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Cyclosporine a loaded solid lipid nanoparticles: optimization of formulation, process variable and characterization.

机译:环孢菌素负载的固体脂质纳米颗粒:配方,工艺变量和特性的优化。

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摘要

Solid lipid nanoparticles (SLNs) loaded with Cyclosporine A using glyceryl monostearate (GMS) and glyceryl palmitostearate (GPS) as lipid matrices were prepared by melt-homogenization using high-pressure homogenizer. Various process parameters such as homogenization pressure, homogenization cycles and formulation parameters such as ratio of drug: lipid, emulsifier: lipid and emulsifier: co-emulsifier were optimized using particle size and entrapment efficiencies as the dependent variables. The mean particle size of optimized batches of the GMS SLN and GPS SLN were found to be 131 nm and 158 nm and their entrapment efficiencies were 83 +/- 3.08% and 97 +/- 2.59% respectively. To improve the handling processing and stability of the prepared SLNs, the SLN dispersions were spray dried and its effect on size and reconstitution parameters were evaluated. The spray drying of SLNs did not significantly alter the size of SLNs and they exhibited good redispersibility. Solid state studies such as Infra Red Spectroscopy and Differential Scanning Calorimetry indicated absence of any chemical interaction between Cyclosporine A and the lipids. Scanning Electron Microscopy of optimized formulations showed spherical shape with smooth and non porous surface. In vitro release studies revealed that GMS based SLNs released the drug faster (41.12% in 20 hours) than GPS SLNs (7.958% in 20 hours). Release of Cyclosporine A from GMS SLN followed Higuchi equation better than first order while release from GPS SLN followed first order better than Higuchi model.
机译:通过使用高压均化器熔融均质化制备了使用单硬脂酸甘油酯(GMS)和棕榈硬脂酸甘油酯(GPS)作为脂质基质的,装载了环孢菌素A的固体脂质纳米颗粒(SLN)。使用粒径和截留效率作为因变量来优化各种工艺参数,例如均质压力,均质周期和配方参数(例如药物:脂质,乳化剂:脂质和乳化剂:助乳化剂的比例)。优化批次的GMS SLN和GPS SLN的平均粒径为131 nm和158 nm,其包封率分别为83 +/- 3.08%和97 +/- 2.59%。为了改善所制备的SLN的处理工艺和稳定性,将SLN分散体喷雾干燥,并评估其对尺寸和重构参数的影响。 SLN的喷雾干燥不会显着改变SLN的大小,它们表现出良好的再分散性。诸如红外光谱和差示扫描量热法等固态研究表明,环孢菌素A与脂质之间不存在任何化学相互作用。优化配方的扫描电子显微镜显示球形,表面光滑无孔。体外释放研究表明,基于GMS的SLN释放药物的速度更快(20小时为41.12%),而GPS SLN释放的速度(20小时为7.958%)。从GMS SLN释放环孢菌素A的结果要好于Higuchi方程,而从GPS SLN释放出的环孢菌素A要好于Higuchi模型。

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