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首页> 外文期刊>PDA journal of pharmaceutical science and technology >Method Development for Container Closure Integrity Evaluation via Headspace Gas Ingress by Using Frequency Modulation Spectroscopy
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Method Development for Container Closure Integrity Evaluation via Headspace Gas Ingress by Using Frequency Modulation Spectroscopy

机译:通过使用频率调制光谱通过顶空气进入容器闭合完整性评估的方法开发

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摘要

USP <1207.1> Section 3.5 states that “A deterministic leak test method having the ability to detect leaks at the product,s maximum allowable leakage limit is preferred when establishing the inherent integrity of a container-closure system.” Ideally, container closure integrity of parenteral packaging would be evaluated by measuring a physical property that is sensitive to the presence of any package defect that breaches package integrity by increasing its leakage above its maximum allowable leakage limit. The primary goals of the work presented herein were to demonstrate the viability of the nondestructive, deterministic method known as laser-based gas headspace analysis for evaluating container closure integrity and to provide a physical model for predicting leak rates for a variety of container volumes, headspace conditions, and defect sizes. The results demonstrate that laser-based headspace analysis provides sensitive, accurate, and reproducible measurements of the gas ingress into glass vial-stopper package assemblies that are under either diffusive or effusive leak conditions. Two different types of positive controls were examined. First, laser-drilled micro-holes in thin metal disks that were crimped on top of 15R glass vials served as positive controls with a well-characterized defect geometry. For these, a strong correlation was observed between the measured ingress parameter and the size of the defect for both diffusive and effusive conditions. Second, laser-drilled holes in the wall of glass vials served as controls that more closely simulate real-world defects. Due to their complex defect geometries, their diffusive and effusive ingress parameters did not necessarily correlate; this is an important observation that has significant implications for standardizing the characterization of container defects. Regardless, laser-based headspace analysis could readily differentiate positive and negative controls for all leak conditions, and the results provide a guide for method development of container closure integrity tests.
机译:第327.1章第3.5节规定了“具有检测产品中泄漏的能力的确定性泄漏测试方法,在建立容器闭合系统的固有完整性时,优选最大允许漏电极限。”理想地,将通过测量对存在对任何封装缺陷的存在而敏感的物理性能来评估肠胃外包装的容器闭合完整性,通过提高其最大允许泄漏极限的泄漏来泄露包装完整性的任何包装缺陷敏感。本文所呈现的工作的主要目标是证明所谓的用于评估容器闭合完整性的激光基气体顶部空间分析的非破坏性,确定性方法的可行性,并提供用于预测各种容器容积的泄漏率的物理模型,顶部空间条件和缺陷尺寸。结果表明,基于激光的顶部空间分析提供了在扩散或波动泄漏条件下的玻璃小瓶 - 止动件组件的敏感,准确和可再现的气体进入测量。检查了两种不同类型的阳性对照。首先,在15R玻璃瓶顶部的薄金属盘中的激光钻孔微孔用作具有良好表征缺陷几何形状的阳性对照。为此,在测量的入口参数和扩散和散发条件的缺陷之间观察到强烈的相关性。其次,玻璃瓶壁中的激光钻孔作为控制器更加紧密地模拟真实世界的缺陷。由于它们复杂的缺陷几何形状,它们的扩散和散发性的入口参数并不一定关联;这是对标准化容器缺陷的表征具有重大影响的重要观察。无论如何,基于激光的顶空分析可以易于区分所有泄漏条件的正面和阴性对照,结果提供了用于容器闭合完整性测试的方法开发的指南。

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