The influence of supercritical carbon dioxide (SC-CO2) processing conditions on drug loading and physicochemical properties

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TY  - JOUR
  - Robert J. Ahern, Abina M. Crean, Katie B. Ryan
  - 2012
  - December
  - International Journal of Pharmaceutics
  - The influence of supercritical carbon dioxide (SC-CO2) processing conditions on drug loading and physicochemical properties
  - Published
  - ()
  - Supercritical carbon dioxide; Mesoporous silica; Dissolution enhancement; Fenofibrate; Drug-loading; Poorly-water soluble; SBA-15
  - 439
  - 1-2
  - 92
  - 99
  - Poor water solubility of drugs can complicate their commercialisation because of reduced drug oral bioavailability. Formulation strategies such as increasing the drug surface area are frequently employed in an attempt to increase dissolution rate and hence, improve oral bioavailability. Maximising the drug surface area exposed to the dissolution medium can be achieved by loading drug onto a high surface area carrier like mesoporous silica (SBA-15). The aim of this work was to investigate the impact of altering supercritical carbon dioxide (SC-CO2) processing conditions, in an attempt to enhance drug loading onto SBA-15 and increase the drug's dissolution rate. Other formulation variables such as the mass ratio of drug to SBA-15 and the procedure for combining the drug and SBA-15 were also investigated. A model drug with poor water solubility, fenofibrate, was selected for this study. High drug loading efficiencies were obtained using SC-CO2, which were influenced by the processing conditions employed. Fenofibrate release rate was enhanced greatly after loading onto mesoporous silica. The results highlighted the potential of this SC-CO2 drug loading approach to improve the oral bioavailability of poorly water soluble drugs.
  - http://dx.doi.org/10.1016/j.ijpharm.2012.09.047
DA  - 2012/12
ER  - 
@article{V176389624,
   = {Robert J. Ahern,  Abina M. Crean and  Katie B. Ryan },
   = {2012},
   = {December},
   = {International Journal of Pharmaceutics},
   = {The influence of supercritical carbon dioxide (SC-CO2) processing conditions on drug loading and physicochemical properties},
   = {Published},
   = {()},
   = {Supercritical carbon dioxide; Mesoporous silica; Dissolution enhancement; Fenofibrate; Drug-loading; Poorly-water soluble; SBA-15},
   = {439},
   = {1-2},
  pages = {92--99},
   = {{Poor water solubility of drugs can complicate their commercialisation because of reduced drug oral bioavailability. Formulation strategies such as increasing the drug surface area are frequently employed in an attempt to increase dissolution rate and hence, improve oral bioavailability. Maximising the drug surface area exposed to the dissolution medium can be achieved by loading drug onto a high surface area carrier like mesoporous silica (SBA-15). The aim of this work was to investigate the impact of altering supercritical carbon dioxide (SC-CO2) processing conditions, in an attempt to enhance drug loading onto SBA-15 and increase the drug's dissolution rate. Other formulation variables such as the mass ratio of drug to SBA-15 and the procedure for combining the drug and SBA-15 were also investigated. A model drug with poor water solubility, fenofibrate, was selected for this study. High drug loading efficiencies were obtained using SC-CO2, which were influenced by the processing conditions employed. Fenofibrate release rate was enhanced greatly after loading onto mesoporous silica. The results highlighted the potential of this SC-CO2 drug loading approach to improve the oral bioavailability of poorly water soluble drugs.}},
   = {http://dx.doi.org/10.1016/j.ijpharm.2012.09.047},
  source = {IRIS}
}
AUTHORSRobert J. Ahern, Abina M. Crean, Katie B. Ryan
YEAR2012
MONTHDecember
JOURNAL_CODEInternational Journal of Pharmaceutics
TITLEThe influence of supercritical carbon dioxide (SC-CO2) processing conditions on drug loading and physicochemical properties
STATUSPublished
TIMES_CITED()
SEARCH_KEYWORDSupercritical carbon dioxide; Mesoporous silica; Dissolution enhancement; Fenofibrate; Drug-loading; Poorly-water soluble; SBA-15
VOLUME439
ISSUE1-2
START_PAGE92
END_PAGE99
ABSTRACTPoor water solubility of drugs can complicate their commercialisation because of reduced drug oral bioavailability. Formulation strategies such as increasing the drug surface area are frequently employed in an attempt to increase dissolution rate and hence, improve oral bioavailability. Maximising the drug surface area exposed to the dissolution medium can be achieved by loading drug onto a high surface area carrier like mesoporous silica (SBA-15). The aim of this work was to investigate the impact of altering supercritical carbon dioxide (SC-CO2) processing conditions, in an attempt to enhance drug loading onto SBA-15 and increase the drug's dissolution rate. Other formulation variables such as the mass ratio of drug to SBA-15 and the procedure for combining the drug and SBA-15 were also investigated. A model drug with poor water solubility, fenofibrate, was selected for this study. High drug loading efficiencies were obtained using SC-CO2, which were influenced by the processing conditions employed. Fenofibrate release rate was enhanced greatly after loading onto mesoporous silica. The results highlighted the potential of this SC-CO2 drug loading approach to improve the oral bioavailability of poorly water soluble drugs.
PUBLISHER_LOCATION
ISBN_ISSN
EDITION
URL
DOI_LINKhttp://dx.doi.org/10.1016/j.ijpharm.2012.09.047
FUNDING_BODY
GRANT_DETAILS