首页> 外文期刊>Analytical methods >A molecularly imprinted modified CdSeS/ZnS core-shell quantum dot embedded glass slide for highly selective and sensitive solid phase optosensing of trace amounts of lidocaine in biological samples
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A molecularly imprinted modified CdSeS/ZnS core-shell quantum dot embedded glass slide for highly selective and sensitive solid phase optosensing of trace amounts of lidocaine in biological samples

机译:一种分子印迹改性CDSES / ZnS核 - 壳量子点嵌入玻璃载玻片,用于在生物样品中的痕量利多卡因的高选择性和敏感的固相光致敏

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摘要

An optosensing material based on surface functionalization of a glass slide with quantum dots (QDs) and molecularly imprinted polymer (glass slide@QDs@MIP) with unique optical properties of QDs and selective recognition of MIPs was fabricated for the determination of lidocaine in biological samples. Firstly, CdSeS/ZnS quantum dots were covalently attached to a glass slide surface. Then a molecularly imprinted polymer layer, using lidocaine as the template, was embedded onto the modified surface of the glass slide@QDs by copolymerization to prepare a solid phase glass slide@QDs@MIP sensor. The proposed sensor was more strongly quenched by lidocaine than the non-imprinted polymer (glass slide@QDs@NIP) indicating selective recognition of lidocaine by glass slide@QDs@MIP. The main parameters affecting the extraction and recognition of lidocaine such as the pH of the sample solution and reaction time were investigated and optimized. Under optimal conditions, the synthesized MIP optosensing sensor offered good response for lidocaine with the linear range varying from 0.002-1.0 mM and a correlation coefficient of 0.9991. The limit of detection (3Sb/m) of the method and the limit of quantification (10Sb/m) were 6.3 x 10(-4) and 2.0 x 10(-3) mM, respectively. The intra-day and inter-day RSDs were 1.9% and 4.4%, respectively. The proposed sensor was practically applicable to the detection of a trace amount of lidocaine in real biological samples (urine and plasma) with satisfactory recoveries in the range of 96.7-105.4% and RSDs between 1.8 and 4.9%. The sensor showed obvious advantages such as photostability, simple and rapid detection of lidocaine in complex matrices and specific recognition toward lidocaine.
机译:基于具有量子点(QDS)和分子印迹聚合物(玻璃载玻片@ MIP)的玻璃载玻片的表面官能化具有独特的光学性质的光学胶化材料,具有独特的QD光学性能和MIPS的选择性识别,用于测定生物样品中的利多卡因。首先,CDSES / ZnS量子点共价连接到玻璃滑动表面上。然后通过共聚合嵌入使用Lidocaine作为模板的分子印迹聚合物层,以通过共聚合制备固相玻璃载玻片@ MIP传感器的固相玻璃载玻片。 Lidocaine比非印记的聚合物(玻璃幻灯片@ QDS @ nip)更强烈地淬火,表明通过玻璃幻灯片@ QDS @ mip选择性识别利多卡因。影响利多卡因提取和识别的主要参数,例如样品溶液的pH和反应时间和优化。在最佳条件下,合成的MIP光化传感器为利多卡因提供了良好的响应,线性范围从0.002-1.0 mm变化和0.9991的相关系数。该方法的检测极限(3SB / M)和定量限(10SB / m)分别为6.3×10(-4)和2.0×10(-3)mm。日内和日内的RSD分别为1.9%和4.4%。所提出的传感器实际上适用于检测真实生物样品(尿液和血浆)中的痕量利多卡因,令人满意的回收率在96.7-105.4%和1.8%至4.9%之间。该传感器显示出明显的优点,例如复杂矩阵中利多卡因的光稳定性,简单快速地检测,以及对利多卡因的具体识别。

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