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评估用于姜黄素纳米颗粒生产的受限冲击射流混合器和多入口涡旋混合器的相对性能。

Assessment of the relative performance of a confined impinging jets mixer and a multi-inlet vortex mixer for curcumin nanoparticle production.

作者信息

Chow Shing Fung, Sun Changquan Calvin, Chow Albert Hee Lum

机构信息

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

Department of Pharmaceutics, College of Pharmacy, University of Minnesota, Minneapolis, MN, USA.

出版信息

Eur J Pharm Biopharm. 2014 Oct;88(2):462-71. doi: 10.1016/j.ejpb.2014.07.004. Epub 2014 Jul 10.

Abstract

The relative performance of two specially designed mixers for nanoparticle production, namely, two-stream confined impinging jets with dilution mixer (CIJ-D-M) and four-stream multi-inlet vortex mixer (MIVM), was evaluated using the model compound, curcumin (CUR), under defined conditions of varying mixing rate and organic solvent. In the absence of turbulent fluctuations, higher mixing rate tended to generate finer particles. Among the three water-miscible organic solvents tested, acetone afforded the smallest particle size and the narrowest particle size distribution. Both mixers were capable of reproducibly fabricating CUR nanoparticles with particle size below 100 nm and high encapsulation efficiency (>99.9%). Specifically, CIJ-D-M yielded nanoparticles with smaller size and polydispersity index while the particles obtained by the MIVM displayed better short-term stability. In addition, CIJ-D-M tended to produce a mixture of irregular nanoaggregates and primary nanoparticles while roughly spherical nanoparticles were generated with the MIVM. The observed particle size and morphological differences could be attributed to the differences in the configuration of the mixing chamber and the related mixing order.

摘要

在不同混合速率和有机溶剂的特定条件下,使用模型化合物姜黄素(CUR)评估了两种专门设计用于纳米颗粒生产的混合器的相对性能,即带稀释混合器的双流受限撞击射流混合器(CIJ-D-M)和四流多入口涡旋混合器(MIVM)。在没有湍流波动的情况下,较高的混合速率倾向于产生更细的颗粒。在所测试的三种与水混溶的有机溶剂中,丙酮产生的颗粒尺寸最小,粒径分布最窄。两种混合器都能够可重复地制备粒径低于100 nm且包封效率高(>99.9%)的CUR纳米颗粒。具体而言,CIJ-D-M产生的纳米颗粒尺寸和多分散指数较小,而通过MIVM获得的颗粒显示出更好的短期稳定性。此外,CIJ-D-M倾向于产生不规则纳米聚集体和初级纳米颗粒的混合物,而MIVM产生的是大致球形的纳米颗粒。观察到的粒径和形态差异可归因于混合腔室结构和相关混合顺序的差异。

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