Skin printing and auto-grafting
An apparatus and method for the production of substitute skin that advantageously reduces the amount of donor dermal cells needed from non-wound areas of a patient having a wound to be auto-grafted is reduced by using all of the harvested skin cells. A 3D printer is used to construct a wound graft product from the harvested skin cells without wasting any of the harvested skin cells. In a case of an irregularly shaped wound, wastage of harvested skin associated with trimming is avoided.
1. A computerized skin printing system comprising;
a quantity of living donor skin cells harvested from a non-wound area of a patient having a to-be-treated wound or tissue defect;
a three-dimensional printer that processes the quantity of living donor skin cells, wherein the three-dimensional printer is under control of a controller connected to the three-dimensional printer;
an imaging device;
a sizing grid projected onto the wound or tissue defect while the imaging device is being operated;
a computer that performs steps of receiving a set of images taken by the imaging device of the wound or tissue defect of the patient and processing the imaged wound or tissue defect into a set of skin-printing instructions that are provided to the controller connected to the three-dimensional printer, and operating the three-dimensional printer to construct a customized skin graft product useable to be auto-grafted onto the wound or tissue defect of the patient.
2. The skin printing system of claim 1 , further comprising at least one syringe pump under control of the controller.
3. The skin printing system of claim 2 , wherein the at least one syringe pump contains the quantity of living donor skin cells harvested from the non-wound area.
4. The skin printing system of claim 1 , further comprising a surface onto which the three-dimensional printer prints a skin product.
5. The skin printing system of claim 4 , wherein the skin product printed onto the surface corresponds to a model generated by the computer from the set of wound images.
6. The skin printing system of claim 1 , further comprising a pump, and wherein skin cells in a syringe are pumped by the pump into the three-dimensional printer.
7. The skin printing system of claim 1 , wherein the computer digitizes a wound image and models the digitized image into a set of printing instructions.
8. The skin printing system of claim 4 , further comprising an agar plate comprising the surface onto which the three-dimensional printer prints the skin product.