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采用先进分析技术鉴定、分离和结构确证阿哌沙班的新型强制降解产物。

Identification, isolation, and structural characterization of novel forced degradation products of apixaban using advanced analytical techniques.

机构信息

Analytical Discovery Chemistry, Aragen Life Sciences Pvt. Ltd., IDA Nacharam, Hyderabad, 500076, India.

Department of Chemistry, GITAM School of Science, GITAM Deemed to be University, Visakhapatnam, 530045, India.

出版信息

J Sep Sci. 2022 Nov;45(21):3942-3954. doi: 10.1002/jssc.202200466. Epub 2022 Sep 12.

DOI:10.1002/jssc.202200466
PMID:36048725
Abstract

The current research explains the stress degradation behavior of Apixaban, which is an anticoagulant or blood thinner. The degradation was conducted using hydrolytic, oxidative, thermal, and photolytic conditions. Apixaban is relatively stable in oxidative, thermal, and photolytic conditions; however, considerable degradation was observed in acid and base hydrolysis. Degradation products were identified using ultra-high performance liquid chromatography-mass spectrometry, isolated using semi-preparative high-performance liquid chromatography, and structural characterization by high-resolution mass spectrometry and nuclear magnetic resonance spectroscopy. A total of five degradation products were identified and isolated in acid and base degradation. Degradation products 1, 2, and 3 were observed in acid conditions, whereas in base conditions, along with those three, two more degradation products 4 and 5 were identified. The representative thing was that among the five degradation products, two sets of positional isomers 1, 4, and 2, 5 were observed; out of which 2 and 5 are novel. The remaining degradation products 1, 3, and 4 are already reported tentatively using a single analytical technique of mass analysis without any evidence from nuclear magnetic resonance spectroscopy. Hence, the present study focused on using high-resolution mass, and nuclear magnetic resonance spectroscopy data for concrete confirmation of structures for degradation products.

摘要

本研究解释了抗凝剂或血液稀释剂阿哌沙班的降解行为。降解是在水解、氧化、热和光解条件下进行的。阿哌沙班在氧化、热和光解条件下相对稳定,但在酸和碱水解中观察到相当大的降解。使用超高效液相色谱-质谱联用技术鉴定降解产物,使用半制备高效液相色谱法分离,通过高分辨率质谱和核磁共振波谱法进行结构表征。在酸和碱降解中鉴定并分离出了总共五个降解产物。在酸性条件下观察到降解产物 1、2 和 3,而在碱性条件下,除了这三种,还鉴定出了另外两种降解产物 4 和 5。值得注意的是,在这五个降解产物中,观察到了两组位置异构体 1、4 和 2、5,其中 2 和 5 是新的。其余降解产物 1、3 和 4 已经使用单一的质谱分析技术进行了初步鉴定,但没有核磁共振波谱法的证据。因此,本研究重点使用高分辨率质谱和核磁共振波谱数据对降解产物的结构进行具体确认。

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