| Literature DB >> 26163764 |
Jing Li1, Lu Xu1, Baixue Yang1, Hongyu Wang1, Zhihong Bao1, Weisan Pan1, Sanming Li2.
Abstract
The present paper reported amino group functionalized anionic surfactant templated mesoporous silica (Amino-AMS) for loading and release of poorly water-soluble drug indomethacin (IMC) and carboxyl group functionalized cationic surfactant templated mesoporous silica (Carboxyl-CMS) for loading and release of poorly water-soluble drug famotidine (FMT). Herein, Amino-AMS and Carboxyl-CMS were facilely synthesized using co-condensation method through two types of silane coupling agent. Amino-AMS was spherical nanoparticles, and Carboxyl-CMS was well-formed spherical nanosphere with a thin layer presented at the edge. Drug loading capacity was obviously enhanced when using Amino-AMS and Carboxyl-CMS as drug carriers due to the stronger hydrogen bonding force formed between surface modified carrier and drug. Amino-AMS and Carboxyl-CMS had the ability to transform crystalline state of loaded drug from crystalline phase to amorphous phase. Therefore, IMC loaded Amino-AMS presented obviously faster release than IMC because amorphous phase of IMC favored its dissolution. The application of asymmetric membrane capsule delayed FMT release significantly, and Carboxyl-CMS favored sustained release of FMT due to its long mesoporous channels and strong interaction formed between its carboxyl group and amino group of FMT.Entities:
Keywords: Amine modification; Carboxylic modification; Drug incorporation; Ionic surfactant template; Mesoporous silica
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Year: 2015 PMID: 26163764 DOI: 10.1016/j.ijpharm.2015.07.014
Source DB: PubMed Journal: Int J Pharm ISSN: 0378-5173 Impact factor: 5.875