University Institute of Pharmaceutical Sciences, UGC Centre of Advanced Studies, Panjab University, Chandigarh, India.
Colloids Surf B Biointerfaces. 2013 Jan 1;101:465-74. doi: 10.1016/j.colsurfb.2012.07.017. Epub 2012 Jul 21.
The current studies entail a novel approach of formulating the solid self-nanoemulsifying drug delivery systems (S-SNEDDS) of carvedilol solely using rational blends of lipidic and emulsifying excipients without using equipment-intensive techniques and/or inert porous carriers. Delineating the nanoemulsion regions, the amounts of Capmul MCM (i.e., lipid) and Nikkol HCO 50 (i.e., emulgent) were selected as the critical factors for systematically formulating the optimized S-SNEDDS employing face centered cube design. The optimized formulation (mean globule size: 40.8 nm) indicated marked improvement in drug release profile vis-à-vis pure drug and marketed formulation. Augmentation in the values of C(max) (134.2%) and AUC (85.2%) indicated significant enhancement in the rate and extent of bioavailability by the S-SNEDDS formulation compared to pure drug. In situ SPIP studies ascribed the significant enhancement in absorptivity parameters of SNEDDS formulations to transport through the lymphatic system and reduced P-gp efflux. Successful establishment of various levels of in vitro/in vivo correlations (IVIVC's) substantiated the judicious choice of the in vitro dissolution milieu for simulating the in vivo conditions. The optimized formulation was found to be quite stable during six months of study period. The current investigations, therefore, report the successful development of systematically optimized S-SNEDDS with enhanced bioavailability potential of carvedilol.
当前的研究采用了一种新颖的方法来制备卡维地洛的固体自微乳给药系统(S-SNEDDS),仅使用合理的脂质和乳化赋形剂混合物,而不使用设备密集型技术和/或惰性多孔载体。通过描绘纳米乳液区域,选择 Capmul MCM(即脂质)和 Nikkol HCO 50(即乳化剂)的用量作为使用面心立方设计系统地制备优化的 S-SNEDDS 的关键因素。优化的配方(平均粒径:40.8nm)表明,与纯药物和市售制剂相比,药物释放曲线有明显改善。C(max)(134.2%)和 AUC(85.2%)值的增加表明,与纯药物相比,S-SNEDDS 配方显著提高了生物利用度的速率和程度。原位 SPIP 研究将 SNEDDS 配方吸收参数的显著增强归因于通过淋巴系统的转运和减少 P-糖蛋白的外排。成功建立了各种体外/体内相关性(IVIVC)水平,证实了选择体外溶解环境来模拟体内条件的合理性。在六个月的研究期间,优化的配方被发现相当稳定。因此,本研究报告了成功开发具有增强的卡维地洛生物利用度潜力的系统优化的 S-SNEDDS。