IP Library › Granted Patent US 10,507,243
Granted Patent B2
US 10,507,243 · App. 15/414,526 · Granted Dec 17, 2019

Nanoparticle complexes of rituximab, albumin and pacltaxel

Inventors: Svetomir N. Markovic (Rochester, MN); Wendy K. Nevala (Rochester, MN)
Assignee: Mayo Foundation for Medical Education and Research
A61K39/39558A61K9/0019A61K9/14A61K9/51A61K9/5169A61K31/282A61K31/337A61K31/555A61K33/24A61K39/395A61K41/0052A61K45/06A61K47/643A61K47/6801A61K47/6803A61K47/6845A61K47/6849A61K47/6851A61K47/6855A61K47/6863A61K47/6865A61K47/6867A61K47/6929A61K47/6931C07K16/22C07K16/2863C07K16/2887C07K16/2893C07K16/3015C07K16/32A61K2039/505A61K2039/545A61K2039/6056B82Y5/00C07K2317/21C07K2317/24C07K2317/73C07K2317/92C07K2317/94
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Quick Facts
Patent No.
US 10,507,243
App. No.
15/414,526
Granted
Dec 17, 2019
Kind
B2
Abstract

Described are stable nanoparticle complexes comprising paclitaxel, albumin and rituximab. The nanoparticle complexes are suitable for the treatment of cancer.

Claims (15)

1. An antibody-albumin nanoparticle complex, the nanoparticle complex comprising albumin, a rituximab antibody, and paclitaxel, 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 CD20 binding specificity, said complex having a diameter of between 0.1 μm and 1 μm.

2. The antibody-albumin nanoparticle complex of claim 1 , further comprising 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 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 antibody-albumin nanoparticle complexes, wherein said antibody-albumin nanoparticle complexes comprise albumin, a rituximab antibody, and paclitaxel, 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 complex, such that the nanoparticle complexes have binding specificity, said complexes having an average diameter of between 0.1 μm and 1 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 said complexes is between 0.1 μm and 0.9 μm.

13. The pharmaceutical composition of claim 8 , wherein the average diameter of said complexes is between 0.1 μm and 0.3 μm.

14. The pharmaceutical composition of claim 8 , wherein the ratio of albumin-paclitaxcel nanoparticle to antibody is between 5:1 and 1:2.5.

15. A method of making an antibody-albumin nanoparticle complex, the method comprising mixing in vitro an aqueous albumin-paclitaxel nanoparticle with a rituximab antibody under conditions to form the nanoparticle complex, wherein said complexes have an average diameter of between 0.1 μm and 1 μm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2017
From: MARKOVIC, SVETOMIR N.; NEVALA, WENDY K.
To: MAYO FOUNDATION FOR MEDICAL EDUCATION AND RESEARCH
Reel/Frame 041098/0372 →
Continuity (5)
Continuation 15202115 · Jul 5, 2016
Continuation 14432979
Provisional Application 61708575 · Oct 1, 2012
Provisional Application 61725293 · Nov 12, 2012
Related Publication 20170128587A1 · May 11, 2017
Cited By (2)
US 12,364,754 US 12,403,119