Title : Two-isophorone fluorophore-based design of a ratiometric fluorescent probe and its application in the sensing of biothiols.

Pub. Date : 2019 Oct 7

PMID : 31483434






7 Functional Relationships(s)
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Protein Name
Organism
1 A new fluorophore bearing two isophorone malononitrile structures was conjugated with DNBS to provide a target probe (CHT), which exhibited a ratiometric sensing behavior towards biothiols. isophorone solute carrier family 5 member 7 Homo sapiens
2 A new fluorophore bearing two isophorone malononitrile structures was conjugated with DNBS to provide a target probe (CHT), which exhibited a ratiometric sensing behavior towards biothiols. dicyanmethane solute carrier family 5 member 7 Homo sapiens
3 A new fluorophore bearing two isophorone malononitrile structures was conjugated with DNBS to provide a target probe (CHT), which exhibited a ratiometric sensing behavior towards biothiols. 2,4-dinitrofluorobenzene sulfonic acid solute carrier family 5 member 7 Homo sapiens
4 A new fluorophore bearing two isophorone malononitrile structures was conjugated with DNBS to provide a target probe (CHT), which exhibited a ratiometric sensing behavior towards biothiols. biothiols solute carrier family 5 member 7 Homo sapiens
5 Most importantly, CHT has high stability in the quantitative detection of Cys compared to the control probe CHM, which performed an "off-on" sensing for biothiols. Cysteine solute carrier family 5 member 7 Homo sapiens
6 Most importantly, CHT has high stability in the quantitative detection of Cys compared to the control probe CHM, which performed an "off-on" sensing for biothiols. biothiols solute carrier family 5 member 7 Homo sapiens
7 Endogenous biothiols were successfully monitored with CHT in live cells through the ratiometric fluorescence signal. biothiols solute carrier family 5 member 7 Homo sapiens