首页> 外文期刊>International Journal of Pharmaceutics >A compressibility and compactibility study of real tableting mixtures: the impact of wet and dry granulation versus a direct tableting mixture.
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A compressibility and compactibility study of real tableting mixtures: the impact of wet and dry granulation versus a direct tableting mixture.

机译:实际压片混合物的可压缩性和压实性研究:湿法制粒和干法制粒与直接压片混合物的影响。

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摘要

The purpose of this study was to investigate the influence of various powder agglomeration processes on tableting mixture flow and compaction properties. Four different granulation methods of the same model placebo formulation were tested at a semi-industrial scale and their properties were compared to those of the directly compressed mixture. The wet granulated mixtures had superior flow properties compared to other mixtures and showed better compressibility, measured by the Heckel and Walker models. This was attributed to work hardening due to the double particle processing and also to shorter contact times due to higher initial densities of dry granulated mixtures, allowing a shorter time for deformation. A strong linear correlation was established between the Heckel and Walker coefficients, which was further confirmed by the net energy results of force-displacement measurements. It was shown that the Walker model had slightly better discriminative power to differentiate tableting mixtures according to compressibility. The compactibility was considerably lower for the slugged mixture; however, the roller-compacted mixture produced tablets with unexpectedly high tensile strength. In conclusion, it is important to emphasize that general assumptions like higher porosity => better compressibility or better compressibility => better compactibility cannot be established for complex tableting mixtures.
机译:这项研究的目的是研究各种粉末团聚过程对压片混合物流动和压实性能的影响。在半工业规模上测试了相同模型安慰剂制剂的四种不同制粒方法,并将其性质与直接压制混合物的性质进行了比较。与其他混合物相比,湿法制粒的混合物具有优异的流动性,并且通过Heckel和Walker模型测得的压缩性更好。这归因于由于双重颗粒处理而导致的加工硬化,以及由于干燥的粒状混合物的较高初始密度而导致的接触时间缩短,从而使得变形时间较短。在Heckel系数和Walker系数之间建立了很强的线性相关性,这由力-位移测量的净能量结果进一步证实。结果表明,Walker模型具有更好的判别能力,可以根据可压缩性区分压片混合物。对于块状混合物,可压实性显着降低。然而,辊压混合物产生的片剂具有出乎意料的高拉伸强度。总之,重要的是要强调,对于复杂的压片混合物,无法建立诸如高孔隙率=>更好的可压缩性或更好的可压缩性=>更好的可压实性这样的一般性假设。

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