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      Chemiluminescent Probes for Activity-Based Sensing of Formaldehyde Released from Folate Degradation in Living Mice

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          Reaction-based small-molecule fluorescent probes for chemoselective bioimaging.

          The dynamic chemical diversity of elements, ions and molecules that form the basis of life offers both a challenge and an opportunity for study. Small-molecule fluorescent probes can make use of selective, bioorthogonal chemistries to report on specific analytes in cells and in more complex biological specimens. These probes offer powerful reagents to interrogate the physiology and pathology of reactive chemical species in their native environments with minimal perturbation to living systems. This Review presents a survey of tools and tactics for using such probes to detect biologically important chemical analytes. We highlight design criteria for effective chemical tools for use in biological applications as well as gaps for future exploration.
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            Small molecule-based ratiometric fluorescence probes for cations, anions, and biomolecules.

            Quantitative determination of specific analytes is essential for a variety of applications ranging from life sciences to environmental monitoring. Optical sensing allows non-invasive measurements within biological milieus, parallel monitoring of multiple samples, and less invasive imaging. Among the optical sensing methods currently being explored, ratiometric fluorescence sensing has received particular attention as a technique with the potential to provide precise and quantitative analyses. Among its advantages are high sensitivity and inherent reliability, which reflect the self-calibration provided by monitoring two (or more) emissions. A wide variety of ratiometric sensing probes using small fluorescent molecules have been developed for sensing, imaging, and biomedical applications. In this research highlight, we provide an overview of the design principles underlying small fluorescent probes that have been applied to the ratiometric detection of various analytes, including cations, anions, and biomolecules in solution and in biological samples. This highlight is designed to be illustrative, not comprehensive.
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              Design strategies for water-soluble small molecular chromogenic and fluorogenic probes.

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                Author and article information

                Contributors
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                Journal
                Angewandte Chemie
                Angew. Chem.
                Wiley
                00448249
                June 18 2018
                June 18 2018
                April 27 2018
                : 130
                : 25
                : 7630-7634
                Affiliations
                [1 ]Department of Chemistry; University of California, Berkeley; Berkeley CA 94720 USA
                [2 ]School of Chemistry, Faculty of Exact Sciences; Tel Aviv University; Tel Aviv 69978 Israel
                [3 ]Department of Molecular and Cell Biology; University of California, Berkeley; Berkeley CA 94720 USA
                [4 ]Howard Hughes Medical Institute; Chevy Chase MD 20815 USA
                Article
                10.1002/ange.201802143
                74b5f24d-3d73-4111-8dab-943bf7ac934c
                © 2018

                http://doi.wiley.com/10.1002/tdm_license_1.1

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