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Published on: July 7, 2023
RAD001-Adjuvanted Influenza Vaccine Synergizes With Anti-Programmed Cell Death Protein 1 Therapy to Enhance Antitumor
Hui Lin Ou1, Jia Sun1, Shi Bo Wu1
1Ningbo Medical Centre, Li Huili Hospital Affiliated of Ningbo University, Ningbo, Zhejiang 315040, China.
Background:
Immune checkpoint inhibitors targeting programmed cell death protein 1 (PD-1) have transformed lung cancer therapy, but their efficacy is often limited in tumors with low programmed cell death ligand 1 (PD-L1) expression and immunologically "cold" tumor microenvironments. This study aimed to evaluate the safety and therapeutic efficacy of combining a RAD001-adjuvanted influenza vaccine with PD-1 blockade and to explore its immunological mechanisms in a murine lung cancer model.
Methods:
C57BL/6 mice bearing Lewis lung carcinoma (LLC) tumors, characterized by low PD-L1 levels (10.28%), were randomized to receive control, anti-PD-1 monotherapy, or anti-PD-1 combined with either a split influenza vaccine, an MF59-adjuvanted vaccine, or a RAD001-adjuvanted vaccine. Primary endpoints included tumor growth kinetics and survival. Safety was assessed via histopathological analysis of major organs and biochemical analyses. Mechanistic changes were evaluated through immunophenotyping of tumor-infiltrating lymphocytes (TILs) and serum cytokine profiling.
Results:
The RAD001-adjuvanted vaccine synergized with anti-PD-1 therapy, resulting in superior tumor growth inhibition compared to all other groups. This synergy was associated with a remodeled tumor microenvironment, showing increased CD8+ T-cell infiltration and a higher CD8+/regulatory T-cell ratio. Serum analysis revealed a shift toward a Th1-dominant cytokine profile (a trend toward increased interferon-gamma and interleukin-2). Histopathological and biochemical examination confirmed no treatment-related toxicities in the heart, liver, lungs, kidneys, or spleen.
Conclusions:
RAD001-adjuvanted influenza vaccination safely enhances the efficacy of anti-PD-1 therapy in PD-L1-low murine lung cancer by promoting a pro-inflammatory immune microenvironment. These findings suggest that strategic vaccine adjuvant selection can broaden the therapeutic reach of immune checkpoint inhibitors.
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