IP Library › Granted Patent US 11,779,897
Granted Patent B2
US 11,779,897 · App. 17/515,511 · Granted Oct 10, 2023

Flow cells using sequencing-ready nucleic acid fragments attached to carrier beads immobilized at capture sites of a plurality of chambers

Inventors: Lewis J. Kraft (San Diego, CA); Tarun Kumar Khurana (Fremont, CA); Yir-Shyuan Wu (Albany, CA); Xi-Jun Chen (San Carlos, CA); Arnaud Rival (Saint Nazaire les Eymes, FR); Justin Fullerton (San Diego, CA); M. Shane Bowen (Encinitas, CA); Hui Han (San Diego, CA); Jeffrey S. Fisher (San Diego, CA); Yasaman Farshchi (San Francisco, CA); Mathieu Lessard-Viger (San Diego, CA)
Assignee: Illumina, Inc.
B01J19/0046B01L3/5027B01L3/502707C12N15/1065C40B40/08C40B50/18B01J2219/00286B01J2219/00608B01L2300/0819B01L2300/0877C08L37/00G01N2021/058
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Quick Facts
Patent No.
US 11,779,897
App. No.
17/515,511
Granted
Oct 10, 2023
Kind
B2
Abstract

An example of a flow cell includes a substrate, a plurality of chambers defined on or in the substrate, and a plurality of depressions defined in the substrate and within a perimeter of each of the plurality of chambers. The depressions are separated by interstitial regions. Primers are attached within each of the plurality of depressions, and a capture site is located within each of the plurality of chambers.

Claims (20)

1. A method, comprising:

introducing a plurality of complexes to a flow cell including:

a plurality of chambers, each having a depth that is about 5 μm or less;

a capture site within each of the plurality of chambers; and

primers attached within each of the plurality of chambers;

wherein each of the plurality of complexes includes:

a carrier bead; and

sequencing-ready nucleic acid fragments from the same template nucleic acid attached to the carrier bead;

whereby at least some of the complexes become immobilized at respective capture sites;

washing away non-immobilized complexes from the flow cell;

introducing an external immobilizing agent to the plurality of chambers; and

causing the carrier bead of the trapped complexes to release the sequencing-ready nucleic acid fragments into the respective chamber in which each complex is trapped, whereby transport and seeding of the sequencing-ready nucleic acid fragments are restricted by the external immobilizing agent.

2. The method as defined in claim 1 , wherein the external immobilizing agent is a gaseous diffusion barrier; a liquid diffusion barrier selected from the group consisting of mineral oil and silicone oil; a viscous medium diffusion barrier selected from the group consisting of glycerol and sucrose; or combinations thereof.

3. The method as defined in claim 1 , wherein the capture site is a capture site primer, and wherein each of the complexes includes a complementary primer that can hybridize to the capture site primer.

4. The method as defined in claim 1 , wherein the capture site includes a first member of a binding pair and wherein each of the complexes includes a second member of the binding pair.

5. The method as defined in claim 1 , wherein each chamber has a bottom surface, and wherein one of:

the primers are attached to a polymer layer across the bottom surface; or

the primers are respectively attached to a plurality of spatially segregated polymer islands positioned on the bottom surface.

6. The method as defined in claim 1 , wherein each chamber has a bottom surface and a plurality of depressions defined therein, and wherein the primers are respectively attached to a polymer layer within each of the depressions.

7. The method as defined in claim 1 , wherein the causing involves introducing a cleavage agent to the flow cell.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 27, 2022
From: KRAFT, LEWIS J.; KHURANA, TARUN KUMAR; WU, YIR-SHYUAN; CHEN, XI-JUN; RIVAL, ARNAUD; FULLERTON, JUSTIN; BOWEN, M. SHANE; HAN, HUI; FISHER, JEFFREY S.; FARSHCHI, YASAMAN; LESSARD-VIGER, MATHIEU
To: ILLUMINA, INC.
Reel/Frame 058800/0033 →
Continuity (3)
Division 16750831 · Jan 23, 2020
Provisional Application 62798348 · Jan 29, 2019
Related Publication 20220048004A1 · Feb 17, 2022