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International Workshop on Qualification and Control of Impurities

机译:杂质鉴定和控制国际讲习班

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During the DIA International Workshop "Impurities and Degradation Products-Biological Qualification, Process Capability, and Analytical Control," the EU Committee for Human Medicinal Products draft guideline on genotoxic impurities was presented. About half of the attendees expressed their support for the use of the threshold of toxicological concern concept as a pragmatic solution. The Food and Drug Administration guidance is under development. The process of qualification of impurities starts with identification. For genotoxic impurities, identification should start with an evaluation of the starting materials and the routes of synthesis to compile a list of impurities that can reasonably be expected to be present in the dmg substance. Among this list, the search for alerting struclures and classification of impurities as highly toxic can be facilitated by use of structure activity relationshipdatabases. Relevant impurities that were identified as potentially genotoxic should be tested as isolated impurities because these impurities are usually present below the detection level of the genotoxicity assay when the dmg substance is used in the assay. Knowledge of the impurity and its source is also the basis for a reduction of these compounds to the lowest possible level that can be achieved with reasonable effort. Trace analytical methods are usually required to monitor process optimization activities. Avoiding a hazardous impurity or a reduction of its levels may require a substantial effort and time in process chemistry or formulation development. The allowance of higher limits for short-term exposure is therefore seen as a pragmatic way to define reasonable effort, especially for batches used in the early clinical development. This remains an important issue that should be further addressed.
机译:在DIA国际研讨会“杂质和降解产物-生物鉴定,过程能力和分析控制”中,提出了欧盟人类药品委员会关于遗传毒性杂质的准则草案。大约一半的参加者表示支持使用毒理学关注的阈值作为务实的解决方案。食品药品管理局的指导正在制定中。杂质鉴定的过程始于鉴定。对于遗传毒性杂质,鉴定应从对原料和合成路线进行评估开始,以汇编出合理预期在dmg物质中存在的一系列杂质。在此列表中,可以通过使用结构活性关系数据库来促进对警报结构和杂质分类为高毒性的搜索。被鉴定为潜在遗传毒性的相关杂质应作为分离的杂质进行测试,因为当在测定中使用dmg物质时,这些杂质通常会低于遗传毒性测定的检测水平。了解杂质及其来源也是将这些化合物降低到可以通过合理的努力实现的最低水平的基础。通常需要跟踪分析方法来监视过程优化活动。避免有害杂质或降低其含量可能需要在过程化学或配方开发中投入大量精力和时间。因此,允许对短期暴露使用更高的限量是定义合理努力的一种实用方法,尤其是对于早期临床开发中使用的批次。这仍然是一个重要的问题,应进一步解决。

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