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采用质量源于设计方法评估片型冲模结构对裂片的改善作用。

Evaluation of tablet punch configuration on mitigating capping by a quality by design approach.

机构信息

GEA-NUS Pharmaceutical Processing Research Laboratory, Department of Pharmacy, National University of Singapore, 18 Science Drive 4, Singapore, 117543, Singapore.

Product and Process Engineering Department, GlaxoSmithKline, King of Prussia, PA, 19406, USA.

出版信息

Drug Deliv Transl Res. 2018 Dec;8(6):1635-1643. doi: 10.1007/s13346-017-0425-0.

Abstract

Capping is a common problem in the manufacture of some types of tablets and unless resolved, the tableting process cannot proceed. Hence, all factors that can help to lessen the likelihood of capping without unnecessarily reduce turret speed and/or compaction force would be tenable. This study investigated the influence of tablet punch configuration on mitigation of tablet capping. Tablets were prepared from high-dose paracetamol-potato starch granules in a rotary tablet press with flat face plain (FFP), flat face bevel edge (FFBE) and flat face radius edge (FFRE) punch configurations. The directly compressible (DC) fillers tested were microcrystalline cellulose (MCC), pre-gelatinised starch (PGS) and lactose. Design of experiments (DoE), a tool of quality by design (QbD) paradigm, was used and the interaction of input variables (compression force, tablet punch configuration and DC filler) affecting the response factors (tablet hardness and capping rating) were evaluated. FFP punches were able to mitigate capping best. FFRE punches showed more potential than FFBE punches at alleviating capping in a particular compression force range, without the limitations of the FFP punches that produce cylindrical tablets that were more friable. Incorporation of PGS in the tablet formulation was observed to be more efficient at mitigating capping than the other DC fillers when FFBE and FFRE punches were used. Overall, this study serves as a model for prospective product development based on the QbD framework and the optimal use of compaction tools.

摘要

顶裂是某些类型片剂生产中的常见问题,除非解决,否则压片过程无法进行。因此,任何有助于减少顶裂可能性而又不不必要地降低压片机冲模转速和/或压缩力的因素都是可行的。本研究考察了片剂冲模形状对减轻片剂顶裂的影响。在旋转压片机中,用平直面(FFP)、平直面斜角边(FFBE)和平直面圆角边(FFRE)冲模形状,用高剂量对乙酰氨基酚-马铃薯淀粉颗粒制备片剂。测试的直接压片(DC)赋形剂为微晶纤维素(MCC)、预胶化淀粉(PGS)和乳糖。采用了实验设计(DoE),即质量源于设计(QbD)方法的工具,并评估了影响响应因素(片剂硬度和顶裂评分)的输入变量(压缩力、片剂冲模形状和 DC 赋形剂)之间的相互作用。FFP 冲模最能减轻顶裂。FFRE 冲模在特定压缩力范围内缓解顶裂的潜力大于 FFBE 冲模,而没有 FFP 冲模的局限性,FFP 冲模生产的片剂更易碎。在使用 FFBE 和 FFRE 冲模时,发现 PGS 比其他 DC 赋形剂更有效地减轻顶裂。总的来说,这项研究为基于 QbD 框架和压片机工具的最佳利用的前瞻性产品开发提供了模型。

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