药物溶出方法开发综述:现行法规与前景

Prashant Gupta, Dipti H. Patel, Nilesh Dhameliya, Pratik Modh, Vishvesh Joshi
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引用次数: 0

摘要

过去几十年来,溶出(体外释放)测试一直是科学界和监管部门密切关注的主题。作为一种分析方法,体外溶出度测试测量药物在溶出介质中的释放情况。我们查阅了美国食品药品管理局(USFDA)的溶出数据库,并就剂型类型、仪器类型、搅拌速度、介质体积和溶出曲线的推荐时间点进行了筛选。溶出方法需要特殊的实验室设备,并遵循明确的操作规程。基本信息可参见《美国药典》中的 "溶出"、"药物释放 "和 "溶出程序--开发与验证 "等章节。文章介绍了当前监管部门对建立合适的溶出方法以实施质量控制工具的期望,这是一种在开发批次和批准后商业批次之间保持批次质量和一致性的方法。溶出度方法的绘制具有一定的优势,在产品生命周期中的某些情况下,溶出度方法可以替代扩大规模和批准后变更后所需的大量临床研究,也是确定药物产品低剂量申报豁免的重要工具。本报告结合实例,从当前的监管角度解释了逐步溶出方法开发计划以及需要考虑的因素。科学家需要详细了解介质和容量的选择、活性物质的理化性质、沉降条件、酶的类型、仪器的选择、脱气、沉降器、搅拌速度和时间点的测量。通过有意改变配方和工艺变量,对先进溶解方法的鉴别力进行评估
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review on Dissolution Method Development for Drug Products: Current Regulations and Prospects
Dissolution (in vitro release) testing has been the subject of intense scientific and regulatory interest over the past several decades. As an analytical methodology, in vitro dissolution testing measures drug release into the dissolution media. The U. S. Food and Drug Administration (USFDA) Dissolution Database was reviewed and screened regarding the type of dosage forms, apparatus type, agitation speed, media volume, and recommended time points for the dissolution profile. The dissolution method requires special laboratory equipment, following a well-defined protocol. Basic information is available in the United States Pharmacopeia general chapters<711> Dissolution, <724> Drug Release, and <1092> The Dissolution Procedure – Development and Validation and these chapters were used as a starting point for this revision. The article describes current regulatory expectations for establishing a suitable dissolution method for implementing quality control tools, a way to maintain lot quality and consistency between development batches and post-approval commercial batches. Dissolution methods draw offers some advantages as a possible surrogate for extensive clinical studies in certain cases required after scale-up and post-approval changes in the product's life cycle and serves as an essential tool for establishing waivers for filing of lower strengths of the drug product. The step-by-step dissolution method development plan as per current regulatory perspectives and the factors to be considered are explained with examples. Scientist requires detailed insights on the selection of media and volumes, physicochemical properties of active substance, sink condition, type of enzymes, selection of apparatus, deaeration, sinkers, agitation speed, and time point’s measures. The advanced dissolution method is evaluated against its discriminatory power by intentionally varying formulation and process variables
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