Amitai_2016_Chem.Biol.Interact_259_187

Reference

Title : Novel bifunctional hybrid small molecule scavengers for mitigating nerve agents toxicity - Amitai_2016_Chem.Biol.Interact_259_187
Author(s) : Amitai G , Gez R , Raveh L , Bar-Ner N , Grauer E , Chapman S
Ref : Chemico-Biological Interactions , 259 :187 , 2016
Abstract :

The antidotal treatment of organophosphates (OP) nerve agents (NA) poisoning is based on anticholinergics (e.g. atropine) combined with oxime reactivators (e.g. 2PAM) of acetylcholinesterase (AChE). This treatment is symptomatic and does not degrade the OP. New small-molecule OP scavengers were developed as bifunctional hybrids. Their molecular design was based on combining a nucleophile that directly degrades OP with a moiety that reactivates OP-inhibited AChE. The OP degrading moiety is either benzhydroxamic acid (BHA) or 4-pyridinehydroxamic acid (4PHA) coupled via (CH2)n, (n = 1 or 3) to 2PAM. Three newly synthesized oxime-hydroxamate hybrids: 2PAMPr4PHA, 2PAMMeBHA and 2,4-DiPAMMeBHA were found to detoxify sarin, cyclosarin and soman in solution at 3-10-fold faster rate than 2PAM and to reactivate OP-AChE in vitro. 2PAMPr4PHA displayed 18-fold faster reactivation than 2-PAM of cyclosarin-inhibited HuAChE (kr = 3.6 x 102 vs. 0.2 x 102 M-1min-1, respectively, 37 degrees C). These hybrids inhibited AChE reversibly, IC50 = 16-48 muM, thereby decreasing the inhibition rates by OPs. The LD50 (im) of 2PAMPr4PHA, 2PAMMeBHA and 2,4DiPAMMeBHA are >568, 508 and >506 mumol/kg in rats and 144, 203 and >506 mumol/kg in guinea pigs. The rate of blood ChE recovery by the hybrids administered either pre- or post-exposure to 0.8xLD50 sarin was comparable or faster than 2PAM. Antidotal efficacy of 2PAMPr4PHA, 2PAMMeBHA and 2,4DiPAMMeBHA administered with atropine, as pre-treatment to sarin in rats (im), yielded protection ratios (PR) 11.6, 11.5 and 4.7, respectively, vs. 5.5 with 2PAM. Post-treatment against various OPs in rats and guinea-pigs yielded PRs higher or similar to that of 2 PAM. Our in vivo data indicates that some hybrids may serve as efficient small molecule scavengers for mitigating the toxicity of OP NAs.

PubMedSearch : Amitai_2016_Chem.Biol.Interact_259_187
PubMedID: 27129421

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Citations formats

Amitai G, Gez R, Raveh L, Bar-Ner N, Grauer E, Chapman S (2016)
Novel bifunctional hybrid small molecule scavengers for mitigating nerve agents toxicity
Chemico-Biological Interactions 259 :187

Amitai G, Gez R, Raveh L, Bar-Ner N, Grauer E, Chapman S (2016)
Chemico-Biological Interactions 259 :187