Violet excitable tandem dyes, and methods for making and using the same
Violet excitable tandem dyes are provided. Tandem dyes of embodiments of the invention include: a non-conjugated polymeric backbone; one or more violet excitable donor fluorophores linked to the non-conjugated polymeric backbone; and one or more acceptor fluorophores linked to the non-conjugated polymeric backbone; where the donor and acceptor fluorophores are in energy transfer relationship. Also provided are methods of making and using the tandem dyes, as well as kits that include the dyes and find use in embodiments of the methods.
1 . A tandem dye comprising:
a non-conjugated polymeric backbone;
one or more violet excitable donor fluorophores selected to have an absorption maximum ranging from 375 to 425 nm linked to the non-conjugated polymeric backbone; and
one or more acceptor fluorophores linked to the non-conjugated polymeric backbone,
wherein the donor and acceptor fluorophores are in energy transfer relationship.
2 . The tandem dye according to claim 1 , wherein the one or more violet excitable donor fluorophores are selected from the group consisting of coumarin fluorophores, pyrene fluorophores and triphenyl fluorophores.
3 . The tandem dye according to claim 2 , wherein the one or more violet excitable donor fluorophores are coumarin fluorophores.
4 . The tandem dye according to claim 1 , wherein the one or more violet excitable donor fluorophores are bonded to a water-solubilizing group.
5 . The tandem dye according to claim 4 , wherein the water-solubilizing group comprises a non-ionic water solubilizing group.
6 . The tandem dye according to claim 5 , wherein the non-ionic water-solubilizing group comprises a polyalkylene glycol.
7 . The tandem dye according to claim 6 , wherein the polyalkylene glycol comprises a polyethylene glycol.
8 . The tandem dye according to claim 1 , wherein the one or more acceptor fluorophores has an emission maximum ranging from 500 to 875 nm.
9 . The tandem dye according to claim 1 , wherein the one or more acceptor fluorophores is selected from the group consisting of coumarin dyes, cyanine dyes, rhodamine dyes, xanthene dyes, polymethines, dipyrromethene borondifluorides, napthalimides, thiazine dyes, and acridine dyes.
10 . The tandem dye according to claim 1 , wherein the number of donor fluorophores exceeds the number of acceptor fluorophores.
11 . The tandem dye according to claim 10 , wherein the number of donor fluorophores ranges from 2 to 20.
12 . The tandem dye according to claim 1 , wherein the dye comprise a single acceptor fluorophore.
13 . The tandem dye according to claim 1 , wherein the tandem dye is linked to a biomolecule.
14 . The tandem dye according to claim 13 , wherein the biomolecule is selected from the group consisting of carbohydrates, lipids, nucleic acids, and proteins.
15 . The tandem dye according to claim 14 , wherein the biomolecule is a binding member.
16 . The tandem dye according to claim 15 , wherein the binding member is an antibody or binding fragment or derivative thereof.
17 . The tandem dye according to claim 1 , wherein the tandem dye is linked to a chemo-selective group.
18 . The tandem dye according to claim 1 , wherein the non-conjugated polymeric backbone comprises a peptide.
19 . The tandem dye according to claim 18 , wherein the peptide comprises from 5 to 100 amino acid residues.