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药物强化试验中的质量平衡:原理与实际应用述评。

Mass Balance in Pharmaceutical Stress Testing: A Review of Principles and Practical Applications.

机构信息

Advanced Drug Delivery, Pharmaceutical Sciences, R&D, Astrazeneca, Boston, 35 Gatehouse Dr., Waltham, Massachusetts, 02451, USA.

Analytical Development, GSK, 1250 South Collegeville Rd, Mail Stop UP1400, Upper Providence, Pennsylvania, 19426, USA.

出版信息

AAPS J. 2024 Aug 22;26(5):96. doi: 10.1208/s12248-024-00961-3.

DOI:10.1208/s12248-024-00961-3
PMID:39174806
Abstract

Stress testing (also known as forced degradation) of pharmaceutical drug substances and products is a critical part of the drug development process, providing insight into the degradation pathways of drug substances and drug products. This information is used to support the development of stability-indicating methods (SIMs) capable of detecting pharmaceutically relevant degradation products that might potentially be observed during manufacturing, long-term storage, distribution, and use. Assessing mass balance of stressed samples is a key aspect of developing SIMs and is a regulatory expectation. However, the approaches to measure, calculate, and interpret mass balance can vary among different pharmaceutical companies. Such disparities also pose difficulties for health authorities when reviewing mass balance assessments, which may result in the potential delay of drug application approvals. The authors have gathered input from 10 pharma companies to map out a practical review of science-based approaches and technical details to assess and interpret mass balance results. Key concepts of mass balance are introduced, various mass balance calculations are demonstrated, and recommendations on how to investigate poor mass balance results are presented using real-world case studies. Herein we provide a single source reference on the topic of mass balance in pharmaceutical forced degradation for small molecule drug substances and drug products in support of regulatory submissions with the goal of facilitating a shared understanding among pharmaceutical scientists and health authorities.

摘要

药物原料药和制剂的稳定性研究(也称为强制降解试验)是药物开发过程中的重要组成部分,可深入了解药物原料药和药物制剂的降解途径。这些信息用于支持开发能够检测到在生产、长期储存、分销和使用过程中可能观察到的与药物相关的降解产物的稳定性指示方法(SIM)。评估受应力样品的质量平衡是开发 SIM 的关键方面,也是法规要求。然而,不同制药公司在测量、计算和解释质量平衡的方法上存在差异。这种差异也给药品监管部门在审查质量平衡评估时带来了困难,这可能导致药物申请批准的潜在延迟。作者收集了来自 10 家制药公司的意见,制定了一个基于科学的方法和技术细节的实用审查,以评估和解释质量平衡结果。本文介绍了质量平衡的关键概念,演示了各种质量平衡计算,并使用实际案例研究提出了如何调查质量平衡不佳的结果的建议。本文为小分子药物原料药和药物制剂的药物强制降解中的质量平衡问题提供了一个单一的参考资料,以支持监管申报,旨在促进制药科学家和药品监管部门之间的共识。

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本文引用的文献

1
Pharmaceutical Forced Degradation (Stress Testing) Endpoints: A Scientific Rationale and Industry Perspective.药物强制降解(稳定性研究)终点:科学依据和行业视角。
J Pharm Sci. 2023 Dec;112(12):2948-2964. doi: 10.1016/j.xphs.2023.09.003. Epub 2023 Sep 9.
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机器学习在无需分析标准品的化学品计算机定量分析中的应用。
J Chem Inf Model. 2020 Jun 22;60(6):2718-2727. doi: 10.1021/acs.jcim.9b01096. Epub 2020 May 20.
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The Degradation Chemistry of GSK2879552: Salt Selection and Microenvironmental pH Modulation to Stabilize a Cyclopropyl Amine.GSK2879552 的降解化学:盐的选择和微环境 pH 调节以稳定环丙胺。
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Analysis of unstable degradation impurities of a benzodiazepine and their quantification without isolation using multiple linear regression.采用多元线性回归分析,不经分离定量分析苯二氮䓬类药物的不稳定降解杂质。
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Study of relative response factors and mass balance in forced degradation studies with liquid chromatography/photo-diode array detector/evaporative light scattering detector/mass spectrometry system.
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Determination of Relative Response Factors of Cefazolin Impurities by Quantitative NMR.通过定量核磁共振法测定头孢唑林杂质的相对响应因子
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Artifacts Generated During Azoalkane Peroxy Radical Oxidative Stress Testing of Pharmaceuticals Containing Primary and Secondary Amines.含伯胺和仲胺药物的偶氮烷过氧自由基氧化应激测试过程中产生的假象
J Pharm Sci. 2015 Dec;104(12):4287-4298. doi: 10.1002/jps.24667. Epub 2015 Nov 13.
10
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Anal Chem. 2013 Oct 1;85(19):8928-32. doi: 10.1021/ac402382d. Epub 2013 Sep 12.