Preservation of bioactive materials by spray drying
This invention provides methods and compositions to preserve bioactive materials in a matrix of powder particles. Methods provide high-pressure gas spraying and/or near supercritical spraying of formulations followed by drying in a stream of conditioned gas to form stable powder particles containing bioactive materials.
1. Powder particles prepared by high pressure spraying, wherein the high pressure spraying comprises:
preparing a suspension or solution comprising a bioactive material and a polyol;
forming a mixture of the solution or suspension with a high pressure gas;
reducing a pressure on the mixture, thereby forming a gaseous suspension of droplets; and,
drying the droplets into powder particles by exchanging a gas from the gaseous suspension of droplets with a drying gas.
2. The particles of claim 1 , wherein the high pressure gas is characterized by a pressure from about 250 psi to a pressure less than 90% of a critical pressure of the gas.
3. The particles of claim 1 , wherein the bioactive material is selected from the group consisting of proteins, peptides, nucleic acids, bacteria, cells, antibodies, enzymes, serums, vaccines, liposomes, and viruses.
4. The particles of claim 1 , wherein the polyol is selected from the group consisting of trehalose, sucrose, sorbose, melezitose, glycerol, fructose, mannose, maltose, lactose, arabinose, xylose, ribose, rhamnose, palactose, glucose, mannitol, xylitol, erythritol, threitol, sorbitol, and raffinose.
5. The particles of claim 1 , wherein the particles are coated with a polymer.
6. The particles of claim 1 , wherein the polyol is in the form of a glassy matrix.
7. The particles of claim 1 , wherein the particles are spray freeze dried particles.
8. The particles of claim 1 , wherein the particles have an average diameter ranging from about 0.1 um and about 200 um.
9. The particles of claim 1 , wherein the particles have a hollowed hemispherical shape.
10. The particles of claim 1 , wherein said drying comprises drying the particles at a temperature between about 35° C. and about 50° C.