IP Library Granted Patent US 9,382,473
Granted Patent B2
US 9,382,473 · App. 13/865,924 · Granted Jul 5, 2016

Chromophoric polymer dots

Inventors: Daniel T. Chiu (Seattle, WA); Changfeng Wu (Changchun, CN); Xuanjun Zhang (Linköping, SE); Jiangbo Yu (Seattle, WA); Fangmao Ye (Seattle, WA)
Assignee: University of Washington Through Its Center for Commercialization
C09K11/06B82Y15/00B82Y30/00B82Y40/00G01N33/588H01L51/0039
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Quick Facts
Patent No.
US 9,382,473
App. No.
13/865,924
Granted
Jul 5, 2016
Kind
B2
Abstract

The present invention provides, among other aspects, stabilized chromophoric nanoparticles. In certain embodiments, the chromophoric nanoparticles provided herein are rationally functionalized with a pre-determined number of functional groups. In certain embodiments, the stable chromophoric nanoparticles provided herein are modified with a low density of functional groups. In yet other embodiments, the chromophoric nanoparticles provided herein are conjugated to one or more molecules. Also provided herein are methods for making rationally functionalized chromophoric nanoparticles.

Claims (27)

1. A rationally functionalized chromophoric nanoparticle comprising a semiconducting polymer, having a total number of functional groups attached to the surface of the chromophoric nanoparticle, wherein the total number of functional groups is one, two, three, four, five, or six.

2. The chromophoric nanoparticle of claim 1 , wherein the total number of functional groups attached to the surface of the chromophoric nanoparticle is one, two, or three.

3. The chromophoric nanoparticle according to claim 1 , wherein the chromophoric nanoparticle consists of a single semiconducting polymer.

4. The chromophoric nanoparticle according to claim 1 , wherein the functional groups are hydrophilic functional groups, hydrophobic functional groups, or a combination thereof.

5. The chromophoric nanoparticle according to claim 1 , wherein the functional groups are suitable for bioconjugation.

6. The chromophoric nanoparticle of claim 3 , wherein the number of functional groups attached to the surface of the chromophoric nanoparticle is controlled by solvent washing.

7. The chromophoric nanoparticle of claim 3 , wherein the chromophoric nanoparticle is formed by collapse of the single semiconducting polymer.

8. The chromophoric nanoparticle of claim 1 , wherein the chromophoric nanoparticle consists of a single semiconducting polymer modified with one, two, or three functional groups located at at least one terminus of the semiconducting polymer.

9. The chromophoric nanoparticle according to claim 1 , wherein the chromophoric nanoparticle comprises a plurality of semiconducting polymers.

10. The chromophoric nanoparticle of claim 9 , wherein the chromophoric nanoparticle comprises a blend of semiconducting polymers.

11. The chromophoric nanoparticle of claim 9 , wherein the chromophoric nanoparticle comprises a blend of semiconducting polymers and non-semiconducting polymers.

12. The chromophoric nanoparticle according to claim 1 , wherein the functional group is attached to the surface of the chromophoric nanoparticle via a linker moiety.

13. The chromophoric nanoparticle of claim 12 , wherein the linker moiety comprises a water soluble polymer.

14. The chromophoric nanoparticle of claim 13 , wherein the water soluble polymer comprises polyethylene glycol.

15. The chromophoric nanoparticle according to claim 1 , wherein at least one of the functional groups comprises a carboxyl group.

16. The chromophoric nanoparticle according to claim 1 , wherein the functional group is a hydrophobic functional group independently selected from the group consisting of alkyne, strained alkyne, azide, diene, alkene, cyclooctyne, and phosphine groups.

17. The chromophoric nanoparticle according to claim 1 , wherein the chromophoric nanoparticle is further conjugated to one or more non-reactive chemical groups.

18. The chromophoric nanoparticle of claim 17 , wherein the non-reactive chemical groups comprise a water soluble polymer.

19. The chromophoric nanoparticle of claim 18 , wherein the water soluble polymer comprises polyethylene glycol.

20. The chromophoric nanoparticle according to claim 1 , wherein the functional group is conjugated to an end of the semiconducting polymer.

21. The chromophoric nanoparticle according to claim 1 , wherein the number of functional groups attached to the surface of the chromophoric nanoparticle is controlled by surface passivation.

22. A composition comprising a plurality of rationally functionalized chromophoric nanoparticles according to claim 1 .

23. The composition of claim 22 , comprising a homogeneous population of rationally functionalized chromophoric nanoparticles.

24. The chromophoric nanoparticle according to claim 1 , wherein the total number of functional groups is one.

25. The chromophoric nanoparticle according to claim 1 , wherein one or more of the functional groups is conjugated to a biological molecule.

26. The chromophoric nanoparticle according to claim 25 , wherein the biological molecule comprises a protein, an antibody, or a nucleic acid.

27. The chromophoric nanoparticle according to claim 25 , wherein the biological molecule is streptavidin.

Assignments (3)
CONFIRMATORY LICENSE Recorded Dec 16, 2013
From: UNIVERSITY OF WASHINGTON / CENTER FOR COMMERCIALIZATION
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 031817/0486 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2013
From: CHIU, DANIEL T.; WU, CHANGFENG; ZHANG, XUANJUN; YU, JIANGBO; YE, FANGMAO
To: UNIVERSITY OF WASHINGTON THROUGH ITS CENTER FOR COMMERCIALIZATION
Reel/Frame 030910/0518 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2013
From: CHIU, DANIEL T.; WU, CHANGFENG; ZHANG, XUANJUN; YU, JIANGBO; YE, FANGMAO
To: UNIVERSITY OF WASHINGTON THROUGH ITS CENTER FOR COMMERCIALIZATION
Reel/Frame 030901/0023 →
Continuity (3)
Continuation PCTUS2011056768 · Oct 18, 2011
Provisional Application 61394259 · Oct 18, 2010
Related Publication 20130234067A1 · Sep 12, 2013