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温度偏移管理:商业口服固体制剂的基于层级的方法。

Temperature Excursion Management: A Tier-Based Approach for Commercial Oral Solid Dosage Forms.

机构信息

Gilead Sciences Inc., Foster City, California, 94404, USA.

出版信息

AAPS J. 2024 Oct 1;26(6):108. doi: 10.1208/s12248-024-00976-w.

Abstract

Temperature excursions during product storage, transportation, and handling can deteriorate product quality. Following a temperature excursion event, the impact of the event on the product quality should be evaluated to determine if the product can be used or if it needs to be discarded. Pharmaceutical companies are required to have defined procedures for managing temperature excursions and performing impact assessment after an excursion occurs. In an increasingly complex supply chain, it is vital to develop processes that can expedite the review of these events. A tier-based approach is presented for analyzing the impact of temperature excursion on commercial small molecule drug products intended to be stored at room temperature. Utilization of each of the three tiers is based on whether the excursion temperature and/or excursion duration are within a predetermined, product-specific, allowable range. The stress study temperature defines the allowable temperature range, while the allowable duration is determined using a mathematical approach outlined in this article. Tier 1, specific to the product, allows products to be dispositioned for use without further assessment when temperature excursion events fall within both the product-specific allowable excursion temperature and duration ranges. Tier 2 applies when the excursion temperature is within the allowable range, but the duration exceeds it. Lot-specific release data is used for impact assessment in this tier. Finally, Tier 3 utilizes Arrhenius extrapolation to predict the final degradation and perform the impact assessment when the excursion temperature surpasses the allowable temperature range.

摘要

在产品储存、运输和处理过程中,温度的波动会降低产品质量。发生温度波动事件后,应评估该事件对产品质量的影响,以确定产品是否可以使用,或者是否需要丢弃。制药公司需要制定规定的程序来管理温度波动,并在发生波动后进行影响评估。在日益复杂的供应链中,开发能够加速审查这些事件的流程至关重要。本文提出了一种基于层次的方法,用于分析商业小分子药物产品在室温下储存时温度波动对产品的影响。每个层次的使用都取决于温度波动的温度和/或持续时间是否在预定的、特定于产品的、允许的范围内。应激研究温度定义了允许的温度范围,而允许的持续时间则使用本文中概述的数学方法确定。第 1 层是特定于产品的,当温度波动事件同时在特定于产品的允许温度波动和持续时间范围内时,可以处置产品以供使用,而无需进一步评估。当温度波动在允许范围内,但持续时间超过时,适用第 2 层。在这一层中,使用特定批次的放行数据进行影响评估。最后,当温度波动超过允许范围时,第 3 层利用 Arrhenius 外推法预测最终降解并进行影响评估。

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