IP Library Granted Patent US 10,207,269
Granted Patent B2
US 10,207,269 · App. 15/022,879 · Granted Feb 19, 2019

System and method for movement and timing control

Inventors: Rustem F. Ismagilov (Altadena, CA); Feng Shen (Pasadena, CA); Liang Li (Pasadena, CA); David Selck (Alhambra, CA); Joe Baker (Fallbrook, CA); Espir Kahatt (Carlsbad, CA); Chris Da Costa (Vista, CA)
Assignee: California Institute of Technology
B01L3/527B01L3/50273B01L3/502715B01L3/502738B01L3/523G01N1/4077B01L3/502753B01L7/52B01L2200/027B01L2200/0605B01L2200/0642B01L2200/0684B01L2200/0689B01L2200/16B01L2300/041B01L2300/042B01L2300/044B01L2300/045B01L2300/046B01L2300/047B01L2300/069B01L2300/0672B01L2300/0861B01L2300/0867B01L2300/0874B01L2300/123B01L2300/161B01L2300/1855B01L2300/1877B01L2400/043B01L2400/0409B01L2400/0457B01L2400/0478B01L2400/0481B01L2400/0487B01L2400/0493B01L2400/0644B01L2400/0677B01L2400/0683
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Quick Facts
Patent No.
US 10,207,269
App. No.
15/022,879
Granted
Feb 19, 2019
Kind
B2
Abstract

The present invention relates to fluidic systems for controlling one or more fluids and/or one or more reagents. These systems can be used in combination with one or more devices for assaying, processing, and/or storing samples. In particular, the systems and related methods can allow for dispensing fluid in a controlled manner and/or introducing pause(s) when implementing assays or processes.

Claims (22)

1. A reagent dispensing device comprising:

(a) a first substrate having a first surface, wherein the first substrate comprises one or more first chambers situated within the first substrate;

(b) a first resistant unit disposed adjacent to the first surface of the first substrate and fluidically connected to at least one of the one or more first chambers, wherein the first resistant unit comprises a first reagent; and

(c) a first pushing unit configured to move along a circular path within a plane parallel or about parallel to the first surface of the first substrate, wherein a movement of the first pushing unit along the circular path within the plane parallel or about parallel to the first surface of the first substrate causes the first reagent to enter at least one of the one or more first chambers, and wherein the first pushing unit is configured to slidably engage along the first surface or slidably engage with the first resistant unit disposed above the first substrate along the first surface.

2. The reagent dispensing device of claim 1 ,

wherein the first pushing unit comprises at least one protrusion, wherein the movement of the first pushing unit in a direction parallel or about parallel to the first surface of the first substrate causes at least one protrusion to contact the first resistant unit, thereby releasing the first reagent in the first resistant unit into at least one of the one or more first chambers.

3. The reagent dispensing device of claim 1 , wherein the movement of the first pushing unit is not powered electrically.

4. The reagent dispensing device of claim 1 , wherein the device further comprises a second resistant unit disposed adjacent to the first surface of the first substrate and fluidically connected to at least one of the one or more first chambers, wherein the second resistant unit comprises a second reagent, wherein the first and second resistant units are radially aligned along the circular path, wherein the movement of the first pushing unit along the circular path causes the second reagent to enter at least one of the one or more first chambers, wherein the volume, shape, or length of the first resistant unit relative to the second resistant unit is configured to affect relative timing of release of the first reagent relative to the second reagent into at least one of the one or more first chambers.

5. The reagent dispensing device of claim 1 , wherein the device further comprises a second resistant unit disposed adjacent to the first surface of the first substrate and fluidically connected to at least one of the one or more first chambers, wherein the second resistant unit comprises a second reagent, wherein the first and second resistant units are radially aligned along the circular path, wherein the movement of the first pushing unit along the circular path causes the second reagent to enter at least one of the one or more first chambers, and wherein the distance between the first resistant unit and the second resistant unit is configured to affect relative timing of release of the first reagent relative to the second reagent into the one or more first chambers.

6. The reagent dispensing device of claim 1 , wherein the device further comprises a second resistant unit disposed adjacent to the first surface of the first substrate and fluidically connected to at least one of the one or more first chambers, wherein the second resistant unit comprises a second reagent, wherein the first and second resistant units are radially aligned along the circular path, wherein the movement of the first pushing unit along the circular path causes the second reagent to enter at least one of the one or more first chambers, wherein viscosity of the first reagent is configured to affect relative timing of release of the first reagent relative to the second reagent into at least one of the one or more first chambers.

7. The reagent dispensing device of claim 1 , wherein the first reagent comprises a lysis buffer, a wash buffer, or an elution buffer.

8. The reagent dispensing device of claim 1 , wherein at least one of the one or more first chambers comprises a fluid and the first resistant unit comprises an immiscible fluid relative to the fluid in the first chamber.

9. The reagent dispensing device of claim 1 , wherein the first pushing unit and the first resistant unit are configured to provide feedback for the movement of the first pushing unit along the circular path that results in decelerating, accelerating, or stopping of the movement.

10. The reagent dispensing device of claim 1 , wherein the first resistant unit comprises a deformable substrate or a blister.

11. The reagent dispensing device of claim 1 , wherein the first resistant unit comprises a first wall bordering an aperture within the first surface, wherein the aperture is in fluid communication with one or more of the one or more first chambers.

12. The reagent dispensing device of claim 11 , wherein the movement of the first pushing unit along the circular path causes the first wall to rupture, thereby causing the first reagent in the first resistant unit to enter at least one of the one or more first chambers.

13. The reagent dispensing device of claim 1 , wherein the device is a microfluidic device.

14. The reagent dispensing device of claim 1 , wherein the device further comprises one or more air vents fluidically connected to the one or more first chambers.

15. The reagent dispensing device of claim 1 , further comprising a sample inlet port or sample input well.

16. The reagent dispensing device of claim 1 , further comprising a controller to control the movement of the first pushing unit.

17. The reagent dispensing device of claim 1 , wherein the first reagent comprises a liquid, a powder, or a gel.

18. The reagent dispensing device of claim 1 , wherein the first reagent comprises microbeads, probes, primers, nucleic acids, DNA, RNA, polypeptides, antibodies, or any combination thereof.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2016
From: ISMAGILOV, RUSTEM F.; SELCK, DAVID A.
To: CALIFORNIA INSTITUTE OF TECHNOLOGY
Reel/Frame 039354/0564 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2016
From: LI, LIANG; SHEN, FENG; BAKER, JOE; DA COSTA, CHRIS; KAHATT, ESPIR
To: SLIPCHIP CORPORATION
Reel/Frame 039354/0595 →
Continuity (5)
Provisional Application 62035857 · Aug 11, 2014
Provisional Application 61936275 · Feb 5, 2014
Provisional Application 61917300 · Dec 17, 2013
Provisional Application 61879487 · Sep 18, 2013
Related Publication 20160263577A1 · Sep 15, 2016
Cited By (2)
US 12,246,318 US 12,697,276