Meng Fei, Zhou Xiaohua, Hou Yurong, Zhao Haodong, Zhang Jinlin, Huang Qing, Zhang Mei, Adams Erwin, Yuan Yaozuo, Shi Hai-Wei
Jiangsu Institute for Food and Drug Control, Nanjing, 210019, China; NMPA Key Laboratory for Impurity Profile of Chemical Drugs, Nanjing, 210019, China; School of Pharmacy, Nanjing University of Chinese Medicine, Nanjing, 210046, China.
Jiangsu Institute for Food and Drug Control, Nanjing, 210019, China; NMPA Key Laboratory for Impurity Profile of Chemical Drugs, Nanjing, 210019, China.
Talanta. 2024 Sep 1;277:126359. doi: 10.1016/j.talanta.2024.126359. Epub 2024 Jun 5.
Characterization of aminoglycoside antibiotics like ribostamycin is important due to the complex composition and common toxic impurities. Aerosol detectors are often employed for determination of these non-absorbent analytes. In this work, a robust and cost-effective method was developed for simultaneous detection of ribostamycin and its related substances using high-performance liquid chromatography (HPLC) with a relative new aerosol detector named nano-quantity analyte detector (NQAD). With the introduction of less toxic but more compatible ion-pairs pentafluoropropionic acid (PFPA) and trifluoroacetic acid (TFA) in the eluent, an optimized separation effect was achieved. Compared with the other two aerosol detectors namely ELSD (evaporative light scattering detector) and CAD (charged aerosol detector), method verification and quantitative detection results revealed that NQAD had higher sensitivity than ELSD with a 0.8 μg/mL limit of detection, as well as wider linear range (from 2 μg/mL to 1000 μg/mL) than both CAD (from 2 μg/mL to 200 μg/mL) and ELSD (from 8 μg/mL to 200 μg/mL) detector. The performance of NQAD helped to realize detection of ribostamycin and its impurities with significant concentration differences in a single run. With a cation suppressor to eliminate the ion-suppression caused by the ion-pairs in the eluent, the structure of nine impurities in ribostamycin sample was characterized by liquid chromatography-mass spectrum (LC-MS). Both external standard and area normalization calculation were investigated, and NQAD obtained more accurate results due to its full-range linear response-to-concentration relationship, providing an alternative for routine quality control of multi analyte systems.
由于核糖霉素等氨基糖苷类抗生素成分复杂且存在常见的有毒杂质,对其进行表征非常重要。气溶胶检测器常用于测定这些不吸收的分析物。在这项工作中,开发了一种稳健且经济高效的方法,使用高效液相色谱(HPLC)和一种相对较新的气溶胶检测器——纳量分析物检测器(NQAD)同时检测核糖霉素及其相关物质。通过在洗脱液中引入毒性较小但更具兼容性的离子对五氟丙酸(PFPA)和三氟乙酸(TFA),实现了优化的分离效果。与另外两种气溶胶检测器蒸发光散射检测器(ELSD)和 charged aerosol detector(CAD)相比,方法验证和定量检测结果表明,NQAD 的灵敏度高于 ELSD,检测限为 0.8 μg/mL,线性范围(从 2 μg/mL 到 1000 μg/mL)比 CAD(从 2 μg/mL 到 200 μg/mL)和 ELSD(从 8 μg/mL 到 200 μg/mL)都更宽。NQAD 的性能有助于在一次运行中实现对核糖霉素及其浓度差异显著的杂质的检测。使用阳离子抑制器消除洗脱液中离子对引起的离子抑制,通过液相色谱 - 质谱(LC - MS)对核糖霉素样品中的九种杂质结构进行了表征。研究了外标法和面积归一化计算,由于 NQAD 具有全范围的线性响应 - 浓度关系,因此获得了更准确的结果,为多分析物系统的常规质量控制提供了一种替代方法。