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1.
Org Lett ; 3(12): 1945-8, 2001 Jun 14.
Article in English | MEDLINE | ID: mdl-11405751

ABSTRACT

[see reaction]. The stereochemistry of electrophilic amination has been probed using the chiral Grignard reagent 5, in which the magnesium-bearing carbon atom is the sole stereogenic center. Amination with azidomethyl phenyl sulfide 1 and with O-sulfonyloxime 2 were found to proceed with full retention of configuration.

4.
Arch Toxicol ; 72(4): 237-43, 1998 Mar.
Article in English | MEDLINE | ID: mdl-9587020

ABSTRACT

The treatment of poisoning by highly toxic organophosphorus compounds (nerve agents) is unsatisfactory. Until now, the efficacy of new potential antidotes has primarily been evaluated in animals. However, the extrapolation of these results to humans is hampered by species differences. Since oximes are believed to act primarily through reactivation of inhibited acetylcholinesterase (AChE) and erythrocyte AChE is regarded to be a good marker for the synaptic enzyme, the reactivating potency can be investigated with human erythrocyte AChE in vitro. The present study was undertaken to evaluate the ability of various oximes at concentrations therapeutically relevant in humans to reactivate human erythrocyte AChE inhibited by different nerve agents. Isolated human erythrocyte AChE was inhibited with soman, sarin, cyclosarin, tabun or VX for 30 min and reactivated in the absence of inhibitory activity over 5-60 min by obidoxime, pralidoxime, HI 6 or HLö 7 (10 and 30 microM). The AChE activity was determined photometrically. The reactivation of human AChE by oximes was dependent on the organophosphate used. After soman, sarin, cyclosarin, or VX the reactivating potency decreased in the order HLö 7 > HI 6 > obidoxime > pralidoxime. Obidoxime and pralidoxime were weak reactivators of cyclosarin-inhibited AChE. Only obidoxime and HLö 7 reactivated tabun-inhibited AChE partially (20%), while pralidoxime and HI 6 were almost ineffective (5%). Therefore, HLö 7 may serve as a broad-spectrum reactivator in nerve agent poisoning at doses therapeutically relevant in humans.


Subject(s)
Acetylcholinesterase/metabolism , Antidotes/metabolism , Cholinesterase Inhibitors/metabolism , Cholinesterase Reactivators/metabolism , Erythrocytes/enzymology , Obidoxime Chloride/metabolism , Pralidoxime Compounds/metabolism , Pyridines/metabolism , Pyridinium Compounds/metabolism , Humans , Organophosphates/metabolism , Oximes , Soman/metabolism
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