IP Library Granted Patent US 9,492,797
Granted Patent B2
US 9,492,797 · App. 14/159,410 · Granted Nov 15, 2016

System for detection of spaced droplets

Inventors: Anthony J. Makarewicz (Livermore, CA); Amy L. Hiddessen (Dublin, CA)
Assignee: Bio-Rad Laboratories, Inc.
B01F3/0807B01F13/0062B01L3/0241B01L3/502784B01L7/525G01N15/1404G01N15/1434G01N15/1459G01N15/1463G01N15/1484B01L2200/0689B01L2300/088B01L2300/0816B01L2300/0819B01L2300/0864B01L2300/1822B01L2400/0478B01L2400/0487B01L2400/0622G01N15/1436G01N2015/1006G01N2015/1415
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Quick Facts
Patent No.
US 9,492,797
App. No.
14/159,410
Filed
Jan 20, 2014
Granted
Nov 15, 2016
Kind
B2
Art Unit
1799
USPC
435/287.2
Abstract

Method of detection for droplet-based assays. In an exemplary method, an open end of a channel network may be placed into an emulsion. Droplets of the emulsion may be driven along a flow path from the open end, through a confluence region where a dilution fluid is introduced into the flow path from at least one dilution inlet channel to increase an average distance between droplets, and through an examination region disposed downstream of the confluence region. Light may be detected from the examination region as droplets pass through. The channel network may include a droplet inlet channel that meets the at least one dilution inlet channel at the confluence region. The droplet inlet channel may form a tapered region that is sized such that droplets leave the tapered region in single file.

Claims (32)

1. A method of detection for droplet-based assays, the method comprising:

placing an open end of a channel network into an emulsion;

driving droplets of the emulsion along a flow path from the open end, through a confluence region where a dilution fluid is introduced into the flow path from at least one dilution inlet channel to increase an average distance between droplets, and through an examination region disposed downstream of the confluence region; and

detecting light from the examination region as droplets pass through;

wherein the channel network includes a droplet inlet channel that meets the at least one dilution inlet channel at the confluence region, and wherein the droplet inlet channel forms a tapered region that is sized such that droplets leave the tapered region in single file.

2. The method of claim 1 , wherein the emulsion is held by a container, and wherein the step of placing an open end of a channel network is performed by moving the open end, the container, or both the open end and the container.

3. The method of claim 1 , wherein the step of driving droplets includes a step of aspirating droplets of the emulsion into the channel network via the open end.

4. The method of claim 1 , wherein the step of driving droplets includes a step of operating one or more syringe pumps.

5. The method of claim 1 , wherein the step of detecting light is performed as droplets that are in single file pass serially through the examination region.

6. The method of claim 1 , wherein the flow path has a minimum diameter between the tapered region and the confluence region.

7. The method of claim 6 , further comprising a droplet outlet channel that extends from the confluence region, and wherein the droplet outlet channel has about a same diameter as the minimum diameter of the flow path.

8. The method of claim 6 , wherein the minimum diameter is less than or approximately equal to the average diameter of the droplets.

9. The method of claim 8 , wherein the minimum diameter is between about 90% and 100% of the average diameter of the droplets.

10. The method of claim 6 , wherein the flow path is defined as least in part by at least two pieces of tubing and a discrete connector that provides fluid communication between at least a pair of ends of the at least two pieces of tubing, and wherein the minimum diameter is defined by the connector.

11. The method of claim 1 , wherein the confluence region is formed at a junction where the droplet inlet channel, a droplet outlet channel, and the at least one dilution inlet channel meet one another.

12. The method of claim 1 , wherein a portion of the flow path extends upward from the open end.

13. The method of claim 1 , wherein the flow path has a smaller diameter in a region of the droplet inlet channel than in the examination region.

14. The method of claim 1 , wherein the at least one dilution inlet channel includes a pair of dilution inlet channels.

15. A method of detection for droplet-based assays, the method comprising:

placing an open end of a conduit into an emulsion;

driving droplets of the emulsion along a flow path from the open end to an examination region; and

detecting light from the examination region as droplets pass through;

wherein the flow path is defined in part by a droplet inlet channel that forms a tapered region, and wherein the tapered region is sized such that droplets leave the tapered region in single file.

16. The method of claim 15 , wherein the flow path has a smaller diameter in a region of the droplet inlet channel than in the examination region.

17. The method of claim 15 , wherein a region of the droplet inlet channel downstream from the tapered region has a minimum diameter that is approximately equal to an average diameter of the droplets.

18. The method of claim 15 , further comprising a step of introducing a dilution fluid into the flow path downstream of the tapered region to increase an average distance between droplets.

19. The method of claim 15 , wherein the emulsion is held by a container, and wherein the step of placing an open end is performed by moving the open end, the container, or both the open end and the container.

20. A method of detection for droplet-based assays, the method comprising:

placing an open end of a conduit into an emulsion;

driving droplets of the emulsion into the conduit and along a flow path extending continuously from the open end to an examination region;

introducing a dilution fluid into the flow path at a position upstream of the examination region to increase an average distance between droplets; and

detecting light from the examination region as droplets pass through.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2016
From: MAKAREWICZ, ANTHONY J., JR.; HIDDESSEN, AMY L.
To: BIO-RAD LABORATORIES, INC.
Reel/Frame 037973/0559 →
Continuity (68)
Continuation In Part 12586626 · Sep 23, 2009
Continuation In Part 12862542 · Aug 24, 2010
Continuation In Part 12890550 · Sep 24, 2010
Continuation In Part 13245575 · Sep 26, 2011
Continuation In Part 13945661 · Jul 18, 2013
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Continuation In Part 13039233 · Mar 2, 2011
Continuation In Part 12976827 · Dec 22, 2010
Continuation In Part 13341669 · Dec 30, 2011
Continuation In Part 13341678 · Dec 30, 2011
Continuation In Part 13072673 · Mar 25, 2011
Continuation In Part 13341688 · Dec 30, 2011
Continuation In Part 13287120 · Nov 1, 2011
Continuation In Part 13424304 · Mar 19, 2012
Continuation In Part 13548062 · Jul 12, 2012
Continuation In Part PCTUS2012048198 · Jul 25, 2012
Continuation In Part 13562198 · Jul 30, 2012
Continuation In Part 13287095 · Nov 1, 2011
Continuation In Part 13863231 · Apr 15, 2013
Continuation In Part 12586626
Continuation 12586626
Continuation In Part 13251016 · Sep 30, 2011
Continuation In Part 13245575
Continuation In Part 12976827
Continuation 12586626
Continuation 12586626
Continuation 12586626
Continuation 12586626
Continuation PCTUS2011030101 · Mar 25, 2011
Continuation PCTUS2011030077 · Mar 25, 2011
Continuation In Part 12586626
Continuation PCTUS2011030097 · Mar 25, 2011
Continuation In Part 12976827
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Provisional Application 61271538 · Jul 21, 2009
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Provisional Application 61513474 · Jul 29, 2011
Provisional Application 61601514 · Feb 21, 2012
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