Plasmonic Coupling in Silver Nanoparticle Aggregates and Their Polymer Composite Films for Near-Infrared Photothermal Biofilm Eradication

被引:37
作者
Merkl, Padryk [1 ]
Zhou, Shuzhi [1 ]
Zaganiaris, Apostolos [1 ]
Shahata, Mariam [1 ]
Eleftheraki, Athina [1 ]
Thersleff, Thomas [2 ]
Sotiriou, Georgios A. [1 ]
机构
[1] Karolinska Inst, Dept Microbiol Tumor & Cell Biol, SE-17177 Stockholm, Sweden
[2] Stockholm Univ, Dept Mat & Environm Chem, S-10691 Stockholm, Sweden
基金
瑞典研究理事会; 欧洲研究理事会;
关键词
nanoaggregates; on-demand disinfection; Ag; nanosilver; near-IR; MULTIDRUG-RESISTANT BACTERIA; SIZE; GENERATION; NANOSILVER; EFFICIENCY; CONVERSION;
D O I
10.1021/acsanm.1c00668
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Plasmonic nanoparticles with near-IR (NIR) light absorption are highly attractive in biomedicine for minimally invasive photothermal treatments. However, these optical properties are typically exhibited by plasmonic nanostructures with complex, nonspherical geometries that may prohibit their broad commercialization and further integration into photothermal devices. Herein, we present the single-step aerosol self-assembly of plasmonic nanoaggregates that consisted of spherical silver nanoparticles with tunable extinction from visible to NIR wavelengths. This tunable extinction was achieved by the addition of SiO2 during the flame synthesis of the nanoparticles, which acted as a dielectric spacer between the spherical silver nanoparticles and was also computationally validated by simulating the extinction spectra of similar silver nanoaggregates. These plasmonic nanoaggregates were easily deposited on silicone polymeric surfaces and further encased with a top polymer layer, forming plasmonic photothermal nanocomposite films. The photothermal properties of the NIR nanocomposite films were utilized to eradicate the established biofilms of clinically relevant Escherichia coli and Staphylococcus aureus, with a relationship observed between the final surface temperature and biofilm eradication.
引用
收藏
页码:5330 / 5339
页数:10
相关论文
共 46 条
  • [1] Surface plasmon resonance in gold nanoparticles: a review
    Amendola, Vincenzo
    Pilot, Roberto
    Frasconi, Marco
    Marago, Onofrio M.
    Iati, Maria Antonia
    [J]. JOURNAL OF PHYSICS-CONDENSED MATTER, 2017, 29 (20)
  • [2] Implant infections: adhesion, biofilm formation and immune evasion
    Arciola, Carla Renata
    Campoccia, Davide
    Montanaro, Lucio
    [J]. NATURE REVIEWS MICROBIOLOGY, 2018, 16 (07) : 397 - 409
  • [3] Catalytic conversion of solar to chemical energy on plasmonic metal nanostructures
    Aslam, Umar
    Rao, Vishal Govind
    Chavez, Steven
    Linic, Suljo
    [J]. NATURE CATALYSIS, 2018, 1 (09): : 656 - 665
  • [4] Auguie B., 2012, CDA COUPLED DIPOLE A, DOI [10.5281/zenodo.60310, DOI 10.5281/ZENODO.60310]
  • [5] Fingers Crossed: Optical Activity of a Chiral Dimer of Plasmonic Nanorods
    Auguie, Baptiste
    Lorenzo Alonso-Gomez, Jose
    Guerrero-Martinez, Andres
    Liz-Marzan, Luis M.
    [J]. JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2011, 2 (08): : 846 - 851
  • [6] Thermo-plasmonics: using metallic nanostructures as nano-sources of heat
    Baffou, Guillaume
    Quidant, Romain
    [J]. LASER & PHOTONICS REVIEWS, 2013, 7 (02) : 171 - 187
  • [7] Tuning Size and Sensing Properties in Colloidal Gold Nanostars
    Barbosa, Silvia
    Agrawal, Amit
    Rodriguez-Lorenzo, Laura
    Pastoriza-Santos, Isabel
    Alvarez-Puebla, Raman A.
    Kornowski, Andreas
    Weller, Horst
    Liz-Marzan, Luis M.
    [J]. LANGMUIR, 2010, 26 (18) : 14943 - 14950
  • [8] Rapid synthesis of flexible conductive polymer nanocomposite films
    Blattmann, C. O.
    Sotiriou, G. A.
    Pratsinis, S. E.
    [J]. NANOTECHNOLOGY, 2015, 26 (12)
  • [9] Photothermally active nanoparticles as a promising tool for eliminating bacteria and biofilms
    Borzenkov, Mykola
    Pallavicini, Piersandro
    Taglietti, Angelo
    D'Alfonso, Laura
    Collini, Maddalena
    Chirico, Giuseppe
    [J]. BEILSTEIN JOURNAL OF NANOTECHNOLOGY, 2020, 11 : 1134 - 1146
  • [10] Quantifying the photothermal conversion efficiency of plasmonic nanoparticles by means of terahertz radiation
    Breitenborn, H.
    Dong, J.
    Piccoli, R.
    Bruhacs, A.
    Besteiro, L. V.
    Skripka, A.
    Wang, Z. M.
    Govorov, A. O.
    Razzari, L.
    Vetrone, F.
    Naccache, R.
    Morandotti, R.
    [J]. APL PHOTONICS, 2019, 4 (12)