System for targeted application of topical agents to an isolated body part
A system includes an applicator mask having an applicator surface having a three-dimensional shape corresponding to the isolated body part; and at least one membrane releasably disposed on the applicator surface and having an outer surface in facing relation with the applicator surface and inner adhesive surface opposite thereof. The membrane includes one or more benefit agents disposed in one or more treatment zones.
1. A method for targeted application of topical agents to an isolated body part comprising the steps of:
(a) capturing an image of the isolated body part;
(b) transforming the image data to mathematical model of the geometry of the isolated body part;
(c) forming an applicator mask having an applicator surface having a three-dimensional shape configured to cover and to contact a corresponding to contoured surface area of the isolated body part;
(d) forming a plurality of releasable membranes in a stack on the applicator surface of the applicator mask from a releasable membrane adhered to the applicator surface to an exposed releasable membrane, each releasable membrane comprising one or more benefit agents disposed in one or more treatment zones of the applicator, wherein the releasable membranes are pre-configured to cover and contact the contoured surface of the isolated body part and the adhesion of the exposed releasable membrane to the isolated body part is greater than the adhesion of the first releasable membrane to the applicator surface and to a membrane disposed adjacent to the exposed releasable membrane in the stack;
(e) disposing the applicator mask on the isolated body part so that the exposed releasable membrane is in contact with the isolated body part without substantial deformation of the exposed releasable membrane; and
(f) removing the applicator mask from the isolated body part while leaving the exposed releasable membrane in contact with the isolated body part.
2. The method of claim 1 , wherein the steps of forming an applicator mask and forming a releasable membrane are performed utilizing 3D printing.
3. The method of claim 1 , wherein the step of forming an applicator mask comprises thermo-vacuum forming.
4. The method of claim 3 , wherein the step of forming a releasable membrane comprises applying one or more film-forming compositions to the applicator mask via a robot treatment-deposition device.
5. The method of claim 4 , further comprising applying a plurality of film forming compositions, at least one of the plurality of film-forming compositions comprising the one or more benefit agents.