首页> 外文期刊>Journal of biomedical nanotechnology >Optimized Preparation of Celastrol-Loaded Polymeric Nanomicelles Using Rotatable Central Composite Design and Response Surface Methodology
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Optimized Preparation of Celastrol-Loaded Polymeric Nanomicelles Using Rotatable Central Composite Design and Response Surface Methodology

机译:可旋转中央复合材料设计和响应面方法优化制备天甾醇型聚合物纳米粒的制备

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摘要

Celastrol has been found to be a potent anti-inflammatory and antitumor plant derivative recently. Herein we established an accurate reverse phase HPLC (RP-HPLC) determination method of celastrol, and prepared an effective nanoscale drug delivery system from the optimized formulations of celastrol-loaded carboxyl functioned poly(ethylene glycol)-b/ock-poly(propylene glycol)-blockpoly(ethylene glycol)(PEO-block-PPO-block-PEO, Pluronic) polymeric nanomicelles. Rotatable central composite design (RCCD) and response surface methodology (RSM) were applied to improve the celastrol entrapment efficiency (EE), drug loading percentage (DLP), and decrease the particle size. The characteristics of the optimized micelles including particle size distribution, morphology, zeta potential and in vitro release of celastrol from micelles were carried out. Results showed that RP-HPLC method was successfully applied to detect and qualify the celastrol. The drug quantification range of the method was 20-200 μg/mL with a linear correlation coefficient of greater than 0.999. The average accuracy (99.763%), the precision (0.521%) and recovery (99.63%) for this method were good. The optimal conditions for the preparation of celastrol-loaded polymeric nanomicelles were found to be: the celastrol/polymer weight ratio 8.5-9 mg/25 mg, hydration volume 11-17 mL. Under the optimal conditions, the EE was 100.3 ± 4.3%, DLP was 22.8 ± 1.0%, the average particle size was 117.3 ± 1.27 nm and the zeta potential was -2.19±0.15 mV. Transmission electron micrograph (TEM) showed the micelles to be oval and rodlike shaped, with mean diameter around 20 nm. The in vitro experiments proved that celastrol in polymeric nanomicelles released gradually over the period of 24 h. These results showed that the RCCD and RSM could efficiently be applied for optimized preparation of celastrol-loaded polymeric nanomicelles.
机译:最近发现Celastrol是一种有效的抗炎和抗肿瘤植物衍生物。在此,我们建立了准确的反相高效液相色谱(RP-HPLC)测定Celastrol的方法,并从优化的Celastrol负载羧基官能化聚乙二醇-b / ock-poly(丙二醇)配方中制备了有效的纳米级药物输送系统。嵌段聚(乙二醇)(PEO-嵌段-PPO-嵌段-PEO,Pluronic)聚合物纳米胶束。应用可旋转的中央复合材料设计(RCCD)和响应表面方法(RSM)来提高天体的包封效率(EE),药物载量百分比(DLP)和减小粒径。进行了优化的胶束的特性,包括粒径分布,形态,ζ电势和从胶束中释放出天青醇。结果表明,RP-HPLC方法已成功应用于西芹菜的检测和鉴定。该方法的药物定量范围为20-200μg/ mL,线性相关系数大于0.999。该方法的平均准确度(99.763%),准确度(0.521%)和回收率(99.63%)都很好。发现制备负载有天冬氨酸的聚合物纳米胶束的最佳条件是:天冬酰胺/聚合物的重量比为8.5-9 mg / 25 mg,水合体积为11-17 mL。在最佳条件下,EE为100.3±4.3%,DLP为22.8±1.0%,平均粒径为117.3±1.27 nm,ζ电位为-2.19±0.15 mV。透射电子显微镜(TEM)显示,胶束为椭圆形和棒状,平均直径约为20 nm。体外实验证明,聚合物纳米胶束中的Celastrol在24小时内逐渐释放。这些结果表明,RCCD和RSM可以有效地用于优化的制备以Celastrol负载的聚合物纳米胶束的制备。

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