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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Use of Mixer Torque Rheometer to Clarify the Relationship between the Kneading States of Wet Mass and the Dissolution of Final Product in High Shear Granulation
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Use of Mixer Torque Rheometer to Clarify the Relationship between the Kneading States of Wet Mass and the Dissolution of Final Product in High Shear Granulation

机译:使用混合扭矩流变仪澄清高剪切制粒过程中湿物料的捏合状态与最终产品的溶解之间的关系

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摘要

The properties of wet mass, which indicate the progress of high shear granulation processes, usually have an effect on final product properties, such as tablet dissolution. The mixer torque rheometer (MTR) is a useful tool for quantitatively measuring the ‘kneading state’ of wet mass and detecting differences in granules. However, there have been no studies of the relationship between the MTR torque and the final product properties to date. In this study, we measured the MTR torque of wet granules at different kneading states, which were prepared by changing the granulation conditions. We then evaluated the relationship between the MTR torque and the dissolution rate of the final product properties. The amperage of the high shear granulator is usually monitored during granulation, but we could not detect a difference in the kneading state through the amperage. However, using MTR torque we were able to quantify the difference of the wet mass. Moreover, MTR torque showed a high correlation with dissolution, compared with the correlations with other intermediate properties, such as granules particle size and tablet hardness. These other properties are affected by following processes and are not properties that directly relate to the kneading state. Thus, MTR torque is a property of wet mass after granulation, and it can be used to directly evaluate differences of the kneading state, and as a result, dissolution. These results indicate the importance of controlling the kneading state, i.e. , the progress of granulation, and the utility of MTR for detecting differences in wet mass.
机译:湿物质的性质表明了高剪切制粒过程的进展,通常会影响最终产品的性质,例如片剂的溶解。混合器扭矩流变仪(MTR)是定量测量湿物料的“捏合状态”并检测颗粒差异的有用工具。但是,迄今为止,尚未对MTR扭矩与最终产品性能之间的关系进行研究。在这项研究中,我们测量了通过改变制粒条件制备的不同捏合状态下湿颗粒的MTR扭矩。然后,我们评估了MTR扭矩与最终产品特性的溶解速率之间的关系。通常在制粒过程中监控高剪切制粒机的安培数,但是我们无法通过安培数检测到捏合状态的差异。但是,使用MTR扭矩,我们可以量化湿质量的差异。此外,与其他中间特性(例如颗粒粒径和片剂硬度)的相关性相比,MTR扭矩与溶出度具有高度相关性。这些其他特性受到以下工序的影响,不是与混炼状态直接相关的特性。因此,MTR转矩是造粒后的湿质量的性质,并且可以用于直接评估捏合状态的差异以及结果的溶解。这些结果表明控制捏合状态的重要性,即制粒的进展,以及MTR用于检测湿质量差异的实用性。

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