IP Library Granted Patent US 10,322,084
Granted Patent B2
US 10,322,084 · App. 15/225,504 · Granted Jun 18, 2019

Carrier-antibody compositions and methods of making and using the same

Inventors: Svetomir N. Markovic (Rochester, MN); Wendy K. Nevala (Rochester, MN)
Assignee: Mayo Foundation for Medical Education and Research
A61K9/0095A61K9/08A61K9/146A61K9/1658A61K9/19A61K31/337A61K33/24A61K39/3955A61K47/643A61K47/6803A61K47/6845A61K47/6849A61K47/6851A61K47/6871A61K47/6929A61K47/6931A61K51/1021C07K16/22C07K16/2863C07K16/2887C07K16/30C07K16/32C07K16/40A61K2039/505C07K2317/24C07K2317/52C07K2317/76C07K2317/92
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Quick Facts
Patent No.
US 10,322,084
App. No.
15/225,504
Granted
Jun 18, 2019
Kind
B2
Abstract

Described herein are compositions of antibodies and carrier proteins and methods of making and using the same, in particular, as a cancer therapeutic. Also described are lyophilized compositions of antibodies and carrier proteins and methods of making and using the same, in particular, as a cancer therapeutic.

Claims (22)

1. A lyophilized composition comprising nanoparticle complexes having an outer surface, each of the nanoparticle complexes comprising:

albumin;

between about 100 to about 1000 anti-VEGF antibodies, each binding to the albumin via non-covalent hydrophobic bonds and having an Fc portion and a VEGF-binding portion wherein the VEGF-binding portion of the anti-VEGF antibodies is arranged on the outer surface of the complex; and

paclitaxel;

said nanoparticle complexes being lyophilized, and wherein upon reconstitution with an aqueous solution the nanoparticle complexes are capable of binding to VEGF in vivo and further wherein said complexes have an average size of less than 1 μm.

2. The lyophilized composition of claim 1 that is stable at about 20° C. to about 25° C. for at least 3 months.

3. The lyophilized composition of claim 1 , wherein each of the nanoparticle complexes comprises between about 400 and about 800 antibodies.

4. The lyophilized composition of claim 3 , wherein less than 0.01% of nanoparticle complexes have a size greater than 800 nm.

5. The lyophilized composition of claim 1 wherein said nanoparticle complexes have an average size of about 160 nm.

6. The lyophilized composition of claim 1 , wherein the albumin is human serum albumin.

7. The lyophilized composition of claim 1 , wherein the nanoparticle complexes have a dissociation constant between about 1×10 −11 M and about 1×10 −9 M.

8. A lyophilized composition comprising nanoparticle complexes having an outer surface, each of the nanoparticle complexes comprising:

albumin;

between about 100 to about 1000 anti-VEGF antibodies, each binding to the albumin via non-covalent hydrophobic bonds and having an Fc portion and a VEGF-binding portion wherein the VEGF-binding portion of the anti-VEGF antibodies is arranged on the outer surface of the complex; and

paclitaxel;

said nanoparticle complexes being lyophilized, and wherein upon reconstitution with an aqueous solution the nanoparticle complexes are capable of binding to VEGF in vivo and further wherein said complexes have an average size of less than 1 μm; wherein the lyophilized composition does not contain a bulking agent.

9. The lyophilized composition of claim 8 that is stable at about 20° C. to about 25° C. for at least 3 months.

10. The lyophilized composition of claim 8 , wherein each of the nanoparticle complexes comprises between about 400 and about 800 antibodies.

11. The lyophilized composition of claim 10 , wherein less than 0.01% of nanoparticle complexes have a size greater than 800 nm.

12. The lyophilized composition of claim 8 , wherein said nanoparticle complexes have an average size of about 160 nm.

13. The lyophilized composition of claim 8 , wherein the albumin is human serum albumin.

14. The lyophilized composition of claim 8 , wherein the nanoparticle complexes have a dissociation constant between about 1×10 −11 M and about 1×10 −9 M.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 4, 2017
From: MARKOVIC, SVETOMIR N.; NEVALA, WENDY K.
To: MAYO FOUNDATION FOR MEDICAL EDUCATION AND RESEARCH
Reel/Frame 040846/0880 →
Continuity (7)
Continuation 14882327 · Oct 13, 2015
Continuation PCTUS2015054295 · Oct 6, 2015
Provisional Application 62206770 · Aug 18, 2015
Provisional Application 62206771 · Aug 18, 2015
Provisional Application 62206772 · Aug 18, 2015
Provisional Application 62060484 · Oct 6, 2014
Related Publication 20160338961A1 · Nov 24, 2016
Cited By (2)
US 12,364,754 US 12,403,119