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1.
Nature ; 629(8011): 426-434, 2024 May.
Article de Anglais | MEDLINE | ID: mdl-38658764

RÉSUMÉ

Expansion of antigen-experienced CD8+ T cells is critical for the success of tumour-infiltrating lymphocyte (TIL)-adoptive cell therapy (ACT) in patients with cancer1. Interleukin-2 (IL-2) acts as a key regulator of CD8+ cytotoxic T lymphocyte functions by promoting expansion and cytotoxic capability2,3. Therefore, it is essential to comprehend mechanistic barriers to IL-2 sensing in the tumour microenvironment to implement strategies to reinvigorate IL-2 responsiveness and T cell antitumour responses. Here we report that prostaglandin E2 (PGE2), a known negative regulator of immune response in the tumour microenvironment4,5, is present at high concentrations in tumour tissue from patients and leads to impaired IL-2 sensing in human CD8+ TILs via the PGE2 receptors EP2 and EP4. Mechanistically, PGE2 inhibits IL-2 sensing in TILs by downregulating the IL-2Rγc chain, resulting in defective assembly of IL-2Rß-IL2Rγc membrane dimers. This results in impaired IL-2-mTOR adaptation and PGC1α transcriptional repression, causing oxidative stress and ferroptotic cell death in tumour-reactive TILs. Inhibition of PGE2 signalling to EP2 and EP4 during TIL expansion for ACT resulted in increased IL-2 sensing, leading to enhanced proliferation of tumour-reactive TILs and enhanced tumour control once the cells were transferred in vivo. Our study reveals fundamental features that underlie impairment of human TILs mediated by PGE2 in the tumour microenvironment. These findings have therapeutic implications for cancer immunotherapy and cell therapy, and enable the development of targeted strategies to enhance IL-2 sensing and amplify the IL-2 response in TILs, thereby promoting the expansion of effector T cells with enhanced therapeutic potential.


Sujet(s)
Lymphocytes T CD8+ , Prolifération cellulaire , Dinoprostone , Interleukine-2 , Lymphocytes TIL , Mitochondries , Transduction du signal , Animaux , Humains , Souris , Lymphocytes T CD8+/cytologie , Lymphocytes T CD8+/immunologie , Lymphocytes T CD8+/métabolisme , Dinoprostone/métabolisme , Régulation négative , Ferroptose , Sous-unité gamma commune aux récepteurs des interleukines/biosynthèse , Sous-unité gamma commune aux récepteurs des interleukines/déficit , Sous-unité gamma commune aux récepteurs des interleukines/métabolisme , Interleukine-2/antagonistes et inhibiteurs , Interleukine-2/immunologie , Interleukine-2/métabolisme , Sous-unité bêta du récepteur à l'interleukine-2/métabolisme , Lymphocytes TIL/cytologie , Lymphocytes TIL/immunologie , Lymphocytes TIL/métabolisme , Mitochondries/métabolisme , Stress oxydatif , Coactivateur 1-alpha du récepteur gamma activé par les proliférateurs de peroxysomes/métabolisme , Sous-type EP2 des récepteurs des prostaglandines E/métabolisme , Sous-type EP2 des récepteurs des prostaglandines E/antagonistes et inhibiteurs , Sous-type EP4 des récepteurs des prostaglandines E/métabolisme , Sous-type EP4 des récepteurs des prostaglandines E/antagonistes et inhibiteurs , Sérine-thréonine kinases TOR/métabolisme , Microenvironnement tumoral/immunologie
2.
Nat Biomed Eng ; 7(9): 1063-1080, 2023 09.
Article de Anglais | MEDLINE | ID: mdl-37069267

RÉSUMÉ

Vectors that facilitate the engineering of T cells that can better harness endogenous immunity and overcome suppressive barriers in the tumour microenvironment would help improve the safety and efficacy of T-cell therapies for more patients. Here we report the design, production and applicability, in T-cell engineering, of a lentiviral vector leveraging an antisense configuration and comprising a promoter driving the constitutive expression of a tumour-directed receptor and a second promoter enabling the efficient activation-inducible expression of a genetic payload. The vector allows for the delivery of a variety of genes to human T cells, as we show for interleukin-2 and a microRNA-based short hairpin RNA for the knockdown of the gene coding for haematopoietic progenitor kinase 1, a negative regulator of T-cell-receptor signalling. We also show that a gene encoded under an activation-inducible promoter is specifically expressed by tumour-redirected T cells on encountering a target antigen in the tumour microenvironment. The single two-gene-encoding vector can be produced at high titres under an optimized protocol adaptable to good manufacturing practices.


Sujet(s)
Lentivirus , Tumeurs , Humains , Lentivirus/génétique , Lymphocytes T , Transgènes/génétique , Régions promotrices (génétique)/génétique , Tumeurs/génétique , Tumeurs/thérapie , Microenvironnement tumoral
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