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受生物启发的发光银纳米颗粒的一锅法合成及其作为荧光纳米传感器用于分析两种辅助性 COVID-19 药物的重要用途。

Bio-inspired one-pot synthesis of luminescent silver nanoparticles and its significant utility as a fluorescence nano sensor for analysis of two adjunctive COVID-19 drugs.

作者信息

Mostafa Yasmeen E, Elsebaei Fawzi, Metwally Mohammed El-Sayed

机构信息

Department of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, Mansoura University, P.O. Box 35516, Mansoura, Egypt.

出版信息

BMC Chem. 2024 Nov 14;18(1):227. doi: 10.1186/s13065-024-01335-8.

Abstract

This study reveals one-step green synthesis of plant inspired silver nanoparticles (Ag-NPs). The synthesis procedure relies on the bio-reduction of Ag to Ag using orange waste (orange peel) extract as cheap, readily available, sustainable, biocompatible feedstocks as a reducing and stabilizing agent. The prepared Ag-NPs passed through a full characterization procedure for better confirmation and elucidation of optical and structural properties. The fluorescence of the prepared Ag-NPs has a quantum yield of 17.15% enabling its potential use in chemical sensing of drugs. Ag-NPs are conceived to be used as a fluorescent nano sensor for sensitive, ecofriendly, rapid spectrofluorimetric determination of two recent direct oral anticoagulants, namely, rivaroxaban (RIV) and edoxaban tosylate monohydrate (EDT); COVID-19 adjunctive drugs in their raw materials and pharmaceutical tablets. The fluorescence of the prepared Ag-NPs at 333 nm was found to be substantially quenched in existence of increasing concentrations of each drug. The quenching mechanisms were studied and explained. The validation of the method revealed linear correlation over the ranges of 0.5-10 µg/ml with an excellent regression correlation (r = 0.9999) for both drugs with minimum detection limits of 0.14 and 0.16 µg/ml for rivaroxaban and edoxaban tosylate monohydrate, correspondingly. Three different metrics were employed for verifying the greenness profile of the presented study. The findings of the greenness assessment were congruent and compatible with the green synthesis procedure, ecofriendly analysis, and the exclusion of using organic solvents and noxious materials opening an avenue for green synthesis of nanoparticles instead of chemical and physical methods.

摘要

本研究揭示了受植物启发的银纳米颗粒(Ag-NPs)的一步绿色合成方法。合成过程依赖于使用橙皮废料提取物作为廉价、易得、可持续且生物相容的原料,将银生物还原为银纳米颗粒,该提取物同时作为还原剂和稳定剂。所制备的Ag-NPs经过了全面的表征程序,以更好地确认和阐明其光学和结构性质。所制备的Ag-NPs的荧光量子产率为17.15%,使其具有用于药物化学传感的潜力。Ag-NPs被设想用作荧光纳米传感器,用于灵敏、环保、快速地通过荧光光谱法测定两种新型直接口服抗凝剂,即利伐沙班(RIV)和甲苯磺酸依度沙班一水合物(EDT);它们作为COVID-19辅助药物的原料和药物片剂。发现在每种药物浓度增加时,所制备的Ag-NPs在333 nm处的荧光会显著猝灭。对猝灭机制进行了研究和解释。该方法的验证表明,两种药物在0.5 - 10 µg/ml范围内呈线性相关,回归相关系数极佳(r = 0.9999),利伐沙班和甲苯磺酸依度沙班一水合物的最低检测限分别为0.14和0.16 µg/ml。采用了三种不同的指标来验证本研究的绿色度概况。绿色度评估的结果与绿色合成过程、生态友好分析以及不使用有机溶剂和有害物质相一致且相兼容,为纳米颗粒的绿色合成开辟了一条途径,取代了化学和物理方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7610/11566088/2375978ee9dc/13065_2024_1335_Fig1_HTML.jpg

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