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通过比较高温下的降解情况来确定保质期。

Determining shelf life by comparing degradations at elevated temperatures.

作者信息

Magari Robert T, Munoz-Antoni Ileana, Baker Jennifer, Flagler Daniel J

机构信息

Beckman Coulter, Inc, Miami, Florida 33196-2500, USA.

出版信息

J Clin Lab Anal. 2004;18(3):159-64. doi: 10.1002/jcla.20016.

Abstract

The degradation of a biological product follows a specific pattern that depends on the kinetics of the chemical reaction. For most biological and pharmaceutical products, accelerated stability tests are preferred to establish shelf life. We describe a new approach for accelerated stability tests, for situations in which the Arrhenius equation is not appropriate. This approach consists of estimating stability at elevated temperatures and comparing these results with the stability estimates for a similar product with a known shelf life. In this article, "Test" refers to Immuno-Trol Low Cells, and "Control" (the product with a known shelf life) refers to Immuno-Trol Cells. The degradation rates and stabilities at elevated temperatures of three antigens of the Test are estimated and compared to their respective Control values. Most of the degradation occurs at the beginning of the experimental period and then slows down until it levels off to form a plateau at the minimum level. Both Control and Test showed similar degradation patterns at three elevated temperatures, indicating that they both have the same mechanism of degradation. Thus, it is expected that they will degrade similarly at storage temperature and have nonsignificantly different shelf lives. The approach for accelerated stability testing discussed here is applicable to situations in which the Arrhenius equation is not appropriate, and the chemical properties of both the Test and Control products are similar.

摘要

生物制品的降解遵循特定模式,该模式取决于化学反应动力学。对于大多数生物制品和药品而言,加速稳定性试验更适合用于确定保质期。我们描述了一种加速稳定性试验的新方法,适用于阿累尼乌斯方程不适用的情况。该方法包括估计高温下的稳定性,并将这些结果与具有已知保质期的类似产品的稳定性估计值进行比较。在本文中,“试验品”指免疫对照低细胞,“对照品”(具有已知保质期的产品)指免疫对照细胞。估计试验品三种抗原在高温下的降解速率和稳定性,并与各自的对照品值进行比较。大部分降解发生在实验期开始时,然后减缓,直至在最低水平趋于平稳形成平台期。对照品和试验品在三个高温下均呈现相似的降解模式,表明它们具有相同的降解机制。因此,可以预期它们在储存温度下的降解情况相似,保质期差异不显著。本文讨论的加速稳定性试验方法适用于阿累尼乌斯方程不适用且试验品和对照品化学性质相似的情况。

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