Microstructure formulation techniques for botulinum toxin
The present invention relates to microstructure formulation techniques for botulinum toxin. The microstructure formulation techniques for botulinum toxin according to the present invention make it possible to precisely control the concentration of botulinum toxin and to alleviate the pain occurring when botulinum toxin is administered into the human body, and also enable botulinum toxin to be accurately administered to a desired position. Thus, the present invention is expected to greatly contribute to the safe and convenient medical use of botulinum toxin.
1. A microstructure selected from the group consisting of a microneedle, a microblade, a microknife, a microfiber, a microspike, a microprobe, a microbarb, a microarray, and a microelectrode, wherein the microstructure is coated with a botulinum toxin composition comprising a botulinum toxin selected from the group consisting of botulinum toxin type A, B, C, D, E, F and G, a thickener and a stabilizer, wherein the thickener is any one or more selected from the group consisting of carboxymethyl cellulose sodium salt, sodium alginate, hyaluronic acid, methyl cellulose, hydroxyethyl cellulose, and polyvinyl pyrrolidone, and wherein the stabilizer is trehalose, sucrose, or a combination of trehalose and sucrose, wherein the microstructure is precoated with a polymer compound or polyvinyl alcohol.
2. A method for coating a microstructure with a botulinum toxin composition, the method comprising the steps of: (a) precoating the microstructure, wherein the microstructure is selected from the group consisting of a microneedle, a microblade, a microknife, a microfiber, a microspike, a microprobe, a microbarb, a microarray, and a microelectrode with a polymer compound or polyvinyl alcohol; (b) mixing a botulinum toxin selected from the group consisting of botulinum toxin type A, B, C, D, E, F and G, a thickener and a stabilizer to obtain a mixture; and (c) dipping the precoated microstructure of step (a) into the mixture of step (b), followed by drying, wherein the thickener is any one or more selected from the group consisting of carboxymethyl cellulose sodium salt, sodium alginate, hyaluronic acid, methyl cellulose, hydroxyethyl cellulose, and polyvinyl pyrrolidone, and wherein the stabilizer is trehalose, sucrose, or a combination of trehalose and sucrose.