments are available against cocaine addiction or toxic effects. Classical receptor-antagonist therapeutic approaches have not yielded significant effects, although cocaine targets are well known, thus fostering development of alternative therapeutic strategies. Recent evidence indicates that a sensible approach for treatment of cocaine abuse could be to interfere with cocaine pharmacokinetics, i.e. by preventing the drug from reaching the receptors responsible for its biological effects. Administration of cocaine binding antibodies as well as catalytic antibodies and enzymes that hydrolyze cocaine represent potential alternative therapeutic approach(es). The discovery of the cocaine esterase from the strain MB1 of the bacterium Rhodococcus sp. (cocE) could be a major breakthrough in this field; cocE hydrolyzes cocaine faster than any known cocaine esterase and catalytic antibody.
Cocaine binding antibodies; Cocaine binding catalytic antibodies; Cocaine metabolism; Human liver carboxylesterase-1; Human liver carboxylesterase-2; Human plasma butyrylcholinesterase; Rhodococcus sp. esterase;
Settore BIOS-11/A - Farmacologia
lug-2003
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1250455
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