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I R Mellor

Showing results (11-20 of 21) with videos related to

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Invertebrate Neuroscience : IN|January 1, 1995
The action of philanthotoxin-343 and photolabile analogues on locust (Schistocerca gregaria) muscleH L Sudan, C J Kerry, I R Mellor, et al.
Journal of Medicinal Chemistry|December 22, 1999
Analogues of neuroactive polyamine wasp toxins that lack inner basic sites exhibit enhanced antagonism toward a muscle-type mammalian nicotinic acetylcholine receptorK Stromgaard, M J Brierley, K Andersen, et al.
Biochemical and Biophysical Research Communications|July 15, 1992
Zervamicins, a structurally characterised peptide model for membrane ion channelsS Agarwalla, I R Mellor, M S Sansom, et al.
The Journal of Biological Chemistry|December 6, 2000
Location of the polyamine binding site in the vestibule of the nicotinic acetylcholine receptor ion channelM G Bixel, C Weise, M L Bolognesi, et al.
Journal of Medicinal Chemistry|November 23, 2000
Solid-phase synthesis and biological evaluation of a combinatorial library of philanthotoxin analoguesK Strømgaard, T J Brier, K Andersen, et al.
Neuropharmacology|July 6, 2005
Design of antagonists for NMDA and AMPA receptorsK V Bolshakov, K H Kim, N N Potapjeva, et al.
FEBS Letters|November 10, 2007
Mutations in DIIS5 and the DIIS4-S5 linker of Drosophila melanogaster sodium channel define binding domains for pyrethroids and DDTP N R Usherwood, T G E Davies, I R Mellor, et al.
Chirality|January 19, 2000
Solid phase synthesis and biological evaluation of enantiomerically pure wasp toxin analogues PhTX-343 and PhTX-12K Strømgaard, I Bjørnsdottir, K Andersen, et al.
Journal of Medicinal Chemistry|December 22, 1999
Design, synthesis, and biological evaluation of symmetrically and unsymmetrically substituted methoctramine-related polyamines as muscular nicotinic receptor noncompetitive antagonistsM Rosini, R Budriesi, M G Bixel, et al.
Neuropharmacology|February 1, 2003
Modification of the philanthotoxin-343 polyamine moiety results in different structure-activity profiles at muscle nicotinic ACh, NMDA and AMPA receptorsI R Mellor, T J Brier, F Pluteanu, et al.
Pageof 3

Showing results (11-20 of 21) with videos related to

Sort By:
Pageof 3
Invertebrate Neuroscience : IN|January 1, 1995
The action of philanthotoxin-343 and photolabile analogues on locust (Schistocerca gregaria) muscleH L Sudan, C J Kerry, I R Mellor, et al.
Journal of Medicinal Chemistry|December 22, 1999
Analogues of neuroactive polyamine wasp toxins that lack inner basic sites exhibit enhanced antagonism toward a muscle-type mammalian nicotinic acetylcholine receptorK Stromgaard, M J Brierley, K Andersen, et al.
Biochemical and Biophysical Research Communications|July 15, 1992
Zervamicins, a structurally characterised peptide model for membrane ion channelsS Agarwalla, I R Mellor, M S Sansom, et al.
The Journal of Biological Chemistry|December 6, 2000
Location of the polyamine binding site in the vestibule of the nicotinic acetylcholine receptor ion channelM G Bixel, C Weise, M L Bolognesi, et al.
Journal of Medicinal Chemistry|November 23, 2000
Solid-phase synthesis and biological evaluation of a combinatorial library of philanthotoxin analoguesK Strømgaard, T J Brier, K Andersen, et al.
Neuropharmacology|July 6, 2005
Design of antagonists for NMDA and AMPA receptorsK V Bolshakov, K H Kim, N N Potapjeva, et al.
FEBS Letters|November 10, 2007
Mutations in DIIS5 and the DIIS4-S5 linker of Drosophila melanogaster sodium channel define binding domains for pyrethroids and DDTP N R Usherwood, T G E Davies, I R Mellor, et al.
Chirality|January 19, 2000
Solid phase synthesis and biological evaluation of enantiomerically pure wasp toxin analogues PhTX-343 and PhTX-12K Strømgaard, I Bjørnsdottir, K Andersen, et al.
Journal of Medicinal Chemistry|December 22, 1999
Design, synthesis, and biological evaluation of symmetrically and unsymmetrically substituted methoctramine-related polyamines as muscular nicotinic receptor noncompetitive antagonistsM Rosini, R Budriesi, M G Bixel, et al.
Neuropharmacology|February 1, 2003
Modification of the philanthotoxin-343 polyamine moiety results in different structure-activity profiles at muscle nicotinic ACh, NMDA and AMPA receptorsI R Mellor, T J Brier, F Pluteanu, et al.
Pageof 3