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Carboxylate-Containing Two-Photon Probe for the Simultaneous Detection of Extra- and Intracellular pH Values in Colon Cancer Tissue
  • Si, Ho Young ;
  • Cho, Myoung Ki ;
  • Kang, Ji Su ;
  • Noh, Choong Kyun ;
  • Shin, Sung Jae ;
  • Lim, Chang Su ;
  • Kim, Hwan Myung
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Publication Year
2018-07-03
Publisher
American Chemical Society
Citation
Analytical Chemistry, Vol.90, pp.8058-8064
Mesh Keyword
Extracellular regionIn-situ measurementIntracellular pHPrecise measurementsSimultaneous detectionTwo photon microscopyTwo-photon excited fluorescenceTwo-photon probesCarboxylic AcidsCell Line, TumorColonic NeoplasmsExtracellular SpaceFluorescent DyesHeLa CellsHumansHydrogen-Ion ConcentrationIntracellular SpacePhotonsSolubilitySpectrometry, FluorescenceSulfonic AcidsTime Factors
All Science Classification Codes (ASJC)
Analytical Chemistry
Abstract
Acidified extracellular pH (pHe) is directly related to various disorders such as tumor invasion and the resistance to drugs. In this study, we developed two-photon-excitable emission ratiometric probes (XBH1-3) for the in situ measurement of pHe. These probes, based on benzimidazole and polar solubilizing groups, exhibited a strong two-photon-induced fluorescence and sensitive blue-to-green emission color changes with pKa values of 5.1-5.7. XBH1, containing a carboxylic acid, stained the extracellular region in neutral media; it entered the cell under acidic media, thereby allowing a precise measurement of the extra- and intra-cellular pH values in the acidified tissue. XBH2, containing the sulfonate peripheral unit, facilitated the monitoring of the pHe value only. Ratiometric two-photon microscopy imaging revealed that XBH1 can directly monitor the pH values both inside and outside the cells in colon cancer tissue; there is also the morphological aspect. This could be useful for cancer analyses and drug development.
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/30245
DOI
https://doi.org/10.1021/acs.analchem.8b01114
Fulltext

Type
Article
Funding
This study was supported by a grant from the National Leading Research Lab Program of the National Research Foundation of Korea (NRF) funded by the Korean government (MSIP) (no. 2016R1E1A1A02920873). C.S.L. acknowledges a grant from the NRF (no. 2013R1A6A3A04058351).
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Kim, Hwan Myung김환명
Department of Chemistry
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