Processes for production of tumor infiltrating lymphocytes and uses of same in immunotherapy
The present invention provides improved and/or shortened methods for expanding TILs and producing therapeutic populations of TILs, including novel methods for expanding TIL populations in a closed system that lead to improved efficacy, improved phenotype, and increased metabolic health of the TILs in a shorter time period, while allowing for reduced microbial contamination as well as decreased costs. Such TILs find use in therapeutic treatment regimens.
1. A population of expanded TILs, wherein the population of expanded TILs is a third population of TILs obtainable by a method comprising:
(a) obtaining a first population of TILs from a tumor resected from a subject by processing a tumor sample obtained from the subject into a tumor digest;
(b) adding the tumor digest into a closed system;
(c) performing a first expansion by culturing the first population of TILs in a cell culture medium comprising IL-2 to produce a second population of TILs, wherein the first expansion is performed in a closed container providing a first gas-permeable surface area, wherein the first expansion is performed for about 3-11 days to obtain the second population of TILs, and wherein the transition from step (b) to step (c) occurs without opening the system;
(d) performing a second expansion by supplementing the cell culture medium of the second population of TILs with additional IL-2, OKT-3, and antigen presenting cells (APCs), to produce a third population of TILs, wherein the second expansion is performed for about 7-11 days to obtain the third population of TILs, wherein the third population of TILs is a therapeutic population of TILs, wherein the second expansion is performed in a closed container providing a second gas-permeable surface area, and wherein the transition from step (c) to step (d) occurs without opening the system; and
(e) harvesting the therapeutic population of TILs obtained from step (d), wherein the transition from step (d) to step (e) occurs without opening the system.
2. The population of expanded TILs according to claim 1 , wherein the method further comprises the step (f) of transferring the harvested TIL population from step (e) to an infusion bag, wherein the transfer from step (e) to (f) occurs without opening the system.
3. The population of expanded TILs according to claim 2 , wherein the method optionally comprises the step (g) of cryopreserving the infusion bag comprising the harvested TIL population from step (f) using a cryopreservation process.
4. The population of expanded TILs according to claim 3 , wherein processing a tumor sample obtained from the subject into a tumor digest in step (a) comprises incubating the tumor sample in an enzymatic media.
5. The population of expanded TILs according to claim 4 , wherein processing a tumor sample obtained from the subject into a tumor digest in step (a) further comprises disrupting the tumor sample mechanically so as to dissociate the tumor sample.
6. The population of expanded TILs according to claim 5 , wherein processing a tumor sample obtained from the subject into a tumor digest in step (a) further comprises purifying the disassociated tumor sample using a density gradient separation.
7. The population of expanded TILs according to claim 4 , wherein the enzymatic media comprises DNase.
8. The population of expanded TILs according to claim 7 , wherein the enzymatic media comprises 30 units/mL of DNase.
9. The population of expanded TILs according to claim 4 , wherein the enzymatic media comprises collagenase.
10. The population of expanded TILs according to claim 9 , wherein the enzymatic media comprises 1.0 mg/mL of collagenase.
11. The population of expanded TILs according to claim 1 , wherein the cell culture medium is CTS Optimizer.
12. The population of expanded TILs according to claim 1 , wherein the medium in the first expansion and/or the second expansion is free of human serum.
13. The population of expanded TILs according to claim 1 , wherein the therapeutic population of TILs harvested in step (e) comprises sufficient TILs for a therapeutically effective dosage of the TILs.
14. The population of expanded TILs according to claim 13 , wherein the number of TILs sufficient for a therapeutically effective dosage is from about 1×10 9 to about 9×10 10 .
15. The population of expanded TILs according to claim 1 , wherein the APCs are peripheral blood mononuclear cells (PBMCs).
16. The population of expanded TILs according to claim 1 , wherein the therapeutic population of TILs harvested in step (e) exhibits an increased subpopulation of CD8+ cells relative to the first and/or second population of TILs.
17. The population of expanded TILs according to claim 15 , wherein the PBMCs are supplemented at a ratio of about 1:25 TIL:PBMCs.
18. The population of expanded TILs according to claim 1 , wherein the first expansion in step (c) and the second expansion in step (d) are each individually performed within a period of 11 days.
19. The population of expanded TILs according to claim 1 , wherein steps (a) through (f) are performed in about 10 days to about 22 days.
20. The population of expanded TILs according to claim 1 , wherein steps (a) through (f) are performed in about 15 days to about 22 days.
21. The population of expanded TILs according to claim 1 , wherein steps (a) through (f) are performed in about 20 days to about 22 days.
22. The population of expanded TILs according to claim 1 , wherein the second population of TILs is at least 50-fold greater in number than the first population of TILs.