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Container Closure Integrity Testing-Method Development for Freeze-Dried Products Using Laser-Based Headspace Oxygen Analysis

机译:使用基于激光的顶部空间氧分析的冷冻干燥产品的容器闭合完整性测试方法开发

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The regulatory expectations introduced by the U.S. Food and Drug Administration in 1999, ICH Q5C, the revised draft of Annex 1, Eudralex volume 4 for consultation, and the recent update of USP general chapters 1207.1 and 1207.2 regarding container closure integrity (CCI) testing have created a need for further development of testing methods, although there are no universally accepted methods to test and evaluate the CCI of a biopharmaceutical drug product. Each testing method and principle has merits and demerits. This paper will present a simple approach to be used in method validation of CCI testing based on headspace oxygen analysis for freeze-dried biopharmaceutical drug products in vials, as well as a method for testing and verifying positive control vials. The model is based on Fick’s law of diffusion and is empirically corrected to account for Knudsen diffusion in smaller defect sizes. The model considers storage conditions of the vials, allowing for testing of vials stored under anaerobic and near-sealing pressure conditions and different temperature conditions, as well as testing at different time points. Using this approach based on headspace oxygen analysis, the minimum timeframe for leak detection is dependent on the volume of the object tested, but standard vial sizes have shown that leak sizes of 0.2 um can be detected within hours of vial stoppering with the model developed. CCI testing by headspace oxygen analysis using this approach can be done quickly and non-destructively. This method can prove its effectiveness in demonstration of a protective critical barrier (CCI) for a biopharmaceutical drug product during real-time situations of manufacturing, transportation, registered storage conditions, etc. (life-cycle approach).
机译:1999年,美国食品药品监督管理局介绍的监管期望,Q5C,附件1的修订草案,eudralex第4卷进行磋商,以及最近的USP通用章节1207.1和1207.2关于容器关闭完整性(CCI)测试的更新创造了需要进一步开发测试方法,尽管没有普遍接受的方法来测试和评估生物制药药品的CCI。每个测试方法和原则都有优点和缺点。本文将提出一种简单的方法,用于基于小瓶的冻干生物制药药品的顶空氧分析的CCI测试方法验证,以及用于测试和验证阳性对照小瓶的方法。该模型基于Fick的扩散定律,经验证明纠正,以考虑较小的缺陷尺寸的knudsen扩散。该模型考虑了小瓶的储存条件,允许在厌氧和近密封压力条件下储存的小瓶和不同的温度条件,以及在不同时间点的测试。使用该方法基于顶空氧分析,泄漏检测的最小时间框架取决于测试的物体的体积,但标准的小瓶尺寸表明,在模型的小组停止的小时内可以检测到0.2μm的泄漏尺寸。 CCI测试通过使用这种方法的顶空氧分析可以快速而无损地完成。该方法可以在制造,运输,注册储存条件等实时情况下证明生物制药药品的保护性关键屏障(CCI)的实际效力。

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