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首页> 外文期刊>International Journal of Pharmaceutics >Development of a new approach to investigating the drug transfer from colloidal carrier systems applying lipid nanosuspension-containing alginate microbeads as acceptor
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Development of a new approach to investigating the drug transfer from colloidal carrier systems applying lipid nanosuspension-containing alginate microbeads as acceptor

机译:研究一种新的方法,研究使用脂质纳米悬浮藻酸盐微珠作为受体的胶体载体系统中的药物转移

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摘要

As a new approach to analyzing the release behavior of lipophilic drugs from colloidal carriers, solid trimyristin nanoparticles were incorporated into differently sized (34-13631 mu m) calcium alginate hydrogel microbeads to serve as acceptor in release studies. The microbeads were prepared by electrostatic droplet generation or by a spraying method. Trimyristin nanoemulsion samples loaded with the fluorescent drug model Nile red were mixed with the nanoparticle-containing microbeads to perform transfer studies. As a result of a rather large diffusion barrier a slow transfer (24-57 min) was observed using large acceptor beads (similar to 330-1360 mu m). In contrast, Nile red transferred quickly (similar to 1.4 min) into smaller microbeads (<50 mu m). This new experimental approach applying nanoparticle-containing hydrogel particles with a size below 50 pm as acceptor systems is a promising technique to investigate the release of lipophilic substances from lipid nanoparticles under close to realistic conditions. However, there is still room for technical improvement, e.g., with regard to the water loss from microbeads that was observed during sampling by centrifugation and filtration (required to separate the small sized alginate particles) which is expected to have had some effect on the dye content determined during these experiments. (C) 2015 Elsevier B.V. All rights reserved.
机译:作为分析亲脂性药物从胶体载体释放行为的一种新方法,将固态苯妥斯汀纳米颗粒掺入不同尺寸(34-13631微米)的海藻酸钙水凝胶微珠中,作为释放研究的受体。通过产生静电液滴或通过喷雾方法制备微珠。将装有荧光药物模型尼罗红的Trimyristin纳米乳液样品与含纳米颗粒的微珠混合,以进行转移研究。由于扩散屏障相当大,使用大受体珠(类似于330-1360微米)观察到了缓慢的转移(24-57分钟)。相反,尼罗红迅速(约1.4分钟)转移到较小的微珠(<50微米)中。这种新的实验方法将尺寸小于50 pm的含纳米颗粒的水凝胶颗粒用作受体系统,是一种在接近实际条件下研究脂质纳米颗粒中亲脂性物质释放的有前途的技术。但是,仍然存在技术上的改进空间,例如,在通过离心和过滤采样时观察到的微珠失水方面(需要分离小尺寸藻酸盐颗粒),这有望对染料产生一定的影响。这些实验中确定的含量。 (C)2015 Elsevier B.V.保留所有权利。

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