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首页> 外文期刊>Analytical and bioanalytical chemistry >Analysis of potential genotoxic impurities in pharmaceuticals by two-dimensional gas chromatography with Deans switching and independent column temperature control using a low-thermal-mass oven module
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Analysis of potential genotoxic impurities in pharmaceuticals by two-dimensional gas chromatography with Deans switching and independent column temperature control using a low-thermal-mass oven module

机译:采用Deans转换和采用低热质量炉模块的独立柱温控制的二维气相色谱法分析药物中潜在的遗传毒性杂质

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摘要

The analysis of potential genotoxic impurities (PGIs) in active pharmaceutical ingredients (APIs) is a challenging task. The target limit of detection for a PGI in an API is typically 1 ppm (1 μg/g API). This is about 500 times lower than for classical impurity analysis. Consequently, analytical methods for trace analysis, mostly in combination with MS detection, need to be applied for the qualitative and quantitative determination of these impurities. A two-dimensional capillary GC method is presented that can be used for the determination of some target PGIs. A concentrated solution of the API sample is directly introduced in the GC-MS system, using an apolar column for first-dimension separation. The fraction (heart-cut) containing the PGIs is transferred to a second capillary column, installed in a low-thermal-mass oven (LTM). The LTM focuses the heart-cut(s) and allows independent temperature-programmed analysis with a polar second-dimension column. The API, solvent, and derivatization agents are not introduced in the second column or in the MS detector, avoiding contamination, column degradation, and target analyte peak detection/integration issues. The performance of this set-up is illustrated by the analysis of some Michael-reactive acceptor PGIs and haloalcohols in carbamazepine as test matrix. Excellent reproducibility (<10% RSD) at the low parts per million level and low detection limits (<1 ppm) were obtained.
机译:活性药物成分(API)中潜在的遗传毒性杂质(PGI)的分析是一项艰巨的任务。 API中PGI的检测目标限通常为1 ppm(1μg/ g API)。这比传统的杂质分析低约500倍。因此,需要将痕量分析的分析方法(主要与质谱检测结合使用)用于这些杂质的定性和定量测定。提出了一种二维毛细管气相色谱方法,可用于确定某些目标PGI。将API样品的浓缩溶液直接引入GC-MS系统,使用非极性色谱柱进行一维分离。包含PGI的馏分(中心馏分)被转移到第二个毛细管柱,该毛细管柱安装在低热质量炉(LTM)中。 LTM可以对心脏切开处进行聚焦,并可以使用极性第二维色谱柱进行独立的温度程序分析。 API,溶剂和衍生化试剂不会引入第二色谱柱或MS检测器中,从而避免了污染,色谱柱降解和目标分析物峰检测/积分问题。通过分析卡马西平中一些迈克尔反应性受体PGI和卤代醇作为测试基质,可以说明这种设置的性能。在百万分率低的水平和低的检测限(<1 ppm)下获得了出色的重现性(<10%RSD)。

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