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pH-Responsive Hybrid Nanoparticles for Imaging Spatiotemporal pH Changes in Biofilm-Dentin Microenvironments

  • Guang-Rong Tan
  • , Chin-Ying Stephen Hsu*
  • , Yong Zhang*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Engineering highly sensitive nanomaterials to monitor spatiotemporal pH changes has rather broad applications in studying various biological systems. Intraoral/biofilm-tooth pH is the single parameter that has demonstrated accurate assessment of dental caries risk, reflecting the summative integrated outcome of the complicated interactions between three etiological factors, namely, microorganisms/biofilm, diet/carbohydrates, and tooth/saliva/host. However, there is little to no technology/system capable of accurately probing simultaneously both the micro-pH profiles in dentin tissues and acidogenic oral biofilms and examining the pathophysiologic acid attacks with high spatial/temporal resolution. Therefore, a highly sensitive pH-responsive hybrid nanoparticle (pH-NP) is developed and coupled with an ex vivo tooth-biofilm caries model to simulate and study the key cariogenic determinants/steps. The pH-NP emits two distinct fluorescences with mutually inversely proportional intensities that vary accordingly to the proximity pH and with a ratiometric output sensitivity of 13.4-fold across a broad clinically relevant pH range of 3.0-8.0. Using [H+], in addition to pH, to calculate the “area-under-curve” corroborates the “minimum-pH” in semiquantifying the demineralizing potential in each biofilm-dentin zones/depth. The data mechanistically elucidates a two-pronged cariogenic effect of a popular-acidic-sweet-drink, in inundating the biofilm/tooth-system with H+ions from both the drink and the metabolic byproducts of the biofilm. © 2021 American Chemical Society
Original languageEnglish
Pages (from-to)46247-46259
JournalACS Applied Materials and Interfaces
Volume13
Issue number39
Online published27 Sept 2021
DOIs
Publication statusPublished - 6 Oct 2021
Externally publishedYes

Funding

This work was supported by the Singapore (SG) Ministry of Health’s National Medical Research Council (grant number WBS #R-221-000-059-511), the National University of Singapore (NUS) BIGHEART funding (grant number WBS #R-221-000-116-733), and the SG Ministry of Education AcRF Tier 1 funding (grant number WBS #R-221-000-133-114).

Research Keywords

  • dye loading
  • fluorescence
  • pH imaging
  • pH-responsive nanoparticles
  • protein coating

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