IP Library Granted Patent US 9,694,032
Granted Patent B2
US 9,694,032 · App. 14/063,682 · Granted Jul 4, 2017

Soy, lentil or extract stabilized, biocompatible gold nanoparticles

Inventors: Kattesh V. Katti (Columbia, MO); Raghuraman Kannan (Columbia, MO); Kavita K. Katti (Columbia, MO); Nripen Chanda (Columbia, MO); Ravi Shukla (Columbia, MO)
Assignee: The Curators of University of Missouri
A61K33/24A61K9/5176A61K9/5192B82Y5/00Y10T428/2991
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Quick Facts
Patent No.
US 9,694,032
App. No.
14/063,682
Granted
Jul 4, 2017
Kind
B2
Abstract

The invention provides stabilized, biocompatible gold nanoparticles that are stabilized with material from soy or lentil plant material or a reactive extract thereof of the plant material. The gold nanoparticles of the invention can be fabricated with an environmentally friendly method for making biocompatible stabilized gold nanoparticles. The nanoparticles can be introduced in vivo to conduct enhanced imaging. The nanoparticles can also be introduced in vivo to conduct therapy.

Claims (18)

1. Gold nanoparticles stabilized with a material coating consisting of proteins derived solely from soybean or lentil.

2. The gold nanoparticles of claim 1 , wherein the proteins are derived solely from a soy extract.

3. The gold nanoparticles of claim 2 , wherein the soy extract comprises high molecular weight protein fractions of soy.

4. The gold nanoparticles of claim 1 , in an aqueous solution having a physiological pH.

5. A method of sensing comprising introducing stabilized gold nanoparticles of claim 1 into a human or animal subject and conducting gold nanoparticle enhanced imaging.

6. A method of therapy comprising introducing stabilized gold nanoparticles of claim 1 into a human or animal subject and conducting gold nanoparticle enhanced therapy.

7. Gold nanoparticles according to claim 1 , wherein the particles consist essentially of gold cores and the material coating on said gold cores.

8. Gold nanoparticles according to claim 7 , wherein the gold cores are in the size range of 9-16 nm.

9. Gold nanoparticles according to claim 8 , being monodisperse.

10. Gold nanoparticles according to claim 1 , being monodisperse.

11. The gold nanoparticles of claim 10 , in an aqueous solution having a physiological pH.

12. A method of sensing comprising introducing stabilized gold nanoparticles of claim 11 , into a human or animal subject and conducting gold nanoparticle enhanced imaging.

13. A method of therapy comprising introducing stabilized gold nanoparticles of claim 11 , into a human or animal subject and conducting gold nanoparticle enhanced therapy.

14. Gold nanoparticles according to claim 1 , wherein the proteins are derived solely from soybean.

15. Gold nanoparticles according to claim 1 , wherein the proteins are derived solely from lentil.

16. Gold nanoparticles according to claim 1 , wherein the gold nanoparticles are in the size range of 9-16 nm.

17. A method of sensing comprising introducing stabilized gold nanoparticles of claim 16 into a human or animal subject and conducting gold nanoparticle enhanced imaging.

18. A method of therapy comprising introducing stabilized gold nanoparticles of claim 16 into a human or animal subject and conducting gold nanoparticle enhanced therapy.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2017
From: KATTI, KATTESH V.; KANNAN, RAGHURAMAN; KATTI, KAVITA K.; CHANDA, NRIPEN
To: THE CURATORS OF THE UNIVERSITY OF MISSOURI
Reel/Frame 042580/0912 →
CONFIRMATORY LICENSE Recorded Jan 15, 2014
From: UNIVERSITY OF MISSOURI COLUMBIA
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 032032/0274 →
Continuity (3)
Division 12241904 · Sep 30, 2008
Provisional Application 60997160 · Oct 7, 2007
Related Publication 20140050664A1 · Feb 20, 2014