Wang Hai-Yuan, Zhou Fang, Yu Meng-Meng, Jin Xing-Hua
School of Pharmaceutical Science and Technology, Tianjin University, Tianjin 300072, China.
Zhongguo Zhong Yao Za Zhi. 2016 Aug;41(15):2809-2813. doi: 10.4268/cjcmm20161510.
The hollow mesoporous silica nanoparticles (HMSNs) were prepared by hard template method, with a size of 300 nm and shell thickness of 25 nm. Borneol was loaded with solvent impregnation method in order to solve the stability problem of borneol in pharmaceutics, and the BET, TEM and FT-IR were used to characterize the HMSNs and the borneol-HMSNs drug delivery system. The optimal drug loading time, maximum drug loading capacity and the volatility of borneol were investigated. The results showed that HMSNs which were prepared at room temperature and neutral conditions had good sphericity, achieved high drug loading of borneol in a short time, and the drug loading was up to 74.04% within 6 hours; meanwhile, volatility of borneol in the system was greatly improved. This novel drug delivery system provides a new idea for wide application of borneol in the traditional Chinese medicine.
采用硬模板法制备了中空介孔二氧化硅纳米粒子(HMSNs),其尺寸为300 nm,壳层厚度为25 nm。为解决冰片在药剂学中的稳定性问题,采用溶剂浸渍法负载冰片,并利用BET、TEM和FT-IR对HMSNs及冰片-HMSNs药物递送系统进行表征。考察了最佳载药时间、最大载药量及冰片的挥发性。结果表明,在室温及中性条件下制备的HMSNs具有良好的球形度,能在短时间内实现冰片的高载药率,6小时内载药量可达74.04%;同时,系统中冰片的挥发性得到了极大改善。这种新型药物递送系统为冰片在中药中的广泛应用提供了新思路。