首页> 美国卫生研究院文献>International Journal of Pharmaceutics: X >Continuous twin screw granulation: Impact of microcrystalline cellulose batch-to-batch variability during granulation and drying – A QbD approach
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Continuous twin screw granulation: Impact of microcrystalline cellulose batch-to-batch variability during granulation and drying – A QbD approach

机译:连续双螺杆造粒:微晶纤维素分批变异性在造粒和干燥过程中的影响 - 一种QBD方法

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摘要

Despite significant advances in the research domain of continuous twin screw granulation, limited information is currently available on the impact of raw material properties, especially considering batch-to-batch variability. The importance of raw material variability and subsequent mitigation of the impact of this variability on the manufacturing process and drug product was recently stressed in the Draft Guidance for Industry on Quality Considerations for Continuous Manufacturing by the U.S. Food and Drug Administration (FDA). Therefore, this study assessed the impact of microcrystalline cellulose (MCC) batch-to-batch variability and process settings in a continuous twin screw wet granulation and semi-continuous drying line. Based on extensive raw material characterization and subsequent principal component analysis, raw material variability was quantitatively introduced in the design of experiments approach by means of t1 and t2 scores. L/S ratio had a larger effect on critical granule attributes and processability than screw speed and drying time. A large impact of the t1 and t2 scores was found, indicating the importance of raw material attributes. For the studied formulation, it was concluded that MCC batches with a low water binding capacity, low moisture content and high bulk density generated granules with the most desirable quality attributes. Additionally, an innovative and quantitative approach towards mitigating batch-to-batch variability of raw materials was proposed, which is also applicable for additional excipients and APIs.
机译:尽管在连续双螺杆造粒的研究领域进行了显着进展,但目前有限的信息目前可以在原材料性能的影响下,特别是考虑批量批量变异性。最近强调了原材料变异性和随后减轻这种可变性对制造过程和药品的影响的影响,在美国食品和药物管理局持续制造业的质量考虑因素的指引中强调了对制造过程和药品的影响。因此,该研究评估了微晶纤维素(MCC)分批变异性和工艺设置在连续双螺杆湿造粒和半连续干燥线中的影响。基于广泛的原料表征和随后的主成分分析,通过T1和T2分数定量地引入了原材料变异性。 L / S比对临界颗粒属性的效果大于螺杆速度和干燥时间。发现T1和T2分数的巨大影响,表明原材料属性的重要性。对于研究的配方,得出结论,MCC批次具有低水结合能力,低水分含量和高堆积密度产生的颗粒,具有最理想的质量属性。此外,提出了一种促进原料分批变异性的创新和定量方法,这也适用于额外的赋形剂和API。

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