Information Materials and Intelligent Sensing Laboratory of Anhui Province, Institutes of Physical Science and Information Technology, Anhui University, Hefei, 230601, PR China.
Institute of Solid State Physics, HeFei Institutes of Physical Science, Chinese Academy of Sciences, Hefei, Anhui, 230031, PR China.
Talanta. 2022 Jan 1;236:122864. doi: 10.1016/j.talanta.2021.122864. Epub 2021 Sep 10.
Real time controllable assembling/aptasensing approach via plasmonic graphene oxide (GO) nanocomposites has been firstly proven to simultaneously give tuning of micro-nano structure of plasmonic GO and ultrasensitive detection of MC-LR toxin. In order to fabricate the assembly, a high-quality hollow triangular nanoplate AgClAu:p-GO (HTNP AgClAu:p-GO) can act as a template; furthermore, we combine DNA-hybridization with biotin-strepavidin binding protocol for tuning the HTNP AgClAu:p-GO assemblies from networks to laminar structure, and simultaneously loading Raman reporters into the assemblies. The dynamic assembling process can be utilized as a real time SERS aptasensor for detecting MC-LR due to ratiometric introduction of MC-LR toxin inhibiting formation of plasmonic p-GO assembly via toxin/aptamer bioconjugation and causing reverse alteration of SERS signal for giving ultrasensitive SERS detection of MC-LR. A detection limit of 6.3pM with a wide linear range from 10pM to 5 nM can be achieved. When the aptasensor has been applied in real samples, the real time assembling/aptasensing approach shows recoveries from 98% to 103% with relative standard deviation (RSD) lower than 3%, expecting that one-step nanofabrication and sensing strategy can be extended to in-field test of environmental contaminants.
通过等离子体氧化石墨烯(GO)纳米复合材料的实时可控组装/适体传感方法,首次被证明可以同时调整等离子体 GO 的微纳结构,并对 MC-LR 毒素进行超灵敏检测。为了制备组装体,高质量的中空三角纳米片 AgClAu:p-GO(HTNP AgClAu:p-GO)可以作为模板;此外,我们将 DNA 杂交与生物素-链霉亲和素结合方案结合起来,将 HTNP AgClAu:p-GO 组装体从网络结构调谐到层状结构,并同时将拉曼报告分子加载到组装体中。由于 MC-LR 毒素通过毒素/适体缀合抑制等离子体 p-GO 组装的形成,导致 SERS 信号发生反向变化,从而实现对 MC-LR 的超灵敏 SERS 检测,因此该动态组装过程可用作实时 SERS 适体传感器来检测 MC-LR。可以实现检测限为 6.3pM,线性范围从 10pM 到 5nM。当将适体传感器应用于实际样品时,实时组装/适体传感方法的回收率在 98%至 103%之间,相对标准偏差(RSD)低于 3%,期望这种一步法纳米制造和传感策略可以扩展到环境污染物的现场测试中。