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Near-Infrared Ratiometric Two-Photon Probe for pH Measurement in Human Stomach Cancer Tissue
  • Juvekar, Vinayak ;
  • Lim, Chang Su ;
  • Lee, Dong Joon ;
  • Song, Deuk Hwa ;
  • Noh, Choong Kyun ;
  • Kang, Hyuk ;
  • Shin, Sung Jae ;
  • Kim, Hwan Myung
Citations

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Publication Year
2021-03-15
Publisher
American Chemical Society
Citation
ACS Applied Bio Materials, Vol.4, pp.2135-2141
Keyword
near-infrared emissionpH proberatiometric imagingstomach cancertissue imagingtwo-photon microscopy
Mesh Keyword
Cancer researchExcited fluorescenceIntra-molecular charge transferIntracellular pHMicroscope imagingPhysiological conditionStomach tissuesTwo-photon probesBiocompatible MaterialsCell Line, TumorFluorescent DyesHumansHydrogen-Ion ConcentrationMaterials TestingMolecular StructureParticle SizePhotonsStomach Neoplasms
All Science Classification Codes (ASJC)
BiomaterialsChemistry (all)Biomedical EngineeringBiochemistry (medical)
Abstract
Stomach cancer is a global health issue because of its incidence and mortality rates worldwide. We developed a near-infrared (NIR) emissive ratiometric two-photon (TP) probe (HCC1) for the quantitative analysis of pH in live cells and human stomach tissues. The probe design is based on a restrained hemicyanine core that controls the intramolecular charge transfer from 2-naphthol, with a suitable pKa value (7.50) under physiological conditions. The probe exhibited improved quantum yield, stability, and TP activity under physiological conditions. In addition, intracellular pH titration (pH 4.0 to 10.0) of HCC1 revealed an ideal intracellular pKa of approximately 7.2, negligible cytotoxicity, and TP excited fluorescence in situ, thereby allowing direct imaging of the cellular pH in live cells and tissues. Ratiometric two-photon microscope imaging with HCC1 of human stomach tissue revealed a clear intratissue pH variation among normal, adenoma, and cancer tissues. Our results demonstrate that HCC1 is useful as an NIR imaging probe for in situ pH-related studies and in cancer research.
ISSN
2576-6422
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/31824
DOI
https://doi.org/10.1021/acsabm.0c01546
Fulltext

Type
Article
Funding
This study was supported by grants from the National Leading Research Lab Program of the National Research Foundation of Korea (NRF), funded by the Korean government (MSIP) (NRF-2019R1A2B5B03100278), Center for Convergence Research of Neurological Disorders (NRF-2019R1A5A2026045), the GRRC program of Gyeonggi province (GRRCAJOU2019B02, Photonics-Medical Convergence Technology Research Center), and Ajou University research fund.
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Kang, Hyuk 강혁
Department of Chemistry
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