Use of Indocyanine Green (ICG), a Medical Near Infrared Dye, for Enhanced Fluorescent Imaging-Comparison of Organic Anion Transporting Polypeptide 1B3 (OATP1B3) and Sodium-Taurocholate Cotransporting Polypeptide (NTCP) Reporter Genes

Molecular and cellular imaging in living organisms have ushered in an era of comprehensive understanding of intracellular and intercellular events. Currently, more efforts have been focused on the infrared fluorescent dyes that facilitate deeper tissue visualization. Both sodium taurocholate cotrans...

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Veröffentlicht in:Molecules (Basel, Switzerland) Switzerland), 2019-06, Vol.24 (12), p.2295
Hauptverfasser: Wu, Menq-Rong, Huang, Yi-You, Hsiao, Jong-Kai
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Sprache:eng
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Zusammenfassung:Molecular and cellular imaging in living organisms have ushered in an era of comprehensive understanding of intracellular and intercellular events. Currently, more efforts have been focused on the infrared fluorescent dyes that facilitate deeper tissue visualization. Both sodium taurocholate cotransporting polypeptide (NTCP) and organic-anion-transporting polypeptide 1B3 (OATP1B3) are capable of carrying indocyanine green (ICG) into the cytoplasm. We compared the feasibility of and as reporter genes in combination with ICG. and were transduced into HT-29 cells. Genetically modified HT-29 cells were inoculated into nude mice. ICG was administered in vitro and in vivo and the signals were observed under confocal microscopy, flow cytometry, multimode microplate reader, and an in vivo imaging system. Both - and -expressing cells and xenografts had higher ICG intensities. The OATP1B3-expressing xenograft has a higher ICG uptake than the -expressing xenograft. or combined with ICG could serve as a noninvasive imaging modality for molecular and cellular imaging. outperforms in terms of in vivo imaging.
ISSN:1420-3049
1420-3049
DOI:10.3390/molecules24122295