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首页> 外文期刊>Materials science & engineering >Optimization by design of etoposide loaded solid lipid nanoparticles for ocular delivery: Characterization, pharmacokinetic and deposition study
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Optimization by design of etoposide loaded solid lipid nanoparticles for ocular delivery: Characterization, pharmacokinetic and deposition study

机译:依托泊苷负载固体脂质纳米粒子设计优化,用于眼部递送:表征,药代动力学和沉积研究

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摘要

The present study was to develop etoposide loaded solid lipid nanoparticles (SLN) and optimize it for effective ocular delivery to the posterior eye. SLN were prepared by melt-emulsification and ultrasonication technique. Etoposide loaded SLN were optimized by using three-factor three levels Box-Behnken design to establish the functional relationships between variables on responses of particle size, polydispersity index (PDI) and entrapment efficiency (EE). SLN were characterized for size & surface morphology, entrapment efficiency and in vitro release. Further the pharmacokinetic study of optimized formulation after intravitreal administration was evaluated in Wister rats. The deposition in the ocular tissues was checked by scintigraphic analysis in Albino rabbits. Histology was also done to evaluate morphological changes if any occur after treatment. The particle size, PDI and EE obtained for the optimized formulation (Z15) were 239.43 +/- 2.35 nm, 0.261 +/- 0.001 and 80.96 +/- /21% respectively. Single intravitreal administrations of SLN were able to give sustained etoposide concentration in the vitreous for 7 consecutive days which was also supported by the results of Gamma scintigraphic study. Histology of posterior ocular tissues do not showed any serious toxic effect. Therefore it can concluded that etoposide loaded SLN was able to maintain vitreous concentration of drug without any serious toxic effect to the surrounding ocular tissues after an intravitreous administration in rat eye.
机译:本研究是为了开发依托普肽负载的固体脂质纳米颗粒(SLN),并优化其用于后眼睛的有效眼部递送。通过熔融乳化和超声波技术制备SLN。通过使用三因素三级Box-Behnken设计优化了依托磷脂的SLN,以建立粒度响应的变量与熵效率(EE)的变量之间的功能关系。 SLN的特征在于尺寸和表面形态,夹带效率和体外释放。进一步在玻璃体施用后优化配方的药代动力学研究在Wister大鼠中评估。通过白化兔子的闪烁症分析检查眼组织中的沉积。如果在治疗后发生任何发生,也进行了组织学,以评估形态学。优化配方(Z15)获得的粒度,PDI和EE分别为239.43 +/- 2.35nm,0.261 +/- 0.001和80.96 +/- / 21%。 SLN的单人玻璃体内施用能够在玻璃体中持续持续渗透渗透素浓度,连续7天也得到伽马闪烁研究结果的支持。后眼部组织的组织学没有显示出任何严重的毒性效果。因此,可以得出结论,依托泊苷负载的SLN能够在大鼠静脉内给药后对周围眼组织的玻璃体浓度而没有对周围的眼组织的任何严重毒性作用。

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