3D printing of biomedical implants
Provided herein are methods, compositions, devices, and systems for the 3D printing of biomedical implants. In particular, methods and systems are provided for 3D printing of biomedical devices (e.g., endovascular stents) using photo-curable biomaterial inks (e.g., or methacrylated poly(diol citrate)).
1. A method of 3D printing an object by continuous liquid interface production (CLIP) with a biomaterial ink, comprising:
(a) providing a pool of a photo-curable biomaterial ink, wherein the photo-curable biomaterial ink comprises: methacrylated poly(diol citrate) and the poly(diol citrate) comprises a polymer of citric acid and HO—(CH 2 ) n —OH, wherein n is 2-20, and wherein the bottom of the pool is transparent to ultraviolet (UV) light;
(b) exposing the transparent bottom of the pool to UV light in the 2D shape of a cross-section of the object; wherein the UV light converts a layer of the photo-curable biomaterial ink into solidified biomaterial layer in the shape of the cross-section of the object;
(c) raising the solidified biomaterial layer in the pool and allowing the photo-curable biomaterial ink to flow under the solidified biomaterial layer;
(d) repeating steps (b) and (c) with successive cross-sectional layers to produce the object.
2. The method of claim 1 , wherein the photo-curable biomaterial ink further comprises one or more of: a solvent, a photoinitiator, a co-initiator, a free-radical quencher, and a UV-absorber.