IP Library › Granted Patent US 10,960,394
Granted Patent B2
US 10,960,394 · App. 16/888,047 · Granted Mar 30, 2021

Microfluidic determination of low abundance events

Inventors: George Guikai Wu (Cerritos, CA); Hamed Shadpour (Mission Viejo, CA); Per Niklas Hedde (Irvine, CA)
Assignee: Amberstone Biosciences, Inc.
B01L3/502715B01L3/0241B01L3/0268B01L3/5085B01L3/50273B01L3/502761B01L3/502784G01N15/147G01N15/1434G01N15/1459G01N15/1484B01L2200/0647B01L2200/0673B01L2300/06B01L2300/0654B01L2400/02G01N2015/1006G01N2015/149G01N2015/1452
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Quick Facts
Patent No.
US 10,960,394
App. No.
16/888,047
Filed
May 29, 2020
Granted
Mar 30, 2021
Kind
B2
Examiner
TURK, NEIL N
Art Unit
1798
USPC
436/164
Abstract

Provided are microfluidic systems and methods for detecting, sorting, and dispensing of low abundance events such as single cells and particles, including a variety of eukaryotic and bacterial cells, for a variety of bioassay applications. The systems and methods described herein, when implemented in whole or in part, will make relevant microfluidic based tools available for a variety of applications in biotechnology including antibody discovery, immuno-therapeutic discovery, high-throughput single cell analysis, target-specific compound screening, and synthetic biology screening.

Claims (19)

1. A system for detecting, sorting, and dispensing droplets for use in bioassays, the system comprising:

a microfluidic device comprising a first channel connected to a second channel and a waste channel by a first sorting junction;

a plurality of water-in-oil droplets, wherein at least two of the plurality of droplets each comprise at least one cell or at least one particle, wherein the plurality of water-in-oil droplets comprise a plurality of target droplets;

a first detector corresponding to a first point of detection disposed along the first channel upstream of the sorting junction, wherein the first detector comprises an optical detector configured to detect a first signal from each of the plurality of target droplets at the first point of detection;

a second detector or a sensor corresponding to a second point of detection disposed along the second channel downstream of the sorting junction, wherein the second detector or the sensor is configured to detect a second signal from each of the plurality of target droplets at the second point of detection;

a target droplet dispensing module comprising a dispensing nozzle disposed downstream of the second point of detection and configured to dispense each of the plurality of target droplets; and

a processor configured to receive the first signal of each of the plurality of target droplets from the first detector, receive the second signal of each of the plurality of target droplets from the second detector or the sensor, and index each of the plurality of target droplets dispensed by the dispensing nozzle with the first signal of a same target droplet or the second signal of the same target droplet such that each of the plurality of target droplets matches precisely the first signal or second signal of the same target droplet.

2. The system of claim 1 , further comprising an optical element configured to provide dual focusing along the first channel at the first point of detection.

3. The system of claim 2 , wherein the optical element comprises an optical fiber splitter or a birefringent polarizer configured to split an energy beam generated by one or more lasers or laser-like sources into a first beam and a second beam and direct the first and second beams to the first point of detection.

4. The system of claim 1 , wherein the second detector comprises an optical detector or a non-optical detector.

5. The system of claim 1 , wherein the second detector or the sensor comprises a photo multiplier tube (PMT), a camera, a camera-like detector, or an avalanche photodiode detector (APD).

6. The system of claim 1 , wherein the second detector or the sensor is configured to detect two or more optical signals for each of the plurality of target droplets, wherein the two or more optical signals detected by the second detector or the sensor comprise the second signal from the second point of detection.

7. The system of claim 6 , further comprising an optical assembly configured to provide a short illumination for generating one of the two or more optical signals at the second point of detection, wherein a duration of the short illumination is within a range of about 0.5 to about 50 milliseconds.

8. The system of claim 7 , wherein the optical assembly comprises a modulated or pulsed laser source, and wherein the short illumination comprises stroboscopic illumination provided by the modulated or pulsed laser source.

9. The system of claim 8 , wherein the first detector is configured to provide a precise timing trigger to the optical assembly to trigger the stroboscopic illumination.

10. The system of claim 1 , wherein the processor is configured to control the target droplet dispensing module such that the target droplet dispensing module dispenses the target droplets into one or more collection tubes or plates in a controlled manner.

11. The system of claim 1 , wherein the processor is configured to synchronize the dispensing nozzle with one or more of the first detector, the second detector, or the sensor based on one or more of the first signal or the second signal.

12. The system of claim 1 , further comprising a laser modulator comprising an optical element configured for remote focusing such that multiple focal planes at different axial positions along the first channel or the second channel are detectable in rapid sequence or in parallel.

13. The system of claim 1 , further comprising an optical element configured to generate a uniform, non-diffracting beam across the first or second channel at the first or second point of detection, respectively.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2020
From: WU, GEORGE GUIKAI; SHADPOUR, HAMED; HEDDE, PER NIKLAS
To: AMBERSTONE BIOSCIENCES, INC.
Reel/Frame 054403/0469 →
Continuity (2)
Provisional Application 62855734 · May 31, 2019
Related Publication 20200376488A1 · Dec 3, 2020
Cited By (2)
US 12,546,774 US 12,590,952