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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Simultaneous detection of nitrosamines and other sartan-related impurities in active pharmaceutical ingredients by supercritical fluid chromatography
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Simultaneous detection of nitrosamines and other sartan-related impurities in active pharmaceutical ingredients by supercritical fluid chromatography

机译:通过超临界流体色谱法同时检测活性药物成分中的亚硝胺和其他杂质的杂质

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摘要

Since July 2018, the pharmacological class of "sartans" has been the subject of considerable media and analytical interest, as it became known that they are contaminated with nitrosamines such as N-nitrosodimethylamine (NDMA), N-nitrosodiethylamine (NDEA) and N-nitrosodiisopropylamine (NDiPA). Previous compendial methods are not able to detect these new contaminants. Using the latest and innovative Quality-by-Design (QbD) approach, it has now been possible to develop an analytical method that enables to investigate sartans, such as valsartan and losartan. Also a large class of different nitrosamines in the ppb range and sartan-related impurities can thus be determined simultaneously in a single analysis using supercritical fluid chromatography (SFC). By using SFC, a broad spectrum of nonpolar and very polar impurities can be separated and analyzed in under 20 min. The analytical method developed is validated for limit testing according to ICH Q2(R1) and fulfills default thresholds of EMA and FDA for testing of drug substances and genotoxic impurities. Additionally, it can also be adapted to other pharmaceuticals that may be contaminated with nitrosamines, since tetrazole synthesis as the underlying cause of nitrosamine contamination is important for a set of other non-sartan drug substances. (C) 2019 Elsevier B.V. All rights reserved.
机译:自2018年7月以来,“SARTANS”的药理学阶级一直是相当大媒体和分析兴趣的主题,因为它已知它们被亚硝胺(如NITROSOSODIMENINE(NDMA),N-硝基二乙胺(NDEA)和N-污染亚硝基二异丙胺(NDIPA)。以前的努力方法无法检测这些新的污染物。现在,使用最新和创新的质量 - 设计(QBD)方法,现已有可能开发一个可以调查Sartans的分析方法,例如Valsartan和Losartan。因此,在使用超临界流体色谱法(SFC)的单一分析中,也可以在单一的分析中同时测定PPB范围和与西班相关杂质中的大类不同的亚硝胺。通过使用SFC,可以在20分钟内分离并分析广谱的非极性和非常极性的杂质。根据ICH Q2(R1)的限制测试验证了分析方法,并满足了EMA和FDA的默认阈值以测试药物物质和遗传毒性杂质。另外,它还可以适用于可污染亚硝基胺的其他药物,因为四唑合成作为亚硝胺污染的潜在原因对一组其他非三锡药物来说是重要的。 (c)2019 Elsevier B.v.保留所有权利。

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