IP Library Granted Patent US 10,633,701
Granted Patent B2
US 10,633,701 · App. 15/670,885 · Granted Apr 28, 2020

Systems and methods for nucleic acid sequencing

Inventors: David A. Weitz (Bolton, MA); Jeremy Agresti (Richmond, CA); Michael P. Weiner (Guilford, CT); Adam R. Abate (Daly City, CA); Tony Hung (Peachtree City, GA)
Assignee: President and Fellows of Harvard College
C12Q1/6874
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Quick Facts
Patent No.
US 10,633,701
App. No.
15/670,885
Granted
Apr 28, 2020
Kind
B2
Abstract

The present invention relates to systems and methods for sequencing nucleic acids, including sequencing nucleic acids in fluidic droplets. In one set of embodiments, the method employs sequencing by hybridization using droplets such as microfluidic droplets. In some embodiments, droplets are formed which include a target nucleic acid, a nucleic acid probe, and at least one identification element, such as a fluorescent particle. The nucleic acid probes that hybridize to the target nucleic acid are determined, in some instances, by determining the at least one identification element. The nucleic acid probes that hybridize to the target nucleic acid may be used to determine the sequence of the target nucleic acid. In certain instances, the microfluidic droplets are provided with reagents that modify the nucleic acid probe. In some cases, a droplet, such as those described above, is deformed such that the components of the droplets individually pass a target area.

Claims (22)

1. A method, comprising:

providing a first microfluidic droplet containing a nucleic acid probe and at least three distinguishable identification elements, wherein each of the at least three distinguishable identification elements is associated with a different oligonucleotide sequence, wherein each of the different oligonucleotide sequences differs by one nucleic acid residue;

providing a second microfluidic droplet comprising a target nucleic acid; and

fusing at least some of the fluid in the first fluidic droplet and at least some of the fluid in the second microfluidic droplet to form a fused droplet.

2. The method of claim 1 , further comprising determining the target nucleic acid contained within the fused droplet.

3. The method of claim 1 , comprising determining a sequence of at least a portion of the target nucleic acid.

4. The method of claim 1 , further comprising determining at least a portion of the target nucleic acid by determining at least one of the at least three identification elements contained within the fused droplet.

5. The method of claim 1 , further comprising determining at least one of the at least three identification elements.

6. The method of claim 5 , comprising determining the at least one identification element using fluorescence.

7. The method of claim 1 , wherein at least one identification element is a particle.

8. The method of claim 7 , wherein at least one identification element is fluorescent.

9. The method of claim 1 , wherein the nucleic acid probe contains at least four residues.

10. The method of claim 1 , wherein the nucleic acid probe contains at least one locked nucleic acid residue.

11. The method of claim 1 , wherein the nucleic acid probe comprises a signaling entity.

12. The method of claim 1 , further comprising determining association between the target nucleic acid and the nucleic acid probe.

13. The method of claim 1 , wherein the nucleic acid probe comprises a quencher.

14. The method of claim 1 , wherein the first microfluidic droplet contains four distinguishable identification elements.

15. The method of claim 1 , wherein each of the at least three distinguishable identification elements is attached to the different oligonucleotide sequence.

16. The method of claim 1 , wherein the first microfluidic droplet or the second microfluidic droplet comprises a ligase.

17. The method of claim 16 , further comprising ligating the nucleic acid probe to one of the different oligonucleotide sequences associated with one of the at least three distinguishable identification elements.

18. The method of claim 1 , wherein the one nucleic acid residue is at the same location on each of the different oligonucleotide sequences.

19. The method of claim 1 , wherein each of the different oligonucleotide sequences has a single non-universal nucleic acid residue.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2019
From: ABATE, ADAM R.; AGRESTI, JEREMY; HUNG, TONY; WEINER, MICHAEL P.; WEITZ, DAVID A.
To: PRESIDENT AND FELLOWS OF HARVARD COLLEGE
Reel/Frame 048696/0607 →
Continuity (4)
Continuation 12809120
Provisional Application 61098710 · Sep 19, 2008
Provisional Application 61008862 · Dec 21, 2007
Related Publication 20180057875A1 · Mar 1, 2018
Cited By (3)
US 12,331,287 US 12,416,033 US 12,559,794