IP Library Granted Patent US 10,130,521
Granted Patent B2
US 10,130,521 · App. 13/000,845 · Granted Nov 20, 2018

Wound dressing

Inventor: Martin Junginger (Hermaringen, DE)
Assignee: Paul Hartmann AG
A61F13/0209A61F13/00991A61F13/025A61F13/0213A61F13/0223A61F13/0289A61F2013/0017A61F2013/0074A61F2013/00217A61F2013/00255A61F2013/00259A61F2013/00604A61F2013/00663A61F2013/00697A61F2013/00727A61F2013/00748A61F2013/00774A61F2013/00863A61F2013/00868Y10T156/10
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Quick Facts
Patent No.
US 10,130,521
App. No.
13/000,845
Granted
Nov 20, 2018
Kind
B2
Abstract

The present invention relates to a multilayered wound dressing particularly for wound treatment in the granulation and epithelization phase. The wound dressing comprises a) a first layer as a wound contact layer having a first side and a second side, and b) at least one second layer as an absorbent layer having a first side and a second side and comprising a hydrophilic polyurethane foam, wherein the polyurethane foam comprises a water fraction of at least 10% by weight of water.

Claims (37)

1. A multilayered wound dressing comprising

a) a first layer as a wound contact layer having a first side and a second side, and a multiplicity of channels, and including a hydrogel matrix which comprises a polyurethane-polyurea copolymer formed from a prepolymer having aliphatic diisocyanate groups and a polyamine based on polyethylene oxide, and wherein the hydrogel matrix contains from 20% to 80% of wound deliverable water;

b) at least one second layer as an absorbent layer having a first side and a second side and comprising a hydrophilic polyurethane foam which has a water fraction of at least 10% by weight and at most 80% by weight of water, a free absorbency A 2 of at least 10 g/g determined by DIN-EN13726-1 and a swell capacity ΔV 1 of at most 60%; and,

c) a transition layer disposed between the first layer and the second layer and which transition layer consists of a portion of the hydrogel matrix of the first layer which has penetrated into a portion of the polyurethane foam of the second layer, said transition layer having channels which are filled with only polyurethane foam from the second side of the second layer and which channels are disposed congruent relative to the channels in the hydrogel matrix of the first layer.

2. The wound dressing of claim 1 , wherein the wound contact layer further comprises one or more of a polymer film, a hydrocolloid matrix, a polymer net, a nonwoven material or an adhesive.

3. The wound dressing according to claim 1 wherein the prepolymer having aliphatic diisocyanate groups includes isophorone diisocyanate.

4. The wound dressing according to claim 1 , wherein the hydrogel matrix has channels from a first side to an opposite second side to allow liquids to pass through the hydrogel matrix.

5. The wound dressing of claim 1 , wherein the wound dressing further comprises a water impermeable and moisture vapor permeable polymer film or a water impermeable and moisture vapor permeable polymer foam as a backing layer.

6. The wound dressing of claim 5 wherein the backing layer is the water impermeable and moisture vapor permeable polymer foam.

7. A multilayered wound dressing comprising

a) a first layer as a wound contact layer having a first side and a second side, and a plurality of channels extending from the first side to the second side, and including a hydrogel matrix which comprises a polyurethane-polvurea copolymer formed from a prepolymer having aliphatic diisocyanate groups and a polyamine based on polyethylene oxide, and wherein the hydrogel matrix contains from 20% to 80% of wound deliverable water;

b) at least one second layer as an absorbent layer having a planar first side and a second side and comprising a hydrophilic polyurethane foam, the first side being in contact with the wound contact first layer and, which has a water fraction of at least 10% by weight and at most 80% by weight of water, a free absorbency A 2 of at least 10 g/g determined by DIN-EN13726-1 and a swell capacity ΔV 1 of at most 60%;

c) a transition layer disposed between the first layer and the second layer and which transition layer consists of a portion of the hydrogel matrix of the first layer which has penetrated into a portion of the polyurethane foam of the second layer, said transition layer having channels which are filled with only polyurethane foam from the second side of the second layer and which channels are disposed congruent relative to the channels in the hydrogel matrix of the first layer; and,

d) a water impermeable and moisture vapor permeable polymer film or a water impermeable and moisture vapor permeable polymer foam as a backing layer bonded to the second side of the polyurethane foam by a discontinuous layer of adhesive.

8. The multilayered wound dressing of claim 7 wherein the wound contact first layer comprises a hydrogel matrix and the channels are conically shaped.

9. The multilayered wound dressing of claim 7 wherein the wound contact first layer further comprises a hydrocolloid matrix comprising a tacky polymer into which hydrocolloid particles have been dispersed.

10. The multilayered wound dressing of claim 9 wherein the hydrocolloid particles comprise one or more of alginic acid, salts of alginic acid. chitin, chitosan, pectin, cellulose, cellulose ethers, cellulose esters, crosslinked or uncrosslinked carboxyalkylcellulose or hydroxyalkylcellulose, polyvinyl alcohol, polyvinylpyrrolidone, agar, guar gum, gelatin, and combinations thereof.

11. The multilayered wound dressing of claim 9 wherein the tacky polymer matrix comprises at least one block copolymer selected from the group consisting of AB diblock copolymers and ABA triblock copolymers, wherein said block copolymers are constructed from the monomers selected from the group consisting of styrene, butadiene and isoprene.

12. The wound dressing of claim 1 wherein the hydrogel matrix includes 5-40 wt % of a polyhydric alcohol.

13. The wound dressing of claim 12 wherein the polyhydric alcohol is selected from the group consisting of ethylene glycol, polypropylene glycol, sorbitol, glycerol and combinations thereof.

14. The wound dressing of claim 1 wherein the hydrogel matrix includes 0.1-3.0 wt % of a salt.

15. The wound dressing of claim 14 wherein the salt is selected from the group consisting of sodium chloride, potassium chloride, magnesium chloride, calcium chloride and combinations thereof.

16. The wound dressing of claim 1 wherein the hydrogel matrix is formed from a 6-30 wt % of a prepolymer having aliphatic diisocyanate groups, 4-20 wt % of a diamine based on polyethylene oxide, 10-30 wt % polyhydric alcohol selected from ethylene glycol, polypropylene glycol, sorbitol, glycerol and combinations thereof, 10-30 wt % of a polyhydric alcohol selected from polypropylene glycol and/or glycerol, 0.5-1.5 wt % salt selected from sodium chloride, potassium chloride, magnesium chloride, calcium chloride and combinations thereof, and at least 30 wt % water.

17. The wound dressing of claim 16 wherein the prepolymer having aliphatic diisocyanate groups includes isophorone diisocyanate.

18. The wound dressing of claim 1 , wherein the hydrophilic polyurethane foam has a water content of at least 35 wt % of water and at most 65 wt % of water.

19. The wound dressing of claim 1 wherein the transition layer forms an adhesive bond between the first layer and the second layer.

20. The wound dressing of claim 1 wherein the polyurethane foam is capable of rereleasing at least some of the water present in the polyurethane foam.

21. The wound dressing of claim 1 wherein the wound dressing has a smaller shearing stress on a wound than an identical wound dressing comprising a dry hydrophilic polyurethane foam.

22. The wound dressing of claim 1 wherein the wound dressing has a smaller shearing stress on further plies or materials and a smaller shearing stress on a wound than an identical wound dressing comprising a dry hydrophilic polyurethane foam.

23. A laminate dressing consisting essentially of:

a) a first layer as a wound contact layer having a first side and a second side, and a multiplicity of channels, and including a hydrogel matrix which comprises a polyurethane-polyurea copolymer formed from a prepolymer having aliphatic diisocyanate groups and a polyamine based on polyethylene oxide, and wherein the hydrogel matrix contains from 20% to 80% of wound deliverable water;

b) at least one second layer as an absorbent layer having a first side and a second side and comprising a hydrophilic polyurethane foam which has a water fraction of at least 10% by weight and at most 80% by weight of water, a free absorbency A 2 of at least 10 g/g determined by DIN-EN13726-1 and a swell capacity ΔV 1 of at most 60%; and,

c) a transition layer disposed between the first layer and the second layer and which transition layer consists of a portion of the hydrogel matrix of the first layer which has penetrated into a portion of the polyurethane foam of the second layer, said transition layer having channels which are filled with only polyurethane foam from the second side of the second layer and which channels are disposed congruent relative to the channels in the hydrogel matrix of the first layer.

24. The laminate of claim 23 wherein the transition layer forms an adhesive bond between the first layer and the second layer.

25. The laminate of claim 23 wherein the polyurethane foam is capable of rereleasing at least some of the water present in the polyurethane foam.

26. The laminate of claim 23 wherein the laminate has a smaller shearing stress on a wound than an identical laminate comprising a dry hydrophilic polyurethane foam.

27. The laminate of claim 23 wherein the laminate has a smaller shearing stress on further plies or materials and a smaller shearing stress on a wound than an identical laminate comprising a dry hydrophilic polyurethane foam.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 11, 2011
From: JUNGINGER, MARTIN
To: PAUL HARTMANN AG
Reel/Frame 025940/0194 →
Priority Claims (1)
DE 10 2008 031 183 · Jul 3, 2008 · national
Continuity (1)
Related Publication 20110280926A1 · Nov 17, 2011
Cited By (1)
US 12,246,099