IP Library Granted Patent US 7,083,806
Granted Patent B2
US 7,083,806 · App. 10/275,771 · Granted Aug 1, 2006

Wound gels

Assignee: Maelor Pharmaceuticals Limited
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Quick Facts
Patent No.
US 7,083,806
App. No.
10/275,771
Granted
Aug 1, 2006
Kind
B2
Abstract

The present invention relates to hydrogels, in particular gels for use on wounds. The invention provides a gel which is better able to maintain viscosity and gel integrity when exposed to wound exudates, for example. A hydrogel comprising a poloxamer is provided. Further provided is a hydrogel comprising a cross-linked gellant, and water wherein the hydrogel comprises a poloxamer and has the capacity to absorb at least 50% further water in addition to the water already present. Suitable gellants are pharmaceutically acceptable, cross-linked, hydrophilic polymers. Hydrogels of the present invention are useful in medicine, or therapy and are in particular useful in application to epithelial lesions, especially wounds, such as accidental or surgical wounds.

Claims (28)

1. A hydrogel comprising a pre-crosslinked gellant, water, and a poloxamer, wherein the concentration of said poloxamer is between 10 and 25% by weight of the hydrogel and the gellant comprises at least one cross-linked, superabsorbent polysaccharide, said hydrogel exhibiting thermally induced viscosification at a temperature between ambient and 35° C., and wherein said hydrogel has the capacity to absorb at least 50% further water in addition to the water already present.

2. A hydrogel according to claim 1 which has the capacity to absorb at least a further 150% water.

3. A hydrogel according to claim 1 which has the capacity to absorb at least twice its own weight of wound exudates.

4. A hydrogel according to claim 1 wherein the gellant comprises cross-linked starch, or a sodium salt thereof.

5. A hydrogel according to claim 4 wherein the gellant is the superabsorbent sodium salt.

6. A hydrogel according to claim 1 wherein the gellant comprises cross-linked carboxymethylcellulose, or a sodium salt thereof.

7. A hydrogel according to claim 6 wherein the gellant is the superabsorbent sodium salt.

8. A hydrogel according to claim 1 wherein the gellant is present in amount of 1 to 2.5% by weight of the hydrogel.

9. A hydrogel according to claim 1 comprising a combination of one or more poloxamers.

10. A hydrogel according to claim 9 wherein said one or more poloxamers of said combination are selected from the group consisting of F127, F108, F88, P188 or F98, and any mixture thereof.

11. A hydrogel according to claim 1 which comprises a poloxamer selected from the group consisting of F127, F108, F88, F87, P188, F98 and any mixture thereof.

12. A hydrogel according to claim 1 wherein the concentration of said poloxamer is between 10 and 20% by weight of the hydrogel.

13. A hydrogel according to claim 1 which further comprises a co-solvent.

14. A hydrogel according to claim 13 wherein the co-solvent is propylene glycol.

15. A hydrogel according to claim 1 comprising no further pharmaceutically active agent.

16. A hydrogel according to claim 1 which further comprises a therapeutically active agent.

17. A hydrogel according to claim 16 wherein the therapeutically active agent is hydrophobic.

18. A hydrogel according to claim 16 wherein the therapeutically active agent is selected from the group consisting of antibacterial agents, anaesthetics, analgesics, anti-inflammatory agents, growth factors, autologous cells, cellular matrix components, enzymes for debridement, and genes for gene therapy.

19. A hydrogel according to claim 18 wherein the agent is hydrophobic.

20. A hydrogel according to claim 16 wherein the therapeutically active agent is delivered in a sustained release manner.

21. A hydrogel according to claim 1 which is capable of absorbing moisture from all wound types.

22. A method for the treatment of an epithelial lesion on the human or animal body comprising applying to said lesion a hydrogel comprising a pre-crosslinked gellant, water, and a poloxamer, wherein the concentration of said poloxamer is between 10 and 25% by weight of the hydrogel and the gellant comprises at least one cross-linked, superabsorbent polysaccharide, said hydrogel exhibiting thermally induced viscosification at a temperature between ambient and 35° C., and wherein said hydrogel has the capacity to absorb at least 50% further water in addition to the water already present.

23. A method for the treatment of skin lesions selected from the group consisting of dry necrotic wounds, acute wounds, exudating wounds, burns, and infected wounds comprising applying to said lesion a hydrogel comprising a pre-crosslinked gellant, water, and a poloxamer, wherein the concentration of said poloxamer is between 10 and 25% by weight of the hydrogel and the gellant comprises at least one cross-linked, superabsorbent polysaccharide, said hydrogel exhibiting thermally induced viscosification at a temperature between ambient and 35° C., and wherein said hydrogel has the capacity to absorb at least 50% further water in addition to the water already present.

24. A syringe, bellow pack or a multidose system comprising a hydrogel according to claim 1 .

25. A single dose delivery system comprising a hydrogel according to claim 1 .

26. A pressurized delivery system comprising a hydrogel according to claim 1 capable for forming a spray upon release of pressure therefrom.

27. A composition comprising a pre-crosslinked gellant, the gellant comprising at least one cross-linked, superabsorbent polysaccharide, and a poloxamer suitable to be diluted with water to form a hydrogel according to claim 1 .

28. A composition according to claim 27 wherein the poloxamer is F127, F108, F88, F87, P188, F98 or any mixture thereof.

Assignments (2)
CHANGE OF NAME Recorded Jun 27, 2008
From: MAELOR PHARMACEUTICALS LIMITED
To: IS PHARMACEUTICALS LIMITED
Reel/Frame 021158/0468 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 27, 2003
From: RIPPON, MARK GEOFFREY; MEADOWS, JOHN
To: MAELOR PHARMACEUTICALS LIMITED
Reel/Frame 013388/0061 →
Continuity (1)
Related Publication 20040028739A1 · Feb 12, 2004