Pharmaceutical Analysis Research Center and Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran; Student Research Committee, Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran.
Pharmaceutical Analysis Research Center and Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran; Faculty of Pharmacy, Near East University, PO BOX: 99138, Nicosia, North Cyprus, Mersin 10, Turkey.
Anal Chim Acta. 2022 Sep 22;1227:340252. doi: 10.1016/j.aca.2022.340252. Epub 2022 Aug 17.
In this study, a novel turn-on fluorescence nanoprobe structure has been developed by in situ synthesis and embedding of gold nanoparticles (AuNPs) and Zr-based metal-organic frameworks (MOFs), UiO-66, in polyvinyl alcohol (PVA) hydrogel for sensitive quantification of morphine in human plasma samples. A three-dimensional network of PVA hydrogel was formed by simultaneously penetrating UiO-66 and gold ions in the hydrogel frame and reducing to AuNPs without adding any reducing agent. The morphology and characterization of this new PVA-based nanocomposite hydrogel were studied by transmission electron microscopy, dynamic light scattering instrument, energy-dispersive X-ray spectroscopy, and Fourier transform infrared spectroscopy. Based on weakened fluorescent intensity resulting from AuNPs binding with Zr node in UiO-66 within PVA matrix, AuNPs@UiO-66 part of the nanocomposite has been employed as a fluorescent sensing probe for selective detection of morphine. The subsequent turn-on of the biocompatible nanoprobe is dependent on the strong binding of morphine with AuNPs on the surface of the UiO-66 frameworks. This platform illustrates a linear calibration curve in the range from 0.02 to 2.0 μg mL with a detection limit of 0.016 μg mL. The relative intra- and inter-day standard deviations of the nanoprobe for determinations of morphine were 0.84% and 0.69% (n = 5), respectively. It is particularly proper for precise morphine assay in complex samples like human plasma with good recoveries and acceptable results. Due to its portable, robust, and instrument-free characteristics, it is estimated to display superb prospective for on-site clinical monitoring.
在这项研究中,通过原位合成和嵌入金纳米粒子(AuNPs)和基于 Zr 的金属-有机骨架(MOFs)UiO-66,开发了一种新型的开荧光纳米探针结构,用于在人血浆样品中灵敏定量吗啡。通过同时穿透水凝胶框架中的 UiO-66 和金离子并在没有添加任何还原剂的情况下还原为 AuNPs,形成了 PVA 水凝胶的三维网络。通过透射电子显微镜、动态光散射仪、能谱和傅里叶变换红外光谱研究了这种新型 PVA 基纳米复合水凝胶的形态和特性。基于 AuNPs 在 PVA 基质中与 UiO-66 中的 Zr 节点结合导致荧光强度减弱,AuNPs@UiO-66 部分纳米复合材料已被用作荧光传感探针,用于选择性检测吗啡。随后,生物相容性纳米探针的开启取决于吗啡与 UiO-66 框架表面上的 AuNPs 的强结合。该平台说明了在 0.02 至 2.0μg mL 的范围内具有线性校准曲线,检测限为 0.016μg mL。用于测定吗啡的纳米探针的日内和日间相对标准偏差分别为 0.84%和 0.69%(n=5)。它特别适合于复杂样品(如人血浆)中精确的吗啡测定,具有良好的回收率和可接受的结果。由于其便携、坚固和无仪器的特点,预计将在现场临床监测中具有极好的应用前景。