IP Library Granted Patent US 9,533,305
Granted Patent B2
US 9,533,305 · App. 14/835,070 · Granted Jan 3, 2017

Systems and methods for automated reusable parallel biological reactions

Inventors: Hesaam Esfandyarpour (Redwood City, CA); Mark Oldham (Emerald Hills, CA)
Assignee: GENAPSYS, INC.
B01L3/502761B03C1/288B03C5/005B03C5/026C12Q1/6848C12Q1/6853C12Q1/6869C12Q1/6874G01N1/40G01N27/4145G01N27/4146B01L7/52B01L2200/0668B01L2300/089B01L2300/0816B01L2400/043B01L2400/0415B01L2400/0418B01L2400/0421B01L2400/0427B01L2400/0655B03C2201/26C40B60/10G01N2001/4038
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Quick Facts
Patent No.
US 9,533,305
App. No.
14/835,070
Granted
Jan 3, 2017
Kind
B2
Abstract

A method comprises magnetically holding a bead carrying biological material (e.g., nucleic acid, which may be in the form of DNA fragments or amplified DNA) in a specific location of a substrate, and applying an electric field local to the bead to isolate the biological material or products or byproducts of reactions of the biological material. For example, the bead is isolated from other beads having associated biological material. The electric field in various embodiments concentrates reagents for an amplification or sequencing reaction, and/or concentrates and isolates detectable reaction by-products. For example, by isolating nucleic acids around individual beads, the electric field can allow for clonal amplification, as an alternative to emulsion PCR. In other embodiments, the electric field isolates a nanosensor proximate to the bead, to facilitate detection of at least one of local pH change, local conductivity change, local charge concentration change and local heat. The beads may be trapped in the form of an array of localized magnetic field regions.

Claims (46)

1. A system for detecting a biological material or a reaction associated with said biological material, comprising:

a support;

a sensor array comprising a sensor that includes a plurality of electrodes that provides an electrical current flow path for detecting signals indicative of a change of impedance only within a Debye length associated with said support, said support comprising said biological material coupled thereto, wherein said plurality of electrodes detects said signals (i) while said biological material is coupled to said support or (ii) during said reaction associated with said biological material, and wherein during use, said plurality of electrodes is exposed to a solution comprising said biological material coupled to said support; and

a detection module that detects said biological material or said reaction associated with said biological material based on said signals detected by said plurality of electrodes, which signals are indicative of said change of impedance within said Debye length associated with said support.

2. The system of claim 1 , wherein said detection module comprises said plurality of electrodes.

3. The system of claim 1 , further comprising read-out circuitry that receives said signals from said plurality of electrodes.

4. The system of claim 3 , wherein said detection module comprises said read-out circuitry.

5. The system of claim 1 , wherein during use, said plurality of electrodes is within said Debye length associated with said support.

6. The system of claim 1 , wherein said support is a particle, and wherein during use, said biological material is coupled to said particle.

7. The system of claim 6 , wherein said plurality of electrodes includes individual electrodes that are electrically separated in the absence of said particle in proximity to said plurality of electrodes.

8. The system of claim 6 , wherein during use, said particle is immobilized in proximity to said plurality of electrodes.

9. The system of claim 8 , wherein during use, said particle is immobilized in proximity to said plurality of electrodes via a magnetic force.

10. The system of claim 6 , wherein said sensor array comprises a well structure that aids in limiting motion of said particle while detecting said biological material or said reaction associated with said biological material.

11. The system of claim 1 , wherein said plurality of electrodes detects said signals while said biological material is coupled to said support and during said reaction associated with said biological material.

12. The system of claim 1 , wherein during use, said plurality of electrodes detects said change of impedance within said Debye length associated with said support.

13. The system of claim 1 , wherein said biological material comprises a nucleic acid molecule.

14. The system of claim 1 , wherein said biological material comprises a protein or antibody.

15. The system of claim 1 , wherein said reaction is a sequencing reaction.

16. The system of claim 1 , wherein said plurality of electrodes includes electrodes that are separated by a dielectric.

17. The system of claim 1 , wherein said sensor array comprises an electrode that at least partially encircles said support.

18. The system of claim 1 , wherein said plurality of electrodes provides said electrical current flow path for detecting signals indicative of said change of impedance without the use of a redox sensitive material.

19. A method for detecting a biological material or a reaction associated with said biological material, comprising:

(a) exposing a plurality of electrodes to a solution comprising said biological material coupled to a support, wherein said plurality of electrodes provides an electrical current flow path for detecting signals indicative of a change of impedance only within a Debye length associated with said support comprising said biological material coupled thereto, wherein said plurality of electrodes is part of a sensor in a sensor array;

(b) using said plurality of electrodes to detect said signals, wherein said plurality of electrodes detects said signals (i) while said biological material is coupled to said support or (ii) during said reaction associated with said biological material; and

(c) detecting said biological material or said reaction associated with said biological material based on said signals detected by said plurality of electrodes in (b), which signals are indicative of said change of impedance within said Debye length associated with said support.

20. The method of claim 19 , wherein said signals are directed from said plurality of electrodes to read-out circuitry.

21. The method of claim 19 , wherein said plurality of electrodes is within said Debye length associated with said support.

22. The method of claim 19 , wherein said support is a particle, and wherein said biological material is coupled to said particle.

23. The method of claim 22 , wherein said plurality of electrodes includes individual electrodes that are electrically separated in the absence of said particle in proximity to said plurality of electrodes.

24. The method of claim 22 , wherein said particle is immobilized in proximity to said plurality of electrodes.

25. The method of claim 24 , wherein during use, said particle is immobilized in proximity to said plurality of electrodes via a magnetic force.

26. The method of claim 22 , wherein said sensor array comprises a well structure that aids in limiting motion of said particle while detecting said biological material or said reaction associated with said biological material.

27. The method of claim 19 , wherein said plurality of electrodes detects said signals while said biological material is coupled to said support and during said reaction associated with said biological material.

28. The method of claim 19 , wherein said plurality of electrodes detects said change of impedance within said Debye length associated with said support.

29. The method of claim 19 , wherein said biological material comprises a nucleic acid molecule.

30. The method of claim 19 , wherein said biological material comprises a protein or antibody.

31. The method of claim 19 , wherein said reaction is a sequencing reaction.

32. The method of claim 19 , wherein said plurality of electrodes provides said electrical current flow path for detecting signals indicative of said change of impedance without the use of a redox sensitive material.

33. A system for detecting a biological material or a reaction associated with said biological material, comprising:

a particle;

a sensor array comprising a sensor that includes a plurality of electrodes that provides an electrical current flow path for detecting signals indicative of a change of impedance within a Debye length associated with said particle, said particle comprising said biological material coupled thereto, wherein said plurality of electrodes detects said signals (i) while said biological material is coupled to said particle or (ii) during said reaction associated with said biological material, and wherein during use, said plurality of electrodes is exposed to a solution comprising said biological material coupled to said particle; and

a detection module that detects said biological material or said reaction associated with said biological material based on said signals detected by said plurality of electrodes, which signals are indicative of said change of impedance within said Debye length associated with said particle.

34. A method for detecting a biological material or a reaction associated with said biological material, comprising:

(a) exposing a plurality of electrodes to a solution comprising said biological material coupled to a particle, wherein said plurality of electrodes provides an electrical current flow path for detecting signals indicative of a change of impedance within a Debye length associated with said particle comprising said biological material coupled thereto, wherein said plurality of electrodes is part of a sensor in a sensor array;

(b) using said plurality of electrodes to detect said signals, wherein said plurality of electrodes detects said signals (i) while said biological material is coupled to said particle or (ii) during said reaction associated with said biological material; and

(c) detecting said biological material or said reaction associated with said biological material based on said signals detected by said plurality of electrodes in (b), which signals are indicative of said change of impedance within said Debye length associated with said particle.

Assignments (7)
SECURITY INTEREST Recorded Jun 30, 2023
From: SEQUENCING HEALTH, INC.
To: OXFORD FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 064180/0928 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2022
From: GENAPSYS, INC.
To: SEQUENCING HEALTH, INC.
Reel/Frame 062128/0440 →
RELEASE OF SECURITY INTEREST Recorded Jan 26, 2021
From: OXFORD FINANCE LLC, AS COLLATERAL AGENT
To: GENAPSYS, INC.
Reel/Frame 055107/0633 →
SECURITY INTEREST Recorded Jun 25, 2020
From: GENAPSYS, INC.
To: OXFORD FINANCE LLC
Reel/Frame 053053/0088 →
RELEASE OF SECURITY INTEREST Recorded Jul 17, 2019
From: OXFORD FINANCE LLC
To: GENAPSYS, INC.
Reel/Frame 049782/0910 →
SECURITY INTEREST Recorded Feb 6, 2019
From: GENAPSYS, INC.
To: OXFORD FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 048257/0131 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 25, 2015
From: ESFANDYARPOUR, HESAAM; OLDHAM, MARK F.
To: GENAPSYS, INC.
Reel/Frame 036418/0283 →
Continuity (9)
Continuation 14596111 · Jan 13, 2015
Continuation 13632513 · Oct 1, 2012
Continuation 13397581 · Feb 15, 2012
Continuation In Part PCTUS2011054769 · Oct 4, 2011
Provisional Application 61389484 · Oct 4, 2010
Provisional Application 61389490 · Oct 4, 2010
Provisional Application 61443167 · Feb 15, 2011
Provisional Application 61491081 · May 27, 2011
Related Publication 20150368707A1 · Dec 24, 2015