IP Library Granted Patent US 11,812,743
Granted Patent B2
US 11,812,743 · App. 16/649,857 · Granted Nov 14, 2023

Compositions and methods for scalable production and delivery of biologicals

Inventors: Ameer Hamza Shakeel (Leesburg, VA); Zachery George Davis (Charlottesville, VA); Joseph Thomas Frank (Charlottesville, VA); Sepehr Zomorodi (Charlottesville, VA); Payam Pourtaheri (Charlottesville, VA)
Assignee: AgroSpheres, Inc.
A01N25/28A01N63/20A01N63/50C12N15/74
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Quick Facts
Patent No.
US 11,812,743
App. No.
16/649,857
Granted
Nov 14, 2023
Kind
B2
Abstract

The present disclosure is generally directed to an agricultural formulation comprising an anucleated minicells and an anucleated cell-based platforms for encapsulation and scalable delivery of biologically active compounds. Disclosed herein are compositions for the stable and targeted delivery of biologically active compounds within achromosomal and/or anucleated cells onto and/or into a target cell. The present disclosure also provides methods of improving encapsulation and retention of biologically active compounds in achromosomal and/or anucleated cells and delivering biologically active compounds into a target cell.

Claims (27)

1. An agricultural formulation comprising:

an intact minicell comprising a biologically active compound within said minicell, wherein said biologically active compound comprises

a nucleic acid, wherein the nucleic acid targets a transcript encoding a polypeptide within a cell of a target,

wherein said target is a plant or a pest, and wherein the minicell is ribonuclease deficient.

2. The agricultural formulation of claim 1 , further comprising at least one agricultural suitable additive or adjuvant.

3. The agricultural formulation of claim 1 , wherein said minicell is protease deficient.

4. The agricultural formulation of claim 1 , wherein said nucleic acid is selected from the group consisting of an antisense nucleic acid, a double-stranded RNA (dsRNA), a short-hairpin RNA (shRNA), a small-interfering RNA (siRNA), a microRNA (miRNA), a ribozyme, an aptamer, and combination thereof.

5. The agricultural formulation of claim 1 , wherein said biologically active compound is inert to a cell other than said cell of said target.

6. The agricultural formulation of claim 1 , further comprising a polypeptide within said minicell, wherein said polypeptide is expressed within said minicell, and wherein said polypeptide binds to said nucleic acid.

7. The agricultural formulation of claim 6 , wherein said polypeptide is a dsRNA binding protein, and wherein said dsRNA binding protein increases loading and enhances the stability of dsRNA.

8. The agricultural formulation of claim 1 , wherein said minicell further comprises at least one fusion protein, and wherein said fusion protein is expressed on a surface of said minicell.

9. The agricultural formulation of claim 8 , wherein said fusion protein comprises at least one surface expressing moiety and at least one target cell adhesion moiety, and wherein said target cell adhesion moiety comprises a carbohydrate binding module consisting of a cellulose binding domain, a xylan binding domain, a chitin binding domain, and a lignin binding domain.

10. The agricultural formulation of claim 1 , wherein said minicell is treated with a solvent, an agent, a fixative, a preservative, or a cross-linking agent for better solubility, increased stability, or enhanced integrity.

11. The agricultural formulation of claim 1 , wherein said minicell exhibits a controlled release rate of said biologically active compound, wherein the release can be a steady release or an initial burst followed by steady release.

12. A method of delivering a biologically active compound, comprising:

applying an agricultural formulation to a cell of a target, wherein said agricultural formulation comprises

an intact minicell comprising said biologically active compound within said minicell, wherein said biologically active compound comprises

a nucleic acid, wherein the nucleic acid targets a transcript encoding a polypeptide within said cell of said target,

wherein said target is a plant or a pest, and wherein the minicell is ribonuclease deficient.

13. The method of claim 12 , wherein said agricultural formulation is delivered into said cell of said target by endocytosis.

14. The method of claim 12 , further comprising: applying said agricultural formulation to said cell of said target with an agent, wherein said agent is an adjuvant for improving penetration of said minicell into said cell of said target.

15. The method of claim 14 , wherein said agent is a surfactant, an emulsifier, a crop oil concentrate, a penetrant, a salt or combination thereof.

16. The method of claim 12 , wherein said nucleic acid is selected from the group consisting of an antisense nucleic acid, a double-stranded RNA (dsRNA), a short-hairpin RNA (shRNA), a small-interfering RNA (siRNA), a microRNA (miRNA), a ribozyme, an aptamer, and combination thereof.

17. The method of claim 12 , wherein said a minicell further comprises at least one fusion protein, and wherein said fusion protein is expressed on a surface of said minicell.

18. The method of claim 17 , wherein said fusion protein comprises at least one surface expressing moiety and at least one target cell adhesion moiety, and wherein said target cell adhesion moiety comprises a carbohydrate binding module consisting of a cellulose binding domain, a xylan binding domain, a chitin binding domain, and a lignin binding domain.

19. The method of claim 12 , wherein said minicell is derived from a prokaryotic cell, a gram-negative bacterial cell, a gram-positive bacterial cell, or an eukaryotic cell.

20. The method of claim 12 , wherein said minicell is derived from endophytes or plant pathogenic bacteria.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2020
From: SHAKEEL, AMEER HAMZA; DAVIS, ZACHERY GEORGE; FRANK, JOSEPH THOMAS; ZOMORODI, SEPEHR; POURTAHERI, PAYAM
To: AGROSPHERES, INC.
Reel/Frame 052197/0646 →
Continuity (3)
Provisional Application 62562723 · Sep 25, 2017
Provisional Application 62666981 · May 4, 2018
Related Publication 20200267971A1 · Aug 27, 2020
Cited By (3)
US 12,193,439 US 12,324,431 US 12,606,813