[Impurity profile analysis of amphotericin B using on-line two-dimensional high performance liquid chromatography-quadrupole time-of-flight mass spectrometry].

Rong-Wen Weng, Xuan-Tang Wang, Hong-Liang Wen, Hao Liu
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Abstract

Amphotericin B (AmB) is a polyene-macrolide antimicrobial drug with a broad antibacterial spectrum and remarkable efficacy against deep fungal infections. It binds to ergosterol on the fungal cell membrane and alters its permeability, thereby destroying the membrane. AmB is a multicomponent antimicrobial medication that contains a wide range of impurities, rendering quality analysis extremely difficult. In the current Chinese Pharmacopoeia (Edition 2020) and European Pharmacopoeia (EP10.3), high performance liquid chromatography (HPLC) is applied to examine related substances in AmB. However, this technique presents a number of issues. For instance, the mobile phases used in the HPLC method described in both references contain nonvolatile inorganic salts, which cannot be coupled with a mass spectrometry (MS) detector. In addition, because the mobile phases used have a low pH, the component/impurities of AmB drug can easily be degraded or interconverted during the analytical process, leading to reduced analytical accuracy. Therefore, the accuracy and sensitivity of this method must be improved. In this study, a method based on on-line two-dimensional high performance liquid chromatography-quadrupole time-of-flight mass spectrometry (2D HPLC-Q TOF/MS) was developed to analyze the impurity profile of AmB in accordance with the Chinese Pharmacopoeia (Edition 2020) and European Pharmacopoeia (EP10.3). The method combines on-line dilution and a multiple-capture HPLC system to achieve the efficient separation of AmB component/impurities. It also resolves the issue of poor solvent compatibility in 2D HPLC, increases the analytical flux, enhances the automation capability, reduces the mutual conversion of AmB and its impurities during the analytical process, and increases the detection sensitivity of the method. MS was also used to determine the structural inference of unstable components and impurities. An XBridge Shield C18 column (250 mm×4.6 mm, 3 μm) was used for first-dimensional-liquid chromatography with gradient elution using methanol-acetonitrile-4.2 g/L citric acid monohydrate solution (10∶30∶60, v/v/v, pH 4.7) as mobile phase A and methanol-acetonitrile-4.2 g/L citric acid monohydrate solution (12∶68∶20, v/v/v, pH 3.9) as mobile phase B. An Xtimate C8 column (10 mm×2.1 mm, 5 μm) was used as the trap column, and trapping and desalting were performed using 10 mmol/L ammonium formate aqueous solution containing 0.1% formic acid-acetonitrile (95∶5, v/v). An Xtimate C8 column (250 mm×2.1 mm, 5 μm) was used for second-dimensional-liquid chromatography with gradient elution using 10 mmol/L ammonium formate aqueous solution containing 0.1% formic acid-acetonitrile (95∶5, v/v) and 10 mmol/L ammonium formate aqueous solution containing 0.1% formic acid-acetonitrile (5∶95, v/v) as mobile phases. The data were collected in positive-ion mode. In this study, the structures of six impurities in amphotericin B were inferred, according to the fragmentation, the MS and MS2 spectra of each impurity. The developed method can be used to quickly and sensitively analyze the impurity profile of AmB. Furthermore, the research results on impurity profiles can be applied to guide improvements in AmB production.

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[利用在线二维高效液相色谱-四极杆飞行时间质谱法分析两性霉素 B 的杂质概况]。
两性霉素 B(AmB)是一种多烯-大环内酯类抗菌药,抗菌谱广,对深部真菌感染有显著疗效。它能与真菌细胞膜上的麦角固醇结合,改变其渗透性,从而破坏细胞膜。AmB 是一种多成分抗菌药物,含有多种杂质,因此质量分析极为困难。在现行的《中国药典》(2020 年版)和《欧洲药典》(EP10.3)中,采用高效液相色谱法(HPLC)检测 AmB 中的相关物质。然而,这项技术也存在一些问题。例如,这两份参考文献中描述的高效液相色谱法中使用的流动相含有非挥发性无机盐,无法与质谱检测器联用。此外,由于所用流动相的 pH 值较低,AmB 药物的成分/杂质在分析过程中很容易发生降解或相互转化,导致分析精度降低。因此,必须提高该方法的准确度和灵敏度。本研究根据《中国药典》(2020年版)和《欧洲药典》(EP10.3)的相关规定,建立了一种在线二维高效液相色谱-四极杆飞行时间质谱(2D HPLC-Q TOF/MS)分析AmB杂质的方法。该方法结合了在线稀释和多捕获高效液相色谱系统,实现了AmB成分/杂质的高效分离。该方法解决了二维高效液相色谱中溶剂相容性差的问题,提高了分析通量,增强了自动化能力,减少了分析过程中 AmB 与杂质的相互转化,提高了方法的检测灵敏度。质谱还用于确定不稳定成分和杂质的结构推断。采用 XBridge Shield C18 色谱柱(250 mm×4.6 mm, 3 μm)进行一维液相色谱分析,流动相 A 为甲醇-乙腈-4.2 g/L 一水柠檬酸溶液(10∶30∶60, v/v/v, pH 4.7),流动相 B 为甲醇-乙腈-4.采用 Xtimate C8 色谱柱(10 mm×2.1 mm,5 μm)作为捕集柱,使用含 0.1%甲酸的 10 mmol/L 甲酸铵水溶液-乙腈(95∶5,v/v)进行捕集和脱盐。采用 Xtimate C8 色谱柱(250 mm×2.1 mm,5 μm)进行二维液相色谱分析,以 10 mmol/L 甲酸铵水溶液(含 0.1%甲酸-乙腈(95∶5,v/v))和 10 mmol/L 甲酸铵水溶液(含 0.1%甲酸-乙腈(5∶95,v/v))为流动相进行梯度洗脱。数据采集采用正离子模式。根据各杂质的碎片、质谱和 MS2 图谱,推断出两性霉素 B 中 6 种杂质的结构。所开发的方法可用于快速、灵敏地分析两性霉素 B 的杂质概况。此外,杂质谱分析的研究成果还可用于指导改进 AmB 的生产。
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