IP Library Granted Patent US 10,338,056
Granted Patent B2
US 10,338,056 · App. 14/378,557 · Granted Jul 2, 2019

Apparatus for supporting an array of layers of amphiphilic molecules and method of forming an array of layers of amphiphilic molecules

Inventors: Jason Robert Hyde (Oxford, GB); James Anthony Clarke (Oxford, GB); Gaëlle Anne-Leonie Andreatta (Neuchâtel, CH)
Assignee: Oxford Nanopore Technologies Ltd.
G01N33/48721G01N27/44791G01N27/453B01J2219/00317B01J2219/00585B01J2219/00599B01J2219/00653B01J2219/00725B01L3/5027B01L3/5088B01L3/50273B01L3/502707B01L2300/0819B01L2400/0421B01L2400/0427B01L2400/0472C12Q1/6869
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Quick Facts
Patent No.
US 10,338,056
App. No.
14/378,557
Granted
Jul 2, 2019
Kind
B2
Abstract

An apparatus for supporting an array of layers of amphiphilic molecules, the apparatus comprising: a body ( 11 ), formed in a surface of the body, an array of sensor wells ( 10 ) capable of supporting a layer of amphiphilic molecules ( 30 ) across the sensor wells, the sensor wells each containing an electrode ( 12 ) for connection to an electrical circuit, and formed in the surface of the body between the sensor wells, flow control wells capable of smoothing the flow of a fluid across the surface.

Claims (20)

1. An apparatus for supporting an array of layers of amphiphilic molecules, the apparatus comprising:

(A) a body; and

(B) formed in the body, an array of sensor wells and, between the sensor wells, flow control wells, wherein a common surface of the body defines openings to the sensor wells and openings to the flow control wells, and wherein the sensor wells i) are capable of supporting a layer of amphiphilic molecules across the sensor wells and ii) each contain an electrode for connection to an electrical circuit,

wherein the flow control wells are capable of smoothing the flow of a fluid across the surface, and

wherein the cross-sectional area of a flow control well is less than the cross-sectional area of a sensor well wherein the flow control wells do not contain electrodes.

2. An apparatus according to claim 1 , wherein the flow control wells each contain an electrode, the electrodes in the sensor wells being connected to the electrical circuit but the electrodes in the flow control wells not being connected to the electrical circuit.

3. An apparatus according to claim 1 , further comprising a cover over the surface of the body defining a cavity therebetween, and a common electrode arranged in the cavity for connection to the electrical circuit.

4. An apparatus according to claim 3 , wherein the cover has an internal surface facing the surface of the body that is roughened to smooth the flow of fluid thereover.

5. An apparatus according to claim 1 , wherein the array of sensor wells is a regular array, and the flow control wells consist of a regular array of flow control wells.

6. An apparatus according to claim 5 , wherein the pitch of at least a portion of the array of flow control wells is smaller than the pitch of at least a portion of the array of sensor wells.

7. An apparatus according to claim 1 , wherein the sensor wells are circular and/or wherein the flow control wells are square.

8. An apparatus according to claim 1 , wherein the sensor wells and flow control wells are arranged such that a pre-treatment of a hydrophobic fluid applied to the surface of the body would not enter the Cassie-Baxter state.

9. An apparatus according to claim 1 , wherein the sensor wells and flow control wells are shaped to provide:

i) a surface roughness r, defined as the total area of the surface and wells divided by the projected area of the surface, and

ii) a φ, defined as the area of the surface between the wells divided by the projected area of the surface,

that meet the requirement ((φ−1)/(r−φ))>cos θ for a pre-treatment applied to the surface of the body,

wherein, with respect to the body, the pre-treatment has a contact angle θ, and

wherein the pre-treatment is a fluid that is capable of interacting with the amphiphilic molecules.

10. An apparatus according to claim 1 , wherein the array of sensor wells are formed in the body with a number density of 3.2×10 −5 sensor wells/micron 2 or more, optionally 6.4×10 −5 sensor wells/micron 2 or more, further optionally 1.5×10 −4 sensor wells/micron 2 or more, and still further optionally 2.5×10 −4 sensor wells/micron 2 or more.

11. An apparatus according to claim 1 , further comprising a pre-treatment, that is a fluid capable of interacting with the amphiphilic molecules, applied to the sensor wells.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2014
From: HYDE, JASON ROBERT; CLARKE, JAMES ANTHONY; ANDREATTA, GAELLE ANNE-LEONIE
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 033964/0948 →
Priority Claims (1)
GB 1202519.3 · Feb 13, 2012 · national
Continuity (1)
Related Publication 20150014160A1 · Jan 15, 2015
Cited By (8)
US 12,350,637 US 12,392,766 US 12,411,125 US 12,458,945 US 12,523,931 US 12,540,937 US 12,552,661 US 12,667,839