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通过关闭分子内光致电子转移来调谐非索非那定的荧光:用于开发一步绿色高通量微孔分光荧光分析测定法的应用,用于片剂和血浆的分析。

Tuning fluorescence of fexofenadine by switching OFF intramolecular photoinduced electron transfer: Application to development of one-step green and high throughput microwell spectrofluorimetric assay for analysis of tablets and plasma.

机构信息

Department of Pharmaceutical Chemistry, College of Pharmacy, King Saud University, Riyadh, Saudi Arabia.

出版信息

Luminescence. 2024 Jul;39(7):e4818. doi: 10.1002/bio.4818.

Abstract

Fexofenadine (FEX) is a non-sedating antihistamine commonly used for the treatment of allergic conditions such as seasonal rhinitis and chronic idiopathic urticaria. This study describes the tuning "ON" the intrinsic fluorescence of FEX by switching "OFF" its intramolecular photoinduced electron transfer (PET) through the protonation of the piperidinyl nitrogen atom using sulfuric acid. The resulting fluorescence was utilized as a basis for the development of a highly sensitive microwell spectrofluorimetric assay (MW-SFA) for the one-step determination of FEX in pharmaceutical tablets and plasma. The linear range of the assay was 10-500 ng ml, and its limit of quantitation was 25.9 ng ml. The proposed MW-SFA was successfully applied to analyze FEX in pharmaceutical tablets and plasma samples, demonstrating good accuracy and precision. The greenness of the assay was confirmed using three metric assessment tools. In conclusion, the MW-SFA is a straightforward, single-step analysis that requires no experimental adjustments. It offers high sensitivity, efficient sample processing, and environmental sustainability. This assay is highly recommended for pharmaceutical quality control and clinical lab use, particularly for measuring FEX levels.

摘要

非索非那定(FEX)是一种非镇静抗组胺药,常用于治疗季节性鼻炎和慢性特发性荨麻疹等过敏病症。本研究描述了通过质子化哌啶氮原子来切换 FEX 的分子内光诱导电子转移(PET),从而“开启”其内在荧光。利用所得荧光,建立了一种用于一步测定药物片剂和血浆中 FEX 的高灵敏度微孔板分光荧光测定法(MW-SFA)。该测定法的线性范围为 10-500ng/ml,定量下限为 25.9ng/ml。所提出的 MW-SFA 成功应用于分析药物片剂和血浆样品中的 FEX,显示出良好的准确性和精密度。使用三种度量评估工具证实了该测定法的绿色环保性。总之,MW-SFA 是一种简单、一步分析,无需进行实验调整。它具有高灵敏度、高效的样品处理和环境可持续性。该测定法非常推荐用于药物质量控制和临床实验室使用,特别是用于测量 FEX 水平。

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