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Scientific rationale for sampling regimen and acceptance criteria of blend uniformity based on Monte Carlo simulation

机译:基于蒙特卡洛模拟的混合均匀度采样方案和接受标准的科学依据

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摘要

This study proposes an alternative sampling regimen (number of sampling points, number of samples from each sampling point) and setting of the acceptance criteria for blend uniformity based on a statistical rationale. Currently, the sampling regimen and the acceptance criteria for the blend uniformity test of powder blends are determined according to the withdrawn guidance for industry by the Food and Drug Administration (FDA) and the proposal of the International Society for Pharmaceutical Engineering (ISPE)-sponsored Blend Uniformity and Content Uniformity (BUCU) Group to substitute the withdrawn guidance. However, both approaches lack scientific rationale in their publications. Herein this study addresses the scientific background based on the simulations utilizing the Monte Carlo method, in order to provide a scientific rationale for the sampling regimen and acceptance criteria. False positive probability, defined as the probability of failure to meet the minimum necessary requirement in future samples even when the tested sample satisfies the acceptance criteria in fact were Used to evaluate the adequacy of the sampling regimen and acceptance criteria. This study aims at stimulating the discussion about blend uniformity that may ensure a higher quality of pharmaceutical products finally. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究提出了一种替代的采样方案(采样点数,每个采样点的样本数),并基于统计原理设定混合均匀性的接受标准。目前,粉末混合物的混合物均匀性测试的采样方案和接受标准是根据食品药品管理局(FDA)撤回的行业指南以及国际药物工程学会(ISPE)的提议确定的混合统一性和内容统一性(BUCU)组以替代撤回的指南。但是,这两种方法在其出版物中都缺乏科学依据。在此,本研究基于使用蒙特卡洛方法进行的模拟,阐述了科学背景,以便为采样方案和接受标准提供科学依据。误报概率,定义为即使将来测试的样品满足验收标准时仍未满足最低要求的概率,实际上被用来评估抽样方案和验收标准的适当性。这项研究旨在激发有关混合均匀性的讨论,以最终确保更高质量的药品。 (C)2016 Elsevier B.V.保留所有权利。

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