IP Library Granted Patent US 10,137,208
Granted Patent B2
US 10,137,208 · App. 13/680,524 · Granted Nov 27, 2018

Vivo tumor targeting and spectroscopic detection with surface-enhanced raman nanoparticle tags

Inventors: Ximei Qian (Atlanta, GA); Dominic Ansari (Chicago, IL); Shuming Nie (Atlanta, GA)
Assignee: Emory University
A61K49/0089A61K49/0023A61K49/0032A61K49/0041A61K49/0065A61K49/0093G01N21/658A61B5/0059A61B5/416A61B2503/40B82Y5/00Y10S977/773Y10S977/81
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Quick Facts
Patent No.
US 10,137,208
App. No.
13/680,524
Granted
Nov 27, 2018
Kind
B2
Abstract

Nanostructures, methods of preparing nanostructures, methods of detecting targets in subjects, and methods of treating diseases in subjects, are disclosed. An embodiment, among others, of the nanostructure includes a metallic gold surface-enhanced Raman scattering nanoparticle, a Raman reporter and a protection structure. The protection structure may include a thiol-polyethylene glycol to which may be attached a target-specific probe.

Claims (24)

1. A surface-enhanced Raman spectroscopic active composite nanostructure comprising:

a single-core metallic nanoparticle with a diameter of 100 nm or less;

a Raman reporter molecule disposed on the surface of the core; and

an encapsulating protective layer disposed on the surface of the core and the reporter molecule, wherein the encapsulating protective layer is a thiolpolyethylene glycol, and wherein the encapsulated reporter molecule has a measurable surface-enhanced Raman spectroscopic signature.

2. The nanostructure of claim 1 , wherein the Raman reporter molecule is selected from an isothiocyanate dye, a multi-sulfur organic dye, a multi-heterosulfur organic dye, a benzotriazole dye, or combinations thereof.

3. The nanostructure of claim 1 , wherein the reporter molecule is selected from a thiacyanine dye, a dithiacyanine dye, a thiacarbocyanine dye, or a dithiacarbocyanine dye.

4. The nanostructure of claim 1 , wherein the reporter molecule is selected from malachite green isothiocyanate, tetramethylrhodamine-5-isothiocyante, X-rhodamine-5-isothiocyanate, X-rhodamine-6-isothiocyanate, or 3,3′-diethylthiadicarbocyanine iodide.

5. The nanostructure of claim 1 , wherein the core metallic nanoparticle is gold.

6. The nanostructure of claim 1 , further comprising a target-specific probe selectively binding a target on a cell.

7. The nanostructure of claim 6 wherein the target-specific probe is selected from the group consisting of an antibody, immunoglobulin, immunoglobulin fragment, a polypeptide, a polynucleotide, a drug molecule, an inhibitor compound, and a combination thereof, and wherein the targeting probe has an affinity for a marker on the surface of a target cell.

8. The nanostructure of claim 6 , wherein the target-specific probe is disposed on the encapsulating protective layer.

9. The nanostructure of claim 6 , wherein the target-specific probe is a tumor-targeting ligand.

10. A surface-enhanced Raman spectroscopic active composite nanostructure comprising:

a single-core metallic nanoparticle with a diameter of 100 nm or less;

a Raman reporter molecule without an isothiocyanate group disposed on the surface of the core; and

an encapsulating protective layer disposed on the surface of the core and the reporter molecule, wherein the encapsulating protective layer is a thiolpolyethylene glycol, and wherein the encapsulated reporter molecule has a measurable surface-enhanced Raman spectroscopic signature.

11. The nanostructure of claim 10 , wherein the Raman reporter molecule is selected from a multi-sulfur organic dye, a multi-heterosulfur organic dye, a benzotriazole dye, or combinations thereof.

12. The nanostructure of claim 10 , wherein the reporter molecule is selected from a thiacyanine dye, a dithiacyanine dye, a thiacarbocyanine dye, or a dithiacarbocyanine dye.

13. The nanostructure of claim 10 , wherein the reporter molecule is 3,3′-diethylthiadicarbocyanine iodide.

14. The nanostructure of claim 10 , wherein the core metallic nanoparticle is gold.

15. The nanostructure of claim 10 , further comprising a target-specific probe selectively binding a target on a cell.

16. The nanostructure of claim 15 wherein the target-specific probe is selected from the group consisting of an antibody, a polypeptide, a polynucleotide, a drug molecule, an inhibitor compound, and a combination thereof, and wherein the targeting probe has an affinity for a marker on the surface of a target cell.

17. The nanostructure of claim 15 , wherein the target-specific probe is disposed on the encapsulating protective layer.

18. The nanostructure of claim 15 , wherein the target-specific probe is a tumor-targeting ligand.

Assignments (1)
CONFIRMATORY LICENSE Recorded Apr 9, 2018
From: EMORY UNIVERSITY
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 045475/0010 →
Continuity (3)
Continuation 12593359
Provisional Application 60909656 · Apr 2, 2007
Related Publication 20130149247A1 · Jun 13, 2013