Alonso M J, García M L, Espina M, Valls O, Egea M A
Department of Physicochemistry, Faculty of Pharmacy, University of Barcelona, Spain.
Boll Chim Farm. 2000 May-Jun;139(3):114-9.
The physicochemical properties of aceclofenac nanocapsules, prepared by interfacial precipitation of poly-e-caprolactone at the oil/water interface, have been studied. A Central Composite Design was used to investigate the influence of polymerization adjuvants on these properties on the elaboration of aceclofenac-loaded poly-e-caprolactone nanocapsules. In this way, the effect of polymer, oil and drug concentrations in organic phase on the size and encapsulation efficiency has been analyzed. The optimized nanocapsule formulation leads to use an initial concentration of drug (aceclofenac) of 0.8 mg/ml and 0.6% of oil (Miglyol 812), being the polymer and surfactant concentrations previously fixed.
通过在油/水界面处聚己内酯的界面沉淀法制备的醋氯芬酸纳米胶囊的物理化学性质已得到研究。采用中心复合设计来研究聚合助剂对这些性质在制备载醋氯芬酸聚己内酯纳米胶囊过程中的影响。通过这种方式,分析了有机相中聚合物、油和药物浓度对粒径和包封率的影响。优化后的纳米胶囊制剂在聚合物和表面活性剂浓度预先固定的情况下,使用初始药物(醋氯芬酸)浓度为0.8 mg/ml和0.6%的油(Miglyol 812)。