System and method for healing a wound at a tissue site
Provided herein is a system and method for facilitating removal of a drape from a tissue site. One aspect provides a system comprising a drape, and adhesive layer, and a release agent, where the system is adapted to be coupled to a tissue site and released therefrom upon or after exposure to an external stimulus. Another aspect provides a method for application and removal of a drape using less force than required with a conventional drape.
1. A system for healing a wound at a tissue site, comprising:
a drape adapted to cover the wound at the tissue site;
an adhesive layer having one surface affixed to at least a portion of said drape and an opposite surface adapted to form a bond to the tissue site;
micelles dispersed within the adhesive layer; and
release material encapsulated in the micelles and releasable from the micelles into the adhesive layer in response to exposure to light, the release material operable to weaken the bond of the adhesive layer to the tissue site;
whereby the weakening of the bond of the adhesive layer to the tissue site facilitates the removal of the drape from the tissue site.
2. The system of claim 1 further comprising an adhesive support layer, wherein the adhesive support layer is detachably coupled to the adhesive layer.
3. The system of claim 1 wherein the amount of force required to remove the drape from the tissue site is decreased by at least about 20% of the amount of force required to remove the drape without said release material.
4. The system of claim 1 , wherein the release material comprises a sub-ambient T g material.
5. The system of claim 1 , wherein the release material comprises at least one of: polyester resin; adhesion resin; epoxy adhesive; bisphenol glycidylmethacrylate; a surfactant; a silicone particle; a fluorocarbon particle; a thermally degrading adhesive; a Gecko mimicking material; an ultrasonic degraded compound; a thermally reversible adhesive; a mussel adhesive protein; a polymer brush; a solvent induced switching material; a MEMS device; a silicone gel; vitamin E; glycerin; glycerol; stearic acid; glycery stearate; retinyl palmitate; allantoin; limonene, DMSO; IPA; ethyl acetate; tetrahydrofurfuryl acetate; trilaurin; a polyvinylsiloxane microscale pillar; a carbon nanotube; a coated PDMS micropattern; a rippled PDMS film; alkoxylate acrylate; PS; PVP; nitrogen; helium; hydrogen; carbon dioxide; oxygen; active oxygen; carbon dioxide; tartaric acid; bicarbonate; calcium carbonate; citric acid; a chlorogluorocarbon; or a hydrocarbon.
6. The system of claim 1 , wherein the release material comprises a plurality of oil particles that, when released on exposure to the external stimulus, weaken a bond between the adhesive layer and the drape or a tissue site wherein the weakened bond decreases the amount of force required to remove the drape from the tissue site.
7. A system for healing a wound at a tissue site, comprising:
a drape adapted to cover the wound at the tissue site;
an adhesive layer having one surface affixed to at least a portion of said drape and an opposite surface adapted to form a bond to the tissue site;
micelles dispersed within the adhesive layer; and
release material contained by the micelles and releasable from the micelles into the adhesive layer in response to exposure to light, the release material operable to weaken the bond of the adhesive layer to the tissue site;
whereby the weakening of the bond of the adhesive layer to the tissue site facilitates the removal of the drape from the tissue site, and
wherein the micelles comprise at least one of: polyethylene glycol, pluronics, phospholipids, lecithin, casein, a non-ionic surfactant; or a combination thereof.