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通过核壳反相液相色谱法快速灵敏地同时分离和电化学检测药物制剂中的盐酸丁卡因和盐酸羟甲唑啉。

Rapid and sensitive simultaneous separation and electrochemical detection of tetracaine hydrochloride and oxymetazoline hydrochloride in pharmaceutical formulations via core-shell reversed-phase liquid chromatography.

作者信息

Alghamdi Huda, Alsaeedi Majidah, Hayes Phyllis E, Glennon Jeremy D

机构信息

Innovative Chromatography Group, Irish Separation Science Cluster (ISSC), School of Chemistry and Analytical & Biological Chemistry Research Facility (ABCRF), University College Cork, College Road, Cork T12 YN60, Ireland.

Innovative Chromatography Group, Irish Separation Science Cluster (ISSC), School of Chemistry and Analytical & Biological Chemistry Research Facility (ABCRF), University College Cork, College Road, Cork T12 YN60, Ireland.

出版信息

J Pharm Biomed Anal. 2022 May 30;214:114717. doi: 10.1016/j.jpba.2022.114717. Epub 2022 Mar 12.

DOI:10.1016/j.jpba.2022.114717
PMID:35358771
Abstract

Tetracaine hydrochloride (TCH) is a nasal anesthetic and oxymetazoline hydrochloride (OZH) is a nasal decongestant. A moderate to acute overdosage of OZH and TCH can lead to mydriasis, nausea, cyanosis, tachycardia, dyspnoea, cardiovascular failure, disorientation, seizures, and even death. Liquid chromatography (LC) has been mainly utilized for the individual determination of either TCH or OZH; however, there is a need for rapid and efficient methods for simultaneous analysis in pharmaceutical formulations and aqueous samples. This study highlights the use of the fast and efficient separation capabilities of core-shell silica particles in liquid chromatography (LC) for the simultaneous determination of TCH and OZH using UV detection and the enhanced selectivity afforded by electrochemical detection at a boron-doped diamond (BDD) electrode. Rapid reversed-phase (RP) separation and detection of OZH and TCH in nasal spray and eye drops was achieved within 45 s using a poroshell 120 EC-C column, by adjusting the ratio of organic solvent, mobile phase pH, detection potential and mobile phase flow rate. Sensitivity was compared using ultraviolet (UV) detection at 280 nm, and ECD at + 1.3 V with detection limits of 40 and 70 nM for TCH and OZH, respectively. The developed rapid method was utilized successfully in the analysis of pharmaceutical formulations, where the estimated levels of TCH and OZH in these formulations are in agreement with the specified values outlined by the manufacturers.

摘要

盐酸丁卡因(TCH)是一种鼻腔麻醉剂,盐酸羟甲唑啉(OZH)是一种鼻减充血剂。OZH和TCH的中度至急性过量可导致瞳孔散大、恶心、发绀、心动过速、呼吸困难、心血管衰竭、定向障碍、癫痫发作,甚至死亡。液相色谱(LC)主要用于单独测定TCH或OZH;然而,需要快速有效的方法来同时分析药物制剂和水性样品。本研究重点介绍了核壳硅胶颗粒在液相色谱(LC)中快速高效的分离能力,用于使用紫外检测同时测定TCH和OZH,以及在硼掺杂金刚石(BDD)电极上电化学检测所提供的增强选择性。通过调整有机溶剂比例、流动相pH值、检测电位和流动相流速,使用poroshell 120 EC-C柱在45秒内实现了鼻腔喷雾剂和滴眼液中OZH和TCH的快速反相(RP)分离和检测。使用280 nm的紫外(UV)检测和+1.3 V的电化学检测(ECD)比较了灵敏度,TCH和OZH的检测限分别为40和70 nM。所开发的快速方法成功用于药物制剂的分析,这些制剂中TCH和OZH的估计水平与制造商规定的值一致。

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