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首页> 外文期刊>International Journal of Pharmaceutics >Rheological characterization of pharmaceutical powders using tap testing, shear cell and mercury porosimeter.
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Rheological characterization of pharmaceutical powders using tap testing, shear cell and mercury porosimeter.

机译:使用抽头测试,剪切池和水银孔隙率仪对药物粉末进行流变学表征。

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摘要

Most of the pharmaceutical processes involved in the manufacturing of so lid dosage forms are connected with powder flow properties, at least for some of the intermediate steps. Powder flow characteristics are commonl y investigated by various measurements, such as handling angles, tap tes ting, shear cell measurements, etc. All these approaches allow the calc ulation of indices characterising powder flowability. Unfortunately, th ese methodologies are highly product consuming, which is a limitation in the first steps of a novel drug development, when only a small amount of product is available. The use of mercury porosimetry to evaluate compre ssibility and flow properties of powders could be a new and alternative approach to obtain insight in the rheological properties of granular med ium by the interpretation of the first part of programs (low pressures) . We have developed such an evaluation and compared the results obtaine d with those given by tap testing and shear cell measurements, applied t o four excipients for direct tabletting and three different drugs. Merc ury porosimetry turned out to be a sensitive technique, able to providequantitative information about powder flow properties, complemen ted by an evaluation of particles micro porosity and size distribution, in a single step. These characterisations are obtained with only approx imately 250mg of bulk powder compared to high quantities ( >100g) needed for other methods.
机译:至少在一些中间步骤中,与制备盖剂型有关的大多数制药过程都与粉末流动性有关。粉末流动特性通常通过各种测量方法进行研究,例如处理角度,分切,剪切室测量等。所有这些方法都可以计算出表征粉末流动性的指标。不幸的是,这些方法消耗大量产品,当只有少量产品可用时,这是新药开发第一步的局限性。通过解释程序的第一部分(低压),使用水银孔隙率法评估粉末的可压缩性和流动性可能是一种新的替代方法,可以了解颗粒介质的流变特性。我们已经进行了这样的评估,并将获得的结果与抽头测试和剪切细胞测量给出的结果进行了比较,将四种赋形剂用于直接压片和三种不同的药物。结果表明,水银孔隙率法是一种灵敏的技术,它能够在一步之内通过评估颗粒的微孔隙率和粒度分布来提供有关粉末流动性的定量信息。与其他方法所需的大量粉末(> 100克)相比,仅使用约250毫克的散装粉末即可获得这些特征。

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