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Quantification and purity determination of newly synthesized thioacridines by capillary liquid chromatography

机译:毛细管液相色谱法定量测定新合成的硫代ac啶

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摘要

Capillary liquid chromatography (CLC) was applied for quantification and impurity profile determination of ten newly synthesized acridine thioderivatives. A reversed-phase CLC system employing two different stationary phases, Nucleosil C_(18) and LiChrosorb RP-select B, was used. The mobile phase composition was optimized to get a satisfactory separation of impurities from the main acridine component in a reasonable analysis time. Significant differences in the chromatographic behavior between acridine derivatives containing and lacking amino groups were observed. Optimized separation conditions were used in CLC to measure the calibration curves of the acridine derivatives in a concentration range from 1.0·10~(-6) to 1.0·10~(-3) M at two different detector wavelengths (214 and 230 nm). Limits of detection and quantification of all the substances were determined. The detection limits went down to units of μM for most of the derivatives. CLC was also demonstrated to be a suitable method for the purity determination of test batches of the acridine thioderivatives.
机译:毛细管液相色谱法(CLC)用于定量和十种新合成的a啶硫代衍生物的杂质分布测定。使用了采用两种不同固定相的Nucleosil C_(18)和LiChrosorb RP-select B反相CLC系统。优化了流动相的组成,以便在合理的分析时间内从主要a啶组分中分离出令人满意的杂质。观察到在含和不含氨基的a啶衍生物之间的色谱行为存在显着差异。优化的分离条件用于CLC中,在两种不同的检测器波长(214和230 nm)下,在1.0·10〜(-6)至1.0·10〜(-3)M的浓度范围内测量a啶衍生物的校准曲线。确定所有物质的检出限和定量限。对于大多数衍生物,检测限降至μM单位。还证明了CLC是测定determination啶硫代衍生物测试批次纯度的合适方法。

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