IP Library Granted Patent US 7,943,396
Granted Patent B2
US 7,943,396 · App. 11/630,584 · Granted May 17, 2011

Peptide-coated nanoparticles with graded shell compositions

Assignee: The Regents of the University of California
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Quick Facts
Patent No.
US 7,943,396
App. No.
11/630,584
Granted
May 17, 2011
Kind
B2
Abstract

A peptide-coated nanoparticle that includes a nanocrystal core surrounded by a graded shell that is composed of at least two different semiconductor molecules. At least one peptide is attached to the surface of the graded shell to render the nanoparticle biocompatible. The nanocrystal core and graded shell are optionally annealed with ultra violet radiation prior to and/or after attachment of the peptide(s).

Claims (22)

1. A peptide-coated nanoparticle comprising:

a nanocrystal core surrounded by a graded shell wherein said graded shell comprises at least two different semiconductor molecules; and

at least one peptide directly attached to the surface of said graded shell.

2. A peptide-coated nanoparticle according to claim 1 wherein said nanocrystal core is a crystal having a diameter of from 1 to 10 nanometers.

3. A peptide-coated nanoparticle according to claim 1 wherein said nanocrystal core is a nanorod having a diameter of from 1 to 10 nanometers and a length of from 5 to 100 nanometers.

4. A peptide-coated nanoparticle according to claim 1 wherein said graded shell comprises two different semiconductor molecules selected from the group consisting of ZnS, CdS, ZnSe and CdSe.

5. A peptide-coated nanoparticle according to claim 1 wherein said nanocrystal core comprises one or more semiconductor molecules selected from the group of molecules consisting of elements from columns II-IV, III-V or IV of the periodic table.

6. A peptide-coated nanoparticle according to claim 1 wherein said nanocrystal core comprises CdSe.

7. A peptide-coated nanoparticle according to claim 1 wherein said graded shell comprises ZnS and CdS molecules.

8. A peptide-coated nanoparticle according to claim 1 wherein said graded shell comprises from 1 to 10 monolayers.

9. A peptide-coated nanoparticle according to claim 1 wherein the diameter of said nanocrystal core is from 4 to 5 nanometers and said graded shell comprises from 3 to 6 monolayers.

10. A peptide-coated nanoparticle according to claim 1 wherein said peptide directly attached to the surface of said graded shell comprises:

a surface recognition part that is bound to the surface of said graded shell and one or more functional parts, said surface recognition part including an amino-end and a carboxy-end and comprising one or more hydrophobic spacers and one or more binding clusters and wherein said functional part(s) is attached to said surface recognition part at said amino-end and/or said carboxy-end.

11. A peptide-coated nanoparticle according to claim 10 wherein said binding cluster comprises an amino acid selected from the group consisting of cysteine, methionine, histidine and derivatives thereof.

12. A peptide-coated nanoparticle according to claim 11 wherein said binding cluster consists essentially of two cysteines.

13. A peptide-coated nanoparticle according to claim 10 wherein said hydrophobic spacer is a hydrophobic amino acid selected from the group consisting of hydrophobic alanine, hydrophobic glycine, hydrophobic isoleucine, hydrophobic leucine, hydrophobic methionine, hydrophobic arginine, hydrophobic valine, hydrophobic tryptophan and derivatives thereof.

14. A peptide-coated nanoparticle according to claim 13 wherein said hydrophobic amino acid is hydrophobic alanine.

15. A peptide-coated nanoparticle according to claim 14 wherein said hydrophobic alanine is cyclohexyl-substituted alanine.

16. A peptide-coated nanoparticle according to claim 10 wherein said surface recognition part comprises at least three binding clusters which are alternately located between at least four hydrophobic spacers.

17. A peptide-coated nanoparticle according to claim 16 wherein each of said binding clusters consists essentially of two cysteines and each of said hydrophobic spacers consists essentially of cyclohexyl-substituted alanine.

18. A peptide-coated nanoparticle according to claim 10 wherein said functional part(s) comprises one or more functional agent(s) selected from the group consisting of solubility agents, conjugation agents, targeting agents, therapeutic agents, imaging agents, detection agents, recognition agents and diagnostic agents.

19. A peptide-coated nanoparticle according to claim 1 wherein said nanocrystal core surrounded by said graded shell is annealed with ultra violet radiation prior to and/or after attachment of said peptide to the surface of said graded shell.

Assignments (4)
CONFIRMATORY LICENSE Recorded Jan 16, 2013
From: UNIVERSITY OF CALIFORNIA LOS ANGELES
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 029637/0713 →
CONFIRMATORY LICENSE Recorded Jan 16, 2013
From: UNIVERSITY OF CALIFORNIA LOS ANGELES
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 029637/0798 →
EXECUTIVE ORDER 9424, CONFIRMATORY LICENSE Recorded Dec 18, 2008
From: UNIVERSITY OF CALIFORNIA
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 022003/0993 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2008
From: WEISS, SHIMON; TSAY, J M.; PINAUD, FABIEN; DOOSE, SOREN
To: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
Reel/Frame 020835/0697 →
Continuity (2)
Provisional Application 60581828 · Jun 22, 2004
Related Publication 20080064121A1 · Mar 13, 2008