Publication | Closed Access
Development of an Si-Rhodamine-Based Far-Red to Near-Infrared Fluorescence Probe Selective for Hypochlorous Acid and Its Applications for Biological Imaging
569
Citations
20
References
2011
Year
Immunocytochemical TechniqueImmunologyPathologyBiomedical EngineeringChemistryChemical ImageHocl GenerationMolecular ImagingBiophysicsNovel Imaging MethodFluorescence ProbeBiochemistryPhotochemistryInfrared SpectroscopyHypochlorous AcidNear-infrared SpectroscopyNatural SciencesSpectroscopyBiomedical ImagingChemical ProbeMedicineReal TimeAtomic Fluorescence Spectroscopy
A far-red to near-infrared (NIR) fluorescence probe, MMSiR, based on Si-rhodamine, was designed and synthesized for sensitive and selective detection of HOCl in real time. MMSiR and its oxidized product SMSiR have excellent properties, including pH-independence of fluorescence, high resistance to autoxidation and photobleaching, and good tissue penetration of far-red to NIR fluorescence emission. The value of MMSiR was confirmed by real-time imaging of phagocytosis using a fluorescence microscope. wsMMSiR, a more hydrophilic derivative of MMSiR, permitted effective in vivo imaging of HOCl generation in a mouse peritonitis model. This probe is expected to be a useful tool for investigating the wide range of biological functions of HOCl.
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