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使用原子力显微镜监测水性聚合物分散体中的薄膜聚结:表面形貌和纳米粘附研究。

Monitoring film coalescence from aqueous polymeric dispersions using atomic force microscopy: Surface topographic and nano-adhesion studies.

作者信息

Yang Ziyi, Craig Duncan Q M

机构信息

School of Pharmaceutical Science, Jiangnan University, 1800 Lihu Road, Wuxi 214122, China.

UCL School of Pharmacy, 29-39 Brunswick Square, London WC1N1AX, UK.

出版信息

Asian J Pharm Sci. 2020 Jan;15(1):104-111. doi: 10.1016/j.ajps.2018.09.008. Epub 2018 Nov 3.

Abstract

The aim of the investigation was to develop the use of topographic and nano-adhesion atomic force microscopy (AFM) studies as a means of monitoring the coalescence of latex particles within films produced from a pharmaceutically relevant aqueous dispersion (EudragitNE30D). Films were prepared via spin coating and analysed using AFM, initially via tapping mode for topographic assessment followed by force-distance measurements which allowed assessment of site-specific adhesion. The results showed that colloidal particles were clearly observed topographically in freshly prepared samples, with coalescence detected on curing via the disappearance of discernible surface features and a decrease in roughness indices. The effects of temperature and humidity on film curing were also studied, with the former having the most pronounced effect. AFM force measurements showed that the variation in adhesive force reduced with increasing curing time, suggesting a novel method of quantifying the rate of film formation upon curing. It was concluded that the AFM methods outlined in this study may be used as a means of qualitatively and quantitatively monitoring the curing of pharmaceutical films as a function of time and other variables, thereby facilitating rational design of curing protocols.

摘要

本研究的目的是开发使用形貌和纳米粘附力原子力显微镜(AFM)研究,作为监测由药学相关水分散体(EudragitNE30D)制成的薄膜中乳胶颗粒聚结的一种手段。通过旋涂制备薄膜,并使用AFM进行分析,最初通过轻敲模式进行形貌评估,然后进行力-距离测量,从而可以评估特定部位的粘附力。结果表明,在新制备的样品中,通过形貌可以清楚地观察到胶体颗粒,在固化过程中,通过可辨别的表面特征消失和粗糙度指数降低检测到聚结现象。还研究了温度和湿度对薄膜固化的影响,其中温度的影响最为显著。AFM力测量表明,粘附力的变化随着固化时间的增加而减小,这表明了一种量化固化时薄膜形成速率的新方法。得出的结论是,本研究中概述的AFM方法可作为定性和定量监测药物薄膜固化随时间和其他变量变化的一种手段,从而有助于合理设计固化方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9efa/7066041/ab84dddd292b/fx1.jpg

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