Spatiotemporal delivery system embedded in 3D-printing
Provided herein is a 3D printing system and related compositions, and method of using such, that can produce a polymeric microfiber having embedded microspheres encapsulating an active agent with micron precision and high spatial and temporal resolution. One aspect of the present disclosure provides a method of forming a biocompatible scaffold. Another aspect provides a method of forming a polymeric fiber having a microencapsulated agent distributed in the polymeric fiber. Another aspect provides a composition including a polymeric microfiber produced by 3D printing.
1. A method of forming a polymeric microfiber, the method comprising: (i) encapsulating at least one agent in a plurality of microspheres; (ii) combining the plurality of microspheres and a matrix material, the matrix material being suitable for forming a scaffold via 3D printing; (iii) heating the microspheres and matrix material sufficiently to allow dispensing of the microspheres and matrix material while preventing substantial degradation of the microsphere or the agent encapsulated in the microsphere; and (iv) dispensing the heated microspheres and matrix material to form the polymeric microfiber, wherein the microspheres are combined with the polymeric microfiber, wherein the matrix material is introduced into a first cartridge of a 3D printing device, and the matrix material is dispensed from the cartridge through a printing needle to form the polymeric microfiber, wherein the microspheres are introduced into a second cartridge of a 3D printing device, and the microspheres are dispensed from the cartridge, wherein the microspheres are inserted into or onto the matrix material when forming the polymeric microfiber.
2. The method of claim 1 , wherein the matrix material and microencapsulated active agent is heated such that 80% of the total volume of microspheres do not reach more than 45° C. for more than about 30 minutes.
3. The method of claim 2 , wherein the scaffold is formed from a plurality of microfibers.