IP Library Granted Patent US 10,329,559
Granted Patent B1
US 10,329,559 · App. 16/269,655 · Granted Jun 25, 2019

Automated cell processing methods, modules, instruments, and systems

Inventors: Don Masquelier (Boulder, CO); Phillip Belgrader (Pleasanton, CA); Jorge Bernate (Boulder, CO); Ryan Gill (Boulder, CO); Kevin Ness (Boulder, CO)
Assignee: Inscripta, Inc.
C12N15/1082C12M23/44C12M37/04C12M41/48C12M43/00C12N9/22C12N15/11C40B40/02C12N2310/20C12N2800/80
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Quick Facts
Patent No.
US 10,329,559
App. No.
16/269,655
Granted
Jun 25, 2019
Kind
B1
Abstract

In an illustrative embodiment, automated multi-module cell editing instruments are provided to automate multiple edits into nucleic acid sequences inside one or more cells.

Claims (34)

1. An automated stand-alone multi-module cell editing instrument for performing inducible nuclease editing comprising:

a receptacle configured to receive cells;

one or more receptacles configured to receive nucleic acids, wherein the nucleic acids comprise an inducible nuclease editing system;

a growth module for growing cells for transformation;

a transformation module configured to introduce the nucleic acids into the cells;

a nuclease-directed editing module configured to activate the inducible nuclease editing system and allow the introduced nucleic acids to edit nucleic acids in the cells;

a processor configured to operate the automated multi-module cell editing instrument based on user input and/or selection of a pre-programmed script; and

an automated liquid handling system to move cells from the cell receptacle to the growth module, from the growth module to the transformation module and from the transformation module to the nuclease-directed editing module without user intervention.

2. The automated stand-alone multi-module cell editing instrument of claim 1 , wherein the nucleic acids in the one or more receptacles comprise a backbone and an editing cassette, the automated multi-module cell editing instrument further comprises a nucleic acid assembly module, and the automated liquid handling system transfers the nucleic acids from the nucleic acids from the nucleic acid receptacle, from the nucleic acid receptacle to the nucleic acid assembly module, and from the nucleic acid assembly module to the transformation module.

3. The automated stand-alone multi-module cell editing instrument of claim 2 , wherein the nucleic acid assembly module is configured to perform isothermal nucleic acid assembly.

4. The automated stand-alone multi-module cell editing instrument of claim 1 , wherein the automated liquid handling system comprises a sipper or pipettor.

5. The automated stand-alone multi-module cell editing instrument of claim 1 , wherein the inducible nuclease editing system is a chemically-induced inducible nuclease system.

6. The automated stand-alone multi-module cell editing instrument of claim 1 , wherein the inducible nuclease editing system is a virally-induced inducible nuclease system.

7. The automated stand-alone multi-module cell editing instrument of claim 1 , wherein the inducible nuclease editing system is a light-induced inducible nuclease system.

8. The automated stand-alone multi-module cell editing instrument of claim 1 , wherein the inducible nuclease editing system is a temperature-induced inducible nuclease system.

9. The automated stand-alone multi-module cell editing instrument of claim 8 , wherein the inducible nuclease editing system is a heat-induced inducible nuclease system.

10. The automated stand-alone multi-module cell editing instrument of claim 1 , wherein the receptacle configured to receive cells and the one or more receptacles configured to receive nucleic acids are configured to be contained within a reagent cartridge.

11. The automated stand-alone multi-module cell editing instrument of claim 10 , wherein some or all reagents required for cell editing are received by the reagent cartridge.

12. An automated stand-alone multi-module cell editing instrument for performing inducible nuclease editing comprising:

a receptacle configured to receive cells;

a nucleic acid assembly module configured to assemble a vector backbone and an editing cassette, wherein the editing cassette comprises one or more inducible components of the inducible editing system, and wherein the nucleic acid assembly module is configured to accept and assemble nucleic acids to facilitate the desired genome editing events in the cells;

a growth module configured to grow the cells;

a transformation module comprising an electroporator to introduce assembled nucleic acids into the cells;

a nuclease-directed editing module configured to activate the inducible nuclease editing system and allow the assembled nucleic acids to edit nucleic acids in the cells;

a processor configured to operate the automated multi-module cell editing instrument based on user input and/or selection of a script; and

an automated liquid handling system to move liquids from the cell receptacle to the growth module, from the growth module to the transformation module, and from the transformation module to the nuclease-directed editing module, as well as from the nucleic acid assembly module to the transformation module, all without user intervention.

13. The automated stand-alone multi-module cell editing instrument of claim 12 , wherein the inducible nuclease editing system is a chemically-induced inducible nuclease system.

14. The automated stand-alone multi-module cell editing instrument of claim 12 , wherein the inducible nuclease editing system is a virally-induced inducible nuclease system.

15. The automated stand-alone multi-module cell editing instrument of claim 12 , wherein the inducible nuclease editing system is a light-induced inducible nuclease system.

16. The automated stand-alone multi-module cell editing instrument of claim 12 , wherein the inducible nuclease editing system is a temperature-induced inducible nuclease system.

17. The automated stand-alone multi-module cell editing instrument of claim 16 , wherein the inducible nuclease editing system is a heat-induced inducible nuclease system.

18. The automated stand-alone multi-module cell editing instrument of claim 12 , further comprising at least one reagent cartridge containing reagents to perform inducible cell editing in the automated multi-module cell editing instrument.

19. The automated stand-alone multi-module cell editing instrument of claim 18 , wherein the receptacles for the cells and nucleic acids are disposed within the reagent cartridge.

20. The automated stand-alone multi-module cell editing instrument of claim 18 , wherein some or all reagents required for inducible cell editing are received by the reagent cartridge.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2019
From: MASQUELIER, DON; BELGRADER, PHILLIP; BERNATE, JORGE; GILL, RYAN; NESS, KEVIN
To: INSCRIPTA, INC.
Reel/Frame 048263/0671 →
Continuity (14)
Continuation 16024816 · Jun 30, 2018
Provisional Application 62689068 · Jun 23, 2018
Provisional Application 62671385 · May 14, 2018
Provisional Application 62657651 · Apr 13, 2018
Provisional Application 62657654 · Apr 13, 2018
Provisional Application 62649731 · Mar 29, 2018
Provisional Application 62648130 · Mar 26, 2018
Provisional Application 62620370 · Jan 22, 2018
Provisional Application 62567697 · Oct 3, 2017
Provisional Application 62566688 · Oct 2, 2017
Provisional Application 62566375 · Sep 30, 2017
Provisional Application 62566374 · Sep 30, 2017
Provisional Application 62551069 · Aug 28, 2017
Provisional Application 62527339 · Jun 30, 2017
Cited By (14)
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