IP Library Granted Patent US 11,987,789
Granted Patent B2
US 11,987,789 · App. 17/230,582 · Granted May 21, 2024

Systems, devices, and methods for isotachophoresis

Inventors: Lewis A. Marshall (Oakland, CA); Amy L. Hiddessen (Pleasanton, CA); Nathan P. Hoverter (Pleasanton, CA); Klint A. Rose (Oakland, CA); Juan G. Santiago (Stanford, CA); Matthew S. Munson (Evanston, IL); Janine Mok (Palo Alto, CA); Sean Arin (Oakland, CA); Yatian Qu (Sunnyvale, CA); Andrew Lee (Hayward, CA); Michael Christopher De Renzi (Pleasanton, CA)
Assignee: Purigen Biosystems, Inc.
C12N15/101B01L3/502738B01L3/502746B01L3/502761B01L3/502776B01L3/5085G01N27/44717B01L9/527B01L2200/0621B01L2200/0642B01L2400/0421B01L2400/0688G01N27/44704G01N27/44743G01N27/44791
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Quick Facts
Patent No.
US 11,987,789
App. No.
17/230,582
Granted
May 21, 2024
Kind
B2
Abstract

The present disclosure relates to fluidic systems and devices for processing, extracting, or purifying one or more analytes. These systems and devices can be used for processing samples and extracting nucleic acids, for example by isotachophoresis. In particular, the systems and related methods can allow for extraction of nucleic acids, including non-crosslinked nucleic acids, from samples such as tissue or cells. The systems and devices can also be used for multiplex parallel sample processing.

Claims (36)

1. A fluidic device comprising a fluidic channel and disposed in said fluidic channel a three-dimensional capillary barrier that restricts flow of a liquid in said fluidic channel, wherein said three-dimensional capillary barrier comprises:

a ramp protruding from a surface of said fluidic channel at a first angle;

a plateau surface that is substantially parallel to a wall of said fluidic channel; and

an arcuate cliff surface extending from said plateau surface to said surface of said fluidic channel and wherein said cliff surface intersects with said surface of said fluidic channel at a second angle that is 10 degrees or more steeper than said first angle.

2. A fluidic device comprising a fluidic channel and disposed in said fluidic channel a three-dimensional capillary barrier that restricts flow of a liquid in said fluidic channel, wherein said three-dimensional capillary barrier comprises:

(a) a first ramp protruding from a surface of said fluidic channel at a first angle that is less than 80 degrees;

(b) a plateau surface that is substantially parallel to a wall of said fluidic channel; and

(c) a second ramp extending from said plateau surface to said surface of said fluidic channel and wherein said second ramp intersects with said surface of said fluidic channel at a second angle that is less than 80 degrees.

3. The fluidic device of claim 1 , wherein said first angle is no more than 60 degrees.

4. The fluidic device of claim 1 , wherein said first angle is no more than 45 degrees.

5. The fluidic device of claim 1 , wherein said first angle is no more than 30 degrees.

6. The fluidic device of claim 1 , wherein said second angle is about 80 degrees to about 100 degrees.

7. The fluidic device of claim 1 , wherein said second angle is about 90 degrees.

8. The fluidic device of claim 1 , wherein at least one of said ramp, said cliff surface, and said plateau surface has a surface that comprises one or more grooves, ridges, indentations, steps, etchings, or protrusions.

9. The fluidic device of claim 1 , wherein said fluidic channel further comprises a second three-dimensional capillary barrier that is spaced apart from said three-dimensional capillary barrier.

10. The fluidic device of claim 9 , wherein said fluidic channel further comprises a first loading reservoir in fluid communication with said fluidic channel via an aperture in said fluidic channel, wherein said aperture is positioned between said three-dimensional capillary barrier and said second three-dimensional capillary barrier to permit said liquid entering said fluidic channel via said aperture to flow in one direction along said fluidic channel and arrest at said three-dimensional capillary barrier and to flow in another direction along said fluidic channel and arrest at said second three-dimensional capillary barrier.

11. The fluidic device of claim 10 , wherein said liquid entering said fluidic channel via said aperture flows along a path to said three-dimensional capillary barrier or said second three-dimensional capillary barrier that is longer than a width of said fluidic channel.

12. The fluidic device of claim 10 , wherein said liquid entering said fluidic channel via said aperture flows such that a meniscus of said liquid arrests at said three-dimensional capillary barrier or at said second three-dimensional capillary barrier, or at both.

13. The fluidic device of claim 9 , wherein said fluidic device further comprises one or more branched fluidic circuits, wherein each of said one or more branched fluidic circuits comprises an isotachophoresis (“ITP”) branch and an elution branch in communication with said ITP branch.

14. The fluidic device of claim 13 , wherein said three-dimensional capillary barrier is configured and arranged to be breached by said liquid when a first burst pressure is applied to said one or more branched fluidic circuits and said second three-dimensional capillary barrier is configured and arranged to be breached by said liquid when a second burst pressure is applied to said one or more branched fluidic circuits.

15. The fluidic device of claim 14 , wherein said first and said second burst pressures are about equal.

16. The fluidic device of claim 14 , wherein said first burst pressure is greater than said second burst pressure.

17. The fluidic device of claim 9 , wherein said second three-dimensional capillary barrier is a cliff capillary barrier, wherein said cliff capillary barrier comprises:

a second ramp protruding from said surface of said fluidic channel at a third angle;

a second plateau surface that is substantially parallel to said wall of said fluidic channel; and

a second arcuate cliff surface extending from said second plateau surface to said surface of said fluidic channel and wherein said second arcuate cliff surface intersects with said surface of said fluidic channel at a fourth angle that is 10 degrees or more steeper than said third angle.

18. The fluidic device of claim 9 , wherein said second three-dimensional capillary barrier is a plateau capillary barrier, wherein said plateau capillary barrier comprises a first angled surface and a second angled surface, wherein the first and second angled surfaces are oblique to each other.

19. The fluidic device of claim 18 , wherein said plateau capillary barrier is configured and arranged so that an air gap forms between said liquid after said liquid arrests at said plateau capillary barrier and a second liquid after said second liquid flows toward said plateau capillary barrier in another direction and arrests at said plateau capillary barrier opposite to said liquid.

20. The fluidic device of claim 1 , further comprising a gas channel in fluid communication with said fluidic channel, and a pneumatic port in fluid communication with said gas channel, wherein the gas channel and pneumatic port are in fluid communication with the three-dimensional capillary barrier.

21. The fluidic device of claim 20 , wherein the three-dimensional capillary barrier is disposed adjacent the gas channel.

22. The fluidic device of claim 1 , wherein the three-dimensional capillary barrier spans the width of the fluidic channel.

23. The fluidic device of claim 1 , further comprising a plurality of fluidic channels comprising capillary barriers.

24. The fluidic device of claim 1 , wherein the fluidic channel has a width within a range of about 1 mm to about 3.8 mm, and a height within a range of about 0.1 mm to about 1.2 mm.

25. The fluidic device of claim 1 , wherein the ramp of the three-dimensional capillary barrier is configured to gradually reduce the height of the fluidic channel from a first height within a range of about 50 μm to about 2 mm to a second height within a range of about 10 μm to about 30 μm.

26. The fluidic device of claim 1 , wherein said second angle is 15 degrees or more steeper than said first angle.

27. The fluidic device of claim 1 , wherein said second angle is 20 degrees or more steeper than said first angle.

Assignments (4)
SECURITY INTEREST Recorded May 24, 2024
From: BIONANO GENOMICS, INC.; BIODISCOVERY, LLC; LINEAGEN, INC.; PURIGEN BIOSYSTEMS, INC.
To: JGB COLLATERAL, LLC
Reel/Frame 067529/0286 →
RELEASE OF SECURITY INTEREST Recorded May 24, 2024
From: HIGH TRAIL SPECIAL SITUATIONS LLC, AS COLLATERAL AGENT
To: PURIGEN BIOSYSTEMS, INC.
Reel/Frame 067529/0425 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Oct 16, 2023
From: PURIGEN BIOSYSTEMS, INC.
To: HIGH TRAIL SPECIAL SITUATIONS LLC
Reel/Frame 065242/0195 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2022
From: MARSHALL, LEWIS A.; HIDDESSEN, AMY L.; HOVERTER, NATHAN P.; ROSE, KLINT A.; SANTIAGO, JUAN G.; MUNSON, MATTHEW S.; MOK, JANINE; ARIN, SEAN; QU, YATIAN; LEE, ANDREW; DE RENZI, MICHAEL CHRISTOPHER
To: PURIGEN BIOSYSTEMS, INC.
Reel/Frame 059657/0899 →
Continuity (5)
Division 16052565 · Aug 1, 2018
Provisional Application 62541086 · Aug 3, 2017
Provisional Application 62541089 · Aug 3, 2017
Provisional Application 62540515 · Aug 2, 2017
Related Publication 20210230576A1 · Jul 29, 2021