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Updated: Jul 30, 2025

Flow Cytometry-Based Isolation and Therapeutic Evaluation of Tumor-Infiltrating Lymphocytes in a Mouse Model of Pancreatic Cancer
Published on: January 17, 2025
Personalized RNA neoantigen vaccines stimulate T cells in pancreatic cancer
Luis A Rojas1,2, Zachary Sethna1,2, Kevin C Soares2,3
1Immuno-Oncology Service, Human Oncology and Pathogenesis Program, Memorial Sloan Kettering Cancer Center, New York, NY, USA.
Abstract:
Pancreatic ductal adenocarcinoma (PDAC) is lethal in 88% of patients1, yet harbours mutation-derived T cell neoantigens that are suitable for vaccines 2,3. Here in a phase I trial of adjuvant autogene cevumeran, an individualized neoantigen vaccine based on uridine mRNA-lipoplex nanoparticles, we synthesized mRNA neoantigen vaccines in real time from surgically resected PDAC tumours. After surgery, we sequentially administered atezolizumab (an anti-PD-L1 immunotherapy), autogene cevumeran (a maximum of 20 neoantigens per patient) and a modified version of a four-drug chemotherapy regimen (mFOLFIRINOX, comprising folinic acid, fluorouracil, irinotecan and oxaliplatin). The end points included vaccine-induced neoantigen-specific T cells by high-threshold assays, 18-month recurrence-free survival and oncologic feasibility. We treated 16 patients with atezolizumab and autogene cevumeran, then 15 patients with mFOLFIRINOX. Autogene cevumeran was administered within 3 days of benchmarked times, was tolerable and induced de novo high-magnitude neoantigen-specific T cells in 8 out of 16 patients, with half targeting more than one vaccine neoantigen. Using a new mathematical strategy to track T cell clones (CloneTrack) and functional assays, we found that vaccine-expanded T cells comprised up to 10% of all blood T cells, re-expanded with a vaccine booster and included long-lived polyfunctional neoantigen-specific effector CD8+ T cells. At 18-month median follow-up, patients with vaccine-expanded T cells (responders) had a longer median recurrence-free survival (not reached) compared with patients without vaccine-expanded T cells (non-responders; 13.4 months, P = 0.003). Differences in the immune fitness of the patients did not confound this correlation, as responders and non-responders mounted equivalent immunity to a concurrent unrelated mRNA vaccine against SARS-CoV-2. Thus, adjuvant atezolizumab, autogene cevumeran and mFOLFIRINOX induces substantial T cell activity that may correlate with delayed PDAC recurrence.
Insights
This study shows that an individualized neoantigen vaccine (autogene cevumeran) combined with immunotherapy and chemotherapy can stimulate T-cell responses in pancreatic cancer patients. This T-cell activity may help delay cancer recurrence after surgery.
Area of Science:
- Oncology
- Immunology
- Vaccinology
Background:
- Pancreatic ductal adenocarcinoma (PDAC) has a high mortality rate, with 88% of patients succumbing to the disease.
- PDAC harbors mutation-derived neoantigens that are potential targets for vaccine-based therapies.
- Adjuvant therapies are crucial for improving outcomes in resected PDAC.
Purpose of the Study:
- To evaluate the safety and efficacy of an individualized mRNA neoantigen vaccine (autogene cevumeran) in the adjuvant setting for PDAC.
- To assess vaccine-induced T-cell responses and their correlation with clinical outcomes, including recurrence-free survival.
- To determine the feasibility of real-time mRNA vaccine synthesis and administration in PDAC patients.
Main Methods:
- A Phase I trial involving adjuvant autogene cevumeran, atezolizumab (anti-PD-L1), and modified FOLFIRINOX chemotherapy.
- Real-time synthesis of mRNA neoantigen vaccines from surgically resected PDAC tumors.
- High-threshold assays to measure neoantigen-specific T-cell responses, CloneTrack for T-cell tracking, and assessment of 18-month recurrence-free survival.
Main Results:
- Autogene cevumeran was tolerable and induced de novo neoantigen-specific T-cell responses in 8 of 16 patients.
- Vaccine-expanded T-cells comprised up to 10% of blood T-cells, demonstrated expansion with a booster, and included long-lived effector CD8+ T-cells.
- Patients with vaccine-expanded T-cells (responders) showed a significantly longer median recurrence-free survival (not reached) compared to non-responders (13.4 months; P=0.003).
Conclusions:
- Adjuvant atezolizumab, autogene cevumeran, and mFOLFIRINOX combination therapy induces significant T-cell activity in PDAC patients.
- The induction of vaccine-specific T-cell responses correlates with delayed PDAC recurrence.
- This therapeutic strategy holds promise as an adjuvant treatment to improve long-term outcomes in resected PDAC.
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