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基于功能化罗丹明探针的智能手机检测皮质醇。

Smartphone-Based Sensing of Cortisol by Functionalized Rhodamine Probes.

机构信息

Department of Chemical Sciences, University of Catania, Viale Andrea Doria 6, 95125, Catania, Italy.

INSTM Udr of Catania, Viale Andrea Doria 6, 95125, Catania, Italy.

出版信息

Chemistry. 2024 Jun 12;30(33):e202401201. doi: 10.1002/chem.202401201. Epub 2024 May 16.

Abstract

During a stress condition, the human body synthesizes catecholamine neurotransmitters and specific hormones (called "stress hormones"), the most important of which is cortisol. The monitoring of cortisol levels should be extremely important to control the stress levels, and for this reason, it shows important medical applications. The common analytical methods (HPLC, GC-MS) cannot be used in real life, due to the bulky size of the instruments and the necessity of specialized personnel. Molecular probes solve these problems due to their fast and easy use. The synthesis of new fluorescent rhodamine probes, able to interact by non-covalent interactions with cortisol, the recognition properties in solution as well as in solid state by Strip Test, using a smartphone as detector, are here reported. DFT calculations and FT-IR measurements suggest the formation of supramolecular complexes through hydrogen bonds as main non-covalent interaction. The present study represents one of the first sensor, based on synthetical chemical receptors, able to detect cortisol in a linear range from 1 mM to 1 pM, based on non-covalent molecular recognition and paves the way to the realization of practical point-of-care device for the monitoring of cortisol in real live.

摘要

在应激状态下,人体会合成儿茶酚胺神经递质和特定激素(称为“应激激素”),其中最重要的是皮质醇。监测皮质醇水平对于控制压力水平非常重要,因此具有重要的医学应用。由于仪器体积庞大且需要专业人员,常见的分析方法(HPLC、GC-MS)无法在实际生活中使用。分子探针由于其快速易用的特点解决了这些问题。本文报道了新的荧光罗丹明探针的合成,这些探针能够通过非共价相互作用与皮质醇相互作用,通过条带测试在溶液中和固态中具有识别性能,使用智能手机作为检测器。DFT 计算和 FT-IR 测量表明,通过氢键形成超分子复合物作为主要的非共价相互作用。本研究代表了基于合成化学受体的第一个传感器之一,能够在 1mM 至 1pM 的线性范围内检测皮质醇,基于非共价分子识别,并为实现实际的即时检测设备铺平了道路,用于在实际生活中监测皮质醇。

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