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Assessment of the surface properties of pharmaceutical powders.

机译:药物粉末表面性质的评估。

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摘要

The purpose of this study was to evaluate and improve some of the available methods of assessing the surface properties of powders. The value of an automated Wilhelmy plate contact angle measurement technique was investigated. This technique has not previously been used extensively for powders. It was found to be a valuable and simple approach which is suitable for a wide range of materials. The resolution of this technique is not sufficient to allow discrimination between the surface properties of powders, which are similar in nature. Reproducibility of data could not be improved by controlling the experimental procedure extensively. Surface energies were calculated from contact angle data using four of the available theories. The harmonic and geometric mean equations provided the most suitable approaches for pharmaceutical systems. A microcalorimetry method, using a novel cell was evaluated for the investigation of powder/water interactions. Data obtained was highly reproducible and therefore, it was possible to detect differences in the wetting behaviour of three commercial brands of a - lactose monohydrate, which was not possible using contact angle data. A new microbalance technique was tested, however, no reliable data were obtained using this method. A study was also carried out to investigate the relationship between surface properties (contact angles against water and/or surface energies) of pharmaceutical powders and several molecular orbital indices. A relationship between the contact angle against water and the surface energy and the superdelocalisability index was elucidated. Two empirical equations were proposed which would enable workers to determine the surface properties of pharmaceutical powders from molecular structure. The limitations of this approach were discussed. Calculated molecular orbital parameters provide an extremely good first indication of material surface properties, but should be substantiated by experimental methods. Contact angle measurement offers a relatively fast and simple indication of surface properties. However, where it is necessary to discriminate between the wettability of powders of a similar nature, flow microcalorimetry is the method of choice.
机译:这项研究的目的是评估和改进一些评估粉末表面性能的可用方法。研究了自动Wilhelmy板接触角测量技术的价值。以前,该技术尚未广泛用于粉末。发现这是一种适用于多种材料的有价值且简单的方法。该技术的分辨率不足以区分自然界相似的粉末的表面性质。通过广泛控制实验程序无法改善数据的可重复性。使用四个可用的理论从接触角数据计算表面能。谐波和几何平均方程为制药系统提供了最合适的方法。评估了使用新电池的微量量热法,用于研究粉末/水之间的相互作用。所获得的数据具有很高的可重复性,因此,可以检测到三个商业品牌的α-乳糖一水合物的润湿行为差异,而使用接触角数据则无法实现。测试了一种新的微量天平技术,但是,使用这种方法无法获得可靠的数据。还进行了研究以研究药物粉末的表面性质(与水和/或表面能的接触角)与若干分子轨道指数之间的关系。阐明了与水的接触角与表面能之间的关系以及超离域性指数。提出了两个经验方程,使工人能够从分子结构确定药物粉末的表面性质。讨论了这种方法的局限性。计算出的分子轨道参数提供了非常好的材料表面性质的初步指示,但应通过实验方法加以证实。接触角测量提供了相对快速,简单的表面特性指示。但是,在有必要区分相似性质的粉末的润湿性的地方,选择流动微热量法是可行的。

著录项

  • 作者

    Sheridan, Louise.;

  • 作者单位

    University of London, University College London (United Kingdom).;

  • 授予单位 University of London, University College London (United Kingdom).;
  • 学科 Pharmaceutical sciences.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 289 p.
  • 总页数 289
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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