IP Library › Granted Patent US 10,561,148
Granted Patent B2
US 10,561,148 · App. 16/192,746 · Granted Feb 18, 2020

Altering microbial populations and modifying microbiota

Inventor: Jasper Clube (London, GB)
Assignee: SNIPR Technologies Limited
A01N63/00A61K31/711A61K31/7105A61K45/06A61K48/005C12N1/20C12N7/00C12N9/16C12N15/102C12N15/113C12N15/70C12N15/746A61K2300/00C12N2310/20C12N2320/31C12N2795/00032Y02A50/473Y02A50/475Y02A50/481
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Quick Facts
Patent No.
US 10,561,148
App. No.
16/192,746
Granted
Feb 18, 2020
Kind
B2
Abstract

The invention relates to methods, uses, systems, arrays, engineered nucleotide sequences and vectors for inhibiting bacterial population growth or for altering the relative ratio of sub-populations of first and second bacteria in a mixed population of bacteria. The invention is particularly useful, for example, for treatment of microbes such as for environmental, medical, food and beverage use. The invention relates inter alia to methods of controlling micro biologically influenced corrosion (MIC) or biofouling of a substrate or fluid in an industrial or domestic system.

Claims (33)

1. A method of treating or preventing a gastrointestinal condition in a human or animal subject, wherein the subject comprises a gut microbiota comprising Klebsiella bacteria cells, the method comprising administering to the subject an antimicrobial composition comprising an engineered nucleic acid for producing a host modifying crRNA (HM-crRNA) that selectively kills Klebsiella cells or inhibits the growth of Klebsiella cells in the microbiota,

wherein

(i) the HM-crRNA is operable with a Cas in the Klebsiella cells, wherein the engineered nucleic acid and the Cas are comprised by a HM-CRISPR/Cas system in the Klebsiella cells; and

(ii) the HM-crRNA comprises a nucleotide sequence that is capable of hybridizing to a target sequence in the Klebsiella cells to guide the Cas to cut the target sequence in the Klebsiella cells, thereby killing Klebsiella cells or inhibiting the growth of Klebsiella cells in the microbiota.

2. The method of claim 1 , wherein the cells are K. pneumoniae cells.

3. The method of claim 1 , wherein the cells are carbapenem resistant.

4. The method of claim 2 , wherein the cells are carbapenem resistant.

5. The method of claim 1 , wherein the antimicrobial composition comprises phages comprising the engineered nucleic acid that infect the Klebsiella cells and selectively kill Klebsiella cells or inhibit the growth of Klebsiella cells in the microbiota.

6. The method of claim 1 , wherein the gastrointestinal condition is an inflammatory bowel disease (IBD).

7. The method of claim 5 , wherein the gastrointestinal condition is an inflammatory bowel disease (IBD).

8. The method of claim 1 , wherein the gastrointestinal condition is selected from the group consisting of Crohn's disease, irritable bowel syndrome (IBS) and ulcerative colitis.

9. The method of claim 5 , wherein the gastrointestinal condition is selected from the group consisting of Crohn's disease, irritable bowel syndrome (IBS) and ulcerative colitis.

10. A method of treating or preventing an IBD in a human or animal subject, wherein the subject comprises a gut microbiota comprising Klebsiella bacteria cells, the method comprising administering to the subject an antimicrobial composition comprising an engineered nucleic acid for producing a host modifying crRNA (HM-crRNA) that selectively kills Klebsiella cells or inhibits the growth of Klebsiella cells in the microbiota, thereby decreasing the proportion of Klebsiella cells in the microbiota,

wherein the antimicrobial composition further comprises an engineered nucleic acid for producing a guided nuclease to selectively target the genome of the Klebsiella cells and allowing the guided nuclease to cut one or more target nucleotide sequences comprised by the Klebsiella cells, and

wherein

(i) the HM-crRNA is operable with a Cas in the Klebsiella cells, wherein the engineered nucleic acid and the Cas are comprised by a HM-CRISPR/Cas system in the Klebsiella cells; and

(ii) the HM-crRNA comprises a nucleotide sequence that is capable of hybridizing to a target sequence in the Klebsiella cells to guide the Cas to cut the target sequence in the Klebsiella cells, thereby killing Klebsiella cells or inhibiting the growth of Klebsiella cells in the microbiota.

11. A method of treating or preventing an IBD in a human or animal subject, wherein the subject comprises a gut microbiota comprising Klebsiella bacteria cells, the method comprising administering to the subject phages that infect and selectively kill Klebsiella cells or inhibit the growth of Klebsiella cells in the microbiota, thereby decreasing the proportion of Klebsiella cells in the microbiota,

wherein the phages comprise an engineered nucleic acid for producing a host modifying crRNA (HM-crRNA),

wherein the phages further comprise an engineered nucleic acid for producing a guided nuclease to selectively target the genome of the Klebsiella cells and allowing the guided nuclease to cut one or more target nucleotide sequences comprised by the Klebsiella cells, and

wherein

(i) the HM-crRNA is operable with a Cas in the Klebsiella cells, wherein the engineered nucleic acid and the Cas are comprised by a HM-CRISPR/Cas system in the Klebsiella cells; and

(ii) the HM-crRNA comprises a nucleotide sequence that is capable of hybridizing to a target sequence in the Klebsiella cells to guide the Cas to cut the target sequence in the Klebsiella cells, thereby killing Klebsiella cells or inhibiting the growth of Klebsiella cells in the microbiota.

12. A method of treating or preventing an IBD in a human or animal subject, wherein the subject comprises a gut microbiota comprising K. pneumoniae bacteria cells, the method comprising:

(a) contacting the K. pneumoniae cells in the microbiota with an engineered nucleic acid for producing a host modifying crRNA (HM-crRNA), and

(b) producing the HM-crRNA in the K. pneumoniae cells;

wherein

(i) the HM-crRNA is operable with a Cas in the K. pneumoniae cells, wherein the engineered nucleic acid and the Cas are comprised by a HM-CRISPR/Cas system in the K. pneumoniae cells;

(ii) the HM-crRNA comprises a nucleotide sequence that is capable of hybridizing to a target sequence in the K. pneumoniae cells to guide the Cas to cut the target sequence in the K. pneumoniae cells, thereby killing K. pneumoniae cells or inhibiting the growth of K. pneumoniae cells in the microbiota, whereby the proportion of K. pneumoniae cells in the microbiota is decreased.

13. The method of claim 2 , wherein the antimicrobial composition comprises phages comprising the engineered nucleic acid that infect the Klebsiella cells and selectively kill Klebsiella cells or inhibit the growth of Klebsiella cells in the microbiota.

14. The method of claim 1 , wherein the antimicrobial composition further comprises an engineered nucleic acid for producing a guided nuclease to selectively target the genome of the Klebsiella cells and allowing the guided nuclease to cut one or more target nucleotide sequences comprised by the Klebsiella cells.

15. The method of claim 2 , wherein the antimicrobial composition further comprises an engineered nucleic acid for producing a guided nuclease to selectively target the genome of the Klebsiella cells and allowing the guided nuclease to cut one or more target nucleotide sequences comprised by the Klebsiella cells.

16. The method of claim 12 , further comprising contacting the K. pneumoniae cells with an engineered nucleic acid for producing a guided nuclease to selectively target the genome of the K. pneumoniae cells and allowing the guided nuclease to cut one or more target nucleotide sequences comprised by the K. pneumoniae cells.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2020
From: CLUBE, JASPER
To: SNIPR TECHNOLOGIES LIMITED
Reel/Frame 051800/0367 →
Priority Claims (10)
GB 1507773.8 · May 6, 2015 · national
GB 1507774.6 · May 6, 2015 · national
GB 1507775.3 · May 6, 2015 · national
GB 1507776.1 · May 6, 2015 · national
GB 1508461.9 · May 17, 2015 · national
GB 1509366.9 · May 31, 2015 · national
GB 1510891.3 · Jun 20, 2015 · national
GB 1518402.1 · Oct 17, 2015 · national
GB 1600417.8 · Jan 10, 2016 · national
GB 1600418.6 · Jan 10, 2016 · national
Continuity (6)
Continuation 15862527 · Jan 4, 2018
Continuation 15817142 · Nov 17, 2017
Continuation 15460962 · Mar 16, 2017
Continuation 15160405 · May 20, 2016
Continuation PCTEP2016059803 · May 3, 2016
Related Publication 20190133135A1 · May 9, 2019
Cited By (9)
US 12,226,430 US 12,318,445 US 12,404,513 US 12,448,619 US 12,502,401 US 12,514,867 US 12,514,869 US 12,516,297 US 12,528,842