IP Library Granted Patent US 9,274,008
Granted Patent B2
US 9,274,008 · App. 14/091,948 · Granted Mar 1, 2016

Nanothermometer, methods and uses therefor

Inventors: Mikhail Y Berezin (Saint Louis, MO); Tiffany P Gustafson (College Station, TX)
Assignee: Washington University
G01K11/20G01K2211/00
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Quick Facts
Patent No.
US 9,274,008
App. No.
14/091,948
Granted
Mar 1, 2016
Kind
B2
Abstract

A nanothermometer is disclosed. In various embodiments, a nanothermometer comprises a nanoparticle such as a gold nanoparticle, a fluorophore, and a linker, such as a peptide linker, extending between the nanoparticle and the fluorophore, whereby the fluorophore is self-quenched. The linker can comprise one or more cysteines. An unheated thermometer shows little or no fluorescence. Upon heating, fluorophore-linker conjugates are released from the nanoparticle, thereby unquenching the fluorescence. An increase in fluorescence results. In some embodiments, the increase in fluorescence can be irreversible. Methods of measuring temperature of a sample such as a biological sample, and methods of synthesizing a nanothermometer, are also disclosed. A molecular thermometer is also disclosed.

Claims (18)

1. A nanothermometer comprising:

a nanoparticle;

a self-quenching fluorophore; and

a linker extending between the nanoparticle and the fluorophore wherein the linker is a peptide consisting of a sequence selected from the group consisting of NH 2 -Gly-Cys-Cys-Gly-NH 2 (SEQ ID NO: 1), and NH 2 -Gly-Cys-Cys-Gly (SEQ ID NO:2).

2. A nanothermometer in accordance with claim 1 , wherein the nanoparticle is a gold nanoparticle.

3. A nanothermometer in accordance with claim 1 , wherein the fluorophore is 7-diethylaminocoumarin-3-carboxylic acid.

4. A nanothermometer comprising:

a nanoparticle;

a fluorophore;

a first linker extending between the nanoparticle and the fluorophore, wherein the first linker is a peptide consisting of a sequence selected from the group consisting of NH 2 -Gly-Cys-Cys-Gly-NH 2 (SEQ ID NO:1), and NH 2 -Gly-Cys-Cys-Gly (SEQ ID NO:2); and

a fluorescence quencher.

5. A nanothermometer in accordance with claim 4 , further comprising a second linker extending between the nanoparticle and the fluorescence quencher.

6. A nanothermometer in accordance with claim 4 , wherein the nanoparticle is a gold nanoparticle.

7. A nanothermometer in accordance with claim 4 , wherein the fluorophore is 7-diethylaminocoumarin-3-carboxylic acid.

8. A nanothermometer in accordance with claim 5 , wherein the second linker is a peptide selected from the group consisting of NH 2 -Gly-Cys-Cys-Gly-NH 2 (SEQ ID NO:1), and NH 2 -Gly-Cys-Cys-Gly (SEQ ID NO:2).

9. A method of measuring temperature of a sample, comprising:

contacting the sample with a nanothermometer of claim 1 ; and

measuring fluorescence of the nanothermometer, whereby fluorescence intensity is indicative of temperature.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jun 29, 2016
From: WASHINGTON UNIVERSITY
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 039204/0221 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2014
From: BEREZIN, MIKHAIL; GUSTAFSON, TIFFANY P
To: WASHINGTON UNIVERSITY
Reel/Frame 032559/0415 →
Continuity (2)
Provisional Application 61730881 · Nov 28, 2012
Related Publication 20140147929A1 · May 29, 2014