化学
检出限
电化学
阿霉素
电化学气体传感器
线性范围
信号(编程语言)
纳米技术
功能(生物学)
组合化学
电极
色谱法
化疗
计算机科学
材料科学
物理化学
程序设计语言
外科
医学
进化生物学
生物
作者
Shengzhong Rong,Lina Zou,Lingqiang Meng,Xiaoxia Yang,Jianmin Dai,Mengdie Wu,Ren Qiu,Yuting Tian,Xiaoyan Feng,Xiaowei Ren,Lulu Jia,Lan Jiang,Yongzheng Hang,Hongkun Ma,Hongzhi Pan
标识
DOI:10.1016/j.aca.2022.339545
摘要
Cancer is one of the main diseases threatening human health in the world. Doxorubicin (DOX) is a common anti-cancer drug that can be used for chemotherapy to extend a cancer patient's life. It is our common wish that treatment process of cancer is efficient and secure. Therefore, it is of great significance to develop sensitive, rapid and accurate techniques for anti-cancer drug doxorubicin (DOX) detection. Herein, in our work, a ratiometric electrochemical sensor for DOX detection was designed, which based on MB@MWCNTs/UiO-66-NH2 composites. The porous materials UiO-66-NH2 magically shoulder double function in our ratiometric electrochemical strategy, which can reduce the interior error caused by the various complex materials. Specifically, on the one hand, it can be used to catalyze DOX, which can provide a great current signal to be detected, on the other hand, its special property of absorbing molecules was utilized to load materials as internal reference. Consequently, we chose methylene blue (MB) as the substance that can generate an internal reference signal, because it is a specific and stable electroactive substance. Then, we added MWCNTs as a part of the material modified on the ratiometric electrochemical platform to enhance the signal of the target due to its feature of good electrical conductivity. Under the optimized conditions, the ratiometric electrochemical sensor displayed a wide linear detection with the range from 0.1 μM to 75 μM and the limit of detection (LOD) of 0.051 μM. The applicability of this method in the analysis of actual human saliva samples has been confirmed by the results of selectivity, stability, and reproducibility tests, which was prospective in clinical application.
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