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Nanoparticles for the Treatment of Oral Biofilms: Current State, Mechanisms, Influencing Factors, and Prospects. | LitMetric

AI Article Synopsis

  • Nanoparticles show potential as a treatment option for oral biofilm-related infections due to their size and targeted antibacterial effects.
  • The review discusses how nanoparticles interact with the four stages of oral biofilm formation and highlights the importance of understanding these mechanisms and influencing factors for effective treatment.
  • It also addresses the limitations of current research and suggests future directions for studies on nanoparticle applications in combating oral biofilms.

Article Abstract

Due to their excellent size, designability, and outstanding targeted antibacterial effects, nanoparticles have become a potential option for controlling oral biofilm-related infections. However, the formation of an oral biofilm is a dynamic process, and factors affecting the performance of antibiofilm treatments are complex. As such, when examining the existing literature on the antibiofilm effects of nanoparticles, attention should be paid to the specific mechanisms of action at different stages of oral biofilm formation, as well as relevant influencing factors, in order to achieve an objective and comprehensive evaluation. This review is intended to detail the antibacterial mechanisms of nanoparticles during the four stages of the formation of oral biofilms: 1) acquired film formation; 2) bacterial adhesion; 3) early biofilm development; and 4) biofilm maturation. In addition, factors influencing the antibiofilm properties of nanoparticles are summarized from the aspects of nanoparticles themselves, biofilm models, and host factors. The limitations of current research and possible trends for future research are also discussed. In summary, nanoparticles are a promising antioral biofilm strategy. It is hoped that this review can serve as a reference and inspire ideas for further research on the application of nanoparticles for effectively targeting and treating oral biofilms.

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Source
http://dx.doi.org/10.1002/adhm.201901301DOI Listing

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