Polypropylene binding peptides and methods of use
Combinatorially generated peptides are provided that have binding affinity for polypropylene (PP). The peptides may be used to deliver benefit agents to various PP surfaces.
1. A peptide reagent having a general structure selected from the group consisting of:
a) PP m -(PPBP-BAp)n; and
b) PP m -(PPBP-L-BA)n;
wherein:
i) PP is a polypropylene moiety
ii) PPBP is a polypropylene binding peptide having a polypropylene binding domain;
iii) BA is at least one benefit agent wherein the at least one benefit agent is a colorant;
iv) L is a linker molecule;
v) m=the number of polypropylene moieties available for binding, and m is at least one;
vi) n=m; and
vii) p=1-20.
2. A peptide reagent according to claim 1 wherein the polypropylene binding peptide comprises a polypropylene binding sequence selected from the group consisting of SEQ ID NO's: 1-7.
3. A peptide reagent according to claim 1 wherein the linker molecule is selected from the group consisting of: a peptide linker, and an organic linker.
4. A peptide reagent according to claim 1 wherein the polypropylene moiety is incorporated into a surface.
5. A peptide reagent according to claim 4 wherein the surface is selected from the group consisting of a solid support, a bead, a microsphere, a sheet, and a fiber.
6. A peptide reagent according to claim 5 wherein the microsphere comprises a dye.
7. A peptide reagent according to claim 4 wherein the surface is coated on a secondary surface.
8. A peptide reagent according to claim 1 wherein the polypropylene moiety is comprised within a polypropylene film.
9. A peptide reagent according to claim 1 wherein the colorant is a hair colorant selected from the group consisting of D&C Yellow 1 and 3, HC Yellow 6 and 8, D&C Blue 1, HC Blue 1, HC Brown 2, HC Red 5, 2-nitro-paraphenylenediamine, N,N-hydroxyethyl-2-nitro-phenylenediamine, 4-nitro-indole, iron oxides, and carbon black.
10. A peptide reagent according to claim 1 wherein the polypropylene binding peptide is isolated by a process comprising the steps of:
(i) providing a library of combinatorially generated peptides;
(ii) contacting the library of (i) with a polypropylene sample to form a reaction solution comprising:
(A) peptide-polypropylene complex;
(B) unbound polypropylene, and
(C) uncomplexed peptides;
(iii) isolating the peptide-polypropylene complex of (ii);
(iv) eluting the weakly bound peptides from the isolated peptide complex of (iii) whereby the polypropylene binding peptide is isolated.