IP Library Granted Patent US 10,036,065
Granted Patent B2
US 10,036,065 · App. 15/419,121 · Granted Jul 31, 2018

Biochemical analysis apparatus and rotary valve

Inventor: Anthony Jones (Oxford, GB)
Assignee: Oxford Nanopore Technologies Limited
C12Q1/6869B01L3/5027F16K11/085G01N33/48721G01N33/5306B01L3/0293B01L2300/0663B01L2300/0829B01L2400/0644F16K11/0743G01N1/26G01N30/6095G01N33/92Y10T137/86871
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,036,065
App. No.
15/419,121
Granted
Jul 31, 2018
Kind
B2
Abstract

An analysis apparatus for performing biochemical analysis of a sample using nanopores comprises: a sensor device that that supports plural nanopores, reservoirs holding material for performing the analysis; a fluidics system; and plural containers for receiving respective samples, all arranged in a cartridge that is removably attachable to an electronics unit arranged to generate drive signals to perform signal processing circuit to generate output data representing the results of the analysis. The fluidics system supplies samples selectively from the containers to the sensor device using a rotary valve. In one valve, a stator defines a plurality of first ports arranged around the rotational axis and a collection chamber extending in around the axis of rotation in communication with a second port. A rotor provides a passage extending between the collection chamber and a position in communication with any one of the plurality of first ports. In another valve a stator defining a plurality of first ports in an annular surface facing the rotational axis, and a rotor is mounted inside a liner arranged between the annular surface of the stator and a facing annular surface of the rotor. The liner has a greater compliance than the rotor and stator to facilitate sealing.

Claims (19)

1. An analysis apparatus for performing biochemical analysis of a sample using nanopores, the analysis apparatus comprising:

a sensor device configured to support a plurality of nanopores and being configured to perform biochemical analysis of a sample using the nanopores;

at least one reservoir separate from the sensor device for holding material for performing the biochemical analysis;

a fluidics system configured to controllably supply material from the at least one reservoir to the sensor device; and

a plurality of containers configured for receiving respective samples in parallel, the fluidics system being configured to supply the samples selectively from the containers to the sensor device,

wherein the sensor device comprises a chamber for holding the material supplied from the reservoir and the samples supplied from the plurality of containers.

2. An analysis apparatus according to claim 1 , wherein the analysis apparatus comprises:

a body on which the sensor device, the at least one reservoir and the fluidics system are mounted, and

a container element that is separate from the body and attachable thereto, the plurality of containers being formed in the container element.

3. An analysis apparatus according to claim 2 , wherein the container element is a well plate, the containers being wells formed in the well plate.

4. An analysis apparatus according to claim 3 , wherein the fluidics system comprises a plurality of nozzles arranged to protrude into the wells of the well plate when attached to the body.

5. An analysis apparatus according to claim 1 , wherein the fluidics system includes a valve having an outlet port and a plurality of inlet ports corresponding to the plurality of containers and being configured to selectively connect one of the inlet ports to the outlet port, the fluidics system including channels connecting the containers to the corresponding inlet ports and channels connecting the outlet port to the sensor device.

6. An analysis apparatus according to claim 1 , wherein the plurality of containers comprises 24 containers or more.

7. An analysis apparatus according to claim 1 , further comprising a controller configured to measure a performance target of the biochemical analysis and control the analysis to meet the performance target.

8. An analysis apparatus according to claim 7 , wherein the controller is configured to control the analysis to utilize a selection of the plurality of containers in sequence, the selection of the plurality of containers containing the same sample, until the performance target is met.

9. An analysis apparatus according to claim 1 , wherein the analysis apparatus is a cartridge for cooperation with another device.

10. An analysis apparatus according to claim 1 , further comprising a waste reservoir for disposal of waste products from the sensor device.

11. An analysis apparatus according to claim 10 , wherein the fluidics system comprises an output pump for pumping fluids out of the sensor device through an outlet channel connected to the waste reservoir for disposal of the fluids.

12. An analysis apparatus according to claim 1 , wherein the at least one reservoir holds a sufficient volume of material for performing the biochemical analysis multiple times by repeatedly refreshing the sensor device with material from the at least one reservoir.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2017
From: JONES, ANTHONY
To: OXFORD NANOPORE TECHNOLOGIES LIMITED
Reel/Frame 043073/0858 →
Priority Claims (2)
GB 1016606.4 · Oct 1, 2010 · national
GB 1109185.7 · May 31, 2011 · national
Continuity (2)
Continuation 13876911
Related Publication 20170327880A1 · Nov 16, 2017
Cited By (7)
US 12,350,637 US 12,392,766 US 12,411,125 US 12,458,945 US 12,540,937 US 12,552,661 US 12,667,839