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生物技术药物合成分析方法开发与验证指南。以羟基孕酮的生产为例。

Guidelines for analytical method development and validation of biotechnological synthesis of drugs. Production of a hydroxyprogesterone as model.

作者信息

Lindholm Johan, Johansson Monika, Fornstedt Torgny

机构信息

Center for Surface Biotechnology, BMC Box 577, Uppsala University, SE-751 23 Uppsala, Sweden.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2003 Jul 5;791(1-2):323-36. doi: 10.1016/s1570-0232(03)00246-0.

Abstract

In connection with biotechnological synthesis of pharmaceutical drugs, validated methods for quantification of both product and substrate at different time intervals are essential for proper calculation of rate coefficients. In this field, there still exist no guidelines for analytical validation, unlike the situation in the bioanalytical field. Therefore, in this study the detailed guidelines by FDA for bioanalytical method validation were applied to a typical biotechnological process; the enzymatic synthesis of 9alpha-hydroxyprogesterone in E. coli using progesterone as substrate. The process liquid was extracted and analyzed using an HPLC-DAD system. The quality control (QC) samples of the product demonstrated excellent precision (C.V.<1.5%) and accuracy between 99.3 and 107%. The study showed that the recommendations and the validation terms for bioanalytical methods can be used also for biotechnological production, but with some important exceptions. The tolerances (C.V. values) of the validation terms should be much narrower; the internal standard (I.S.) must be present in the process liquid before the start of the process and must be much different in structure from the substrate (so as not to participate in the biotechnological process). In addition, the selectivity must be checked very frequently during the process due to the changes in the blank process liquid with time.

摘要

在药物的生物技术合成方面,在不同时间间隔对产物和底物进行定量的经过验证的方法对于正确计算速率系数至关重要。在该领域,与生物分析领域的情况不同,仍然不存在分析验证指南。因此,在本研究中,美国食品药品监督管理局(FDA)关于生物分析方法验证的详细指南被应用于一个典型的生物技术过程;以孕酮为底物在大肠杆菌中酶促合成9α-羟基孕酮。对过程液体进行萃取并使用高效液相色谱-二极管阵列检测(HPLC-DAD)系统进行分析。产物的质量控制(QC)样品显示出极佳的精密度(变异系数<1.5%),准确度在99.3%至107%之间。该研究表明,生物分析方法的建议和验证条款也可用于生物技术生产,但存在一些重要的例外情况。验证条款的公差(变异系数值)应更窄;内标(I.S.)必须在过程开始前存在于过程液体中,并且其结构必须与底物有很大差异(以免参与生物技术过程)。此外,由于空白过程液体随时间变化,在过程中必须非常频繁地检查选择性。

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