Department of Chemistry, Indian Institute of Technology, Kharagpur, West Bengal 721302, India.
Int J Pharm. 2011 Apr 4;407(1-2):207-16. doi: 10.1016/j.ijpharm.2011.01.041. Epub 2011 Jan 26.
Three novel amino acid based anionic amphiphilic copolymers poly(sodium N-acryloyl-l-valinate-co-alkylacrylamide) (where, alkyl=octyl and dodecyl) with either 9 or 16 mol% hydrophobic substitution were synthesized. These hydrophobically modified polyelectrolytes (HMPs), above a critical concentration, self-assemble in aqueous solution through inter-chain hydrophobic aggregation, forming micelle-like aggregates having hydrodynamic diameter in the range of 50-200 nm. The HMPs were found to undergo conformational changes with the change in solution pH, electrolyte and additive concentration, and temperature. The polymeric micelles were observed to be stable under biological conditions (pH 7.4, [NaCl]=150 mM and temperature (37°C)). The solubilization capacity of the polymeric micelles for six important non-steroidal anti-inflammatory drugs of different hydrophobicity was evaluated. Depending upon the hydrophobicity the solubilities of the drugs were observed to increase ca. 2-10 times in the presence of 1.0 g/L copolymers. The in vitro release kinetics of the loaded drug was studied under physiological pH. To explore their potential application in pharmaceutical industries hemocompatibility and cytotoxicity studies were carried out using hemolytic and MTT assay, respectively. The anionic HMPs were found to be not directly toxic to mammalian cells.
三种新型氨基酸基阴离子两亲共聚物聚(N-丙烯酰基-L-缬氨酸-co-烷基丙烯酰胺)(其中,烷基=辛基和十二烷基),具有 9 或 16mol%的疏水性取代基被合成。这些疏水性改性聚合物电解质(HMPs)在超过临界浓度时,通过链间疏水性聚集在水溶液中自组装,形成具有 50-200nm 范围内水动力直径的胶束状聚集体。发现 HMPs 随着溶液 pH 值、电解质和添加剂浓度以及温度的变化而发生构象变化。在生理条件下(pH7.4、[NaCl]=150mM 和温度(37°C))观察到聚合物胶束稳定。评估了聚合物胶束对六种不同疏水性的重要非甾体抗炎药物的增溶能力。根据疏水性,在存在 1.0g/L 共聚物的情况下,药物的溶解度增加约 2-10 倍。在生理 pH 下研究了载药的体外释放动力学。为了探索它们在制药工业中的潜在应用,分别使用溶血和 MTT 测定法进行了血液相容性和细胞毒性研究。发现阴离子 HMPs 对哺乳动物细胞没有直接毒性。