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Antisense & Nucleic Acid Drug Development|August 27, 1999
Antisense technologies have a future fighting neurodegenerative diseasesS Seidman, F Eckstein, M Grifman, et al.Proceedings of the National Academy of Sciences of the United States of America|November 13, 1998
Functional redundancy of acetylcholinesterase and neuroligin in mammalian neuritogenesisM Grifman, N Galyam, S Seidman, et al.Antisense & Nucleic Acid Drug Development|March 22, 2001
Complex host cell responses to antisense suppression of ACHE gene expressionN Galyam, D Grisaru, M Grifman, et al.Antisense & Nucleic Acid Drug Development|August 1, 1997
Differentiation intensifies the susceptibility of pheochromocytoma cells to antisense oligodeoxynucleotide-dependent suppression of acetylcholinesterase activityM Grifman, H SoreqProceedings of the National Academy of Sciences of the United States of America|August 16, 1994
Antisense oligonucleotide inhibition of acetylcholinesterase gene expression induces progenitor cell expansion and suppresses hematopoietic apoptosis ex vivoH Soreq, D Patinkin, E Lev-Lehman, et al.Molecular and Cellular Biology|November 1, 1990
Manipulations of cholinesterase gene expression modulate murine megakaryocytopoiesis in vitroD Patinkin, S Seidman, F Eckstein, et al.Nature Reviews. Neuroscience|April 3, 2001
Acetylcholinesterase--new roles for an old actorH Soreq, S SeidmanThe Israel Medical Association Journal : IMAJ|July 26, 2000
Anti-sense approach to anticholinesterase therapeuticsH Soreq, S SeidmanJournal of Receptor and Signal Transduction Research|January 1, 1997
Genetic manipulations of cholinergic communication reveal trans-acting control mechanisms over acetylcholine receptorsR S Broide, M Grifman, M Shapira, et al.Toxicology Letters|February 18, 1999
In vivo and in vitro resistance to multiple anticholinesterases in Xenopus laevis tadpolesM Shapira, S Seidman, N Livni, et al.Pageof 90