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A completely solvent-free process for the improvement of erythritol compactibility

机译:完全无溶剂的过程,用于改善赤藓糖醇调容性

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Objective: We obtained improvement of erythritol compactibility by formulating composite particles composed of erythritol and porous silica using a twin-screw kneader. Methods: Erythritol-based tablets formulated with composite particles were directly compacted, and we estimated their hardness and the friability. The compression properties of the erythritol powder bed including composite particles were estimated using a Heckel analysis and force-displacement profiles, and we investigated the physical states of the composite particles by powder X-ray diffractometry, a thermal analysis and a nitrogen gas adsorption study. Results: A direct-compacted erythritol tablet formulated with composite particles, prepared at the melting temperature of erythritol (120°C), exhibited high hardness and low friability. A pressure transmission study revealed the higher plasticity and lower elasticity of an erythritol powder bed formulated with composite particles prepared at 120°C. Physical states of the composite particles indicated that erythritol in the composite particles was adsorbed onto porous silica with a subsequent decrease in the erythritol crystallinity as a result of high mechanical force at the melting temperature of erythritol. Conclusion: The improvement of the erythritol compactibility formulated with composite particles through processing with a twin-screw kneader at 120°C. This was affected by the reduction of the erythritol crystallinity in the composite particles.
机译:目的:我们通过使用双螺杆捏合机配制赤藓多孔二氧化硅构成的复合粒子得到的赤藓糖醇密实的改进。方法:用复合颗粒配方基于赤藓糖醇的片剂直接压实,我们估计它们的硬度和脆性。使用赫克尔分析和力 - 位移曲线的赤藓醇粉末床包括复合颗粒的压缩特性估计,我们通过粉末X射线衍射法,热分析和氮气吸附研究调查了复合颗粒的物理状态。结果:直接压制片剂赤藓糖醇与复合颗粒配制的,在赤藓醇(120℃)的熔融温度来制备表现出高硬度和低脆性。压力传递研究揭示了与复合颗粒配制的赤藓醇粉末床的更高的塑性和弹性较低的在120℃下制备。复合颗粒的物理状态所指示的复合颗粒赤藓吸附在多孔质二氧化硅,在赤藓糖醇的结晶度中的赤藓糖醇的熔解温度高的机械力的结果的后续降低。结论:赤藓糖醇密实的通过与在120℃的双螺杆混炼机处理配制的复合颗粒的改进。这是受赤藓糖醇结晶在复合颗粒中的减少。

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