Li Zhu-Zhu, Wen Li-Xiong, Shao Lei, Chen Jian-Feng
Key Lab for Nanomaterials, Ministry of Education, Research Center of the Ministry of Education for High Gravity Engineering and Technology, Beijing University of Chemical Technology, Beijing 100029, China.
J Control Release. 2004 Aug 11;98(2):245-54. doi: 10.1016/j.jconrel.2004.04.019.
Preparation and characterization of porous hollow silica nanoparticles (PHSN) for controlled release applications were investigated. Through orthogonally designed experiments, the optimal synthesis conditions for the preparation of PHSN were obtained and the produced PHSN were characterized by BET, SEM, TEM and IR. Scanning and transmission electron microscopy images revealed their hollow shell-core structure and also demonstrated that the size and shape of PHSN are determined by the templating CaCO3 nanoparticles. The produced PHSN were applied as a carrier to study the controlled release behaviors of Brilliant Blue F (BB), which was used as a model drug. Being loaded into the inner core and on the surfaces of the nanoparticles, BB was released slowly into a bulk solution for about 1140 min as compared to only 10 min for the normal SiO2 nanoparticles, thus exhibited a typical sustained release pattern without any burst effect. In addition, higher BET of the carriers, lower pH value and lower temperature prolonged BB release from PHSN, while stirring speed showed little influence on the release behavior. It showed that PHSN have a promising future in controlled drug delivery applications.
研究了用于控释应用的多孔中空二氧化硅纳米颗粒(PHSN)的制备及表征。通过正交设计实验,获得了制备PHSN的最佳合成条件,并通过BET、SEM、TEM和IR对所制备的PHSN进行了表征。扫描和透射电子显微镜图像揭示了它们的中空核壳结构,还表明PHSN的尺寸和形状由模板碳酸钙纳米颗粒决定。所制备的PHSN被用作载体来研究作为模型药物的亮蓝F(BB)的控释行为。BB被负载到纳米颗粒的内核和表面,与普通二氧化硅纳米颗粒仅10分钟相比,BB在大约1140分钟内缓慢释放到本体溶液中,从而呈现出典型的缓释模式且无任何突释效应。此外,载体的BET越高、pH值越低和温度越低,BB从PHSN中的释放时间越长,而搅拌速度对释放行为影响很小。结果表明,PHSN在控释药物递送应用中具有广阔的前景。