Amine-functionalized polymeric compositions for medical devices
The present disclosure provides amine-modified polymer foams, which may be used for wound dressing materials. For example, the modified materials can include a covalently attached molecule comprising free amine groups. Such amine groups can be used, for instance, to conjugate biologically active polypeptides and/or linkers. Methods for using modified polymers are also provided.
1. A wound treatment system comprising a wound treatment apparatus and a wound dressing coupled to the wound treatment apparatus by a conduit, wherein the wound dressing is configured to be coupled to a wound of a patient, and wherein the apparatus comprises a vacuum source configured to apply negative pressure to the wound dressing via the conduit, wherein the wound dressing comprises an amine-functionalized polymer foam and a biologically active agent covalently attached to an amine group on the polymer foam.
2. The wound treatment system of claim 1 , wherein the biologically active agent is attached to the foam through an adapter.
3. The wound treatment system of claim 1 , wherein the biologically active agent is a polypeptide.
4. The wound treatment system of claim 3 , wherein the polypeptide is selected from the group consisting of gelatin, collagen, albumin, an enzyme, growth factor, chemokine, cytokine, and a polypeptide that binds to any of them.
5. The wound treatment system of claim 4 , wherein the polypeptide is an enzyme selected from a protease, hydrolase, lyase, ligase, isomerase, transferase, oxidase, reductase, oxidoreductase, synthase, polymerase, kinase, and phosphatase.
6. The wound treatment system of claim 1 , comprising a polyurethane foam.
7. The wound treatment system of claim 6 , comprising an open cell foam.
8. The wound treatment system of claim 1 , wherein the amine-functionalized polymer foam comprises a polyurethane polymer copolymerized with an aminoglycoside.
9. The wound treatment system of claim 8 , wherein the aminoglycoside comprises amikacin, arbekacin, gentamicin, kanamycin, netilmicin, paromomycin, rhodostreptomycin, streptomycin, tobramycin, framycetin, or apramycin.
10. The wound treatment system of claim 1 , wherein the amine-functionalized polymer foam comprises a polyurethane polymer copolymerized with neomycin.
11. The wound treatment system of claim 1 , wherein the biologically active agent is directly attached to the functionalized polymer foam.
12. The wound treatment system of claim 2 , wherein the adapter is an amine to amine crosslinker.
13. The wound treatment system of claim 12 , wherein the amine-to-amine crosslinker is selected from malondialdehyde, succinaldehyde, phthalaldehyde, glutaraldehyde, and glyoxal.
14. The wound treatment system of claim 13 , wherein the crosslinker is glutaraldehyde.
15. The wound treatment system of claim 2 , wherein the adapter is cleavable.
16. The wound treatment system of claim 7 , wherein the material comprises a foam that is a reticulated open-celled foam.
17. The wound treatment system of claim 1 , wherein the biologically active agent comprises a debridement enzyme.
18. The wound treatment system of claim 17 , wherein the debridement enzyme comprises bromelain.
19. The wound treatment system of claim 17 , wherein the debridement enzyme comprises papain.
20. The wound treatment system of claim 17 , wherein the debridement enzyme comprises trypsin.
21. The wound treatment system of claim 17 , wherein the debridement enzyme comprises collagenase.
22. The wound treatment system of claim 1 , wherein the wound dressing comprises a modified wound insert and a drape, wherein the modified wound insert is configured to be positioned on the wound and the drape is configured to be coupled to skin of the patient adjacent the wound such that the drape covers the modified wound insert and the wound, and forms a space between the drape and the wound.