IP Library › Patent Application 19073904
Patent Application
App. No. 19/073,904

COMPOSITIONS AND METHODS COMPRISING ENGINEERED CHIMERIC ANTIGEN RECEPTOR AND MODULATOR OF CAR

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Quick Facts
Patent No.
US None
App. No.
19/073,904
Abstract

There is provided method for making a cell composition which comprises step of transducing a population of cells with a mixture of at least two viral vectors, wherein at least one vector comprises a nucleic acid sequence which encodes a chimeric antigen receptor (CAR); and wherein at least one vector comprises a nucleic acid encoding an activity modulator which modulates the activity of the CAR, of a cell expressing the CAR, or of a target cell. There is also provided a cell composition made by such a method and its use in the treatment of diseases such as cancer.

Claims (20)

1 - 21 . (canceled)

22 . A cell composition made by transducing a population of cells with a mixture of at least two viral vectors, wherein at least one vector comprises a nucleic acid sequence which encodes a chimeric antigen receptor (CAR); and wherein at least one vector comprises a nucleic acid encoding an activity modulator which modulates the activity of the CAR, of a cell expressing the CAR, or of a target cell

23 . The cell composition according to claim 22 , wherein the activity modulator is a dominant negative SHP-1 or SHP-2.

24 . The cell composition according to claim 22 , wherein the activity modulator is a dominant negative transforming growth factor (TGF)β receptor.

25 . The cell composition according to claim 22 , wherein the activity modulator is a constitutively active chimeric cytokine receptor.

26 . The cell composition according to claim 22 , wherein in the mixture of viral vectors at least one vector comprises a nucleic acid sequence which encodes a dominant negative SHP-1 or SHP-2; and at least one vector comprises a nucleic acid sequence which encodes a dominant negative transforming growth factor (TGF)β receptor.

27 . The cell composition according to claim 22 , wherein the mixture of viral vectors comprises two, three, four, five or six viral vectors.

28 . The cell composition according to claim 22 , wherein the cell composition is made by, after transducing the population of cells, then selecting CAR-expressing cells from the transduced cell population.

29 . The cell composition according to claim 22 , wherein each of the viral vectors comprises a nucleic acid sequence encoding a CAR.

30 . The cell composition of claim 29 , wherein nucleic acid sequences of the viral vectors encode the same CAR.

31 . The cell composition of claim 29 , wherein each of the viral vectors comprises a nucleic acid encoding an activity modulator which modulates the activity of the CAR, of a cell expressing the CAR, or of a target cell.

32 . The cell composition of claim 31 , wherein the activity modulators are selected from a dominant negative SHP-1 or SHP-2; a dominant negative transforming growth factor (TGF)β receptor; and a constitutively active chimeric cytokine receptor.

33 . The cell composition of claim 32 , wherein one vector comprises a nucleic acid sequence encoding a dominant negative SHP-1 or SHP-2 and a nucleic acid sequence encoding a dominant negative transforming growth factor (TGF)β receptor; and the other vector comprises a nucleic acid sequence encoding a constitutively active chimeric cytokine receptor.

34 . The cell composition of claim 30 , wherein the CAR has an antigen-binding domain which binds disialoganglioside (GD2).

35 . The cell composition of claim 29 , wherein at least one vector comprises a nucleic acid sequence encoding a suicide gene

36 . A method for treating a disease in a subject which comprises the step of administering a cell composition according to claim 22 to the subject.

37 . A method for determining the optimal combination of components for a CAR-expressing cell to treat a disease, which comprises the following steps:

(i) administering a cell composition according to claim 22 to a subject having the disease,

(ii) monitoring the patient or samples from the patient to determine which sub-population of cells in the cell composition show the greatest level of engraftment and/or proliferation, and

(iii) analysing the phenotype/genotype of the cells in the sub-population to ascertain the CAR(s) and/or activity modulator(s) expressed by those cells.

Assignments (2)
PATENT SECURITY AGREEMENT Recorded Jul 30, 2026
From: AUTOLUS LIMITED
To: PERCEPTIVE CREDIT HOLDINGS V, LP, AS ADMINISTRATIVE AGENT
Reel/Frame 076084/0283 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 2, 2025
From: PULÉ, MARTIN; PEDDAREDDIGARI, VIJAY; ITIN, CHRISTIAN
To: AUTOLUS LIMITED
Reel/Frame 071006/0927 →