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Formulation optimization of scutellarin-loaded HP-β-CD/chitosan nanoparticles using response surface methodology with Box–Behnken design

机译:使用Box-Behnken设计的响应面方法优化了加载了黄cut素的HP-β-CD/壳聚糖纳米颗粒的配方优化

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Abstract The aim of this paper is to investigate and optimize the preparation of scutellarin (SCU)-loaded HP-β-CD/chitosan (CS) nanoparticles (CD/CS-SCU-NPs). CD/CS-SCU-NPs were prepared by ionic cross-linking method and the process and formulation variables were optimized using response surface methodology (RSM) with a three-level, three factor Box–Behnken design (BBD). The independent variables were the added amounts of CS, sodium tripolyphosphate (TPP) and Pluronic F-68 during the preparation. Dependent variables (responses) were particle size and entrapment efficiency. Mathematical equations and respond surface plots were used to correlate independent and dependent variables. The preparation process and formulation variables were optimized to achieve minimum particle size and maximum entrapment efficiency by calculating the overall desirability value (OD). The optimized {NP} formulation was characterized for particle size, PDI, zeta potential, entrapment efficiency and in vitro drug release. According to the results, an optimized CD/CS-SCU-NP formulation was prepared. Results for particle size, PDI, zeta potential and entrapment efficiency were found to be around 200?nm, 0.5, 25?mV, and 70% respectively. For in vitro study, the release of {SCU} from the {NPs} exhibited a biphasic release and was in accordance with Higuchi equation. The optimized preparation was simple with the probability for industrialization. The combination use of RSM, {BBD} and overall desirability values could provide a promising application for incorporating {CD} into {CS} nanoparticles as drug delivery carrier and help develop lab-scale procedures.
机译:摘要本文旨在研究和优化负载黄cut素(SCU)的HP-β-CD/壳聚糖(CS)纳米粒子(CD / CS-SCU-NPs)的制备。 CD / CS-SCU-NPs采用离子交联法制备,工艺和配方变量采用响应面方法(RSM)和三级三因素Box-Behnken设计(BBD)进行优化。自变量是在制备过程中CS,三聚磷酸钠(TPP)和Pluronic F-68的添加量。因变量(响应)为粒径和截留效率。使用数学方程式和响应曲面图来关联独立变量和因变量。通过计算总体期望值(OD),优化了制备过程和配方变量,以实现最小粒度和最大包封效率。优化的{NP}配方的特征在于粒径,PDI,ζ电位,包封效率和体外药物释放。根据结果​​,制备了优化的CD / CS-SCU-NP制剂。粒径,PDI,ζ电势和截留效率的结果分别约为200?nm,0.5、25?mV和70%。对于体外研究,{NPs}中{SCU}的释放表现出双相释放,并且符合Higuchi方程。优化的制备很简单,并且具有工业化的可能性。 RSM,{BBD}和总体期望值的组合使用可以为将{CD}掺入{CS}纳米粒子中作为药物输送载体提供有前途的应用,并有助于开发实验室规模的程序。

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