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A neoantigen vaccine generates antitumour immunity in renal cell carcinoma

  • David A. Braun*
  • , Giorgia Moranzoni
  • , Vipheaviny Chea
  • , Bradley A. McGregor
  • , Eryn Blass
  • , Chloe R. Tu
  • , Allison P. Vanasse
  • , Cleo Forman
  • , Juliet Forman
  • , Alexander B. Afeyan
  • , Nicholas R. Schindler
  • , Yiwen Liu
  • , Shuqiang Li
  • , Jackson Southard
  • , Steven L. Chang
  • , Michelle S. Hirsch
  • , Nicole R. LeBoeuf
  • , Oriol Olive
  • , Ambica Mehndiratta
  • , Haley Greenslade
  • Keerthi Shetty, Susan Klaeger, Siranush Sarkizova, Christina B. Pedersen, Matthew Mossanen, Isabel Carulli, Anna Tarren, Joseph Duke-Cohan, Alexis A. Howard, J. Bryan Iorgulescu, Bohoon Shim, Jeremy M. Simon, Sabina Signoretti, Jon C. Aster, Liudmila Elagina, Steven A. Carr, Ignaty Leshchiner, Gad Getz, Stacey Gabriel, Nir Hacohen, Lars R. Olsen, Giacomo Oliveira, Donna S. Neuberg, Kenneth J. Livak, Sachet A. Shukla, Edward F. Fritsch, Catherine J. Wu*, Derin B. Keskin, Patrick A. Ott, Toni K. Choueiri*
*Corresponding author for this work
  • Yale University
  • Dana-Farber Cancer Institute
  • Harvard University
  • Broad Institute of Harvard University and Massachusetts Institute of Technology
  • Brigham and Women’s Hospital
  • University of Texas MD Anderson Cancer Center
  • Boston University

Research output: Contribution to journalJournal articleResearchpeer-review

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Abstract

Personalized cancer vaccines (PCVs) can generate circulating immune responses against predicted neoantigens1-6. However, whether such responses can target cancer driver mutations, lead to immune recognition of a patient’s tumour and result in clinical activity are largely unknown. These questions are of particular interest for patients who have tumours with a low mutational burden. Here we conducted a phase I trial (ClinicalTrials.gov identifier NCT02950766) to test a neoantigen-targeting PCV in patients with high-risk, fully resected clear cell renal cell carcinoma (RCC; stage III or IV) with or without ipilimumab administered adjacent to the vaccine. At a median follow-up of 40.2 months after surgery, none of the 9 participants enrolled in the study had a recurrence of RCC. No dose-limiting toxicities were observed. All patients generated T cell immune responses against the PCV antigens, including to RCC driver mutations in VHL, PBRM1, BAP1, KDM5C and PIK3CA. Following vaccination, there was a durable expansion of peripheral T cell clones. Moreover, T cell reactivity against autologous tumours was detected in seven out of nine patients. Our results demonstrate that neoantigen-targeting PCVs in high-risk RCC are highly immunogenic, capable of targeting key driver mutations and can induce antitumour immunity. These observations, in conjunction with the absence of recurrence in all nine vaccinated patients, highlights the promise of PCVs as effective adjuvant therapy in RCC.

Original languageEnglish
JournalNature
Volume639
Issue number8054
Pages (from-to)474-482
ISSN0028-0836
DOIs
Publication statusPublished - 2025

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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