IP Library Granted Patent US 10,228,348
Granted Patent B2
US 10,228,348 · App. 15/004,248 · Granted Mar 12, 2019

Molecular characterization device

Inventors: Daniel Branton (Lexington, MA); Jene A Golovchenko (Lexington, MA)
Assignee: President and Fellows of Harvard College
G01N27/44791C12Q1/6869G01N27/44743G01N33/48721B82Y15/00Y10S977/762
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Quick Facts
Patent No.
US 10,228,348
App. No.
15/004,248
Granted
Mar 12, 2019
Kind
B2
Abstract

Provided is a solid state support structure including an aperture having a molecular entrance and a molecular exit. A first reservoir is in fluidic communication with the molecular entrance of the aperture and contains a molecule-bearing liquid solution. A second reservoir is in fluidic communication with the molecular exit of the aperture for containing a molecule-bearing liquid solution. A first liquid channel is connected to the first reservoir within less than about 300 microns of the aperture in the support structure and includes molecule-bearing liquid solution for delivery to the first reservoir. A second liquid channel is connected to the second reservoir for accepting molecule-bearing liquid solution from the second reservoir. An electrical connection between the first reservoir and the second reservoir imposes an electrical bias between the first reservoir and the second reservoir for driving the molecule-bearing liquid solution through the aperture in the solid state support structure.

Claims (23)

1. A molecular characterization device comprising:

a solid state support structure including an aperture having a molecular entrance and a molecular exit;

a first reservoir in fluidic communication with the molecular entrance of the aperture and containing a molecule-bearing liquid solution;

a second reservoir in fluidic communication with the molecular exit of the aperture for containing a molecule-bearing liquid solution;

a first liquid channel connected to the first reservoir within less than about 300 microns of the aperture in the solid state support structure, the first liquid channel including the molecule-bearing liquid solution for delivery to the first reservoir;

a second liquid channel connected to the second reservoir for accepting the molecule-bearing liquid solution from the second reservoir; and

an electrical connection between the first reservoir and the second reservoir that imposes an electrical bias between the first reservoir and the second reservoir for driving the molecule-bearing liquid solution through the aperture in the solid state support structure.

2. The molecular characterization device of claim 1 wherein the first liquid channel and the second liquid channel each having a diameter less than about 200 microns.

3. The molecular characterization device of claim 1 further comprising:

a first tube connected to the first liquid channel for supplying the molecule-bearing liquid solution to the first liquid channel;

a second tube connected to the second liquid channel for accepting the molecule-bearing liquid solution from the second liquid channel; and

wherein the first tube and the second tube each have a diameter less than about 200 microns.

4. The molecular characterization device of claim 1 wherein the molecular entrance of fluidic communication between the first reservoir and the solid state support structure is less than 1000 μm 2 in area.

5. The molecular characterization device of claim 1 wherein the molecule to be characterized comprises a biomolecule.

6. The molecular characterization device of claim 1 wherein the molecule comprises a polymer molecule.

7. The molecular characterization device of claim 1 wherein the molecule comprises a biopolymer molecule.

8. The molecular characterization device of claim 7 wherein the molecule is selected from the group consisting of proteins, polynucleic acids, DNA, and RNA.

9. The molecular characterization device of claim 1 wherein the aperture comprises a pore, extending through the thickness of the support structure, and having a diameter permitting only a single molecule at a time to move through the pore.

10. The molecular characterization device of claim 1 wherein the aperture has a diameter less than about 100 nm.

11. The molecular characterization device of claim 1 wherein the aperture has a diameter less than about 10 nm.

12. The molecular characterization device of claim 1 wherein the aperture is coated with an electrically insulating material layer.

13. The molecular characterization device of claim 1 wherein the support structure comprises an electrically insulating membrane in which the aperture is provided.

14. The molecular characterization device of claim 1 wherein the aperture has a length, through a thickness of the solid state support structure between the molecular entrance and the molecular exit, that is between about 0.1 nm and about 800 nm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2016
From: BRANTON, DANIEL; GOLOVCHENKO, JENE
To: PRESIDENT AND FELLOWS OF HARVARD COLLEGE
Reel/Frame 039658/0974 →
Continuity (7)
Continuation 13040537 · Mar 4, 2011
Continuation 12214016 · Jun 16, 2008
Continuation 11399663 · Apr 6, 2006
Provisional Application 60668632 · Apr 6, 2005
Provisional Application 60688799 · Jun 9, 2005
Provisional Application 60727603 · Oct 18, 2005
Related Publication 20160139079A1 · May 19, 2016