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A Holistic Multi Evidence Approach to Study the Fragmentation Behaviour of Crystalline Mannitol

机译:整体多证据法研究结晶甘露醇的破碎行为

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摘要

Mannitol is an essential excipient employed in orally disintegrating tablets due to its high palatability. However its fundamental disadvantage is its fragmentation during direct compression, producing mechanically weak tablets. The primary aim of this study was to assess the fracture behaviour of crystalline mannitol in relation to the energy input during direct compression, utilising ball milling as the method of energy input, whilst assessing tablet characteristics of post-milled powders. Results indicated that crystalline mannitol fractured at the hydrophilic (011) plane, as observed through SEM, alongside a reduction in dispersive surface energy. Disintegration times of post-milled tablets were reduced due to the exposure of the hydrophilic plane, whilst more robust tablets were produced. This was shown through higher tablet hardness and increased plastic deformation profiles of the post-milled powders, as observed with a lower yield pressure through an out-of-die Heckel analysis. Evaluation of crystal state using x-ray diffraction/differential scanning calorimetry showed that mannitol predominantly retained the β-polymorph; however x-ray diffraction provided a novel method to calculate energy input into the powders during ball milling. It can be concluded that particle size reduction is a pragmatic strategy to overcome the current limitation of mannitol fragmentation and provide improvements in tablet properties.
机译:甘露醇由于其高适口性是口服崩解片剂中使用的必需赋形剂。然而,其基本缺点是在直接压制过程中会碎裂,从而产生机械强度较弱的片剂。这项研究的主要目的是利用球磨作为能量输入的方法,评估结晶甘露醇在直接压缩过程中与能量输入有关的断裂行为,同时评估后研磨粉末的片剂特性。结果表明,如通过SEM观察到的,结晶甘露醇在亲水(011)平面断裂,同时分散表面能降低。由于亲水平面的暴露,减少了研磨后片剂的崩解时间,同时生产了更坚固的片剂。通过模头外Heckel分析以较低的屈服压力观察到,这是通过较高的片剂硬度和增加的后研磨粉末塑性变形曲线来表明的。用X射线衍射/差示扫描量热法评估晶体状态表明,甘露醇主要保留了β-多晶型物。然而,X射线衍射提供了一种新颖的方法来计算球磨过程中输入到粉末中的能量。可以得出结论,减小粒度是一种务实的策略,可以克服目前甘露醇碎片化的局限性,并可以改善片剂的性能。

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