<p>Immune checkpoint inhibitors (ICIs) extend survival in many patients with cancer but are ineffective in patients without pre-existing immunity<sup><CitationRef AdditionalCitationIDS="CR2 CR3 CR4 CR5 CR6 CR7 CR8" CitationID="CR1">1</CitationRef>–<CitationRef CitationID="CR9">9</CitationRef></sup>. Although personalized mRNA cancer vaccines sensitize tumours to ICIs by directing immune attacks against preselected antigens, personalized vaccines are limited by complex and time-intensive manufacturing processes<sup><CitationRef AdditionalCitationIDS="CR11 CR12 CR13" CitationID="CR10">10</CitationRef>–<CitationRef CitationID="CR14">14</CitationRef></sup>. Here we show that mRNA vaccines targeting SARS-CoV-2 also sensitize tumours to ICIs. In preclinical models, SARS-CoV-2 mRNA vaccines led to a substantial increase in type I interferon, enabling innate immune cells to prime CD8<sup>+</sup> T cells that target tumour-associated antigens. Concomitant ICI treatment is required for maximal&#xa0;efficacy in immunologically cold tumours, which respond by increasing PD-L1 expression. Similar correlates of vaccination response are found in humans, including increases in type I interferon, myeloid–lymphoid activation in healthy volunteers and PD-L1 expression on tumours. Moreover, receipt of SARS-CoV-2 mRNA vaccines within 100 days of initiating ICI is associated with significantly improved median and three-year overall survival in multiple large retrospective cohorts. This benefit is similar among patients with immunologically cold tumours. Together, these results demonstrate that clinically available mRNA vaccines targeting non-tumour-related antigens are potent immune modulators capable of sensitizing tumours to ICIs.</p>

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SARS-CoV-2 mRNA vaccines sensitize tumours to immune checkpoint blockade

  • Adam J. Grippin,
  • Christiano Marconi,
  • Sage Copling,
  • Nan Li,
  • Chen Braun,
  • Cole Woody,
  • Elliana Young,
  • Priti Gupta,
  • Min Wang,
  • Annette Wu,
  • Seong Dong Jeong,
  • Dhruvkumar Soni,
  • Frances Weidert,
  • Chao Xie,
  • Eden Goldenberg,
  • Andrew Kim,
  • Chong Zhao,
  • Anna DeVries,
  • Paul Castillo,
  • Rishabh Lohray,
  • Michael K. Rooney,
  • Benjamin R. Schrank,
  • Yifan Wang,
  • Yifan Ma,
  • Enoch Chang,
  • Ramez Kouzy,
  • Kyle Dyson,
  • Jordan Jafarnia,
  • Nina Nariman,
  • Gregory Gladish,
  • Jacob New,
  • Ada Argueta,
  • Diana Amaya,
  • Nagheme Thomas,
  • Andria Doty,
  • Joe Chen,
  • Nikhil Copling,
  • Gabriel Alatrash,
  • Julie Simon,
  • Alicia Bea Davies,
  • William Dennis,
  • Richard Liang,
  • Jeff Lewis,
  • Xiong Wei,
  • Waree Rinsurongkawong,
  • Ara A. Vaporciyan,
  • Andrew Johns,
  • Ashley Aaroe,
  • Sanu Abraham,
  • Lee Andrews II,
  • Kiran K. Badami,
  • Janna A. Baganz,
  • Pratibha Bajwa,
  • Gregory R. Barbosa,
  • Hannah C. Beird,
  • Kristy Brock,
  • Elizabeth M. Burton,
  • Juan Cata,
  • Caroline Chung,
  • Catherine Claussen,
  • John Crommett,
  • Michael Cutherell,
  • Bouthaina Dabaja,
  • Hiba Dagher,
  • Kevin M. Daniels,
  • Mary Domask,
  • Giulio Draetta,
  • Paul Edelkamp Jr,
  • Sarah Fisher,
  • Katy Elizabeth French,
  • Andrew Futreal,
  • Maria Gaeta,
  • Myrna Godoy,
  • Drew Goldstein,
  • Jillian Gunther,
  • Kate Hutcheson,
  • David Jaffray,
  • Jeff Jin,
  • Teny Matthew John,
  • Trey Kell,
  • Mark Knafl,
  • Rayson C. Kwan,
  • J. Jack Lee,
  • Jennifer Litton,
  • Kevin W. McEnery,
  • Mary McGuire,
  • Benjamin Mescher,
  • Tejo Musunuru,
  • Mayoora Muthu,
  • Joseph Nates,
  • Craig S. Owen,
  • Priyadharshini Padmakumar,
  • Nicholas Palaskas,
  • Jay J. Patel,
  • Sabitha Prabhakaran,
  • Lucas Ramsey,
  • Vinod Ravi,
  • Cristhiam Rojas Hernandez,
  • Bilja Sajith,
  • Paul A. Scheet,
  • Stephanie Schmidt,
  • Kenna R. Shaw,
  • Sanjay Shete,
  • Daniel P. Shoenthal,
  • Lessley J. Stoltenberg,
  • Hussein Tawbi,
  • Anastasia Turin,
  • Samir Unni,
  • Benju Vicknamparampil,
  • Max C. Weber,
  • John Weinstein,
  • Scott Eric Woodman,
  • Mark C. Wozny,
  • Carol Wu,
  • Jia Wu,
  • James C. Yao,
  • Chingyi Young,
  • Emily Yu,
  • Steven Zatorski,
  • Thomas A. Aloia,
  • John Cuenca Trujillo,
  • Christopher Gibbons,
  • Anai Kothari,
  • Ishwaria Subbiah,
  • Phillip Thompson,
  • Jack Lee,
  • Ji-Hyun Lee,
  • Ryan Sun,
  • Padmanee Sharma,
  • Hai Tran,
  • Jianjun Zhang,
  • Don L. Gibbons,
  • Jennifer Wargo,
  • Betty Y. S. Kim,
  • John V. Heymach,
  • Hector R. Mendez-Gomez,
  • Wen Jiang,
  • Elias J. Sayour,
  • Steven H. Lin

摘要

Immune checkpoint inhibitors (ICIs) extend survival in many patients with cancer but are ineffective in patients without pre-existing immunity19. Although personalized mRNA cancer vaccines sensitize tumours to ICIs by directing immune attacks against preselected antigens, personalized vaccines are limited by complex and time-intensive manufacturing processes1014. Here we show that mRNA vaccines targeting SARS-CoV-2 also sensitize tumours to ICIs. In preclinical models, SARS-CoV-2 mRNA vaccines led to a substantial increase in type I interferon, enabling innate immune cells to prime CD8+ T cells that target tumour-associated antigens. Concomitant ICI treatment is required for maximal efficacy in immunologically cold tumours, which respond by increasing PD-L1 expression. Similar correlates of vaccination response are found in humans, including increases in type I interferon, myeloid–lymphoid activation in healthy volunteers and PD-L1 expression on tumours. Moreover, receipt of SARS-CoV-2 mRNA vaccines within 100 days of initiating ICI is associated with significantly improved median and three-year overall survival in multiple large retrospective cohorts. This benefit is similar among patients with immunologically cold tumours. Together, these results demonstrate that clinically available mRNA vaccines targeting non-tumour-related antigens are potent immune modulators capable of sensitizing tumours to ICIs.