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首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Model-based analysis of high shear wet granulation from batch to continuous processes in pharmaceutical production - A critical review
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Model-based analysis of high shear wet granulation from batch to continuous processes in pharmaceutical production - A critical review

机译:基于模型的制药生产中从分批到连续过程的高剪切湿法制粒的分析-严格审查

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摘要

The manufacturing of pharmaceutical dosage forms, which has traditionally been a batch-wise process, is now also transformed into a series of continuous operations. Some operations such as tabletting and milling are already performed in continuous mode, while the adaptation towards a complete continuous production line is still hampered by complex steps such as granulation and drying which are considered to be too inflexible to handle potential product change-overs. Granulation is necessary in order to achieve good flowability properties and better control of drug content uniformity. This paper reviews modelling and supporting measurement tools for the high shear wet granulation (HSWG) process, which is an important granulation technique due to the inherent benefits and the suitability of this unit operation for the desired switch to continuous mode. For gaining improved insight into the complete system, particle-level mechanisms are required to be better understood, and linked with an appropriate meso- or macro-scale model. A brief review has been provided to understand the mechanisms of the granulation process at micro- or particle-level such as those involving wetting and nucleation, aggregation, breakage and consolidation. Further, population balance modelling (PBM) and the discrete element method (DEM), which are the current state-of-the-art methods for granulation modelling at micro- to meso-scale, are discussed. The DEM approach has a major role to play in future research as it bridges the gap between micro- and meso-scales. Furthermore, interesting developments in the measurement technologies are discussed with a focus towards inline measurements of the granulation process to obtain experimental data which are required for developing good models. Based on the current state of the developments, the review focuses on the twin-screw granulator as a device for continuous HSWG and attempts to critically evaluate the current process. As a result, a set of open research questions are identified. These questions need to be answered in the future in order to fill the knowledge gap that currently exists both at micro- and macro-scale, and which is currently limiting the further development of the process to its full potential in pharmaceutical applications.
机译:传统上是分批过程的药物剂型的生产现在也转变为一系列连续操作。诸如压片和制粉之类的某些操作已经以连续模式执行,而向完整的连续生产线的适应仍然受到制粒和干燥等复杂步骤的阻碍,这些步骤被认为对于处理潜在的产品转换而言过于灵活。为了获得良好的流动性和更好地控制药物含量的均匀性,必须进行制粒。本文回顾了用于高剪切湿法制粒(HSWG)过程的建模和支持测量工具,由于其固有的优势以及该单元操作对于所需切换到连续模式的适用性,该技术是一项重要的制粒技术。为了更好地了解整个系统,需要更好地理解粒子级机制,并将其与适当的中尺度或宏观尺度模型联系起来。提供了简短的综述,以了解微级或颗粒级制粒过程的机制,例如涉及润湿和成核,聚集,破裂和固结的机制。此外,还讨论了人口平衡模型(PBM)和离散元素方法(DEM),这是目前在微尺度到中观尺度上进行造粒建模的最新方法。 DEM方法在弥合微尺度和中尺度之间的鸿沟方面具有重要作用。此外,讨论了测量技术的有趣发展,重点是对制粒过程的在线测量以获得开发良好模型所需的实验数据。基于当前的发展状况,本综述着重于双螺杆造粒机作为连续HSWG的装置,并尝试对当前工艺进行严格评估。结果,确定了一组公开的研究问题。将来需要回答这些问题,以填补目前在微观和宏观两个层面上都存在的知识空白,并且目前该方法的进一步发展限制了其在制药应用中的全部潜力。

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