IP Library Patent Application 18972552
Patent Application
App. No. 18/972,552

METHOD OF ANALYSIS

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Quick Facts
Patent No.
US None
App. No.
18/972,552
Filed
Dec 6, 2024
Art Unit
OPAP
USPC
435/6.12
Abstract

Method of analysis. In the method, a microfluidic device defining a flow path extending from an inlet to an outlet may be selected. A sample-containing fluid may be introduced into the flow path via the inlet. Volumes of the sample-containing fluid may be isolated from one another on the flow path. A two-dimensional monolayer of the volumes may be imaged. The two-dimensional monolayer may be formed along the flow path between the inlet and the outlet.

Claims (34)

1 - 18 . (canceled)

19 . A method of analysis, comprising:

partitioning a sample-containing fluid to form a plurality of isolated volumes;

holding the volumes in an array of wells such that the volumes in each well are packed closely together in a two-dimensional arrangement as a monolayer;

performing a reaction in the volumes while packed closely together in the monolayer; and

imaging the monolayer of volumes to collect data related to an analyte while the volumes remain closely packed together in the monolayer.

20 . The method of claim 19 , wherein the volumes are droplets.

21 . The method of claim 19 , wherein performing a reaction includes amplifying one or more nucleic acid targets in the volumes, and wherein collecting data includes collecting data related to amplification of the one or more targets in individual volumes.

22 . The method of claim 21 , further comprising processing the data to determine whether a target of the one or more targets is present or absent in individual volumes.

23 . The method of claim 19 , wherein each volume is less than about one microliter in size.

24 . The method of claim 19 , wherein an average separation between adjacent pairs of volumes in the monolayer is less than an average diameter of the volumes.

25 . A method of analysis, the method comprising:

isolating a plurality of volumes of a sample-containing fluid from one another;

holding the volumes in an array of wells;

performing a reaction in the volumes;

transporting the plurality of volumes to a plurality of imaging chambers, such that the volumes in each imaging chamber are packed closely together in a two-dimensional arrangement as a monolayer;

imaging the monolayers of volumes to collect data related to an analyte while the volumes remain closely packed together in the monolayer.

26 . The method of claim 25 , wherein the volumes of each two-dimensional monolayer are isolated from one another by an immiscible fluid.

27 . The method of claim 25 , wherein the volumes are droplets.

28 . The method of claim 25 , wherein transporting the plurality of volumes includes operating a plurality of inlet valves to control fluid flow.

29 . The method of claim 28 , wherein the plurality of inlet valves are connected to an autosampler and an injection valve.

30 . The method of claim 25 , further comprising amplifying a nucleic acid target in the volumes of each two-dimensional monolayer.

31 . The method of claim 30 , wherein amplifying includes thermally cycling the two-dimensional monolayer to promote a polymerase chain reaction in the volumes.

32 . The method of claim 25 , wherein imaging includes detecting fluorescence from each two-dimensional monolayer.

33 . The method of claim 32 , wherein the volumes of each two-dimensional monolayer contain an intercalating dye or a probe that includes an oligonucleotide labeled with a fluorophore, and wherein imaging includes detecting fluorescence from the intercalating dye or the fluorophore.

34 . The method of claim 25 , wherein only a subset of the plurality of volumes contain an analyte, and further comprising determining whether individual volumes of each two-dimensional monolayer contain the analyte based on imaging the two-dimensional monolayer.

35 . An analytical system, comprising:

a fluidics assembly controlling fluid flow to transport a plurality of isolated volumes of a sample-containing fluid;

a thermal cycler to subject the plurality of isolated volumes to thermal cycles;

a plurality of imaging chambers to receive the plurality of isolated volumes, each chamber being configured such that received volumes are packed closely together in a two-dimensional arrangement as a monolayer; and

an imaging device to capture images of the two-dimensional monolayers, including detecting fluorescence from the volumes.

36 . The analytical system of claim 35 , wherein each imaging chamber is a well of an array of wells in a plate, and each well has a transparent surface through which the imaging device captures images of the two-dimensional monolayers.

37 . The analytical system of claim 35 , further including a plate having an array of wells, wherein the fluidics assembly includes a microfluidic device defining a flow path from the array of wells to the plurality of imaging chambers.

38 . The analytical system of claim 37 , wherein the microfluidic device includes an autosampler connected to an injection valve.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2024
From: COLSTON, BILLY WAYNE, JR.; HINDSON, BENJAMIN JOSEPH; NESS, KEVIN DEAN; MASQUELIER, DONALD ARTHUR; MILANOVICH, FRED PAUL; MODLIN, DOUGLAS N.; RIOT, VINCENT; BURD, SAMUEL; MAKAREWICZ, ANTHONY JOSEPH, JR.; BELGRADER, PHILLIP; BRIGHT, ISAAC J.; LUCERO, MICHAEL Y.
To: QUANTALIFE, INC.
Reel/Frame 069616/0575 →
MERGER Recorded Dec 17, 2024
From: QUANTALIFE, INC.
To: BIO-RAD QL, INC.
Reel/Frame 069616/0605 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2024
From: BIO-RAD QL, INC.
To: BIO-RAD LABORATORIES, INC.
Reel/Frame 069616/0636 →