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首页> 外文期刊>AAPS PharmSciTech >Introduction of a Theoretical Splashing Degree to Assess the Performance of Low-Viscosity Oils in Filling of Capsules
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Introduction of a Theoretical Splashing Degree to Assess the Performance of Low-Viscosity Oils in Filling of Capsules

机译:引入理论飞溅度以评估低粘度油在胶囊填充中的性能

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摘要

These days an alternative to soft capsules is liquid-filled hard capsules. Their filling technology was investigated earlier with highly viscous formulations, while hardly any academic research focused on low-viscosity systems. Accordingly, this work addressed the filling of such oils that are splashing during the dosing process. It was aimed to first study capsule filling, using middle-chain triglycerides as reference oil, in order to then evaluate the concept of a new theoretical splashing degree for different oils. A laboratory-scale filling machine was used that included capsule sealing. Thus, the liquid encapsulation by microspray technology was employed to seal the dosage form. As a result of the study with reference oil, the filling volume and the temperature were found to be significant for the rate of leaking capsules. The filling volume was also important for weight variability of the capsules. However, most critical for this variability was the diameter of the filling nozzle. We proposed a power law for the coefficient of weight variability as a function of the nozzle diameter and the obtained exponent agreed with the proposed theory. Subsequently, a comparison of different oils revealed that the relative splashing degree shared a correlation with the coefficient of the capsule weight variability (Pearson product moment correlation of r = 0.990). The novel theoretical concept was therefore found to be predictive for weight variability of the filled capsules. Finally, guidance was provided for the process development of liquid-filled capsules using low-viscosity oils.
机译:这些天,软胶囊的替代品是液体填充的硬胶囊。他们的灌装技术是通过高粘度配方进行早期研究的,而几乎没有任何学术研究专注于低粘度体系。因此,这项工作解决了在计量过程中飞溅的油的填充问题。目的是首先研究使用中链甘油三酸酯作为参考油的胶囊填充,然后评估不同油的新理论飞溅程度的概念。使用了包括胶囊密封的实验室规模的填充机。因此,采用通过微喷雾技术的液体包封来密封剂型。作为参考油的研究结果,发现填充量和温度对于胶囊泄漏的速度很重要。填充体积对于胶囊的重量可变性也很重要。然而,对于这种可变性最关键的是填充喷嘴的直径。我们提出了重量可变性系数随喷嘴直径变化的幂定律,所获得的指数与所提出的理论一致。随后,通过比较不同的油,发现相对飞溅程度与胶囊重量变异系数具有相关性(皮尔逊积矩相关性r = 0.990)。因此,发现了新颖的理论概念可预测填充胶囊的重量变化。最后,为使用低粘度油的液体填充胶囊的工艺开发提供了指导。

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