首页> 中文期刊> 《光:科学与应用(英文版)》 >Repeated photoporation with graphene quantum dots enables homogeneous labeling of live cells with extrinsic markers for fluorescence microscopy

Repeated photoporation with graphene quantum dots enables homogeneous labeling of live cells with extrinsic markers for fluorescence microscopy

         

摘要

In the replacement of genetic probes,there is increasing interest in labeling living cells with high-quality extrinsic labels,which avoid over-expression artifacts and are available in a wide spectral range.This calls for a broadly applicable technology that can deliver such labels unambiguously to the cytosol of living cells.Here,we demonstrate that nanoparticle-sensitized photoporation can be used to this end as an emerging intracellular delivery technique.We replace the traditionally used gold nanoparticles with graphene nanoparticles as photothermal sensitizers to permeabilize the cell membrane upon laser irradiation.We demonstrate that the enhanced thermal stability of graphene quantum dots allows the formation of multiple vapor nanobubbles upon irradiation with short laser pulses,allowing the delivery of a variety of extrinsic cell labels efficiently and homogeneously into live cells.We demonstrate high-quality time-lapse imaging with confocal,total internal reflection fluorescence(TIRF),and Airyscan superresolution microscopy.As the entire procedure is readily compatible with fluorescence(super resolution)microscopy,photoporation with graphene quantum dots has the potential to become the long-awaited generic platform for controlled intracellular delivery of fluorescent labels for live-cell imaging.

著录项

  • 来源
    《光:科学与应用(英文版)》 |2018年第1期|583-592|共10页
  • 作者单位

    Laboratory of General Biochemistry and Physical Pharmacy;

    Faculty of Pharmacy;

    Ghent University;

    Ghent B-9000;

    Belgium;

    Centre for Nano-and Biophotonics;

    Ghent University;

    Ghent B-9000;

    Belgium;

    VIB-UGent Centre for Inflammation Research;

    VIB;

    Ghent B-9000;

    Belgium;

    VIB Bioimaging Core;

    VIB;

    Ghent B-9000;

    Belgium;

    Department of Biomedical Molecular Biology;

    Ghent University;

    Ghent B-9000;

    Belgium;

    Nanophysics(NAPH);

    Istituto Italiano di Tecnologia;

    Genova 16163;

    Italy;

    Biophysics Institute(IBF);

    National Research Council(CNR);

    Via De Marini;

    6-16149–GE Genova;

    Italy;

    Physical and Materials Chemistry Division;

    CSIR-National Chemical Laboratory;

    Dr.Homi Bhabha Road;

    Pune 411008;

    India;

    Academy of Scientific and Innovative Research;

    Anusandhan Bhawan;

    2 RafiMarg;

    New Delhi 110001;

    India;

    Univ.Lille;

    CNRS;

    Centrale Lille;

    ISEN;

    Univ.Valenciennes;

    UMR 8520-IEMN;

    Lille F-59000;

    France;

    Biomedical Research Institute;

    Hasselt University;

    Agoralaan Building C;

    Diepenbeek 3590;

    Belgium;

    Centre for Surface Chemistry and Catalysis;

    KU Leuven;

    Celestijnenlaan 200F;

    Leuven 3001;

    Belgium;

    Inflammation Research Center;

    Image Core Facility;

    VIB;

    9052 Ghent;

    Belgium;

    Department of Biomedical Molecular Biology;

    Ghent University;

    9052 Ghent;

    Belgium;

    Department of Plant Biotechnology and Bioinformatics;

    Ghent University;

    9052 Gent;

    Belgium;

    Univ Lille 1;

    Univ Lille Nord France;

    Lab Phys Lasers Atomes&Mol;

    Villeneuve Dascq UMR 8523;

    59655;

    France;

    College of Chemical Engineering;

    Jiangsu Key Lab of Biomass-based Green Fuels and Chemicals;

    Nanjing Forestry University(NFU);

    Nanjing 210037;

    China;

    UMR 8523;

    Laboratoire de Physique des Lasers;

    Atomes et Molécules;

    Universitéde Lille;

    Villeneuve d’Ascq;

    France;

    IEMN;

    UMR 8520;

    Universitéde Lille;

    Villeneuve d’Ascq;

    France;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 结核病;
  • 关键词

    quantum; enable; replace;

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