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 >Utilizing capillary gas chromatography mass spectrometry to determine 4-benzotrifluoride t-butyl ether as a reaction by-product in fluoxetine synthesized using potassium t-butoxide as base.
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Utilizing capillary gas chromatography mass spectrometry to determine 4-benzotrifluoride t-butyl ether as a reaction by-product in fluoxetine synthesized using potassium t-butoxide as base.

机译:利用毛细管气相色谱质谱法测定以叔丁醇钾为碱合成的氟西汀中的反应副产物4-苯并三氟叔丁基醚。

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摘要

Fluoxetine hydrochloride has been prepared using two similar synthetic routes, both of which rely upon an ether formation reaction mediated by a base. The base used can affect the impurity profile of this reaction. It was proposed that the synthesis of fluoxetine carried out using potassium t-butoxide as base and 4-chlorobenzotrifluoride (or 4-fluorobenzotrifluoride) in the ether formation step may result in the formation of 4-benzotrifluoride t-butyl ether as a reaction by-product. To test this hypothesis, capillary gas chromatography-mass spectrometry (GC/MS) was utilized to evaluate samples of free base fluoxetine synthesized using sodium hydride (NaH) or potassium t-butoxide as the base. Assay conditions using selected ion monitoring (SIM) were developed, which allowed detection of trace levels (parts per million, ppm) of 4-benzotrifluoride t-butyl ether in fluoxetine free base sample matrix. Response linearity, precision, and standard spike recovery were examined during development, and were foundto be suitable. Comparisons of fluoxetine samples generated from both NaH and potassium t-butoxide processes were performed using the GC/MS assay.
机译:盐酸氟西汀已使用两种相似的合成方法制备,两者均依赖于由碱介导的醚形成反应。使用的碱会影响该反应的杂质分布。有人提出,在醚形成步骤中,使用叔丁醇钾作为碱和4-氯苯并三氟化物(或4-氟苯并三氟)进行氟西汀的合成可能导致4-苯并三氟叔丁基醚的形成,其反应是-产品。为了验证这一假设,利用毛细管气相色谱-质谱(GC / MS)评估了以氢化钠(NaH)或叔丁醇钾为碱合成的游离碱氟西汀样品。开发了使用选定离子监测(SIM)的分析条件,该条件允许检测氟西汀游离碱样品基质中的痕量水平(百万分之一,ppm)的4-苯并三氟叔丁基醚。在开发过程中检查了响应线性,精度和标准加标回收率,发现它们是合适的。从NaH和叔丁醇钾工艺生成的氟西汀样品的比较使用GC / MS分析进行。

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