Claims
- 1. A low molecular weight fluorescent labeling complex comprising:
a first fluorochrome having first absorption and emission spectra; a second fluorochrome having second absorption and emission spectra, the wavelength of the emission maximum of said second fluorochrome being longer than the wavelength of the emission maximum of said first fluorochrome, and a portion of the absorption spectrum of said second fluorochrome overlapping a portion of the emission spectrum of said first fluorochrome for transfer of energy absorbed by said first fluorochrome when said complex is excited by light to said second fluorochrome; at least one linker for covalently attaching said first and second fluorochromes for resonance energy transfer between said first and second fluorochromes; at least one of said first or second fluorochromes is a cyanine dye and the combined weight of said first and second fluorochromes and said linker is less than about 20,000 Daltons; and at least one target bonding group capable of forming a covalent bond with a target compound.
- 2. The complex recited in claim 1 wherein said first fluorochrome has an extinction coefficient greater than 20,000 Liters per mole centimeter.
- 3. The complex recited in claim 1 wherein said second fluorochrome has a fluorescence quantum yield greater than or equal to 0.05.
- 4. The complex recited in claim 1 further comprising water solubilizing constituents attached thereto for conferring a polar characteristic to said complex, said water solubilizing constituents being unreactive with said target bonding group.
- 5. The complex recited in claim 4 wherein said solubilizing constituents are selected from the group consisting of amide, sulfonate, sulfate, phosphate, quaternary ammonium, hydroxyl and phosphonate.
- 6. The complex recited in claim 1 wherein said target bonding group is a reactive group that reacts with said target compounds and said target compounds have functional groups selected from the group consisting of amino, hydroxyl, sulfhydryl, carboxyl and carbonyl.
- 7. The complex recited in claim 6 wherein said reactive group is selected from the group consisting of succinimidyl ester, isothiocyanate, isocyanate, iodoacetamide, dichlorotriazine, maleimide, sulfonyl halide, alkylimidoester, arylimidoester substituted hydrazines, substituted hydroxylamines, carbodiimides, acid halide, and phosphoramidite.
- 8. The complex recited in claim 1 wherein the combined molecular weight of said first and second fluorochromes and said linker is within the range of about 500 to about 10,000 Daltons.
- 9. The complex recited in claim 1 further comprising:
a third fluorochrome having third absorption and emission spectra covalenty attached to said second fluorochrome; the wavelength of the emission maximum of said third fluorochrome being longer than the wavelength of the emission maximum of said second fluorochrome, and a portion of the emission spectrum of said second fluorochrome overlapping a portion of the absorption spectrum of said third fluorochrome for transferring energy absorbed from said first fluorochrome to said second fluorochrome to said third fluorochrome.
- 10. The complex recited in claim 9 wherein said first fluorochrome is selected from the group consisting of monomethine rigidized cyanine dyes, a trimethine cyanine dye, fluorescein, pyrene trisulfonate, bispyrromethene boron difluoride dyes and said second and third fluorochromes are polymethine cyanine dyes.
- 11. The complex recited in claim 1 further comprising:
a plurality of said first fluorochromes each covalently attached through a linker to said second fluorochrome and each being capable, upon excitation with light, of transferring energy to said second fluorochrome.
- 12. The complex recited in claim 11 further comprising water solubilizing constituents attached thereto for conferring a polar characteristic to said complex, said water solubilizing constituents being unreactive with said target bonding group.
- 13. The complex recited in claim 11 wherein said target bonding group is a reactive group that reacts with said target compounds and said target compounds have functional groups selected from the group consisting of amino, hydroxyl, sulfhydryl, carbonyl and carboxyl.
- 14. The complex recited in claim 13 wherein said reactive group is selected from the group consisting of succinimidyl ester, isothiocyanate, isocyanate, iodoacetamide, dichlorotriazine, maleimide, sulfonyl halide, alkylimidoester, arylimidoester substituted hydrazines, substituted hydroxylamines, carbodiimides, acid halide, and phosphoramidite.
- 15. The complex recited in claim 1 further comprising:
a plurality of said second fluorochromes each covalently attached through a linker to said first fluorochrome and each being capable of accepting energy from said first fluorochrome when said first fluorochrome is excited by light.
- 16. The complex recited in claim 15 further comprising water solubilizing constituents attached thereto for conferring a polar characteristic to said complex, said water solubilizing constituents being unreactive with said reactive group.
- 17. The complex recited in claim 15 wherein said target bonding group is a reactive group that reacts with said target compounds and said target compounds have functional groups selected from the group consisting of amino, hydroxyl, sulfhydryl, carbonyl and carboxyl.
- 18. The complex recited in claim 17 wherein said reactive group is selected from the group consisting of succinimidyl ester, isothiocyanate, isocyanate, iodoacetamide, dichlorotriazine, maleimide, sulfonyl halide, alkylimidoester, arylimidoester, substituted hydrazines, substituted hydroxylamines, carbodiimides, acid halide, and phosphoramidite.
- 19. The complex recited in claim 1 wherein said linker is a linker of about 2 to 20 bond lengths.
- 20. The complex recited in claim 1 wherein said target bonding group of said complex is a functional group capable of covalently binding to a reactive group on the target compound, said functional group being selected from the group consisting of amino, sulfhydryl, carbonyl, carboxyl and hydroxy groups and said reactive group being selected from the group consisting of succinimidyl ester, isothiocyanate, isocyanate, iodoacetamide, dichlorotriazine, maleimide, sulfonyl halide, alkylimidoester, arylimidoester substituted hydrazines, substituted hydroxylamines, carbodiimides, acid halide, and phosphoramidite.
- 21. A reagent comprising:
A. a fluorescent water soluble labeling complex comprised of (i) one or more low molecular weight first fluorochromes, each having first absorption and emission spectra, covalently attached through a linker to one or more low molecular weight second fluorochromes, each having second absorption and emission spectra, wherein at least one of said first and second fluorochromes is a cyanine dye and wherein the wavelength of the emission maximum of at least one said second fluorochrome is longer than the wavelength of the emission maximum of at least one said first fluorochrome and a portion of the absorption spectrum of at least one said second fluorochrome overlaps a portion of the emission spectrum of at least one said first fluorochrome for transfer of energy absorbed by said first fluorochrome upon excitation with light to said second fluorochrome;
(ii) at least one bonding group capable of forming a covalent bond to a carrier material; and, (iii) at least one water solubilizing constituent attached to said complex for conferring a polar characteristic to said complex, said water solubilizing constituent being unreactive with said at least one bonding group; and, B. a carrier material having a group that reacts with said bonding group of said complex and is covalently bound thereto.
- 22. The reagent recited in claim 21 wherein said carrier material has a functional group selected from the group consisting of amino, sulfhydryl, carbonyl, hydroxyl and carboxyl and said carrier material is selected from the group consisting of antibody, protein, nucleotide derivatized to contain one of an amino, sulfhydryl, carbonyl, carboxyl, or hydroxyl groups, and oxy or deoxy polynucleic acids derivatized to contain one of an amino, sulfhydryl, carbonyl, carboxyl or hydroxyl groups.
- 23. The reagent recited in claim 17 wherein said first fluorochrome has an extinction coefficient greater than 20,000 Liters per mole centimeter.
- 24. The reagent recited in claim 21 wherein said second fluorochrome has a fluorescence quantum yield greater than or equal to 0.05.
- 25. The reagent recited in claim 21 wherein said water solubilizing constituents are selected from the group consisting of amide, sulfonate, sulfate, phosphate, quaternary ammonium, hydroxyl and phosphonate.
- 26. The reagent recited in claim 21 wherein one of said bonding group or said carrier group is a reactive group selected from the group consisting of succinimidyl ester, isothiocyanate, isocyanate, iodoacetamide, acid halide, carbodiimide, substituted hydroxylamines, substituted hydrazine, dichlorotriazine, maleimide, sulfonyl halide, alkylimidoester, arylimidoester and phosphonamidite and the other is a functional group reactive with said reactive group.
- 27. The reagent recited in claim 21 wherein there is one second fluorochrome and there are a plurality of said first fluorochromes each covalently attached through a linker to said second fluorochrome and each being capable, upon excitation with light, of transferring energy to said second fluorochrome.
- 28. The reagent recited in claim 21 wherein there is one first fluorochrome and there are a plurality of said second fluorochromes each covalently attached through a linker to said first fluorochrome and each being capable of accepting energy from said first fluorochrome when said first fluorochrome is excited by light.
- 29. The reagent recited in claim 21 further comprising:
a third fluorochrome having third absorption and emission spectra covalently attached to said second fluorochrome; the wavelength of the emission maximum of said third fluorochrome being longer than the wavelength of the emission maximum of said second fluorochrome, and a portion of the emission spectrum of said second fluorochrome overlapping a portion of the absorption spectrum of said third fluorochrome for transferring energy absorbed from said first fluorochrome by said second fluorochrome to said third fluorochrome.
- 30. The reagent recited in claim 21 wherein the combined molecular weight of said first and second fluorochromes of said complex is within the range of about 500 to 10,000 Daltons.
- 31. The reagent recited in claim 21 wherein said carrier material is selected from the group consisting of a polymer particle, proteins, cells, nucleotides and nucleic acids.
- 32. A method of labeling a carrier material comprising:
incubating an aqueous sample containing a carrier material with a low molecular weight, water soluble fluorescent labeling complex comprised of
(i) a first fluorochrome having first absorption and emission spectra covalently linked to a second fluorochrome having second absorption and emission spectra, the wavelength of the emission maximum of said second fluorochrome being longer than the wavelength of the emission maximum of said first fluorochrome, and the absorption spectrum of said second fluorochrome overlapping the emission spectrum of said first fluorochrome for transfer of energy absorbed by said first fluorochrome upon excitation with light to said second fluorochrome, wherein at least one of said first and second fluorochromes is a polymethine cyanine dye; (ii) a bonding group capable of forming a covalent bond with a complementary group of said carrier material, and (iii) water solubilizing constituents for conferring a polar characteristic to said complex, said water solubilizing constituents being unreactive with said bonding group, for a period of time sufficient for covalently binding said bonding group of said complex to said complementary group of said carrier material.
- 33. The method recited in claim 32 wherein said carrier material is selected from the group consisting of suspended polymer particles, cells, antibodies, protein, nucleotide derivatized to contain one of an amino, sulfhydryl, carbonyl, carboxyl or hydroxyl groups, and oxy or deoxy polynucleic acids derivatized to contain one of an amino, sulfhydryl, carbonyl, carboxyl or hydroxyl groups.
- 34. The method recited in claim 32 wherein said first fluorochrome has an extinction coefficient greater than 20,000 Liters per mole centimeter.
- 35. The method recited in claim 32 wherein said second fluorochrome has a fluorescence quantum yield greater than or equal to 0.05.
- 36. The method recited in claim 32 wherein said solubilizing constituents are selected from the group consisting of amide, sulfonate, sulfate, phosphate, quaternary ammonium, hydroxyl and phosphonate.
- 37. The method recited in claim 32 wherein said bonding group is a reactive group selected from the group consisting of succinimidyl ester, isothiocyanate, isocyanate, iodoacetamide, dichlorotriazine, maleimide, sulfonyl halide, alkylimidoester, arylimidoester and phosphonamidite.
- 38. The method recited in claim 32 wherein the combined molecular weight of said first and second fluorochromes is within the range of about 500 to 10,000 Daltons.
- 39. The method recited in claim 32 wherein there are a plurality of said first fluorochromes each covalently attached through a linker to said second fluorochrome and each being capable, upon excitation with light, of transferring energy to said second fluorochrome.
- 40. The method recited in claim 32 wherein there are a plurality of said second fluorochromes each covalently attached through a linker to said first fluorochrome and each being capable of accepting energy from said first fluorochrome when said first fluorochrome is excited by light.
- 41. The method recited in claim 32 further comprising:
a third fluorochrome having third absorption and emission spectra covalently attached to said second fluorochrome; the wavelength of the emission maximum of said third fluorochrome being longer than the wavelength of the emission maximum of said second fluorochrome, and a portion of the emission spectrum of said second fluorochrome overlapping a portion of the absorption spectrum of said third fluorochrome for transferring energy absorbed from said first fluorochrome by said second fluorochrome to said third fluorochrome.
Government Interests
[0001] This invention was made with Government support under NIH-NS-19353 and NIH GM 34639.
Divisions (2)
|
Number |
Date |
Country |
Parent |
09413998 |
Oct 1999 |
US |
Child |
10300459 |
Nov 2002 |
US |
Parent |
08476880 |
Jun 1995 |
US |
Child |
09413998 |
Oct 1999 |
US |