Method to promote hair growth and/or delay or treat hair loss by administering a TGF-β antagonist or inhibitor
View Patent ↗The present invention provides methods for promoting hair growth and/or treating or preventing hair loss (alopecia) by contacting the cells with a TGF-β antagonist or inhibitor either alone or in combination with other alopecia-inhibiting compounds.
1. A method to promote or stimulate hair growth and/or delay or treat hair loss in a subject, said method comprising administering an effective amount of at least one peptide TGF-β receptor antagonist to promote or stimulate hair growth and/or delay or treat hair loss to an individual in need thereof, wherein said peptide TGF-β receptor antagonist binds to a type I, type II, type III and/or type V TGF-β receptor and is capable of inhibiting binding of TGF-β to the receptor.
2. The method of claim 1 wherein the peptide TGF-β receptor antagonist comprises an amino acid sequence having at least four contiguous amino acids comprising W (or R)XXD wherein X is any amino acid.
3. The method of claim 2 wherein the amino acid sequence comprises at least 10 amino acids.
4. The method of claim 1 wherein the peptide TGF-β receptor antagonist has an amino acid sequence selected from: β 1 25 (41-65) (SEQ ID NO: 4), β 2 25 (41-65) (SEQ ID NO: 5), β 3 25 (41-65) (SEQ ID NO: 6), β 1 25 C44S/C48S (SEQ ID NO: 8), β 2 25 C44S/C48S (SEQ ID NO: 9), and β 3 25 C44S/C48S (SEQ ID NO: 10).
5. The method of claim 4 for treating alopecia.
6. The method of claim 5 wherein the alopecia is associated with a disorder selected from the group consisting of adrenergic alopecia, telogen effluvium, alopecia areata, traumatic alopecia, anagen effluvium, nutritional deficiencies, metabolic defects, marked weight loss, diabetes, hypervitaminosis, hypovitaminosis, zinc deficiency, alopecia vulgaris, alopecia pustulosa, alopecia erythrodermica, alopecia arthropathica, para-alopecia, palmoplantar pustulosis, ichthyoses, keratodermias, and genodermatoses with pathological cornification disorders.
7. The method of claim 5 further comprising the step of administering a therapeutically effective amount of another compound for treating alopecia, selected from the group consisting of minoxidil, procyanidin B-3, finasteride, phosphatidic acid, keratinocyte growth factor, fibroblast growth factor, epidermal growth factor, butyric acid and its derivatives, ammonium trichloro(dioxy ethylene-0,0′) tellurate, interleukin 1, prostaglandin E2, cyclosporine A, corticosteroids, cholesterol and calcitriol.
8. The method of claim 4 wherein the peptide TGF-β receptor antagonist is a peptide TGF-β receptor antagonist derivative comprising at least one short, hydrophilic polymer attached to the N and/or C terminus of a peptide TGF-β receptor antagonist.
9. The method of claim 8 wherein the short, hydrophilic polymer is 6-glutamate, 6-aspartate, 4-lysine or 4-arginine residues.
10. The method of claim 9 wherein the peptide TGF-β receptor antagonist derivative is: 6-E-β 1 25 C44S/C48S (SEQ ID NO: 7), 6-E-β 2 25 C44S/C48S (SEQ ID NO: 11), or 6-E-β 3 25 C44S/C48S (SEQ ID NO: 12).
11. The method of claim 4 wherein the peptide TGF-β receptor antagonist is a pegylated peptide TGF-3 receptor antagonist derivative.
12. The method of claim 11 wherein the pegylated peptide TGF-β receptor antagonist derivative is pegylated at the N-terminal alpha-amino group, at the epsilon-amino group or at both the N-terminal alpha-amino group and the epsilon-amino group.