Nanoparticle complexes of paclitaxel, trastuzumab, and albumin
This invention relates to antibody-albumin nanoparticle complexes comprising albumin, trastuzumab, and paclitaxel, wherein the nanoparticle complex has been pre-formed in vitro such that the nanoparticle complex has antigen-binding specificity (e.g., HER2 binding specificity), for the purpose of providing cancer (e.g., HER2-related cancer) treatments in a subject in need thereof.
1. An antibody-albumin nanoparticle complex comprising albumin, anti-HER2 antibody, and paclitaxel, wherein the antibody is trastuzumab, and wherein the nanoparticle complex has been pre-formed in vitro by mixing an aqueous albumin-paclitaxel nanoparticle with the antibody under conditions to form the nanoparticle complex, such that the nanoparticle complex has HER2 binding specificity, wherein the diameter of said complex is between 0.1 μm and 1 μm.
2. The antibody-albumin nanoparticle complex of claim 1 , wherein said antibody-albumin nanoparticle complex comprises an alkylating agent.
3. The antibody-albumin nanoparticle complex of claim 2 , wherein said alkylating agent is a platinum compound.
4. The antibody-albumin nanoparticle complex of claim 3 , wherein said platinum compound is carboplatin.
5. The antibody-albumin nanoparticle complex of claim 1 , said complex having a diameter of between 0.1 μm and 0.9 μm.
6. The antibody-albumin nanoparticle complex of claim 1 , said complex having a diameter of between 0.1 μm and about 0.3 μm.
7. The antibody-albumin nanoparticle complex of claim 1 , wherein the ratio of albumin-paclitaxel nanoparticle to antibody is between 5:1 and 1:2.5.
8. A pharmaceutical composition comprising a pharmaceutically acceptable carrier and antibody-albumin nanoparticle complexes, wherein said antibody-albumin nanoparticle complexes comprise albumin, anti-HER2 antibody, and paclitaxel, wherein the antibody is trastuzumab, and wherein the nanoparticle complexes have been pre-formed in vitro by mixing aqueous albumin-paclitaxel nanoparticles with the antibody under conditions to form the nanoparticle complexes, such that the nanoparticle complexes have HER2 binding specificity, wherein the average diameter of greater than 60% of said complexes is between 0.1 μm and 0.95 μm.
9. The pharmaceutical composition of claim 8 , wherein said composition or said antibody-albumin nanoparticle complexes comprise an alkylating agent.
10. The pharmaceutical composition of claim 9 , wherein said alkylating agent is a platinum compound.
11. The pharmaceutical composition of claim 10 , wherein said platinum compound is carboplatin.
12. The pharmaceutical composition of claim 8 , wherein the average diameter of greater than 60% of said complexes is between 0.1 μm and about 0.9 μm.
13. The pharmaceutical composition of claim 8 , wherein the average diameter of greater than 60% of said complexes is between 0.1 μm and 0.3 μm.
14. The pharmaceutical composition of claim 8 , wherein the ratio of albumin-paclitaxel nanoparticle to antibody is between 5:1 and 1:2.5.
15. The pharmaceutical composition of claim 8 which is formulated for injection.
16. The pharmaceutical composition of claim 8 , wherein the pharmaceutically acceptable carrier is saline, water, lactic acid, mannitol, or a combination thereof.
17. A method of making an antibody-albumin nanoparticle complex, the method comprising mixing in vitro an aqueous albumin-paclitaxel nanoparticle with an antibody with binding specificity for HER2 under conditions to form the nanoparticle complex, wherein the antibody is trastuzumab, and wherein the diameter of said complex is between 0.1 μm and 1 μm.