Submicron Particles of SBA-15 Modified with MgO as Carriers for Controlled Drug Delivery
スポンサーリンク
概要
- 論文の詳細を見る
Submicron particles with modified surface were synthesized by a simple one-pot synthesis approach and used as drug carrier for controlled release. Due to the alkalinity of MgO species on the surface, the amount of a model drug, ibuprofen, adsorbed on the modified surface was increased as compared to pure silica SBA-15 although the surface area was decreased by the surface modification. FTIR investigation indicated that the adsorption state of ibuprofen on MgO modified SBA-15 was different from that on pure silica SBA-15 and pure crystal ibuprofen. The result obtained from in vitro release test exhibited that the surface modification greatly decreased the ibuprofen release rate. In first 6h in vitro release test, only 63% of the adsorbed ibuprofen was released from the MgO/SBA-15 (Si/Mg=20). In contrast, the release of ibuprofen was complete in 1h from the pure silica SBA-15 under the same release conditions. The surface modified with MgO created affinity with acidic ibuprofen molecules and retarded the release rate from the mesoporous matrix. In addition, the release rate of ibuprofen could be modulated by varying the content of MgO, and was found to decrease with increasing amount of MgO on surface of SBA-15 submicron particles.
- 公益社団法人日本薬学会の論文
- 2007-07-01
著者
-
Tan Reginald
Institute Of Chemical And Engineering Sciences
-
CHOW Pui
Institute of Chemical and Engineering Sciences, A^*STAR (Agency for Science, Technology and Research
-
SHEN Shoucang
Institute of Chemical and Engineering Sciences
-
CHEN Fengxi
Institute of Chemical and Engineering Sciences
-
Chow Pui
Institute Of Chemical And Engineering Sciences
関連論文
- Impurity Effects on the Growth of Molecular Crystals : Experiments and Modeling
- Submicron Particles of SBA-15 Modified with MgO as Carriers for Controlled Drug Delivery