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基于中心复合设计的甜柠檬废料衍生核壳结构金纳米粒子@碳点可视化及无损伤检测色氨酸方法的建立

Central composite design-assisted visual and non-invasive detection of sertraline by sweet lemon waste-derived core-shell AuNPs@CDs.

机构信息

Chemistry Department, Yasouj University, Yasouj, 75918-74831, Iran.

Chemistry Department, Yasouj University, Yasouj, 75918-74831, Iran.

出版信息

Anal Chim Acta. 2024 Jul 11;1312:342721. doi: 10.1016/j.aca.2024.342721. Epub 2024 May 13.

Abstract

This study reports a fast and visual detection method of antidepressant sertraline (SRT) drug by the core-shell AuNPs@CDs as the nanoprobes. The CDs has been eco-friendly synthesized from sweet lemon wastes to directly reduce Au to AuNPs without any external photoirradiation process or additional reductants. Optimizing key variables that impact the sensing process has been done using the central composite design (CCD) approach to simulate the assay condition before the analysis. Adding SRT with different concentrations to the nanoprobes under mildly acidic conditions presents an absorbance peak at 560 nm with purple color tonalities that differ from the behavior of alone nanoprobes (530 nm, pink color). The obtained absorption change is linearly proportional to the increase of SRT concentration from 1 μM to 35 μM with a limit of detection (LOD) value of 100 nM. The color changes with a vivid tonality from pink and purple to violet as the colorful fingerprint patterns are readily traceable by the naked eye, allowing the visual assay of SRT. The greenness of the developed approach is well evaluated by some international indexes including the complimentary green analytical procedure (ComplexGAPI) and also, the analytical greenness (AGREE) indexes. The proposed waste-derived nanoprobes based on the eco-friendly procedure not only conduct quantitative and qualitative non-invasive analysis of SRT by the naked eye but also, may widen for other applications in various fields.

摘要

本研究报告了一种快速可视化的抗抑郁药舍曲林(SRT)药物检测方法,采用核壳 AuNPs@CDs 作为纳米探针。CDs 是从甜柠檬废物中环保合成的,可直接将 Au 还原为 AuNPs,无需任何外部光照射过程或额外的还原剂。使用中心复合设计(CCD)方法优化了影响传感过程的关键变量,以在分析之前模拟分析条件。在微酸性条件下,将不同浓度的 SRT 添加到纳米探针中,会在 560nm 处出现一个吸收峰,呈现出与单独纳米探针(530nm,粉红色)不同的紫色色调。所得的吸收变化与 SRT 浓度从 1μM 增加到 35μM 呈线性比例关系,检测限(LOD)值为 100nM。颜色从粉红色和紫色变化为紫色,色调鲜艳,肉眼可轻松追踪彩色指纹图案,实现 SRT 的可视化检测。该方法的绿色性通过一些国际指标进行了很好的评估,包括补充绿色分析程序(ComplexGAPI)和分析绿色度(AGREE)指标。基于环保方法开发的这种废物衍生的纳米探针不仅可以通过肉眼进行 SRT 的定量和定性非侵入性分析,还可能拓宽在各个领域的其他应用。

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