Kalisiak_2011_J.Med.Chem_54_3319

Reference

Title : Amidine-oximes: reactivators for organophosphate exposure - Kalisiak_2011_J.Med.Chem_54_3319
Author(s) : Kalisiak J , Ralph EC , Zhang J , Cashman JR
Ref : Journal of Medicinal Chemistry , 54 :3319 , 2011
Abstract :

A new class of amidine-oxime reactivators of organophosphate (OP)-inhibited cholinesterases (ChE) were designed, synthesized, and tested. These compounds represent a novel group of oximes with enhanced capabilities of crossing the blood-brain barrier. Lack of brain penetration is a major limitation for currently used oximes as antidotes of OP poisoning. The concept described herein relies on a combination of an amidine residue and oxime functionality whereby the amidine increases the binding affinity to the ChE and the oxime is responsible for reactivation. Amidine-oximes were tested in vitro and reactivation rates for OP-BuChE were greater than pralidoxime (2-PAM) or monoisonitrosoacetone (MINA). Amidine-oxime reactivation rates for OP-AChE were lower compared to 2-PAM but greater compared with MINA. After pretreatment for 30 min with oximes 15c and 15d (145 mumol/kg, ip) mice were challenged with a soman model compound. In addition, 15d was tested in a post-treatment experiment (145 mumol/kg, ip, administration 5 min after sarin model compound exposure). In both cases, amidine-oximes afforded 100% 24 h survival in an animal model of OP exposure.

PubMedSearch : Kalisiak_2011_J.Med.Chem_54_3319
PubMedID: 21438612

Related information

Reactivator MINA    pro-2PAM

Citations formats

Kalisiak J, Ralph EC, Zhang J, Cashman JR (2011)
Amidine-oximes: reactivators for organophosphate exposure
Journal of Medicinal Chemistry 54 :3319

Kalisiak J, Ralph EC, Zhang J, Cashman JR (2011)
Journal of Medicinal Chemistry 54 :3319