IP Library Patent Application 16431236
Patent Application
App. No. 16/431,236

ERYTHROID CELLS COMPRISING LYSINE OXIDASE

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Quick Facts
Patent No.
US None
App. No.
16/431,236
Abstract

Compositions comprising synthetic membrane-receiver complexes, methods of generating synthetic membrane-receiver complexes, and methods of treating or preventing diseases, disorders or conditions therewith.

Claims (31)

1 . An enucleated erythroid cell comprising an exogenous polypeptide comprising lysine oxidase or a functional fragment thereof.

2 . The enucleated erythroid cell of claim 1 , which comprises at least 1,000 copies of the exogenous polypeptide.

3 . The enucleated erythroid cell of claim 1 , which comprises at least 10,000 copies of the exogenous polypeptide.

4 . The enucleated erythroid cell of claim 1 , wherein the exogenous polypeptide is intracellular.

5 . The enucleated erythroid cell of claim 1 , wherein the exogenous polypeptide is on the surface of the enucleated erythroid cell.

6 . The enucleated erythroid cell of claim 1 , wherein the exogenous polypeptide consists essentially of lysine oxidase.

7 . The enucleated erythroid cell of claim 1 , wherein the exogenous polypeptide consists of lysine oxidase.

8 . The enucleated erythroid cell of claim 1 , further comprising a second exogenous polypeptide comprising a lysine transporter.

9 . The enucleated erythroid cell of claim 1 , which exhibits an increase in lysine oxidase activity of at least 2-fold relative to that of an enucleated erythroid cell that does not comprise the exogenous polypeptide.

10 . The enucleated erythroid cell of claim 1 , which is a reticulocyte.

11 . The enucleated erythroid cell of claim 1 , which is an erythrocyte.

12 . The enucleated erythroid cell of claim 1 , which lacks A and B antigens.

13 . The enucleated erythroid cell of claim 1 , which is a human cell.

14 . The enucleated erythroid cell of claim 1 , which comprises fetal hemoglobin.

15 . The enucleated erythroid cell of claim 1 , which exhibits substantially the same osmotic membrane fragility as an isolated, unmodified, uncultured enucleated erythroid cell.

16 . The enucleated erythroid cell of claim 1 , which is made by a process comprising introducing into an erythroid cell precursor a nucleic acid encoding the exogenous polypeptide.

17 . The enucleated erythroid cell of claim 16 , wherein introducing the nucleic acid comprises using a lentiviral vector.

18 . The enucleated erythroid cell of claim 16 , wherein the process comprises expanding the erythroid cell precursor by at least 20,000-fold in culture.

19 . The enucleated erythroid cell of claim 16 , wherein the erythroid cell precursor is a CD34+ hematopoietic stem cell.

20 . The enucleated erythroid cell of claim 16 , wherein the nucleic acid comprises DNA.

21 . The enucleated erythroid cell of claim 16 , wherein the nucleic acid comprises RNA.

22 . A pharmaceutical composition comprising a plurality of the enucleated erythroid cells of claim 1 and a pharmaceutically acceptable carrier.

23 . The pharmaceutical composition of claim 22 , which is formulated for intravenous administration.

24 . The pharmaceutical composition of claim 22 , wherein at least about 90% of enucleated erythroid cells in the pharmaceutical composition comprise the exogenous polypeptide.

25 . A pharmaceutical composition comprising (i) a plurality of the enucleated erythroid cells of claim 1 , wherein at least 70% of cells in the pharmaceutical composition are enucleated, and (ii) a pharmaceutically acceptable carrier.

26 . The pharmaceutical composition of claim 25 , wherein at least 90% of cells in the pharmaceutical composition are enucleated.

27 . A nucleated erythroid cell precursor comprising an exogenous polypeptide comprising lysine oxidase or a functional fragment thereof.

28 . The nucleated erythroid cell precursor of claim 27 , which is made by a process comprising introducing into a nucleated erythroid cell precursor an exogenous nucleic acid encoding the exogenous polypeptide.

29 . The nucleated erythroid cell precursor of claim 27 , which has been cultured after the introduction of the exogenous nucleic acid.

30 . A method of reducing lysine, 3-hydroxyglutaric acid, or glutaric acid levels in a subject in need thereof, comprising administering to the subject the pharmaceutical composition of claim 23 , thereby reducing lysine, 3-hydroxyglutaric acid, or glutaric acid levels in the subject.

31 . A method of treating glutaric acidemia type I in a subject in need thereof, the method comprising administering to the subject the pharmaceutical composition of claim 23 , thereby treating said glutaric acidemia type I in the subject.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2019
From: KAHVEJIAN, AVAK; MATA-FINK, JORDI; ROUND, JOHN; AFEYAN, NOUBAR B.
To: FLAGSHIP VENTURES MANAGEMENT, INC.
Reel/Frame 050982/0743 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2019
From: BERRY, DAVID A.
To: FLAGSHIP VENTURES MANAGEMENT, INC.
Reel/Frame 050982/0751 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2019
From: FLAGSHIP VENTURES MANAGEMENT, INC.
To: VL26, INC.
Reel/Frame 050982/0767 →
CHANGE OF NAME Recorded Nov 12, 2019
From: VL26, INC.
To: RUBIUS THERAPEUTICS, INC.
Reel/Frame 050990/0602 →