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1.
Nat Commun ; 14(1): 528, 2023 02 01.
Artigo em Inglês | MEDLINE | ID: mdl-36726009

RESUMO

T cell receptor (TCR) transgenic mice represent an invaluable tool to study antigen-specific immune responses. In the pre-existing models, a monoclonal TCR is driven by a non-physiologic promoter and randomly integrated into the genome. Here, we create a highly efficient methodology to develop T cell receptor exchange (TRex) mice, in which TCRs, specific to the self/tumor antigen mesothelin (Msln), are integrated into the Trac locus, with concomitant Msln disruption to circumvent T cell tolerance. We show that high affinity TRex thymocytes undergo all sequential stages of maturation, express the exogenous TCR at DN4, require MHC class I for positive selection and undergo negative selection only when both Msln alleles are present. By comparison of TCRs with the same specificity but varying affinity, we show that Trac targeting improves functional sensitivity of a lower affinity TCR and confers resistance to T cell functional loss. By generating P14 TRex mice with the same specificity as the widely used LCMV-P14 TCR transgenic mouse, we demonstrate increased avidity of Trac-targeted TCRs over transgenic TCRs, while preserving physiologic T cell development. Together, our results support that the TRex methodology is an advanced tool to study physiological antigen-specific T cell behavior.


Assuntos
Receptores de Antígenos de Linfócitos T , Timócitos , Camundongos , Animais , Receptores de Antígenos de Linfócitos T/genética , Camundongos Transgênicos , Diferenciação Celular , Autoantígenos
2.
JCI Insight ; 7(7)2022 04 08.
Artigo em Inglês | MEDLINE | ID: mdl-35393950

RESUMO

We investigate how myeloid subsets differentially shape immunity to pancreatic ductal adenocarcinoma (PDA). We show that tumor antigenicity sculpts myeloid cell composition and functionality. Antigenicity promotes accumulation of type 1 dendritic cells (cDC1), which is driven by Xcr1 signaling, and overcomes macrophage-mediated suppression. The therapeutic activity of adoptive T cell therapy or programmed cell death ligand 1 blockade required cDC1s, which sustained splenic Klrg1+ cytotoxic antitumor T cells and functional intratumoral T cells. KLRG1 and cDC1 genes correlated in human tumors, and PDA patients with high intratumoral KLRG1 survived longer than patients with low intratumoral KLRG1. The immunotherapy CD40 agonist also required host cDC1s for maximal therapeutic benefit. However, CD40 agonist exhibited partial therapeutic benefit in cDC1-deficient hosts and resulted in priming of tumor-specific yet atypical CD8+ T cells with a regulatory phenotype and that failed to participate in tumor control. Monocyte/macrophage depletion using clodronate liposomes abrogated T cell priming yet enhanced the antitumor activity of CD40 agonist in cDC1-deficient hosts via engagement of innate immunity. In sum, our study supports that cDC1s are essential for sustaining effective antitumor T cells and supports differential roles for cDC1s and monocytes/macrophages in instructing T cell fate and immunotherapy response.


Assuntos
Carcinoma Ductal Pancreático , Neoplasias Pancreáticas , Antígenos CD40/metabolismo , Linfócitos T CD8-Positivos , Carcinoma Ductal Pancreático/metabolismo , Carcinoma Ductal Pancreático/terapia , Células Dendríticas , Humanos , Imunoterapia/métodos , Imunoterapia Adotiva/métodos , Neoplasias Pancreáticas/metabolismo , Neoplasias Pancreáticas/terapia , Neoplasias Pancreáticas
3.
J Immunol ; 206(6): 1372-1384, 2021 03 15.
Artigo em Inglês | MEDLINE | ID: mdl-33558374

RESUMO

Pancreatic cancer is a particularly lethal malignancy that resists immunotherapy. In this study, using a preclinical pancreatic cancer murine model, we demonstrate a progressive decrease in IFN-γ and granzyme B and a concomitant increase in Tox and IL-10 in intratumoral tumor-specific T cells. Intratumoral myeloid cells produced elevated IL-27, a cytokine that correlates with poor patient outcome. Abrogating IL-27 signaling significantly decreased intratumoral Tox+ T cells and delayed tumor growth yet was not curative. Agonistic αCD40 decreased intratumoral IL-27-producing myeloid cells, decreased IL-10-producing intratumoral T cells, and promoted intratumoral Klrg1+Gzmb+ short-lived effector T cells. Combination agonistic αCD40+αPD-L1 cured 63% of tumor-bearing animals, promoted rejection following tumor rechallenge, and correlated with a 2-log increase in pancreas-residing tumor-specific T cells. Interfering with Ifngr1 expression in nontumor/host cells abrogated agonistic αCD40+αPD-L1 efficacy. In contrast, interfering with nontumor/host cell Tnfrsf1a led to cure in 100% of animals following agonistic αCD40+αPD-L1 and promoted the formation of circulating central memory T cells rather than long-lived effector T cells. In summary, we identify a mechanistic basis for T cell exhaustion in pancreatic cancer and a feasible clinical strategy to overcome it.


Assuntos
Antineoplásicos Imunológicos/farmacologia , Antígenos CD40/agonistas , Carcinoma Ductal Pancreático/tratamento farmacológico , Células Mieloides/efeitos dos fármacos , Neoplasias Pancreáticas/tratamento farmacológico , Animais , Antineoplásicos Imunológicos/uso terapêutico , Antígeno B7-H1/antagonistas & inibidores , Antígeno B7-H1/metabolismo , Linfócitos T CD8-Positivos/imunologia , Linfócitos T CD8-Positivos/metabolismo , Carcinoma Ductal Pancreático/genética , Carcinoma Ductal Pancreático/imunologia , Carcinoma Ductal Pancreático/patologia , Modelos Animais de Doenças , Ensaios de Seleção de Medicamentos Antitumorais , Feminino , Humanos , Interleucinas/metabolismo , Ativação Linfocitária/efeitos dos fármacos , Linfócitos do Interstício Tumoral/imunologia , Masculino , Camundongos , Camundongos Transgênicos , Células Mieloides/imunologia , Células Mieloides/metabolismo , Neoplasias Pancreáticas/genética , Neoplasias Pancreáticas/imunologia , Neoplasias Pancreáticas/patologia , Cultura Primária de Células , Células Tumorais Cultivadas/transplante , Microambiente Tumoral/efeitos dos fármacos , Microambiente Tumoral/imunologia
4.
Cell Rep ; 28(8): 2140-2155.e6, 2019 08 20.
Artigo em Inglês | MEDLINE | ID: mdl-31433988

RESUMO

Pancreatic ductal adenocarcinoma (PDA) is a lethal cancer resistant to immunotherapy. We create a PDA mouse model and show that neoantigen expression is required for intratumoral T cell accumulation and response to immune checkpoint blockade. By generating a peptide:MHC tetramer, we identify that PDA induces rapid intratumoral, and progressive systemic, tumor-specific T cell exhaustion. Monotherapy PD-1 or PD-L1 blockade enhances systemic T cell expansion and induces objective responses that require systemic T cells. However, tumor escape variants defective in IFNγ-inducible Tap1 and MHC class I cell surface expression ultimately emerge. Combination PD-1 + PD-L1 blockade synergizes therapeutically by increasing intratumoral KLRG1+Lag3-TNFα+ tumor-specific T cells and generating memory T cells capable of expanding to spontaneous tumor recurrence, thereby prolonging animal survival. Our studies support that PD-1 and PD-L1 are relevant immune checkpoints in PDA and identify a combination for clinical testing in those patients with neoantigen-specific T cells.


Assuntos
Antígenos de Neoplasias/imunologia , Antígeno B7-H1/antagonistas & inibidores , Carcinoma Ductal Pancreático/imunologia , Imunidade Celular , Imunoterapia , Neoplasias Pancreáticas/imunologia , Receptor de Morte Celular Programada 1/antagonistas & inibidores , Linfócitos T/imunologia , Adenocarcinoma/imunologia , Animais , Antígeno B7-H1/imunologia , Linhagem Celular Tumoral , Modelos Animais de Doenças , Antígenos de Histocompatibilidade Classe I/metabolismo , Evasão da Resposta Imune , Epitopos Imunodominantes/imunologia , Interferon gama/metabolismo , Camundongos Endogâmicos C57BL , Fenótipo , Receptor de Morte Celular Programada 1/imunologia , Transdução de Sinais , Neoplasias Pancreáticas
5.
Cancer Immunol Res ; 7(6): 977-989, 2019 06.
Artigo em Inglês | MEDLINE | ID: mdl-31028033

RESUMO

Pancreatic ductal adenocarcinoma (PDA) is a lethal malignancy resistant to therapies, including immune-checkpoint blockade. We investigated two distinct strategies to modulate tumor-associated macrophages (TAM) to enhance cellular therapy targeting mesothelin in an autochthonous PDA mouse model. Administration of an antibody to colony-stimulating factor (anti-Csf1R) depleted Ly6Clow protumorigenic TAMs and significantly enhanced endogenous T-cell intratumoral accumulation. Despite increasing the number of endogenous T cells at the tumor site, as previously reported, TAM depletion had only minimal impact on intratumoral accumulation and persistence of T cells engineered to express a murine mesothelin-specific T-cell receptor (TCR). TAM depletion interfered with the antitumor activity of the infused T cells in PDA, evidenced by reduced tumor cell apoptosis. In contrast, TAM programming with agonistic anti-CD40 increased both Ly6Chigh TAMs and the intratumoral accumulation and longevity of TCR-engineered T cells. Anti-CD40 significantly increased the frequency and number of proliferating and granzyme B+ engineered T cells, and increased tumor cell apoptosis. However, anti-CD40 failed to rescue intratumoral engineered T-cell IFNγ production. Thus, although functional modulation, rather than TAM depletion, enhanced the longevity of engineered T cells and increased tumor cell apoptosis, ultimately, anti-CD40 modulation was insufficient to rescue key effector defects in tumor-reactive T cells. This study highlights critical distinctions between how endogenous T cells that evolve in vivo, and engineered T cells with previously acquired effector activity, respond to modifications of the tumor microenvironment.


Assuntos
Carcinoma Ductal Pancreático/imunologia , Carcinoma Ductal Pancreático/terapia , Macrófagos/imunologia , Macrófagos/metabolismo , Neoplasias Pancreáticas/imunologia , Neoplasias Pancreáticas/terapia , Linfócitos T/imunologia , Linfócitos T/metabolismo , Animais , Antígenos de Neoplasias , Biomarcadores Tumorais , Carcinoma Ductal Pancreático/genética , Modelos Animais de Doenças , Matriz Extracelular , Perfilação da Expressão Gênica , Engenharia Genética , Humanos , Imunoterapia , Depleção Linfocítica , Mesotelina , Camundongos , Camundongos Transgênicos , Neoplasias Pancreáticas/genética , Neoplasias Pancreáticas
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