A selective triarylmethine-based spectroscopic probe for Zn2+ ion monitoring

  • Lee, N.
  • Ly, N.H.
  • Kim, J.S.
  • Jung, H.S.
  • Joo, S.-W.
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초록

We report the synthesis and application of a novel probe of the di-2-picolylamine (DPA)-conjugated triarylmethine (TAM) dye which has aimed at detecting Zn2+ ions. The 1:2 binding stoichiometry is estimated between Zn2+ and DPA-TAM according to Job's plot diagram and density functional theory (DFT) calculations. The increment of Zn2+ ion concentrations leads to the elevated SERS intensity of DPA-TAM on gold nanoparticles (AuNPs) due to the intermolecular chelation between the Zn2+ ion and DPA-TAM. Our synthetic spectroscopic probe shows [Zn2+]-correlated SERS intensities with an estimated detection limit of 50 μM. This is due to a plasmonic enhancement effect from the well-dispersed metal nanoparticles to DPA-TAM-AuNP aggregates, which is activated by Zn2+ ion. The prepared DPA-TAM-AuNP system can also be successfully applied to monitoring of intracellular Zn2+ ions both in human cervical carcinoma HeLa cells in vitro and daphnia in vivo through dark-field microscopy (DFM)-equipped Raman cellular imaging. Our DPA-TAM-AuNP system provides a new insight in potential applications of bioanalytical Zn2+ ion detection methodology. © 2019

키워드

Dark-field microscopyIn vitroIn vivoIntracellular Zn2+ ion detectionSurface enhanced Raman scatteringSynthetic probeDensity functional theoryGold nanoparticlesLanthanum compoundsMetal nanoparticlesPlasmonic nanoparticlesPlasmonicsProbesRaman scatteringSurface scatteringDark field microscopyIn-vitroIn-vivoIon detectionSurface enhanced Raman Scattering (SERS)Synthetic probesIons
제목
A selective triarylmethine-based spectroscopic probe for Zn2+ ion monitoring
저자
Lee, N.Ly, N.H.Kim, J.S.Jung, H.S.Joo, S.-W.
DOI
10.1016/j.dyepig.2019.107721
발행일
2019-12
유형
Article
저널명
Dyes and Pigments
171
페이지
107721