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构建疏水性-亲水性开滴微流控化学传感器用于富马酸喹硫平的比色/分光光度识别:使用智能手机进行生物医学分析的成本效益方法。

Construction of a hydrophobic-hydrophilic open-droplet microfluidic chemosensor towards colorimetric/spectrophotometric recognition of quetiapine fumarate: a cost-benefit method for biomedical analysis using a smartphone.

机构信息

Nutrition Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.

Department of Biotechnology and Biomedicine, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark.

出版信息

Anal Methods. 2023 Jul 27;15(29):3549-3561. doi: 10.1039/d3ay00801k.

Abstract

Quetiapine fumarate (QF) is used to treat a number of mental/emotional diseases, including schizophrenia, bipolar disorder, and abrupt bouts of mania or depression linked to bipolar disorder. This antipsychotic medicine can be deadly if an overdose is given to a person. Therefore, the sensitive identification of QF in bodily fluids is very important. In this study, an innovative low-cost colorimetric chemosensor based on silver nanoprism transfiguration in a phosphate-buffered saline (PBS)/Cl matrix was developed and successfully tested for the recognition of QF in human-exhaled breath condensate. Using this non-invasive colorimetric chemosensor, a broad linearity range of 0.001-1000 μM and a low limit of quantification of 0.001 μM for QF were attained. Notably, the proposed optical chemosensor is capable of detecting QF from a minimum amount of sample [500 μM in PBS and 0.001 μM in exhaled breath condensate] in the first few seconds of reaction by the naked eye. So, a rapid colorimetric assay for the on-site analysis of QF was developed and validated. Moreover, for the first time, a semi-analytical method was introduced that can provide a rough estimation of the QF concentration. This colorimetric system was, for the first time, integrated in an optimized microfluidic paper-based colorimetric device (μPCD), promising the development of an engineered colorimetric opto-sensor toward real-time and therapeutic drug monitoring (TDM) assay of drugs in real-world samples.

摘要

富马酸喹硫平(QF)用于治疗多种精神/情绪疾病,包括精神分裂症、双相情感障碍以及与双相情感障碍相关的突发性躁狂或抑郁发作。如果过量给人服用这种抗精神病药物,可能会致命。因此,对体液中的 QF 进行灵敏识别非常重要。在这项研究中,开发了一种基于磷酸盐缓冲盐水(PBS)/Cl 基质中银纳米棱镜变形的创新型低成本比色化学传感器,并成功用于检测人呼气冷凝物中的 QF。使用这种非侵入性比色化学传感器,获得了 QF 的宽线性范围为 0.001-1000 μM 和低定量下限为 0.001 μM。值得注意的是,所提出的光学化学传感器能够在反应的最初几秒钟内通过肉眼检测到来自最小量样品的 QF [PBS 中的 500 μM 和呼气冷凝物中的 0.001 μM]。因此,开发并验证了用于 QF 现场分析的快速比色测定法。此外,首次引入了一种半分析方法,该方法可以提供 QF 浓度的大致估计。首次将该比色系统集成到优化的微流控纸质比色器件(μPCD)中,有望开发出用于实时和治疗药物监测(TDM)测定真实世界样品中药物的工程比色光电传感器。

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