University Institute of Pharmaceutical Sciences (UGC Centre of Advanced Studies), Panjab University, Chandigarh 160014, India.
Colloids Surf B Biointerfaces. 2012 Dec 1;100:50-61. doi: 10.1016/j.colsurfb.2012.05.019. Epub 2012 May 24.
The objective of the current work is to develop systematically optimized self-nanoemulsifying drug delivery systems (SNEDDS) using long chain triglycerides (LCT's) and medium chain triglycerides (MCT's) of ezetimibe employing Formulation by Design (FbD), and evaluate their in vitro and in vivo performance. Equilibrium solubility studies indicated the choice of Maisine 35-1 and Capryol 90 as lipids, and of Labrasol and Tween 80 as emulgents for formulating the LCT and MCT systems, respectively. Ternary phase diagrams were constructed to select the areas of nanoemulsion, and the amounts of lipid (X(1)) and emulgent (X(2)) as the critical factor variables. The SNEDDS were systematically optimized using 3(2) central composite design and the optimized formulations located using overlay plot. TEM studies on reconstituted SNEDDS demonstrated uniform shape and size of globules. The nanometer size range and high negative values of zeta potential depicted non-coalescent nature of the optimized SNEDDS. Thermodynamic studies, cloud point determination and accelerated stability studies ascertained the stability of optimized formulations. In situ perfusion (SPIP) studies in Sprague Dawley (SD) rats construed remarkable enhancement in the absorptivity and permeability parameters of SNEDDS vis-à-vis the conventional marketed product. In vivo pharmacodynamic studies in SD rats indicated significantly superior modification in plasma lipid levels of optimized SNEDDS vis-à-vis marketed product, inclusion complex and pure drug. The studies, therefore, indicate the successful formulation development of self-nanoemulsifying systems with distinctly improved bioavailability potential of ezetimibe.
本研究旨在通过设计(FbD)开发出具有系统优化的自微乳释药系统(SNEDDS),以长链甘油三酯(LCT)和中链甘油三酯(MCT)作为依泽替米贝的载体,并评价其体外和体内性能。平衡溶解度研究表明,选择 Maisine 35-1 和 Capryol 90 作为脂质,选择 Labrasol 和 Tween 80 作为乳化剂,分别用于 LCT 和 MCT 系统的配方。通过构建三元相图来选择纳米乳区域,并将脂质(X(1))和乳化剂(X(2))的量作为关键因素变量。通过 3(2)中心组合设计对 SNEDDS 进行系统优化,并使用叠加图选择优化配方。对重组 SNEDDS 的 TEM 研究表明,液滴形状和大小均匀。纳米尺寸范围和高负值的 Zeta 电位表明优化的 SNEDDS 具有非聚结性质。热力学研究、浊点测定和加速稳定性研究证实了优化配方的稳定性。在 Sprague Dawley(SD)大鼠中的原位灌流(SPIP)研究表明,与传统市售产品相比,SNEDDS 的吸收性和通透性参数显著增强。在 SD 大鼠中的体内药效学研究表明,与市售产品、包合物和纯药物相比,优化的 SNEDDS 能显著改善血浆脂质水平。因此,这些研究表明成功开发了具有明显改善依泽替米贝生物利用度潜力的自微乳释药系统。