Scaffold-free 3D bioprinting of porcine cells
Provided herein are synthetic, three-dimensional (3D) bioprinted tissue constructs comprising porcine cells and methods of producing and using the same. The synthetic 3D bioprinted tissue constructs are fabricated by bioprinting spheroids comprising porcine cells, including genetically engineered cells, on a microneedle mold and fusing the spheroids to form an engineered tissue construct. Also provided are methods of using scaffold-free 3D bioprinted tissue constructs for applications related to drug screening and toxicity screening.
1. A method for fabricating a synthetic three-dimensional (3D) porcine lung tissue construct, wherein the method comprises:
providing a predetermined arrangement of microneedles;
adding cell spheroids to the microneedles in a computer-controlled manner,
wherein the cell spheroids are formed with porcine cells, comprising (1) CD31-positive pulmonary vascular endothelial cells, (2) pulmonary fibroblasts, and (3) pulmonary pneumocytes Type II at a ratio of 1:1:0.5, respectively, wherein the cell spheroids each comprise a total cell number of about 40,000 cells,
wherein at least a portion of the porcine cells are genetically engineered; and
culturing the spheroids on the microneedles for about 5 days whereby the spheroids fuse to form a synthetic 3D porcine lung tissue construct comprising genetically engineered porcine cells.
2. The method of claim 1 , further comprising removing the synthetic 3D porcine lung tissue construct from the microneedles to obtain a scaffold-free synthetic 3D porcine lung tissue construct comprising genetically engineered porcine cells, wherein the 3D porcine lung tissue construct comprises an extracellular matrix prior to removal from the microneedle mold.
3. The method of claim 1 , wherein the cell spheroids are bioprinted 2-3 days after maturation.