适体
微尺度热泳
生物传感器
检出限
化学
贝伐单抗
DNA
色谱法
线性范围
纳米技术
组合化学
材料科学
分子生物学
生物
生物化学
遗传学
化疗
作者
Shengfeng Huang,Mengyun Zhang,Feng Chen,Huihui Wu,Minyi Li,Jacques Crommen,Qiqin Wang,Zhengjin Jiang
出处
期刊:Analyst
[The Royal Society of Chemistry]
日期:2023-11-21
卷期号:149 (1): 212-220
被引量:2
摘要
The accurate and rapid detection of specific antibodies in blood is very important for efficient diagnosis and precise treatment. Conventional methods often suffer from time-consuming operations and/or a narrow detection range. In this work, for the rapid determination of bevacizumab in plasma, a series of chimeric hairpin DNA aptamer-based probes were designed by the modification, labeling and theoretical computation of an original aptamer. Then, the dissociation constant of the modified hairpin DNA to bevacizumab was measured and screened using microscale thermophoresis. The best chimeric hairpin DNA aptamer-based probe was then selected, and a one-step platform for the rapid determination of bevacizumab was constructed. This strategy has the advantages of being simple, fast and label-free. Because of the design and screening of the hairpin DNA, as well as the optimization of the concentration and electrochemical parameters, a low detection limit of 0.37 pM (0.054 ng mL-1) with a wide linear range (1 pM-1 μM) was obtained. Finally, the rationally constructed biosensor was successfully applied to the determination of bevacizumab in spiked samples, and it showed good accuracy and precision. This method is expected to truly realize accurate and rapid detection of bevacizumab and provides a new idea for the precise treatment of diseases.
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