CRYPTATES AND METHODS OF USE
The present invention provides cryptates with excellent fluorescent properties. The cryptates are useful in biological assays and methods for the detection and identification of various analytes.
1 . A compound of Formula I:
wherein when the dotted line is present, R and R 1 are each independently selected from the group consisting of hydrogen, halogen, hydroxyl, alkyl optionally substituted with one or more halogen atoms, carboxyl, alkoxycarbonyl, amido, sulfonato, alkoxycarbonylalkyl or alkylcarbonylalkoxy or alternatively, R and R 1 join to form an optionally substituted cyclopropyl group wherein the dotted bond is absent;
R 2 and R 3 are each independently a member selected from the group consisting of hydrogen, halogen, SO 3 H, —SO 2 —X, wherein X is a halogen, optionally substituted alkyl, optionally substituted aryl, optionally substituted alkenyl, optionally substituted alkynyl, optionally substituted cycloalkyl, or an activated group that can be linked to a biomolecule, wherein the activated group is a member selected from the group consisting of a halogen, an activated ester, an activated acyl, optionally substituted alkylsulfonate ester, optionally substituted arylsulfonate ester, amino, formyl, glycidyl, halo, haloacetamidyl, haloalkyl, hydrazinyl, imido ester, isocyanato, isothiocyanato, maleimidyl, mercapto, alkynyl, hydroxyl, alkoxy, amino, cyano, carboxyl, alkoxycarbonyl, amido, sulfonato, alkoxycarbonylalkyl, cyclic anhydride, alkoxyalkyl, a water solubilizing group and L;
R 4 are each independently a hydrogen, C 1 -C 6 alkyl, or alternatively, 3 of the R 4 groups are absent and the resulting oxides are chelated to a lanthanide cation; and
Q 1 -Q 4 are each independently a member selected from the group consisting of carbon and nitrogen.
2 . The compound of claim 1 , wherein R and R 1 are each hydrogen.
3 . The compound of claim 1 , wherein at least one of R 2 and R 3 is —SO 2 Cl.
4 . The compound of claim 1 , wherein at least one of R 2 and R 3 is a member selected from the group consisting of hydrogen, activated acyl, optionally substituted alkylsulfonate ester, optionally substituted arylsulfonate ester, optionally substituted amino, formyl, glycidyl, halo, haloacetamidyl, haloalkyl, hydrazinyl, imido ester, isocyanato, isothiocyanato, maleimidyl, mercapto, carboxyl, alkoxycarbonyl, amido, sulfonato, alkoxycarbonylalkyl, and alkoxyalkyl.
5 . The compound of claim 1 , wherein at least one of R 2 and R 3 is a member selected from the group consisting of activated acyl, optionally substituted alkylsulfonate ester, optionally substituted arylsulfonate ester, formyl, glycidyl, halo, haloacetamidyl, haloalkyl, imido ester, isocyanato, isothiocyanato, and maleimidyl.
6 . The compound of claim 1 , wherein at least one of R 2 and R 3 a member selected from the following group:
wherein n and y are each independently selected from 0 to 5.
7 . The compound of claim 1 , wherein the compound of Formula I has a chelated lanthanide cation.
8 . The compound of claim 1 , wherein the compound of Formula I has the structure:
9 . The compound of claim 1 , wherein the lanthanide ion is a member selected from the group consisting of neodymium (Nd), samarium (Sm), europium (Eu), terbium (Tb), dysprosium (Dy) and ytterbium (Yb).
10 . The compound of claim 1 , wherein the lanthanide ion Ln 3+ is selected from the group consisting of europium and terbium.
11 . The compound of claim 1 , wherein the lanthanide ion is terbium.
12 . A bioconjugate compound of Formula II:
wherein when the dotted line is present, R and R 1 are each independently selected from the group consisting of hydrogen, halogen, hydroxyl, alkyl optionally substituted with one or more halogen atoms, carboxyl, alkoxycarbonyl, amido, sulfonato, alkoxycarbonylalkyl or alkylcarbonylalkoxy or alternatively, R and R 1 join to form an optionally substituted cyclopropyl group wherein the dotted bond is absent;
R 5 and R 6 are each independently a member selected from the group consisting of hydrogen, halogen, SO 3 H, —SO 2 —X, wherein X is a halogen, optionally substituted alkyl, optionally substituted aryl, optionally substituted alkenyl, optionally substituted alkynyl, optionally substituted cycloalkyl, an activated ester, an activated acyl, optionally substituted alkylsulfonate ester, optionally substituted arylsulfonate ester, amino, formyl, glycidyl, halo, haloacetamidyl, haloalkyl, hydrazinyl, imido ester, isocyanato, isothiocyanato, maleimidyl, mercapto, alkynyl, hydroxyl, alkoxy, amino, cyano, carboxyl, alkoxycarbonyl, amido, sulfonato, alkoxycarbonylalkyl, cyclic anhydride, alkoxyalkyl, a water solubilizing group and -L q -B, wherein -L q -B comprises a linking group and a biomolecule, wherein the compound comprises at least one -L q -B;
R 4 are each independently a hydrogen, C 1 -C 6 alkyl, or alternatively, 3 of the R 4 groups are absent and the resulting oxides are chelated to a lanthanide cation; and
Q 1 -Q 4 are each independently a member selected from the group consisting of carbon and nitrogen.
13 . The compound of claim 12 , wherein B is an antibody, protein or peptide.
14 . The compound of claim 12 , wherein L q comprises a member selected from the group consisting of amide, ether, thioether, ester, thioester, carbamate, urea, and thiourea.
15 . The compound of claim 12 , wherein the compound of Formula II has the following structure:
16 . An assay method for detecting an analyte in solution, the method comprising:
contacting a sample with a compound of Formula II comprising a lanthanide ion, wherein the compound of Formula II binds with an analyte;
exciting the sample with light; and
detecting fluorescence emission to detect the analyte.
17 . The assay method of claim 16 , wherein the compound of Formula II has the following structure:
wherein B binds an analyte having an acceptor fluorophore; and
detecting fluorescence emission from the acceptor fluorophore.
18 . The assay method of claim 16 , wherein the lanthanide cation is a member selected from the group consisting of europium and terbium.
19 . The assay method of claim 16 , wherein the excitation is with UV light.
20 . The assay method of claim 16 , wherein the wavelength of excitation is between about 300 nm to about 400 nm.
21 . The assay method of claim 16 , wherein the acceptor fluorophore emits in the visible to near IR.
22 . The assay method of claim 16 , wherein the visible to near IR is between 500 and 800 nm.