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U Weller

Showing results (21-30 of 56) with videos related to

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Medical Microbiology and Immunology|September 1, 1993
A guide to the use of pore-forming toxins for controlled permeabilization of cell membranesS Bhakdi, U Weller, I Walev, et al.
Neuroscience Letters|May 25, 1992
Differences in the temperature dependencies of uptake of botulinum and tetanus toxins in Aplysia neuronsB Poulain, A de Paiva, J O Dolly, et al.
FEBS Letters|January 2, 1989
The tetanus toxin light chain inhibits exocytosisG Ahnert-Hilger, U Weller, M E Dauzenroth, et al.
The Biochemical Journal|July 15, 1994
Dynamics of Ca2+ and guanosine 5'-[gamma-thio]triphosphate action on insulin secretion from alpha-toxin-permeabilized HIT-T15 cellsJ C Jonas, G Li, M Palmer, et al.
The Biochemical Journal|May 1, 1992
Amylase release from streptolysin O-permeabilized pancreatic acinar cells. Effects of Ca2+, guanosine 5'-[gamma-thio]triphosphate, cyclic AMP, tetanus toxin and botulinum A toxinB Stecher, G Ahnert-Hilger, U Weller, et al.
Neuroscience|January 1, 1990
Release of vasopressin from isolated permeabilized neurosecretory nerve terminals is blocked by the light chain of botulinum A toxinG Dayanithi, G Ahnert-Hilger, U Weller, et al.
Naunyn-Schmiedeberg'S Archives of Pharmacology|August 1, 1985
Electrophysiological and neurobiochemical evidence for the blockade of a potassium channel by dendrotoxinU Weller, U Bernhardt, D Siemen, et al.
Chemistry and Physics of Lipids|June 17, 1996
Gangliosides in phospholipid bilayer membranes: interaction with tetanus toxinA Winter, W P Ulrich, F Wetterich, et al.
Infection and Immunity|April 1, 1995
Breakdown of the round window membrane permeability barrier evoked by streptolysin O: possible etiologic role in development of sensorineural hearing loss in acute otitis mediaF Engel, R Blatz, J Kellner, et al.
FEBS Letters|June 1, 1993
Production of biologically active light chain of tetanus toxin in Escherichia coli. Evidence for the importance of the C-terminal 16 amino acids for full biological activityN F Fairweather, D Sanders, D Slater, et al.
Pageof 6

Showing results (21-30 of 56) with videos related to

Sort By:
Pageof 6
Medical Microbiology and Immunology|September 1, 1993
A guide to the use of pore-forming toxins for controlled permeabilization of cell membranesS Bhakdi, U Weller, I Walev, et al.
Neuroscience Letters|May 25, 1992
Differences in the temperature dependencies of uptake of botulinum and tetanus toxins in Aplysia neuronsB Poulain, A de Paiva, J O Dolly, et al.
FEBS Letters|January 2, 1989
The tetanus toxin light chain inhibits exocytosisG Ahnert-Hilger, U Weller, M E Dauzenroth, et al.
The Biochemical Journal|July 15, 1994
Dynamics of Ca2+ and guanosine 5'-[gamma-thio]triphosphate action on insulin secretion from alpha-toxin-permeabilized HIT-T15 cellsJ C Jonas, G Li, M Palmer, et al.
The Biochemical Journal|May 1, 1992
Amylase release from streptolysin O-permeabilized pancreatic acinar cells. Effects of Ca2+, guanosine 5'-[gamma-thio]triphosphate, cyclic AMP, tetanus toxin and botulinum A toxinB Stecher, G Ahnert-Hilger, U Weller, et al.
Neuroscience|January 1, 1990
Release of vasopressin from isolated permeabilized neurosecretory nerve terminals is blocked by the light chain of botulinum A toxinG Dayanithi, G Ahnert-Hilger, U Weller, et al.
Naunyn-Schmiedeberg'S Archives of Pharmacology|August 1, 1985
Electrophysiological and neurobiochemical evidence for the blockade of a potassium channel by dendrotoxinU Weller, U Bernhardt, D Siemen, et al.
Chemistry and Physics of Lipids|June 17, 1996
Gangliosides in phospholipid bilayer membranes: interaction with tetanus toxinA Winter, W P Ulrich, F Wetterich, et al.
Infection and Immunity|April 1, 1995
Breakdown of the round window membrane permeability barrier evoked by streptolysin O: possible etiologic role in development of sensorineural hearing loss in acute otitis mediaF Engel, R Blatz, J Kellner, et al.
FEBS Letters|June 1, 1993
Production of biologically active light chain of tetanus toxin in Escherichia coli. Evidence for the importance of the C-terminal 16 amino acids for full biological activityN F Fairweather, D Sanders, D Slater, et al.
Pageof 6