Fluorescein-based metal sensors
The present invention is directed, in part, to fluorescein-based ligands for detection of metal ions, and methods of making and using the same.
1. A fluorescein-based ligand, comprising a ligand having any one of the following structures:
wherein:
Ar represents an aryl ring;
R is, independently for each occurrence, H, alkyl or aryl;
and
K is optionally one or more substituents of the indicated aromatic ring, wherein K is independently for each occurrence linear or branched alkyl, alkenyl, linear or branched aminoalkyl, linear or branched acylamino, linear or branched acyloxy, linear or branched alkoxycarbonyl, linear or branched alkoxy, linear or branched alkylaryl, linear or branched hyrdoxyalkyl, linear or branched thioalkyl, acyl, amino, hydroxy, thio, aryloxy, arylalkoxy, hydrogen, alkynyl, halogen, cyano, sulfhydryl, carbamoyl, nitro, trifluoromethyl, amino, thio, lower alkoxy, lower alkylthio, lower alkylamino, nitro, phenoxy, benzyloxy, hydrogen, amine, hydroxyl, alkoxyl, carbonyl, acyl, formyl or sulfonyl.
2. The fluorescein-based ligand of claim 1 , wherein upon addition of about 500 nM of said ligand to an aqueous solution containing Hg 2+ at about 2 ppb and at about pH 7.0, the fluorescence of the fluorescein-based ligand increases by at least about 5%.
3. The fluorescein-based ligand of claim 2 , wherein upon addition of about 500 nM of said ligand to an aqueous solution containing Hg 2+ at about 2 ppb and at about pH 7.0, the fluorescence of the fluorescein-based ligand increases by at least about 10%.
4. The fluorescein-based ligand of claim 3 , wherein upon addition of about 500 nM of said ligand to an aqueous solution containing Hg 2+ at about 2 ppb and at about pH 7.0, the fluorescence of the fluorescein-based ligand increases by at least about 50%.
5. The fluorescein-based ligand of claim 4 , wherein upon addition of about 500 nM of said ligand to an aqueous solution containing Hg 2+ at about 2 ppb and at about pH 7.0, the fluorescence of the fluorescein-based ligand increases by at least about 100%.
6. The fluorescein-based ligand of claim 1 , wherein upon addition of about 1 μM of said ligand to an aqueous solution containing Hg 2+ at about 1 ppm and at about pH 7.0, the fluorescence of the fluorescein-based ligand increases by at least about 5%.
7. The fluorescein-based ligand of claim 1 , wherein upon addition of about 1 μM of said ligand to an aqueous solution containing Hg 2+ at about 10 ppm and at about pH 7.0, the fluorescence of the fluorescein-based ligand increases by at least about 5%.
8. The fluorescein-based ligand of claim 1 , wherein the fluorescein structure of said ligand has one or more K substituents at any of the aromatic ring carbon positions.
9. The fluorescein-based ligand of claim 1 , wherein said ligand forms a chelating agent upon complexation of said ligand with a metal ion.
10. The fluorescein-based ligand of claim 1 , wherein said ligand forms a bidentate or tridentate chelating agent upon said complexation.
11. A coordination complex, comprising a metal ion coordinated to one of the fluorescein-based ligands claimed above.
12. The coordination complex of claim 11 , wherein said metal ion is a heavy metal ion.
13. The coordination complex of claim 11 , comprising Hg 2+ coordinated to one of the fluorescein-based ligands claimed above.