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1.
Int J Pharm ; 290(1-2): 73-81, 2005 Feb 16.
Article in English | MEDLINE | ID: mdl-15664132

ABSTRACT

The present study examined the stability of a gene in powders prepared with supercritical carbon dioxide (CO(2)) from the viewpoints of the ternary structure of DNA and in vivo transfection potential. An aqueous chitosan-pCMV-Luc complex solution containing mannitol was injected into the stream of a supercritical CO(2)/ethanol admixture to precipitate a gene powder. The obtained gene powders and gene solutions were placed in stability chambers at 25 or 40 degrees C for 4 weeks. The integrity and transfection potency of the gene were examined by electrophoresis and in vivo pulmonary transfection study in mice. The supercritical CO(2) process decreased the supercoiled DNA during the manufacturing process; however, the decrease in the remaining supercoiled and open circular DNA in the powders during storage was much slower than that in solutions. In addition, the powders had higher transfection potency than the solutions containing the same amount of DNA. The effect of chitosan on the stability of DNA in solutions was not obvious in the solutions but it improved the stability of DNA in powders during manufacturing and storage. Thus, a gene powder with a cationic vector is a promising ready-to-use formulation for inhalation therapy of pulmonary diseases.


Subject(s)
Carbon Dioxide/chemistry , Chitosan/chemical synthesis , Chromatography, Supercritical Fluid/methods , DNA/chemical synthesis , Animals , Chemistry, Pharmaceutical , Chitosan/analysis , Chromatography, Supercritical Fluid/instrumentation , DNA/analysis , DNA/genetics , DNA, Circular/analysis , DNA, Circular/chemical synthesis , DNA, Superhelical/analysis , DNA, Superhelical/chemical synthesis , Drug Stability , Female , Mice , Mice, Inbred ICR , Plasmids/analysis , Plasmids/chemical synthesis , Plasmids/genetics , Powders
2.
J Pharm Sci ; 92(2): 371-80, 2003 Feb.
Article in English | MEDLINE | ID: mdl-12532386

ABSTRACT

Chitosan-plasmid DNA (pDNA) complex powders as a pulmonary gene delivery system were prepared with a supercritical carbon dioxide (CO(2)) process and their in vivo activity was evaluated. The powders with mannitol as a carrier were prepared by dispersing aqueous solutions of a luciferase expression plasmid driven by the cytomegalovirus promoter (pCMV-Luc) with or without chitosan as a cationic vector in a supercritical CO(2)/ethanol admixture. The supercritical CO(2) process with a V-shaped nozzle successfully produced chitosan-pDNA powders. The addition of chitosan suppressed the degradation of pCMV-Luc during the supercritical CO(2) process and increased the yield of powders. The luciferase activity in mouse lung was evaluated after pulmonary administration of the powders or pCMV-Luc solutions. The chitosan-pDNA powders increased the luciferase activity in mouse lung compared with pCMV-Luc powders without chitosan or pCMV-Luc solutions with or without chitosan. The chitosan-pDNA powder with an N/P ratio = 5 increased the luciferase activity to 2700% of that of the pCMV-Luc solution. These results suggest that gene powder with chitosan is a useful pulmonary gene delivery system.


Subject(s)
Carbon Dioxide/chemistry , Chitin/analogs & derivatives , Chitin/chemistry , DNA/administration & dosage , DNA/genetics , Gene Transfer Techniques , Lung/physiology , Plasmids/genetics , Animals , Chitosan , Cytomegalovirus/genetics , Drug Delivery Systems , Electrophoresis, Polyacrylamide Gel , Excipients , Female , Genetic Vectors , Luciferases/genetics , Mice , Mice, Inbred ICR , Microscopy, Electron, Scanning , Particle Size , Powders , Promoter Regions, Genetic/genetics , Transfection
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