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通过快速纳米沉淀和冻干法制备高度稳定的姜黄素纳米颗粒

Development of highly stabilized curcumin nanoparticles by flash nanoprecipitation and lyophilization.

作者信息

Chow Shing Fung, Wan Ka Yee, Cheng Kwok Kin, Wong Ka Wai, Sun Changquan Calvin, Baum Larry, Chow Albert Hee Lum

机构信息

School of Pharmacy, The Chinese University of Hong Kong, Sha Tin, Hong Kong; Research & Development Department, Jacobson Group Management Limited, Kwun Tong, Hong Kong.

School of Pharmacy, The Chinese University of Hong Kong, Sha Tin, Hong Kong.

出版信息

Eur J Pharm Biopharm. 2015 Aug;94:436-49. doi: 10.1016/j.ejpb.2015.06.022. Epub 2015 Jul 2.

Abstract

The influence of critical operating parameters on the Flash Nanoprecipitation (FNP) and resulting material properties of curcumin (CUR) nanoparticles has been evaluated using a confined impinging jets-with-dilution mixer (CIJ-D-M). It has been shown that the mixing rate, molecular weight of polymeric stabilizer (i.e., polyethylene glycol-b-poly(dl-lactide) di-block copolymer; PEG-PLA) and drug-to-copolymer mass ratio all exert a significant impact on the particle size and stability of the generated nanosuspensions. The attainable mean particle size and span of the nanoparticles through optimization of these process parameters were approximately 70nm and 0.85 respectively. However, the optimized nanosuspension was only stable for about two hours after preparation. Co-formulation with polyvinylpyrrolidone (PVP) substantially extended the product lifespan to 5days at ambient conditions and two weeks at 4°C. Results from zeta potential measurement and X-ray photoelectron spectroscopy (XPS) suggested that the enhanced stability is probably due to the formation of an additional protective barrier by PVP around the particle surface, thereby suppressing the dissociation of PEG-PLA from the particles and preventing CUR leakage from inside. Long-term storage stability (>1year) could be achieved by lyophilization of the optimized nanosuspension with Kleptose (hydroxypropyl-β-cyclodextrin), which was shown to be the only effective lyoprotectant among all the ones tested for the CUR nanoparticles. At an optimal concentration of Kleptose (1.25% w/v), the redispersibility (Sf/Si; ratio of the final and initial particle sizes) and encapsulation efficiency of lyophilized CUR nanoparticles were about 1.22% and 94%, respectively.

摘要

使用带稀释混合器的受限撞击射流(CIJ-D-M)评估了关键操作参数对姜黄素(CUR)纳米颗粒的闪蒸纳米沉淀(FNP)及所得材料特性的影响。结果表明,混合速率、聚合物稳定剂(即聚乙二醇-b-聚(dl-丙交酯)二嵌段共聚物;PEG-PLA)的分子量以及药物与共聚物的质量比均对所生成纳米悬浮液的粒径和稳定性产生重大影响。通过优化这些工艺参数,纳米颗粒可达到的平均粒径和跨度分别约为70nm和0.85。然而,优化后的纳米悬浮液在制备后仅稳定约两小时。与聚乙烯吡咯烷酮(PVP)共配制可在环境条件下将产品寿命大幅延长至5天,在4°C下延长至两周。ζ电位测量和X射线光电子能谱(XPS)结果表明,稳定性增强可能是由于PVP在颗粒表面形成了额外的保护屏障,从而抑制了PEG-PLA从颗粒上解离,并防止CUR从内部泄漏。通过用Kleptose(羟丙基-β-环糊精)冻干优化后的纳米悬浮液可实现长期储存稳定性(>1年),在所有测试的用于CUR纳米颗粒的冻干保护剂中,Kleptose被证明是唯一有效的冻干保护剂。在Kleptose的最佳浓度(1.25% w/v)下,冻干CUR纳米颗粒的再分散性(Sf/Si;最终粒径与初始粒径之比)和包封效率分别约为1.22%和94%。

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