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Isolation and structure determination of oxidative degradation products of atorvastatin.

机译:阿托伐他汀氧化降解产物的分离和结构测定。

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Methods were developed for the preparation and isolation of four oxidative degradation products of atorvastatin. ATV-FX1 was prepared in the alkaline acetonitrile solution of atorvastatin with the addition of hydrogen peroxide. The exposition of aqueous acetonitrile solution of atorvastatin to sunlight for several hours followed by the alkalization of the solution with potassium hydroxide to pH 8-9 gave ATV-FXA. By the acidification of the solution with phosphoric acid to pH 3 ATV-FXA1 and FXA2 were prepared. The isolation of oxidative degradation products was carried out on a reversed-phase chromatographic column Luna prep C18(2) 10 microm applying several separation steps. The liquid chromatography coupled with a mass spectrometer (LC-MS), high resolution MS (HR-MS), 1D and 2D NMR spectroscopy methods were applied for the structure elucidation. All degradants are due to the oxidation of the pyrrole ring. The most probable reaction mechanism is intermediate endoperoxide formation with subsequent rearrangement and nucleophilic attack by the 5-hydroxy group of the heptanoic fragment. ATV-FX1 is 4-[1b-(4-Fluoro-phenyl)-6-hydroxy-6-isopropyl-1a-phenyl-6a-phenylcarbamoyl-hexahy dro-1,2-dioxa-5a-aza-cyclopropa[a]inden-3-yl]-3-(R)-hydroxy-butyric acid and has a molecular mass increased by two oxygen atoms with regard to atorvastatin. ATV-FXA is the regioisomeric compound, 4-[6-(4-Fluoro-phenyl)-6-hydroxy-1b-isopropyl-6a-phenyl-1a-phenylcarbamoyl-hexahy dro-1,2-dioxa-5a-aza-cyclopropa[a]inden-3-yl]-3-(R)-hydroxy-butyric acid. Its descendants ATV-FXA1 and FXA2 appeared without the atorvastatin heptanoic fragment and are 3-(4-Fluoro-benzoyl)-2-isobutyryl-3-phenyl-oxirane-2-carboxylic acid phenylamide and 4-(4-Fluoro-phenyl)-2,4-dihydroxy-2-isopropyl-5-phenyl-3,6-dioxa-bicyclo[3.1.0]he xane-1-carboxylic acid phenylamide, respectively. Quantitative NMR spectroscopy was employed for the assay determination of isolated oxidative degradation products. The results obtained were used for the determination of the UV response factors relative to atorvastatin.
机译:开发了制备和分离阿托伐他汀的四种氧化降解产物的方法。在阿托伐他汀的碱性乙腈溶液中加入过氧化氢制备ATV-FX1。将阿托伐他汀的乙腈水溶液在阳光下暴露数小时,然后用氢氧化钾将溶液碱化至pH 8-9,得到ATV-FXA。通过用磷酸将溶液酸化至pH 3,制备了ATV-FXA1和FXA2。氧化降解产物的分离在反相色谱柱Luna prep C18(2)10 microm上进行,应用了几个分离步骤。液相色谱结合质谱仪(LC-MS),高分辨率质谱仪(HR-MS),1D和2D NMR光谱法用于结构阐明。所有降解物均归因于吡咯环的氧化。最可能的反应机理是中间过氧化物形成,随后发生重排,庚烷片段的5-羟基引起亲核攻击。 ATV-FX1是4- [1b-(4-氟-苯基)-6-羟基-6-异丙基-1a-苯基-6a-苯基氨基甲酰基-六氢dro-1,2-二氧杂-5a-氮杂-环丙烷[a]茚-3-基] -3-(R)-羟基丁酸,其分子量相对于阿托伐他汀增加两个氧原子。 ATV-FXA是区域异构化合物,4- [6-(4-氟-苯基)-6-羟基-1b-异丙基-6a-苯基-1a-苯基氨基甲酰基-六氢dro-1,2-二氧杂-5a-氮杂-环丙烷[a]茚满-3-基] -3-(R)-羟基丁酸。它的后代ATV-FXA1和FXA2似乎没有阿托伐他汀的庚酸片段,并且是3-(4-氟-苯甲酰基)-2-异丁酰基-3-苯基-环氧乙烷-2-羧酸苯酰胺和4-(4-氟-苯基) -2,4-二羟基-2-异丙基-5-苯基-3,6-二氧杂双环[3.1.0]己并-1-羧酸苯酰胺。采用定量NMR光谱法测定分离的氧化降解产物。获得的结果用于确定相对于阿托伐他汀的紫外线响应因子。

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