负载阿立哌唑聚合物胶束:制备、优化及响应面法评价。

Q3 Pharmacology, Toxicology and Pharmaceutics
Payal H Patil, Pooja R Wankhede, Hitendra S Mahajan, Laxmikant R Zawar
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引用次数: 12

摘要

目的与背景:本研究的基本目的是将阿立哌唑(ARP)包封在Pluronic F127胶束内,以提高其水溶性。最近的阿立哌唑专利(JP2013136621)和胶束专利(WO2016004369A1)促进了药物和聚合物的选择。材料与方法:采用薄膜水化技术制备载药胶束。采用响应面法(RSM)对胶束配方进行优化。发现Pluronic F127的浓度为150 mg,旋转蒸发器的转速为75 rpm,是制备胶束的最佳条件。结果:对制备的样品进行了PDI(多分散指数)、zeta电位、% DLC(载药量%)、% EE(包封效率%)和%释药研究;结果表明,这些参数分别为0.228、-4.04 mV、76.50%和18.56%。体外释放研究发现,20h后,药物的胶束释放率为97.37±1.81%,约为纯药的3倍。采用DSC(差示扫描比色法)、FT-IR(傅里叶变换红外光谱)、P-XRD(粉末x射线衍射研究)和TEM(透射电子显微镜)对优化后的ARP胶束配方进行了表征。动态光散射和透射电镜研究表明,负载arp胶束的水动力直径为170.3 nm,形貌为球形。结论:所制备的聚合物胶束体系具有良好的潜力,可作为阿立哌唑的增溶性递送载体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aripiprazole-Loaded Polymeric Micelles: Fabrication, Optimization and Evaluation using Response Surface Method.

Aims and background: The fundamental objective of current study was to encapsulate Aripiprazole (ARP) within Pluronic F127 micelles to improve its aqueous solubility. The recent patents on Aripiprazole (JP2013136621) and micelles (WO2016004369A1) facilitated selection of drug and polymer.

Materials and methods: The drug-laden micelles were fabricated using thin-film hydration technique. Optimization of the micellar formulation was done by using response surface method (RSM). The Pluronic F127 concentration of 150 mg and 75 rpm rotational speed of rotary evaporator were found to be optimized conditions for formulating micelles.

Results: The prepared batches were further characterized for PDI (polydispersity index), zeta potential, % DLC (% Drug loading content), % EE (% Entrapment Efficiency) and % drug release study; results of these parameters were found to be 0.228, -4.04 mV and 76.50 % and 18.56 % respectively. It was observed from the In vitro release study that 97.37 ± 1.81 % drug had released from micelles after 20h which were found about thrice as compared to that of pure drug. The optimized ARP micellar formulation was characterized using DSC (Differential Scanning Colorimetry), FT-IR (Fourier Transformed Infrared Spectroscopy), P-XRD (Powdered X-ray Diffraction Study) and TEM (Transmission Electronic Microscopy) studies. ARP-loaded micelles displayed a hydrodynamic diameter of 170.3 nm and a sphere-shaped morphology as determined by dynamic light scattering as well as TEM study.

Conclusion: It is concluded that the prepared polymeric micellar system has an excellent potential to be used as a delivery carrier for Aripiprazole with increased solubility.

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来源期刊
Recent Patents on Drug Delivery and Formulation
Recent Patents on Drug Delivery and Formulation Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
2.30
自引率
0.00%
发文量
0
期刊介绍: Recent Patents on Drug Delivery & Formulation publishes review and research articles, drug clinical trial studies and guest edited thematic issues on recent patents on drug delivery and formulation. A selection of important and recent patents on drug delivery and formulation is also included in the journal. The journal is essential reading for all researchers involved in the fields of drug delivery and formulation. The journal also covers recent research (where patents have been registered) in fast emerging therapeutic areas/targets & therapeutic agents related to drug delivery and formulations.
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