Topical ferumoxytol nanoparticles disrupt biofilms and prevent tooth decay in vivo via intrinsic catalytic activity
Yuan Liu(Unknown), Hyun Koo(University of Pennsylvania), Anderson T. Hara(Indiana University Health), Yue Huang(University of Pennsylvania), Geelsu Hwang(Yonsei University), Hoi‐In Jung(Yonsei University), Domenick T. Zero(Indiana University Health), Sarah M Gubara(University of Pennsylvania), Yong Li(Zhejiang University), Áurea Simón‐Soro(University of Pennsylvania), Zhi Ren(University of Pennsylvania), Pratap C. Naha(University of Pennsylvania), Dongyeop Kim(Yonsei University), Faizan Alawi(University of Pennsylvania), David P. Cormode(University of Pennsylvania)
Cited by 209
Related Papers
Implication of Surface Properties, Bacterial Motility, and Hydrodynamic Conditions on Bacterial Surface Sensing and Their Initial Adhesion
|Frontiers in Bioengineering and Biotechnology|2021|786
Terminology of Erosive Tooth Wear: Consensus Report of a Workshop Organized by the ORCA and the Cariology Research Group of the IADR
|Caries Research|2019|315
Streptococcus mutans Extracellular DNA Is Upregulated during Growth in Biofilms, Actively Released via Membrane Vesicles, and Influenced by Components of the Protein Secretion Machinery
|Journal of Bacteriology|2014|311