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连续混合技术:使用停留时间分布对垂直混合器进行特性描述。

Continuous Mixing Technology: Characterization of a Vertical Mixer Using Residence Time Distribution.

机构信息

Worldwide Research and Development, Pfizer Inc, Sandwich Kent, UK.

Worldwide Research and Development, Pfizer Inc, Sandwich Kent, UK.

出版信息

J Pharm Sci. 2021 Jul;110(7):2694-2702. doi: 10.1016/j.xphs.2021.01.035. Epub 2021 Feb 16.

Abstract

Continuous powder mixing technology (CMT) application during continuous direct compression has emerged as a leading technology used in the development and manufacture of solid oral dosage forms. The critical quality attributes of the final product are heavily dependent on the performance of the mixing step as the quality of mixing directly influences the drug product quality attributes. This study investigates the impact of blend material properties (bulk density, API particle size distribution) and process parameters (process throughput, hold up mass and impeller speed) on the mixing performance. Mixing of the blend was characterized using the Residence Time Distribution (RTD) of the process by trending the outlet stream of the mixer using a near-infrared (NIR) probe after the injection of a small mass of tracer at the inlet stream. The outcomes of this study show that the RTDs of the mixer with throughput ranging between 15 and 30 kg/h; impeller speed ranging between 400 and 600 rpm and hold up mass (HUM) ranging between 500 and 850 g can be described by a series of two ideal Continuous Stirred Tank Reactors (CSTRs) with different volumes, and correspondingly, different mean residence times. It is also observed that the mixing is mainly occurring in the lower chamber of the CMT and the normalized RTDs of the mixer are similar across the range of process conditions and material attributes studied. The results also showed that the formulation blend with different API particle sizes and bulk properties, like bulk density and flowability, provide insignificant impact on the mixing performance. The CMT allows independent selection of target set points for HUM, impeller rotational speed and line throughput and it shows great robustness and flexibility for continuous blending in solid oral dose manufacturing.

摘要

连续粉末混合技术(CMT)在连续直接压缩中的应用已成为开发和制造固体口服剂型的领先技术。最终产品的关键质量属性在很大程度上取决于混合步骤的性能,因为混合质量直接影响药物产品的质量属性。本研究调查了混合材料特性(堆密度、API 粒径分布)和工艺参数(工艺吞吐量、持液量和搅拌器速度)对混合性能的影响。通过在入口流中注入少量示踪剂后,使用近红外(NIR)探头跟踪混合器的出口流,使用过程的停留时间分布(RTD)来表征混合。该研究的结果表明,在吞吐量为 15 至 30kg/h 之间、搅拌器速度在 400 至 600rpm 之间以及持液量(HUM)在 500 至 850g 之间的范围内,混合器的 RTD 可以用一系列两个不同体积的理想连续搅拌釜式反应器(CSTR)来描述,相应地,不同的平均停留时间。还观察到,混合主要发生在 CMT 的下腔室中,并且在研究的工艺条件和材料特性范围内,归一化的混合器 RTD 相似。结果还表明,具有不同 API 粒径和堆密度和流动性等堆积特性的配方混合物对混合性能的影响不大。CMT 允许独立选择 HUM、搅拌器转速和线吞吐量的目标设定点,并且在固体口服剂量制造中连续混合具有很强的稳健性和灵活性。

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