Newly isolated human-derived Lactobacillus fermentum strain stimulates IFN-γ-secreting CD8+ T cells for enhanced anti-cancer immunity

  • iScience. 2026 Apr 8;29(5):115642. doi: 10.1016/j.isci.2026.115642.
Tae-Young Kim  1  2 Seungil Kim  1  3 Sohyeon Lee  1  4 Su-Hyun Lee  1 Jiyoung Yu  5 Kyunggon Kim  5  6 Mi-Na Kweon  1  2  4
Affiliations
  • 1. Mucosal Immunology Laboratory, Department of Convergence Medicine, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Republic of Korea.
  • 2. Digestive Diseases Research Center, University of Ulsan College of Medicine, Seoul, Republic of Korea.
  • 3. Food Functionality Research Division, Korea Food Research Institute, Wanju, Republic of Korea.
  • 4. Department of Microbiology, Brain Korea 21 Project, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Republic of Korea.
  • 5. Convergence Medicine Research Center, Asan Institute for Life Sciences, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Republic of Korea.
  • 6. Department of Medical Informatics and Statistics, Brain Korea 21 Project, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Republic of Korea.
Abstract

The gut microbiota represents a promising target to enhance Cancer Immunotherapy, yet the microbial molecules mediating anti-tumor immunity remain poorly defined. Here, we identify a human-derived strain, Lactobacillus fermentum MI37, that augments anti-tumor immune responses and synergizes with anti-PD-1 therapy. MI37 induces robust IFN-γ production with minimal IL-10, increases tumor-infiltrating cytotoxic T lymphocytes, and upregulates inflammatory gene programs in a syngeneic mouse model. Notably, heat-killed MI37 retains its immunostimulatory and anti-tumor effects, indicating a structural microbial component mediates activity. Fractionation identifies lipoteichoic acid (LTA) as the key effector and purified Staphylococcus aureus-derived LTA recapitulates MI37-induced IFN-γ production and CD8+ T cell activation. Genomic and proteomic analyses further reveal MI37-specific features in teichoic acid biosynthesis, including a distinctive sulfatase N-terminal domain-containing LTA synthase. These findings establish LTA-producing probiotics as potential microbial adjuvants to improve Cancer Immunotherapy efficacy.

Keywords
Cancer; Immunology; Microbiology.
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