Clostridium botulinum serotype B toxins 12S and 16S were separated by using a beta-lactose gel column at pH 6.0; toxin 12S passed through the column, whereas toxin 16S bound to the column and eluted with lactose. The fully activated neurotoxin was obtained by applying the trypsin-treated 16S toxin on the same column at pH 8.0; the neurotoxin passed through the column, whereas remaining nontoxic components bound to the column. The toxicity of this purified fully activated neurotoxin was retained for a long period by addition of albumin in the preparation
The toxigenic strains of Clostridium botulinum produce seven serologically distinct types of neuroto...
The clinical eVects of botulinum toxin have been recognised since the end of the 19th century. It is...
Botulinum toxin (BTx) is an important therapeuticagent with widespread applications in neurologic an...
Clostridium botulinum serotype B toxins 12S and 16S were separated by using a beta-lactose gel colum...
Investigations have been made on the purification of Clostridium botulinum type E toxin and an attem...
Clostridium botulinum neurotoxins are used to treat a variety of neuro-muscular disorders, as well a...
The single residue of cysteine in Cl. botulinum type E strain Iwanai toxin has been linked with toxi...
Clostridium botulinum type E, strain Iwanai, was grown in a dialysate apparatus, modified from the o...
Botulinum toxin is the most potent toxin known. It is readily absorbed from mucosal surfaces. If dis...
The type A toxin of Clostridium botulinum has been isolated and crystallized. It has proved to be a ...
2 Botulinum neurotoxins (BoNTs) are among the most potent biological toxins for humans. They are pri...
Botulinum toxin is a neurotoxin protein produced by the bacterium Clostridium botulinum. Being one o...
The clostridial neurotoxins (CNTs) are among the most potent protein toxins known to humans. CNTs in...
toxin was reported by Lamanna and Glassman (1947). The purified product differed from crystal-line t...
Clostridium botulinum produces 7 similar, yet se-riologically distinct, neurotoxins (Labeled A, B, C...
The toxigenic strains of Clostridium botulinum produce seven serologically distinct types of neuroto...
The clinical eVects of botulinum toxin have been recognised since the end of the 19th century. It is...
Botulinum toxin (BTx) is an important therapeuticagent with widespread applications in neurologic an...
Clostridium botulinum serotype B toxins 12S and 16S were separated by using a beta-lactose gel colum...
Investigations have been made on the purification of Clostridium botulinum type E toxin and an attem...
Clostridium botulinum neurotoxins are used to treat a variety of neuro-muscular disorders, as well a...
The single residue of cysteine in Cl. botulinum type E strain Iwanai toxin has been linked with toxi...
Clostridium botulinum type E, strain Iwanai, was grown in a dialysate apparatus, modified from the o...
Botulinum toxin is the most potent toxin known. It is readily absorbed from mucosal surfaces. If dis...
The type A toxin of Clostridium botulinum has been isolated and crystallized. It has proved to be a ...
2 Botulinum neurotoxins (BoNTs) are among the most potent biological toxins for humans. They are pri...
Botulinum toxin is a neurotoxin protein produced by the bacterium Clostridium botulinum. Being one o...
The clostridial neurotoxins (CNTs) are among the most potent protein toxins known to humans. CNTs in...
toxin was reported by Lamanna and Glassman (1947). The purified product differed from crystal-line t...
Clostridium botulinum produces 7 similar, yet se-riologically distinct, neurotoxins (Labeled A, B, C...
The toxigenic strains of Clostridium botulinum produce seven serologically distinct types of neuroto...
The clinical eVects of botulinum toxin have been recognised since the end of the 19th century. It is...
Botulinum toxin (BTx) is an important therapeuticagent with widespread applications in neurologic an...