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The Journal of Biological Chemistry|April 15, 1994
Site of fasciculin interaction with acetylcholinesteraseZ Radić, R Duran, D C Vellom, et al.Biochemistry|January 12, 1993
Amino acid residues controlling acetylcholinesterase and butyrylcholinesterase specificityD C Vellom, Z Radić, Y Li, et al.Bulletin of the World Health Organization|January 1, 1986
An enzyme test for determining isomalathion impurities in water-dispersible powders of malathionE Reiner, Z RadićChemico-Biological Interactions|July 27, 1999
Role of edrophonium in prevention of the re-inhibition of acetylcholinesterase by phosphorylated oximeC Luo, A Saxena, Y Ashani, et al.Biochemistry|August 6, 1999
Phosphoryl oxime inhibition of acetylcholinesterase during oxime reactivation is prevented by edrophoniumC Luo, A Saxena, M Smith, et al.Biochemistry|August 20, 1996
Aspartate 74 as a primary determinant in acetylcholinesterase governing specificity to cationic organophosphonatesN A Hosea, Z Radić, I Tsigelny, et al.Biochemical Pharmacology|July 15, 1997
Mutant acetylcholinesterases as potential detoxification agents for organophosphate poisoningA Saxena, D M Maxwell, D M Quinn, et al.Archives of Toxicology|March 7, 2015
Resolving pathways of interaction of mipafox and a sarin analog with human acetylcholinesterase by kinetics, mass spectrometry and molecular modeling approachesI Mangas, P Taylor, E Vilanova, et al.Bioorganic & Medicinal Chemistry Letters|July 29, 2000
Synthesis of fluorescent probes directed to the active site gorge of acetylcholinesteraseJ R Saltmarsh, A E Boyd, O P Rodriguez, et al.Chemico-Biological Interactions|July 27, 1999
Analysis of cholinesterase inactivation and reactivation by systematic structural modification and enantiomeric selectivityP Taylor, L Wong, Z Radić, et al.Pageof 225