Composition with polymer and ceramic and methods of use thereof
Provided herein are improved compositions and methods of making and using the same, the composition comprising a polymer and a ceramic present at a ratio of from 3:1 to 1:3 of polymer:ceramic by weight, wherein the composition comprises or is a composite of the polymer and the ceramic having improved printability and/or having an improved elastic modulus and/or improved stress at failure (e.g., as compared to a blend of the polymer and the ceramic).
1. A method of making a composition, said composition comprising:
a biocompatible polymer; and
a biocompatible ceramic,
wherein said biocompatible polymer and said biocompatible ceramic are present in said composition at a ratio of from 3:1 to 1:3 of biocompatible polymer:biocompatible ceramic by weight,
said method comprising:
providing an organic solvent with the biocompatible polymer dissolved therein,
adding the biocompatible ceramic to the organic solvent, wherein the biocompatible ceramic has an average particle size of about 100 nanometers, and wherein the organic solvent is at a temperature of 20-60° C., to form a mixture of the biocompatible polymer and the biocompatible ceramic,
sonicating the mixture of the biocompatible polymer and the biocompatible ceramic at a frequency of 15-30 kHz, to form a sonicated mixture, and
drying the sonicated mixture to form said composition.
2. The method of claim 1 , wherein said providing the organic solvent with the biocompatible polymer dissolved therein comprises the steps of:
mixing the biocompatible polymer with the organic solvent, and
heating the organic solvent to its boiling point until the biocompatible polymer dissolves,
to thereby provide the organic solvent with the biocompatible polymer dissolved therein.
3. The method of claim 1 , wherein said drying the sonicated mixture comprises the steps of:
drying the sonicated mixture in a vacuum oven,
cryomilling the sonicated mixture to form a powdered composition, and then
drying the powdered composition in a vacuum oven,
to thereby dry the sonicated mixture.
4. The method of claim 1 , wherein said biocompatible ceramic is tricalcium phosphate (TCP).
5. The method of claim 1 , wherein said biocompatible polymer is polycaprolactone (PCL).
6. The method of claim 1 , wherein said biocompatible polymer and said biocompatible ceramic are present in said composition at a ratio of from 2:1 to 1:2 of biocompatible polymer:biocompatible ceramic by weight.
7. The method of claim 1 , wherein said biocompatible polymer and said biocompatible ceramic are present in said composition at a ratio of from 1.5:1 to 1:1.5 of biocompatible polymer:biocompatible ceramic by weight.
8. The method of claim 1 , wherein said biocompatible polymer and said biocompatible ceramic are present in said composition at a ratio of from 1.25:1 to 1:1.25 of biocompatible polymer:biocompatible ceramic by weight.
9. The method of claim 1 , wherein said biocompatible ceramic is tricalcium phosphate (TCP) and said biocompatible polymer is polycaprolactone (PCL).
10. The method of claim 1 , wherein said biocompatible ceramic is tricalcium phosphate (TCP), said biocompatible polymer is polycaprolactone (PCL), and wherein said biocompatible polymer and said biocompatible ceramic are present in said composition at a ratio of from 1.25:1 to 1:1.25 of biocompatible polymer:biocompatible ceramic by weight.