Institute of Chemistry, Center for Nanoscience and Nanotechnology, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
J Am Chem Soc. 2013 Aug 14;135(32):11832-9. doi: 10.1021/ja403485r. Epub 2013 Aug 1.
Hybrid systems consisting of nucleic-acid-functionalized silver nanoclusters (AgNCs) and graphene oxide (GO) are used for the development of fluorescent DNA sensors and aptasensors, and for the multiplexed analysis of a series of genes of infectious pathogens. Two types of nucleic-acid-stabilized AgNCs are used: one type includes the red-emitting AgNCs (616 nm) and the second type is near-infrared-emitting AgNCs (775 nm). Whereas the nucleic-acid-stabilized AgNCs do not bind to GO, the conjugation of single-stranded nucleic acid to the DNA-stabilized AgNCs leads to the adsorption of the hybrid nanostructures to GO and to the fluorescence quenching of the AgNCs. By the conjugation of oligonucleotide sequences acting as probes for target genes, or as aptamer sequences, to the nucleic-acid-protected AgNCs, the desorption of the probe/nucleic-acid-stabilized AgNCs from GO through the formation of duplex DNA structures or aptamer-substrate complexes leads to the generation of fluorescence as a readout signal for the sensing events. The hybrid nanostructures are implemented for the analysis of hepatitis B virus gene (HBV), the immunodeficiency virus gene (HIV), and the syphilis (Treponema pallidum) gene. Multiplexed analysis of the genes is demonstrated. The nucleic-acid-AgNCs-modified GO is also applied to detect ATP or thrombin through the release of the respective AgNCs-labeled aptamer-substrate complexes from GO.
核酸功能化的银纳米簇(AgNCs)和氧化石墨烯(GO)的杂化系统被用于开发荧光 DNA 传感器和适体传感器,并用于分析一系列感染性病原体基因的多重分析。使用了两种类型的核酸稳定的 AgNCs:一种类型包括红色发射的 AgNCs(616nm),另一种类型是近红外发射的 AgNCs(775nm)。虽然核酸稳定的 AgNCs不与 GO 结合,但单链核酸与 DNA 稳定的 AgNCs 的缀合导致杂化纳米结构吸附到 GO 上,AgNCs 的荧光猝灭。通过将作为靶基因探针或适体序列的寡核苷酸序列缀合到核酸保护的 AgNCs 上,探针/核酸稳定的 AgNCs 通过形成双链 DNA 结构或适体-底物复合物从 GO 上解吸,导致作为传感事件的读出信号产生荧光。杂化纳米结构被用于分析乙型肝炎病毒基因(HBV)、免疫缺陷病毒基因(HIV)和梅毒(苍白密螺旋体)基因。证明了基因的多重分析。核酸-AgNCs 修饰的 GO 也被用于通过从 GO 释放各自的 AgNCs 标记的适体-底物复合物来检测 ATP 或凝血酶。