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采用液相色谱/串联质谱法鉴定辛伐他汀原料药及片剂中的未知杂质。

Identification of unknown impurities in simvastatin substance and tablets by liquid chromatography/tandem mass spectrometry.

作者信息

Vuletić Marko, Cindrić Mario, Koruznjak Jasna Dogan

机构信息

Pliva-Research & Development Ltd., Prilaz baruna Filipovića 29, 10000 Zagreb, Croatia.

出版信息

J Pharm Biomed Anal. 2005 Apr 1;37(4):715-21. doi: 10.1016/j.jpba.2004.11.047. Epub 2004 Dec 25.

Abstract

Unknown impurities were detected in simvastatin substance and tablets at a 0.2% level using the liquid chromatography technique with UV (DAD) detection. The impurity structures were elucidated by a direct hyphenation of liquid chromatograph to high-resolution mass spectrometer with electrospray ionisation interface using solutions of formic acid in water and in acetonitrile as the mobile phase. Peak tracking was performed using the column-switching technique. Accurate mass measurements by quadrupole time-of-flight mass spectrometer equipped with lock-spray provided information about elemental composition of intact molecules and fragments of impurities. Measurement accuracy for precursor ions was around 3 ppm and for fragment ions between 4 and 13 ppm. Mass resolving power was around 6500. Deduced molecular formulae for A1, A2 and A3 impurities were C(27)H(44)O(6), C(26)H(43)O(6) and C(26)H(41)O(5), respectively. The structures proposed for all three impurities revealed modifications of simvastatin molecule on the lactone ring. Impurity A1, detected in simvastatin tablets, was identified as ethyl ester, while the impurities A2 and A3, detected in simvastatin substance, were identified as methyl ester and methyl ether of simvastatin. The impurity from tablets was synthesized and its structure confirmed by LC-UV, LC-MS/MS, and NMR techniques.

摘要

使用带紫外(二极管阵列检测器)检测的液相色谱技术,在辛伐他汀原料药和片剂中检测到含量为0.2%的未知杂质。采用水和乙腈中加入甲酸的溶液作为流动相,通过液相色谱仪与配备电喷雾电离接口的高分辨率质谱仪直接联用,阐明杂质结构。采用柱切换技术进行峰跟踪。配备锁定喷雾的四极杆飞行时间质谱仪进行的精确质量测量提供了有关完整分子和杂质碎片元素组成的信息。前体离子的测量精度约为3 ppm,碎片离子的测量精度在4至13 ppm之间。质量分辨率约为6500。杂质A1、A2和A3的推导分子式分别为C(27)H(44)O(6)、C(26)H(43)O(6)和C(26)H(41)O(5)。针对所有三种杂质提出的结构显示了辛伐他汀分子内酯环上的修饰。在辛伐他汀片剂中检测到的杂质A1被鉴定为乙酯,而在辛伐他汀原料药中检测到的杂质A2和A3被鉴定为辛伐他汀的甲酯和甲醚。片剂中的杂质被合成,并通过液相色谱-紫外、液相色谱-串联质谱和核磁共振技术确认了其结构。

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