Systems and methods for magnet-induced assembly tissue grafts
Systems and methods for assembling a plurality of tissue grafts are provided. A method includes applying a magnetic coating over a surface of a donor site and harvesting the plurality of micro tissue grafts from the donor site, so that an upper surface of each of the plurality of micro tissue grafts contains the coating. The method also includes arranging a magnet over the magnetic coating to induce the plurality of micro tissue grafts to organize in a desired orientation, forming a tissue construct containing the plurality of micro tissue grafts arranged in the desired orientation, and applying the tissue construct to a recipient site.
1 . A method for assembling a plurality of micro tissue grafts, the method comprising:
applying a magnetic coating over a surface of a donor site;
harvesting the plurality of micro tissue grafts from the donor site, using one or more harvesting tools configured to extract small tissue columns, so that an upper surface of each of the plurality of micro tissue grafts contains the coating;
arranging a magnet over the magnetic coating to induce the plurality of micro tissue grafts to organize in a desired orientation;
placing the plurality of micro tissue grafts in a supportive material that is in liquid form and inducing the plurality of micro tissue grafts to organize in the desired orientation within the supportive material;
forming a tissue construct containing the plurality of micro tissue grafts arranged in the desired orientation; and
applying the tissue construct to a recipient site.
2 . The method of claim 1 , wherein the magnetic coating includes powdered iron oxide mixed with a silicone gel.
3 . The method of claim 2 , wherein the powdered iron oxide includes particles less than 0.5 micrometers.
4 . The method of claim 1 , wherein forming the tissue construct includes inducing the supportive material to solidify around the plurality of micro tissue grafts.
5 . The method of claim 4 , wherein the supportive material includes collagen crosslinked by EDC (1-Ethyl-3-(3-dimethylaminopropyl)-carbodiimide) and NHS (N-hydroxysuccinimide).
6 . The method of claim 4 , wherein the supportive material includes collagen crosslinked by Rose Bengal with photoactivation.
7 . The method of claim 1 and further comprising agitating the supportive material after placing the plurality of micro tissue grafts in the supportive material.
8 . The method of claim 1 , wherein arranging the magnet includes setting a distance between the magnet and the plurality of micro tissue grafts to adjust a relative spatial distribution of the micro tissue grafts.
9 . The method of claim 1 , wherein arranging the magnet includes creating a magnetic field pattern with the magnet to produce an arrangement pattern of the micro tissue grafts.
10 . The method of claim 1 , wherein the magnetic coating includes optically transparent magnetic material.
11 . The method of claim 1 , wherein the magnetic coating includes particles that are outside a size range of permanent tattoo particles so that any of the particles that become entrapped under the upper surface during harvesting of the plurality of micro tissue grafts or applying the tissue construct are sized to be cleared during natural tissue turnover.
12 . The method of claim 1 , wherein harvesting the plurality of micro tissue grafts from the donor site includes, for each of the plurality of micro tissue grafts, using a harvesting needle to cut through the donor site along a tissue cutting boundary, and wherein applying the magnetic coating to the donor site includes applying the magnetic coating to an entire surface area of the donor site, including areas outside the tissue cutting boundaries of the plurality of micro tissue grafts.
13 . The method of claim 1 , wherein harvesting the plurality of micro tissue grafts from the donor site includes, for each of the plurality of micro tissue grafts, using a harvesting needle to cut through the donor site along a tissue cutting boundary, and wherein applying the magnetic coating to the donor site includes applying the magnetic coating to harvest areas of the donor site that are within the tissue cutting boundaries of the plurality of micro tissue grafts.
14 . The method of claim 1 and further comprising forming a plurality of tissue constructs and applying the plurality of tissue constructs to the recipient site side-by-side.
15 . A method for assembling a plurality of micro tissue grafts, the method comprising:
applying a magnetic coating over a surface of a donor site;
harvesting the plurality of micro tissue grafts from the donor site, using one or more harvesting tools configured to extract small tissue columns, so that an upper surface of each of the plurality of micro tissue grafts contains the coating;
arranging a magnet over the magnetic coating to induce the plurality of micro tissue grafts to organize in a desired orientation;
forming a solid tissue construct containing the plurality of micro tissue grafts arranged in the desired orientation by one of: inducing a supportive material to solidify around the plurality of micro tissue grafts, allowing the plurality of micro tissue grafts to dry together, or using the magnet to hold the plurality of micro tissue grafts together as a solid construct;
applying the tissue construct to a recipient site; and
removing the magnetic coating from the plurality of micro tissue grafts after forming the tissue construct.
16 . The method of claim 15 , wherein forming the tissue construct includes embedding the plurality of micro tissue grafts, arranged in the desired orientation, in a supportive matrix material.
17 . The method of claim 15 , wherein the magnetic coating includes iron oxide particles mixed with a material capable of liquefying in response to one of a light, chemical or temperature trigger, and wherein removing the magnetic coating includes triggering the material to liquefy.
18 . The method of claim 15 , wherein forming the tissue construct includes densely packing the plurality of micro tissue grafts together in contact with one another and allowing the plurality of micro tissue grafts to dry, while in contact with each other, for a time period after harvesting, causing the plurality of micro tissue grafts to stick together.
19 . The method of claim 18 and further comprising applying one of an adhesive dressing or tissue adhesive to an upper surface of the tissue construct.
20 . A method for assembling a plurality of micro tissue grafts using magnetic assistance, the method comprising:
replacing needles of a needle harvesting array with coating applicators;
applying a magnetic coating to harvesting areas of a donor site using the coating applicators;
replacing the coating applicators within the needle harvesting array with the needles;
harvesting the plurality of micro tissue grafts from each of the harvesting areas, so that an upper surface of each of the plurality of micro tissue grafts contains the coating;
arranging a magnet over the magnetic coating to induce the plurality of micro tissue grafts to organize in a desired orientation;
forming a tissue construct containing the plurality of micro tissue grafts arranged in the desired orientation; and
applying the tissue construct to a recipient site.
21 . The method of claim 20 , wherein the coating applicators include diameters one of equal to or smaller than the needles.
22 . The method of claim 20 , wherein the magnetic coating includes powdered iron oxide mixed with a silicone gel.
23 . The method of claim 22 , wherein the powdered iron oxide includes particles less than 0.5 micrometers.