중앙대연구실

    • PEOPLE
    • RESEARCH
    • PUBLICATION
    • LECTURE
    • BBS
    • PEOPLE
    • Professor
    • Students
    • Alummi
    • RESEARCH
    • Energy storage
    • Inorganic material
    • Composite material
    • Electrochemical analysis
    • PUBLICATION
    • Paper
    • Patent
    • Presentation
    • LECTURE
    • Lecture
    • BBS
    • Notice
    • News
    • Album
모든 메뉴 열기
  • PUBLICATION

    • Paper
    • Patent
    • Presentation
    •  HOME
    • >
    • PUBLICATION

    PAPER

    A novel sensing strategy for DNA analysis using nanoscale graphene oxide-coated microbeads
    관리자
    2020-05-12      조회 2,465   댓글 0  
    이메일주소 site@site.co.kr
    Author Tuong Ngoc-Gia Nguyen, Changyoon Baek, Jaekwang Kim, Songhun Yoon, Junhong Min
    Journal Journal of Nanoscience and Nanotechnology
    Year of Pub. 2017


    Graphene oxide (GO) is a powerful material for the detection of various biological targets including nucleic acids, proteins, and metal ions. Herein, we introduce a rapid, sensitive, and selective tool for pathogen detection by combining bead beating-based DNA extraction and graphene oxide-based fluorescence quenching. This combination was achieved by the fabrication of fluorescent dye-tagged probe/GO/glass beads. The target nucleic acid sequence was extracted from Staphylococcus aureus (S. aureus) using a bead beating tool and GO-coated glass beads (GO beads) on which an FITC-tagged probe was adsorbed. The interaction between single strand DNA (ss-DNA) and GO was disrupted by the formation of double strand DNA (ds-DNA), resulting in stronger fluorescence emission in ds-DNA-GO mixture compared with ss-DNA-GO mixture. Therefore, when the target DNA hybridized with the FITC-tagged …​

    첨부파일 74.png (269.24KB) [0] 2020-05-12 10:50:57
    첨부파일 A_novel_sensing_strategy_for_DNA_analysis_using_nanoscale_graphene_oxide-coated_microbeads.pdf (3.1MB) [0] 2020-05-12 10:50:57
    이전글 Graphene oxide as a novel signal enhancer for cell-based impedimetric biosensors
    다음글 Investigation of the charge-storage behavior of electrochemically activated graphene oxide on supercapacitor electrodes in acidic electrolyte
    리스트

중앙대

221 HEUK SEOK-DONG, DONGJAK-GU, SEOUL, KOREA TEL: +82-2-820-5769 FAX: +82-2-814-2651
COPYRIGHT©2013 BY NEL. All Rights Reserved.