Gujarat Forensic Sciences University, Institute of Research and Development, Gandhinagar, Gujarat, India.
Pharm Dev Technol. 2013 May-Jun;18(3):582-90. doi: 10.3109/10837450.2011.635150. Epub 2011 Nov 22.
The present paper describes an in silico solubility behavior of drug and lipids, an essential screening study in preparation of solid lipid nanoparticles (SLN).
Ciprofloxacin HCl was selected as a model drug along with 11 lipids and 5 organic solvents. In silico miscibility study of drug/lipid/solvent was performed using Hansen solubility parameter approach calculated by group contribution method of Van Krevelen and Hoftyzer. Predicted solubility was validated by determining solubility of lipids in various solvent at different temperature range, while miscibility of drug in lipids was determined by apparent solubility study and partition experiment.
The presence of oxygen and OH functionality increases the polarity and hydrogen bonding possibilities of the compound which has reflected the highest solubility parameter values for Geleol and Capmul MCM C8. Ethyl acetate, Geleol and Capmul MCM C8 was identified as suitable organic solvent, solid lipid and liquid lipid respectively based on a solubility parameter approach which was in agreement with the result of an apparent solubility study and partition coefficient.
These works demonstrate the validity of solubility parameter approach and provide a feasible predictor to the rational selection of excipients in designing SLN formulation.
本文描述了药物和脂质的计算溶解度行为,这是制备固体脂质纳米粒(SLN)的必要筛选研究。
选择环丙沙星盐酸盐作为模型药物,同时选择了 11 种脂质和 5 种有机溶剂。通过 Van Krevelen 和 Hoftyzer 的基团贡献法计算的 Hansen 溶解度参数方法,对药物/脂质/溶剂的混合进行了计算研究。通过在不同温度范围内测定脂质在各种溶剂中的溶解度来验证预测的溶解度,而药物在脂质中的混合度则通过表观溶解度研究和分配实验来确定。
化合物中氧和 OH 官能团的存在增加了化合物的极性和氢键可能性,这反映了 Geleol 和 Capmul MCM C8 的最高溶解度参数值。根据溶解度参数方法,乙酸乙酯、Geleol 和 Capmul MCM C8 分别被鉴定为合适的有机溶剂、固体脂质和液体脂质,这与表观溶解度研究和分配系数的结果一致。
这些工作证明了溶解度参数方法的有效性,并为合理选择设计 SLN 制剂的赋形剂提供了一种可行的预测方法。