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February 9, 2026Oncogenesis3 citationsOpen Access

Fatty acid uptake mediated by FABP4 promotes the formation of CD8+T cell senescence through lipid peroxidation in the adipocyte-rich microenvironment of Ovarian Cancer

CYChunyan YuXLXin LiXQXiaolong Qian

Key Result

Inhibition of FABP4 blocked CD8+T cell senescence formation, reduced lipid peroxidation, and restored effector function in the adipocyte-rich microenvironment of ovarian cancer.

Key Points

  • The research examines the role of fatty acid binding protein 4 (FABP4) in CD8+ T cell senescence within the tumor microenvironment of ovarian cancer.
  • Utilized single-cell RNA sequencing on ovarian cancer and clinical samples to analyze T cell senescence.
  • Administered FABP4 inhibitors and siRNA knockdown to assess impacts on T cell function.
  • Conducted experiments using an ovarian cancer mouse model to validate findings in vivo.
  • Adipocyte-rich tumor microenvironment was found to strongly associate with the formation of senescent CD8+ T cells.
  • Inhibition of FABP4 significantly blocked CD8+ T cell senescence and restored T cell function.
  • BMS309403 treatment in mouse models resulted in improved anti-tumor immunity and prolonged survival.

Structured PICO

P
Population
Preclinical ovarian cancer models including C57BL/6 mice injected with ID8/ID8-luc-P53-/- cells, in vitro mouse CD8+ T cells, and clinical tissue samples from 20 patients with high-grade serous ovarian cancer (HGSOC).
I
Intervention
FABP4 inhibition using BMS309403 (15 mg/kg intraperitoneal every other day in mice, 25 μM in vitro) or siRNA knockdown, with or without cisplatin.
C
Comparator
Vehicle/PBS control or nonsense siRNA/plasmid.
O
Outcome
Formation of senescent CD8+ T cells (CD8+Tsen), lipid peroxidation levels, and overall survival in mouse models.surrogate

Inhibiting FABP4-mediated fatty acid uptake reduces CD8+ T cell senescence and improves anti-tumor immunity in ovarian cancer models.

Abstract

T cell senescence significantly impairs the efficacy of immune checkpoint blockade (ICB) therapy in cancer. Metabolic reprogramming is a crucial factor in T cell senescence in tumor microenvironment (TME). Ovarian cancer (OvCa) patients derive limited benefit from ICB treatment, probably related to T cell senescence. OvCa cells metastasize to the abdominal cavity rich in omental fat and raise ascites, forming a unique TME, adipocyte-rich TME. In this study, we investigated the effects of adipocyte-rich TME on T cell senescence. Using the single-cell RNA sequencing of OvCa and clinical samples, we found that adipocyte-rich TME is strongly associated with the formation of senescence CD8+T (CD8+Tsen) cells. Mechanistically, adipocyte-derived factors (MATES) and oleic acid (OA)-the predominant fatty acid in OvCa ascites-promoted tumor-induced CD8+Tsen formation by enhancing fatty acid (FA) uptake via FABP4, triggering lipid peroxidation rather than energy production. Inhibition of FABP4 (using the inhibitor BMS309403 or siRNA knockdown) blocked CD8+Tsen cell formation, reduced lipid peroxidation, restored CD8+T cell effector function, and suppressed immunosuppressive cytokines. Moreover, using an OvCa mouse model, we found that in OvCa mice BMS309403 treatment partially diminished CD8+Tsen formation by reducing FA uptake, and improved anti-tumor immunity, and prolonged the survival time of OvCa mice when combined with chemotherapy. Our work suggests FABP4-mediated FA metabolism as a therapeutic target to counteract T cell senescence in adipocyte-rich TME, providing a novel immunotherapeutic strategy for OvCa.

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Cite This Study

Yu et al. (2026) studied Ovarian Cancer (n=20). FABP4 inhibition (BMS309403 or siRNA) vs. Control was evaluated on CD8+T cell senescence formation. Inhibition of FABP4 blocked CD8+T cell senescence formation, reduced lipid peroxidation, and restored effector function in the adipocyte-rich microenvironment of ovarian cancer.

synapsesocial.com/papers/698979b9f0ec2af6756e79b4https://doi.org/10.1038/s41389-026-00600-w
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