Enhanced resonance energy transfer in gold nanoparticles bifunctionalized by tryptophan and riboflavin and its application in fluorescence bioimaging

被引:4
作者
Pajovic, Jelena D. [1 ,2 ]
Dojcilovic, Radovan J. [3 ,4 ]
Kascakova, Slavka [5 ,6 ]
Refregiers, Matthieu [1 ,7 ]
Bozanic, Dusan K. [3 ]
Djokovic, Vladimir [3 ]
机构
[1] Synchrotron SOLEIL, DISCO Beamline, BP 48, F-91192 Gif Sur Yvette, France
[2] Univ Belgrade, Fac Phys, Studentski Trg 12, Belgrade 11001, Serbia
[3] Univ Belgrade, VINCA Inst Nucl Sci, Natl Inst Republ Serbia, Ctr Excellence Photoconvers, POB 522, Belgrade 11001, Serbia
[4] Pompeu Fabra Univ, Dept Expt & Hlth Sci, Carrer Dr Aiguader 88, Barcelona 08003, Spain
[5] Inserm, Unite 1193, F-94800 Villejuif, France
[6] Univ Paris Sud XI, UMR S1193, F-94800 Villejuif, France
[7] CNRS, Ctr Biophys Mol, UPR4301, Rue Charles Sadron, F-45071 Orleans, France
关键词
Gold nanoparticles; Fluorescence imaging; Resonance energy transfer; Photobleaching; Tryptophan; Riboflavin; DRUG-DELIVERY; SILVER NANOPARTICLES; DISTANCE DEPENDENCE; SPECTRAL OVERLAP; CELLS; FRET; FUNCTIONALIZATION; QUANTIFICATION; WAVELENGTH; MICROSCOPY;
D O I
10.1016/j.colsurfb.2023.113340
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Gold nanoparticles were functionalized by amino acid tryptophan and vitamin riboflavin - a resonance energy transfer (RET) pair of biomolecules. The presence of the gold nanoparticles resulted in 65% increase in RET efficiency. Because of enhanced RET efficiency, the photobleaching dynamics of the fluorescent molecules at the surface of the nanoparticles is different from that of molecules in solution. The observed effect was used for detection of the functionalized nanoparticles within biological material rich with autofluorescent species. Synchrotron radiation deep-ultraviolet fluorescence microscopy is used to study the photobleaching dynamics of the fluorescence centers within human hepatocellular carcinoma Huh7.5.1 cells incubated with the nanoparticles. The fluorescent centers were classified according to their photobleaching dynamics, which enabled the discrimination of the cell areas where the accumulation of the nanoparticles takes place, even though the particles were smaller than the spatial resolution of the images.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Nucleobases functionalized quantum dots and gold nanoparticles bioconjugates as a fluorescence resonance energy transfer (FRET) system - Synthesis, characterization and potential applications
    Rodzik-Czalka, Lucja
    Lewandowska-Lancucka, Joanna
    Gatta, Viviana
    Venditti, Iole
    Fratoddi, Ilaria
    Szuwarzynski, Michal
    Romek, Marek
    Nowakowska, Maria
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2018, 514 : 479 - 490
  • [32] Novel multicolor fluorescently labeled silica nanoparticles for interface fluorescence resonance energy transfer to and from labeled avidin
    Saleh, Sayed M.
    Mueller, Rainer
    Mader, Heike S.
    Duerkop, Axel
    Wolfbeis, Otto S.
    ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2010, 398 (04) : 1615 - 1623
  • [33] Fluorescence Resonance Energy Transfer within Diblock Copolymer Micelles in the Proximity of Metal Nanoparticles
    Kim, Ki-Se
    Kim, Jeong-Hee
    Yoo, Seong Il
    Sohn, Byeong-Hyeok
    MACROMOLECULAR RESEARCH, 2019, 27 (09) : 905 - 910
  • [34] Fluorescence Resonance Energy Transfer from Sulfonated Graphene to Riboflavin: A Simple Way to Detect Vitamin B2
    Kundu, Aniruddha
    Nandi, Sudipta
    Layek, Rama K.
    Nandi, Arun K.
    ACS APPLIED MATERIALS & INTERFACES, 2013, 5 (15) : 7392 - 7399
  • [35] Label-free detection of adenosine based on fluorescence resonance energy transfer between fluorescent silica nanoparticles and unmodified gold nanoparticles
    Qiang, Weibing
    Liu, Haiping
    Li, Wei
    Chen, Xiang
    Xu, Danke
    ANALYTICA CHIMICA ACTA, 2014, 828 : 92 - 98
  • [36] Bioimaging based on Poly(ethylenimine)-Coated Carbon Dots and Gold Nanoparticles for pH Sensing and Metal Enhanced Fluorescence
    Pawar, Shweta
    Duadi, Hamootal
    Gohas, Moran Friedman
    Cohen, Yoram
    Fixler, Dror
    ACS APPLIED BIO MATERIALS, 2023, 6 (11) : 4935 - 4943
  • [37] Nanoparticles-Based Fluorescence Resonance Energy Transfer for Detection of Biotin
    Torabi, Pouneh
    Dolatyari, Mahboubeh
    Rostami, Ghasem
    Oghli, Ahmad Salman
    Amini, Pegah
    Rostami, Ali
    JOURNAL OF COLLOID SCIENCE AND BIOTECHNOLOGY, 2014, 3 (03) : 227 - 231
  • [38] Highly selective and sensitive biological probe for cysteine detection based on fluorescence resonance energy transfer between lanthanide oxysulfide nanoparticles and Au nanoparticles
    Li, Miaomiao
    Wu, Tong
    Wang, Yiting
    Zhang, Wei
    Hua, Ruinian
    MATERIALS RESEARCH BULLETIN, 2024, 169
  • [39] A Fluorescence Resonance Energy Transfer Probe Based on DNA-Modified Upconversion and Gold Nanoparticles for Detection of Lead Ions
    Wang, Yue
    Lv, Menghua
    Chen, Zehan
    Deng, Zilong
    Liu, Ningtao
    Fan, Jianwei
    Zhang, Weixian
    FRONTIERS IN CHEMISTRY, 2020, 8
  • [40] Quantum dots-fluorescence resonance energy transfer-based nanosensors and their application
    Stanisavljevic, Maja
    Krizkova, Sona
    Vaculovicova, Marketa
    Kizek, Rene
    Adam, Vojtech
    BIOSENSORS & BIOELECTRONICS, 2015, 74 : 562 - 574