IP Library Granted Patent US 9,023,372
Granted Patent B2
US 9,023,372 · App. 12/016,247 · Granted May 5, 2015

Metal-enhanced fluorescence nanoparticles

Inventor: Chris D. Geddes (Bel-Air, MD)
Assignee: University of Maryland
A61K49/0043Y10T428/2991A61K8/19A61K8/498A61K49/0021A61K49/0041A61K49/0093A61K2800/413A61K2800/434A61Q1/02A61Q1/06A61Q1/08A61Q1/10B82Y5/00
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Quick Facts
Patent No.
US 9,023,372
App. No.
12/016,247
Granted
May 5, 2015
Kind
B2
Abstract

The present invention relates to nanoparticles comprising a metallic core with a surface coating, wherein the coating comprises at least an excitable radiative molecule attached thereto or impregnated therein, and wherein the excitable molecule is positioned at a sufficient distance from metallic core to enhance emissions when excited. The nanoparticles are included in compositions that may be used for surface coatings, cosmetics, assays, flow velocity measurements and targeting of tissue.

Claims (13)

1. A nanoparticle comprising a metallic core with a coating of a metal oxide wherein the metal oxide is silicon dioxide encompassing the metallic core, wherein the coating of metal oxide comprises excitable and radiative molecules impregnated therein, and wherein the excitable and radiative molecules are positioned from 5 nm to 50 nm from the metallic core to enhance emissions when excited by electromagnetic energy, wherein the excitable and radiative molecules are selected from the group consisting of a fluorophore and luminophore species.

2. The nanoparticle of claim 1 , wherein the electromagnetic energy is in the UV to IR range.

3. The nanoparticle of claim 1 , wherein the electromagnetic energy is in the visible range.

4. The nanoparticle of claim 1 , wherein the coating of the metal oxide is evenly distributed on the metallic core having a thickness from about 5 nm to about 50 nm.

5. The nanoparticle of claim 1 , wherein the metallic core has a diameter ranging from about 50 to 130 nm in diameter.

6. The nanoparticle of claim 1 , wherein the metallic core comprises silver, gold, platinum, aluminum, copper, zinc, palladium and composites thereof.

7. The nanoparticle of claim 1 , further comprising at least one targeting moiety, attached to the surface of the metal oxide containing coating, wherein the target moiety is specific for a specific marker.

8. The nanoparticle of claim 7 , further comprising a linker for binding the targeting moiety to the surface of the coating the metal oxide, wherein the linker is selected from the group consisting of a lipid, a carbohydrate, a polysaccharide, a protein, a polymer, a glycoprotein, and a glycolipid.

9. The nanoparticle of claim 1 , wherein the metallic core is a geometric shape including spherical, elliptical, triangular, or rod shape.

10. The nanoparticle of claim 1 , further comprising a solution for dispersing the nanoparticle therein.

11. The nanoparticle of claim 10 , wherein the solution is used in velocimetry of turbulent flows including liquids, gas, liquid crystals, super cooled liquids and plasmas.

12. A nanoparticle comprising a metallic core with a coating of a metal oxide wherein the metal oxide is silicon dioxide encompassing the metallic core, wherein the coating of the silicon dioxide comprises a fluorophore or luminophore species impregnated therein, and wherein the fluorophore or luminophore species is positioned from 5 nm to 50 nm from the metallic core to enhance emissions from the fluorophore or luminophore species when excited by electromagnetic energy.

13. A composition comprising the nanoparticle of claim 1 .

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2010
From: UNIVERSITY OF MARYLAND BIOTECHNOLOGY INSTITUTE
To: UNIVERSITY OF MARYLAND, BALTIMORE COUNTY
Reel/Frame 025010/0865 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2008
From: GEDDES, CHRIS D.
To: UNIVERSITY OF MARYLAND BIOTECHNOLOGY INSTITUTE
Reel/Frame 021367/0590 →
Continuity (2)
Provisional Application 60950492 · Jul 18, 2007
Related Publication 20090022766A1 · Jan 22, 2009