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Desmoplastic stroma restricts T cell extravasation and mediates immune exclusion and immunosuppression in solid tumors.


ABSTRACT: The desmoplastic stroma in solid tumors presents a formidable challenge to immunotherapies that rely on endogenous or adoptively transferred T cells, however, the mechanisms are poorly understood. To define mechanisms involved, we treat established desmoplastic pancreatic tumors with CAR T cells directed to fibroblast activation protein (FAP), an enzyme highly overexpressed on a subset of cancer-associated fibroblasts (CAFs). Depletion of FAP + CAFs results in loss of the structural integrity of desmoplastic matrix. This renders these highly treatment-resistant cancers susceptible to subsequent treatment with a tumor antigen (mesothelin)-targeted CAR and to anti-PD1 antibody therapy. Mechanisms include overcoming stroma-dependent restriction of T cell extravasation and/or perivascular invasion, reversing immune exclusion, relieving T cell suppression, and altering the immune landscape by reducing myeloid cell accumulation and increasing endogenous CD8 + T cell and NK cell infiltration. These data provide strong rationale for combining tumor stroma-and malignant cell-targeted therapies to be tested in clinical trials.

SUBMITTER: Xiao Z 

PROVIDER: S-EPMC10120701 | biostudies-literature | 2023 Aug

REPOSITORIES: biostudies-literature

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Desmoplastic stroma restricts T cell extravasation and mediates immune exclusion and immunosuppression in solid tumors.

Xiao Zebin Z   Todd Leslie L   Huang Li L   Noguera-Ortega Estela E   Lu Zhen Z   Huang Lili L   Kopp Meghan M   Li Yue Y   Pattada Nimisha N   Zhong Wenqun W   Guo Wei W   Scholler John J   Liousia Maria M   Assenmacher Charles-Antoine CA   June Carl H CH   Albelda Steven M SM   Puré Ellen E  

bioRxiv : the preprint server for biology 20230807


The desmoplastic stroma in solid tumors presents a formidable challenge to immunotherapies that rely on endogenous or adoptively transferred T cells, however, the mechanisms are poorly understood. To define mechanisms involved, we treat established desmoplastic pancreatic tumors with CAR T cells directed to fibroblast activation protein (FAP), an enzyme highly overexpressed on a subset of cancer-associated fibroblasts (CAFs). Depletion of FAP<sup>+</sup>CAFs results in loss of the structural int  ...[more]

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