化学
生物传感器
适体
荧光
纳米技术
检出限
合理设计
氯霉素
纳米团簇
分析物
纳米花
生物系统
分子探针
组合化学
计算生物学
过氧化物酶
生物物理学
滚动圆复制
纳米传感器
作者
Hualin Guo,Pengfei Ma,Yu Li,Chen Pe,Zhouping Wang
标识
DOI:10.1021/acs.analchem.5c06138
摘要
Herein, we present a novel dual-mode biosensor for ultrasensitive chloramphenicol detection using an engineering split aptamer, which is rationally designed via molecular dynamics simulation to identify key binding bases. Upon target-induced assembly, the split fragments simultaneously enhance the fluorescence of silver nanoclusters and recover the peroxidase activity of the ZIF-67 nanoflower (ZNF), enabling fluorometric/colorimetric dual-readout. Under optimal conditions, the biosensor demonstrated outstanding analytical performance with fluorescent and colorimetric detection limits of 0.011 and 0.021 ng/mL, respectively. It was also successfully applied to the accurate detection of CAP in milk, honey, fish, and river water samples with satisfactory recoveries. This work not only provides a robust and reliable sensing platform for food safety monitoring but also offers a general MD-guided strategy for the rational design of split aptamers.
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