Fc-fused IL-2(C125S) improves MSLN-targeted CAR-T cell persistence, metabolic fitness, and antitumor activity

Mesothelin (MSLN)-targeted chimeric antigen receptor T-cell (CAR-T) therapy is a promising strategy for pancreatic ductal adenocarcinoma (PDAC), but its efficacy is limited by insufficient persistence, progressive exhaustion, and metabolic dysfunction within the tumor microenvironment. We investigated whether CAR-T-cell-derived Fc-fused IL-2(C125S) could enhance the functional persistence, metabolic fitness, and antitumor activity of MSLN-targeted CAR-T cells. Second-generation MSLN CAR-T cells were engineered to secrete an IgG1 Fc-fused IL-2(C125S) variant (MSLN-IL2m CAR-T cells). CAR-T cells generated from five independent healthy donors were evaluated using PDAC cell lines with different levels of MSLN expression, serial antigen-stimulation assays, suppressive-stress models, phenotypic and functional analyses, and metabolic-flux assays. The contribution of IL-2Rα–STAT5 signaling was assessed using pharmacological STAT5 inhibition and IL-2Rα blockade. Antitumor efficacy and tolerability were further evaluated in an AsPC-1 xenograft model. MSLN-IL2m CAR-T cells showed enhanced expansion and STAT5 activation while maintaining comparable CAR expression and viability. Compared with conventional MSLN CAR-T cells, they exhibited stronger antigen-dependent cytotoxicity, proliferation, cytokine production, and functional persistence during repeated antigen stimulation, together with reduced expression of exhaustion-associated markers and preservation of memory-associated phenotypes. Under PDAC-associated suppressive conditions, MSLN-IL2m CAR-T cells maintained greater mitochondrial membrane potential, spare respiratory capacity, ATP production, and expression of PPARGC1A and CPT1A, while displaying a lower mitochondrial superoxide-associated signal. STAT5 inhibition or IL-2Rα blockade partially attenuated these functional, phenotypic, and metabolic advantages, supporting an important but non-exclusive contribution of IL-2Rα–STAT5 signaling. In vivo, MSLN-IL2m CAR-T cells showed greater intratumoral accumulation, improved tumor control, reduced bioluminescent tumor burden, and prolonged survival compared with conventional MSLN CAR-T cells, without major abnormalities in the evaluated hepatic, renal, hematologic, or body-weight parameters. CAR-encoded Fc-fused IL-2(C125S) enhanced the persistence, metabolic fitness, and antitumor activity of MSLN-targeted CAR-T cells in preclinical PDAC models. These findings provide proof-of-concept support for localized cytokine delivery as a strategy to improve CAR-T-cell efficacy in solid tumors, while further validation in clinically relevant models and comprehensive safety assessment are required.

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Journal
Journal of Translational Medicine
Published
2026-09-28
DOI
https://doi.org/10.1186/s12967-026-09016-x
Primary Topic
CAR-T cell therapy research
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article
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article

Fc-fused IL-2(C125S) improves MSLN-targeted CAR-T cell persistence, metabolic fitness, and antitumor activity

Haoyu Quan, Zhan Feng, Jie Yao, Yong Wang et al.
Journal of Translational Medicine
CAR-T cell therapy research
article

Fc-fused IL-2(C125S) improves MSLN-targeted CAR-T cell persistence, metabolic fitness, and antitumor activity

Haoyu Quan, Zhan Feng, Jie Yao, Yong Wang, Yan Zhang
article en

Abstract

Mesothelin (MSLN)-targeted chimeric antigen receptor T-cell (CAR-T) therapy is a promising strategy for pancreatic ductal adenocarcinoma (PDAC), but its efficacy is limited by insufficient persistence, progressive exhaustion, and metabolic dysfunction within the tumor microenvironment. We investigated whether CAR-T-cell-derived Fc-fused IL-2(C125S) could enhance the functional persistence, metabolic fitness, and antitumor activity of MSLN-targeted CAR-T cells. Second-generation MSLN CAR-T cells were engineered to secrete an IgG1 Fc-fused IL-2(C125S) variant (MSLN-IL2m CAR-T cells). CAR-T cells generated from five independent healthy donors were evaluated using PDAC cell lines with different levels of MSLN expression, serial antigen-stimulation assays, suppressive-stress models, phenotypic and functional analyses, and metabolic-flux assays. The contribution of IL-2Rα–STAT5 signaling was assessed using pharmacological STAT5 inhibition and IL-2Rα blockade. Antitumor efficacy and tolerability were further evaluated in an AsPC-1 xenograft model. MSLN-IL2m CAR-T cells showed enhanced expansion and STAT5 activation while maintaining comparable CAR expression and viability. Compared with conventional MSLN CAR-T cells, they exhibited stronger antigen-dependent cytotoxicity, proliferation, cytokine production, and functional persistence during repeated antigen stimulation, together with reduced expression of exhaustion-associated markers and preservation of memory-associated phenotypes. Under PDAC-associated suppressive conditions, MSLN-IL2m CAR-T cells maintained greater mitochondrial membrane potential, spare respiratory capacity, ATP production, and expression of PPARGC1A and CPT1A, while displaying a lower mitochondrial superoxide-associated signal. STAT5 inhibition or IL-2Rα blockade partially attenuated these functional, phenotypic, and metabolic advantages, supporting an important but non-exclusive contribution of IL-2Rα–STAT5 signaling. In vivo, MSLN-IL2m CAR-T cells showed greater intratumoral accumulation, improved tumor control, reduced bioluminescent tumor burden, and prolonged survival compared with conventional MSLN CAR-T cells, without major abnormalities in the evaluated hepatic, renal, hematologic, or body-weight parameters. CAR-encoded Fc-fused IL-2(C125S) enhanced the persistence, metabolic fitness, and antitumor activity of MSLN-targeted CAR-T cells in preclinical PDAC models. These findings provide proof-of-concept support for localized cytokine delivery as a strategy to improve CAR-T-cell efficacy in solid tumors, while further validation in clinically relevant models and comprehensive safety assessment are required.

Journal of Translational Medicine
Jiangsu University (CN), National University of Singapore (SG), Nanjing General Hospital of Nanjing Military Command (CN), Beijing Academy of Agricultural and Forestry Sciences (CN)
Good health and well-being
Openalex Percentile: Top 15%
CAR-T cell therapy research
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