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Wavelength-ratiometric near-physiological pH sensors based on 6-aminoquinolinium boronic acid probes
Authors:Badugu Ramachandram  Lakowicz Joseph R  Geddes Chris D
Institution:a Center for Fluorescence Spectroscopy, Department of Biochemistry and Molecular Biology, Medical Biotechnology Center, University of Maryland School of Medicine, 725 West Lombard Street, Baltimore, MD 21201, USA
b Institute of Fluorescence, Laboratory for Advanced Fluorescence Spectroscopy, Medical Biotechnology Center, University of Maryland Biotechnology Institute, 725 West Lombard Street, Baltimore, MD 21201, USA
Abstract:We describe the pH response of a set of isomeric water-soluble fluorescent probes based on both the 6-aminoquinolinium and boronic acid moieties. These probes show spectral shifts and intensity changes with pH, in a wavelength-ratiometric and colorimetric manner. Subsequently, changes in pH can readily be determined around the physiological level.Although boronic acid containing probes are known to exhibit pH sensitivity along with an ability for saccharide binding/chelating, the new probes reported here are considered to be unique and show an unperturbed pH response, even in the presence of high concentrations of background saccharide, such as with glucose and fructose, allowing for the predominant pH sensitivity. The response of the probes is based on the ability of the boronic acid group to interact with strong bases like OH, changing from the neutral form of the boronic acid group, R-B(OH)2, to the anionic ester, R-B(OH)3, form, which is an electron donating group. The presence of an electron deficient quaternary heterocyclic nitrogen center and a strong electron donating amino group in the 6-position of the quinolinium backbone, provides for the spectral changes observed upon OH complexation. In addition, by comparing the results obtained with systems separately incorporating 6-methoxy or 6-methyl substituents, the suppressed response towards monosaccharides, such as with glucose and fructose, can clearly be observed for these systems. Finally we compare our results to those of a control compound, BAQ, which does not contain the boronic acid group, allowing a rationale of the spectral changes to be made.
Keywords:BA  boronic acid  BAF and BAFs  boronic acid containing fluorophore/s  BAQ  N-(benzyl)-6-aminoquinolinium bromide  o-  m-  or p-BAQBA  N-(2-  3-  or 4-boronobenzyl)-6-aminoquinolinium bromide  HPTS  1-hydroxypyrene-3  6  8-trisulfonate  LED  light emitting diode  SNAFL  seminaphthofluoresceins  SNARF  seminaphthorhodafluors  TCSPC  time-correlated single photon counting
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