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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A solid-phase luminescence sensor based on molecularly imprinted polymer-CdSeS/ZnS quantum dots for selective extraction and detection of sulfasalazine in biological samples
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A solid-phase luminescence sensor based on molecularly imprinted polymer-CdSeS/ZnS quantum dots for selective extraction and detection of sulfasalazine in biological samples

机译:基于分子印迹聚合物-CDSES / ZnS量子点的固相发光传感器,用于选择性提取和检测生物样品中磺基碱的

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A new solid phase luminescence sensor (SPLS) based on molecularly imprinted polymer (MIP) as recognition element and semi-conductor CdSeS/ZnS alloyed quantum dots (QDs) as fluorophore has been synthesized and developed for the determination of sulfasalazine. The surface modified quantum dot was attached to the surface of the glass slide. MIP and Non-imprinted polymer (NIP) with the recognition site for Sulfasalazine (SSZ) were synthesized and attached to the immobilized QDs. A trace amount of sulfasalazine was determined using fluorescence spectroscopy method based on quenching effect of sulfasalazine on the QDs luminescence with a fluorescence resonance energy transfer (FRET) mechanism. The MIP-QDs based sensor showed high recognition capability of sulfasalazine in comparison with the NIP-QDs based sensor. Various experimental parameters affecting fluorescence intensity such as the reactions time and pH were investigated and optimized. Under optimal conditions, the MIP-QDs sensor showed good linearity for sulfasalazine in the range of 0.02-1.5 p.mol L-1 with a determination coefficient (R-2) of 0.9986. The limit of detection (S/N = 3) and limit of quantification (S/N = 10) were found to be 0.0071 and 0.024 innol L-1, respectively. The infra-day and inter-day RSDs were 2.6-5.1% and 3.5-6.9%, respectively. The MIP-QDs based sensor was successfully used to the determination of sulfasalazine in human plasma and urine with the recoveries in the range of 90-107%, offering reliability and applicability of the sensor to the complex matrices.
机译:作为荧光团的识别元素和半导体CDSES / ZnS的新的固相发光传感器(SPRS)作为识别元件和半导体CDSES / Zns合金量子点(QDS)被合成并开发用于测定苏氟碱的测定。表面改性量子点附着在载玻片的表面上。合成鉴定磺基碱(SSZ)的鉴定部位(SSZ)的MIP和非印迹聚合物(NIP)并连接到固定的QD上。使用荧光光谱法测定痕量的磺碱,基于荧光碱对QDS发光的猝灭作用,荧光共振能量转移(FRET)机制。与基于NIP-QDS的传感器相比,基于MIP-QDS的传感器显示了磺基碱的高识别能力。研究了影响荧光强度的各种实验参数,例如反应时间和pH值。在最佳条件下,MIP-QDS传感器在0.02-1.5μl1-1的范围内为磺基碱显示出良好的线性度,测定系数(R-2)为0.9986。发现检测极限(S / N = 3)和定量限制(S / N = 10)分别为0.0071和0.024个Innol L-1。当天和日内的RSD分别为2.6-5.1%和3.5-6.9%。基于MIP-QDS的传感器成功地用于测定人血浆中的磺基碱和尿液中的回收率在90-107%的范围内,提供传感器的可靠性和适用性,对复杂的基质。

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