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A Three-Photon Active Organic Fluorophore for Deep Tissue Ratiometric Imaging of Intracellular Divalent Zinc

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dc.contributor.author Divya Susan, Philips
dc.contributor.author Sreejith, S
dc.contributor.author Tingchao He
dc.contributor.author Menon, N V
dc.contributor.author Palapuravan, Anees
dc.contributor.author Jomon Mathew
dc.contributor.author Sreedharan, SajikumarX
dc.contributor.author Yuejun Kang
dc.contributor.author Mihaiela Corina, Stuparu
dc.contributor.author Handong Sun
dc.contributor.author Yanli Zhao
dc.contributor.author Ajayaghosh, A
dc.date.accessioned 2017-05-19T10:06:09Z
dc.date.available 2017-05-19T10:06:09Z
dc.date.issued 2016-05-20
dc.identifier.citation Chemistr Asian Journal:11:1523–1527 en_US
dc.identifier.uri http://hdl.handle.net/123456789/2794
dc.description.abstract Deep tissue bioimaging with three-photon (3P) excitation using near-infrared (NIR) light in the second IR window (1.0–1.4 mm) could provide high resolution images with an improved signal-to-noise ratio. Herein, we report a photostable and nontoxic 3P excitable donor-pacceptor system (GMP) having 3P cross-section (s3) of 1.78Õ10¢80 cm6 s2photon¢2 and action cross-section (s3h3) of 2.31Õ10¢81 cm6 s2photon¢2, which provides ratiometric fluorescence response with divalent zinc ions in aqueous conditions. The probe signals the Zn2+ binding at 530 and 600 nm, respectively, upon 1150 nm excitation with enhanced s3 of 1.85Õ10¢80 cm6 s2photon¢2 and s3h3 of 3.33Õ10¢81 cm6 s2photon¢2. The application of this probe is demonstrated for ratiometric 3P imaging of Zn2+ in vitro using HuH-7 cell lines. Furthermore, the Zn2+ concentration in rat hippocampal slices was imaged at 1150 nm excitation after incubation with GMP, illustrating its potential as a 3P ratiometric probe for deep tissue Zn2+ ion imaging en_US
dc.language.iso en en_US
dc.publisher wiley en_US
dc.subject nanocrystals en_US
dc.subject fluorophores en_US
dc.subject cross-section en_US
dc.subject fluorophores en_US
dc.title A Three-Photon Active Organic Fluorophore for Deep Tissue Ratiometric Imaging of Intracellular Divalent Zinc en_US
dc.type Article en_US


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