T STEM -like CAR-T cells exhibit improved persistence and tumor control compared with conventional CAR-T cells in preclinical models.
Deborah MeyranJoe Jiang ZhuJeanne ButlerDaniela TantaloSean MacDonaldThu Ngoc NguyenMinyu WangNiko ThioCriselle D'SouzaVicky Mengfei QinClare Y SlaneyAaron HarrisonKevin SekPasquale PetroneKevin ThiaLauren GiuffridaAndrew Mark ScottRachael L TerryBen TranJayesh DesaiHenry Miles PrinceSimon James HarrisonPaul A BeavisMichael H KershawBenjamin J SolomonPaul G EkertJoseph A TrapaniPhillip K DarcyPaul Joseph NeesonPublished in: Science translational medicine (2023)
Patients who receive chimeric antigen receptor (CAR)-T cells that are enriched in memory T cells exhibit better disease control as a result of increased expansion and persistence of the CAR-T cells. Human memory T cells include stem-like CD8 + memory T cell progenitors that can become either functional stem-like T (T STEM ) cells or dysfunctional T progenitor exhausted (T PEX ) cells. To that end, we demonstrated that T STEM cells were less abundant in infused CAR-T cell products in a phase 1 clinical trial testing Lewis Y-CAR-T cells (NCT03851146), and the infused CAR-T cells displayed poor persistence in patients. To address this issue, we developed a production protocol to generate T STEM -like CAR-T cells enriched for expression of genes in cell replication pathways. Compared with conventional CAR-T cells, T STEM -like CAR-T cells had enhanced proliferative capacity and increased cytokine secretion after CAR stimulation, including after chronic CAR stimulation in vitro. These responses were dependent on the presence of CD4 + T cells during T STEM -like CAR-T cell production. Adoptive transfer of T STEM -like CAR-T cells induced better control of established tumors and resistance to tumor rechallenge in preclinical models. These more favorable outcomes were associated with increased persistence of T STEM -like CAR-T cells and an increased memory T cell pool. Last, T STEM -like CAR-T cells and anti-programmed cell death protein 1 (PD-1) treatment eradicated established tumors, and this was associated with increased tumor-infiltrating CD8 + CAR + T cells producing interferon-γ. In conclusion, our CAR-T cell protocol generated T STEM -like CAR-T cells with enhanced therapeutic efficacy, resulting in increased proliferative capacity and persistence in vivo.
Keyphrases
- induced apoptosis
- stem cells
- cell cycle arrest
- clinical trial
- randomized controlled trial
- cell therapy
- endothelial cells
- endoplasmic reticulum stress
- cell proliferation
- adipose tissue
- signaling pathway
- ejection fraction
- single cell
- chronic kidney disease
- pi k akt
- drug induced
- protein protein
- long non coding rna
- high glucose
- phase ii
- metabolic syndrome