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      Modified norcyanines enable ratiometric pH imaging beyond 1000 nm.

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          Abstract

          Activatable fluorophores with emission beyond 1000 nm have the potential to enable high contrast imaging in complex in vivo settings. However, there are few scaffolds that can be applied to this challenge. Here we detail the synthesis and evaluation of benzo[c,d]indole-substituted norcyanines that enable pH responsive fluorescence imaging in the long wavelength (>1150 nm) range. A key component of our molecular design is the installation of a hydrophilic substituted quaternary amine in the central dihydropyridine ring system. A compound with a C4'-phenyl substituent, but not the C4'-protio homologue, exhibits absorbance maxima of 740 nm and 1130 nm in basic and acidic media, respectively, with evidence of J-aggregate-like properties. These two distinct absorbances enabled ratiometric imaging of probe internalization in a tumor model. Overall, these studies provide a new class of activatable long-wavelength responsive fluorophores with promising photophysical properties.

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          Author and article information

          Journal
          Biosens Bioelectron
          Biosensors & bioelectronics
          Elsevier BV
          1873-4235
          0956-5663
          Dec 01 2022
          : 217
          Affiliations
          [1 ] Chemical Biology Laboratory, Center for Cancer Research, National Cancer Institute, Frederick, MD, 21702, United States.
          [2 ] Small Animal Imaging Program, Frederick National Laboratory for Cancer Research, Leidos Biomedical Research Inc, Frederick, MD, 21702, United States.
          [3 ] Advanced Biomedical Computational Science, Frederick National Laboratory for Cancer Research, Leidos Biomedical Research Inc, Frederick, MD, 21702, United States.
          [4 ] Chemical Biology Laboratory, Center for Cancer Research, National Cancer Institute, Frederick, MD, 21702, United States. Electronic address: martin.schnermann@nih.gov.
          Article
          NIHMS1830923 S0956-5663(22)00650-9
          10.1016/j.bios.2022.114610
          9555292
          36137483
          980faf97-d062-460b-957c-4bc8dc35a9ca
          History

          Ratiometric imaging,Heptamethine cyanine,Shortwave near infrared,pH sensor,Activatable fluorophore

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