IP Library Granted Patent US 9,267,964
Granted Patent B2
US 9,267,964 · App. 14/186,657 · Granted Feb 23, 2016

Electrochemically-grown nanowires and uses thereof

Inventors: Bret Flanders (Manhattan, KS); Govind Paneru (Manhattan, KS)
Assignee: Kansas State University Research Foundation
G01Q60/38G01Q60/40G01Q70/12B82Y15/00B82Y35/00Y10S977/762Y10T428/12389Y10T428/2976
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Quick Facts
Patent No.
US 9,267,964
App. No.
14/186,657
Granted
Feb 23, 2016
Kind
B2
Abstract

Nanowire apparatus and methods of using the same are disclosed. The apparatus include nanowires that are attached to and extend from varying substrates and can be used in the manipulation of cells and/or sensing of cellular and subcellular characteristics. The methods include using the apparatus to sense forces exerted by a single cell or using the apparatus to manipulate one or more cells.

Claims (16)

1. A hybrid AFM cantilever comprising an AFM cantilever having a tip having a free end that is not permanently attached to a substrate, at least a portion of said tip being gold plated, and a nanowire extending from said gold plated portion of said free end of said tip of said AFM cantilever, wherein said nanowire comprises a poly-3,4-ethylenedioxy-thiophene (PEDOT).

2. The hybrid AFM cantilever according to claim 1 , wherein said gold plating has a thickness of about 10 nm to about 500 nm.

3. The hybrid AFM cantilever according to claim 1 , wherein said nanowire has a length of about 1 μm to about 200 μm.

4. The hybrid AFM cantilever according to claim 1 , wherein said nanowire has a mean radius of about 30 nm to about 800 nm.

5. The hybrid AFM cantilever according to claim 4 , wherein said nanowire has a radial variation of up to 80% of the mean radius.

6. The hybrid AFM cantilever according to claim 1 , wherein said nanowire comprises a first end and a second end, said nanowire first end being in contact with said gold plated portion of said free end of said tip of said AFM cantilever, wherein said nanowire first end has a mean radius r 1 and said second end has a mean radius r 2 , wherein the ratio of r 2 to r 1 is at least 1.1:1 and not more than 50:1.

7. The hybrid AFM cantilever according to claim 1 , wherein said nanowire is substantially rectilinear.

8. A method of measuring cellular forces exerted by a cell, said method comprising the steps of:

a) providing an apparatus comprising

an AFM cantilever having a tip having a free end that is not permanently attached to a substrate, said tip being at least partially coated with gold, and a nanowire extending from said free end of said at least partially gold-coated tip of said AFM cantilever, wherein said nanowire comprises a poly-3,4-ethylenedioxy-thiophene (PEDOT);

b) causing a cell to come into contact with said nanowire, said cell causing said nanowire to be displaced from its normal position;

c) imaging said cell in contact with said nanowire during displacement thereof; and

d) measuring the distance that said nanowire is displaced during contact with said cell.

9. A method of manipulating one or more cells, said method comprising:

a) providing the apparatus of claim 1 ; and

b) contacting said one or more cells with said nanowire.

Assignments (2)
CONFIRMATORY LICENSE Recorded Aug 6, 2014
From: KANSAS STATE UNIVERSITY RESEARCH FOUNDATION
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 033482/0988 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2014
From: FLANDERS, BRET; PANERU, GOVIND
To: KANSAS STATE UNIVERSITY RESEARCH FOUNDATION
Reel/Frame 032272/0689 →
Continuity (3)
Continuation In Part PCTUS2012051907 · Aug 22, 2012
Provisional Application 61526618 · Aug 23, 2011
Related Publication 20140173786A1 · Jun 19, 2014