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在线柱后溶剂辅助和直接溶剂辅助电喷雾电离用于血浆样品中普萘洛尔对映体的手性分析。

Online post-column solvent assisted and direct solvent-assisted electrospray ionization for chiral analysis of propranolol enantiomers in plasma samples.

作者信息

Elmongy Hatem, Ahmed Hytham, Wahbi Abdel-Aziz, Koyi Hirsh, Abdel-Rehim Mohamed

机构信息

Department of Environmental Science and Analytical Chemistry, Stockholm University, SE10691, Stockholm, Sweden; Pharmaceutical Analysis Department, Faculty of Pharmacy, Damanhour University, Damanhour, 22511, Egypt.

Pharmaceutical Analysis Department, Faculty of Pharmacy, Damanhour University, Damanhour, 22511, Egypt.

出版信息

J Chromatogr A. 2015 Oct 30;1418:110-118. doi: 10.1016/j.chroma.2015.09.051. Epub 2015 Sep 25.

Abstract

An Online post-column solvent-assisted ionization (OPSAI) method was developed for enhancing the ionization of the beta-blocker propranolol utilizing normal phase LC-MS/MS. Solvent-assisted electrospray ionization (SAESI) was studied by the introduction of the assistant solvents A: 0.5% Formic acid in Isopropanolol, B: 0.5% Formic acid in Isopropanolol-Water (1:1), and C: 0.5% Formic acid in water into the electrospray ionization chamber using a spray needle. Analyte molecules can be directly ionized by the aid of the assistant solvent spray. Both methods were applied to the chiral separation of propranolol enantiomers using normal phase analysis on cellulose-based chiral column. Interestingly, both methods are easy to handle and offer a wide range of assistant solvents that can be used in order to gain the optimum ionization of the analyte molecules. The both methods considerably improved the analyte signal and the peak area greatly increased. The propranolol average signal-to-noise (S/N) ratio was enhanced from 26±1 and 42±1 to 2341±61 and 1725±29 for R-propranolol and S-propranolol, respectively, when the post-column solvent method (OPSAI) was used with isopropanol-assistant solvent (A). While in case of solvent-assisted electrospray ionization method (SAESI) signal was enhanced from 26±1 and 42±1 to 2223±72 and 2155±58 for R-propranolol and S-propranolol, respectively, with water as an assistant solvent. The limit of detection was 10ng/mL and the method was linear in the range 50-2000ng/mL. The NPLC-MS method was applied for the determination of propranolol enantiomers in human plasma after microextraction by packed C18 sorbent.

摘要

开发了一种在线柱后溶剂辅助电离(OPSAI)方法,利用正相液相色谱-串联质谱法(LC-MS/MS)增强β受体阻滞剂普萘洛尔的电离。通过使用喷雾针将辅助溶剂A:异丙醇中0.5%的甲酸、B:异丙醇-水(1:1)中0.5%的甲酸和C:水中0.5%的甲酸引入电喷雾电离室,研究了溶剂辅助电喷雾电离(SAESI)。分析物分子可借助辅助溶剂喷雾直接电离。两种方法均应用于在基于纤维素的手性柱上进行正相分析对手性普萘洛尔对映体进行分离。有趣的是,两种方法都易于操作,并提供了广泛的辅助溶剂,可用于获得分析物分子的最佳电离。两种方法都显著改善了分析物信号,峰面积大幅增加。当使用柱后溶剂法(OPSAI)和异丙醇辅助溶剂(A)时,R-普萘洛尔和S-普萘洛尔的普萘洛尔平均信噪比分别从26±1和42±1提高到2341±61和1725±29。而在溶剂辅助电喷雾电离法(SAESI)中,以水作为辅助溶剂时,R-普萘洛尔和S-普萘洛尔的信号分别从26±1和42±1提高到2223±72和2155±58。检测限为10ng/mL,该方法在50-2000ng/mL范围内呈线性。采用NPLC-MS法测定了人血浆中经填充C18吸附剂微萃取后的普萘洛尔对映体。

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