Localized oncolytic virotherapy overcomes systemic tumor resistance to immune checkpoint blockade immunotherapy Journal Article


Authors: Zamarin, D.; Holmgaard, R. B.; Subudhi, S. K.; Park, J. S.; Mansour, M.; Palese, P.; Merghoub, T.; Wolchok, J. D.; Allison, J. P.
Article Title: Localized oncolytic virotherapy overcomes systemic tumor resistance to immune checkpoint blockade immunotherapy
Abstract: Preexisting lymphocytic infiltration of tumors is associated with superior prognostic outcomes in a variety of cancers. Recent studies also suggest that lymphocytic responses may identify patients more likely to benefit from therapies targeting immune checkpoints, suggesting that therapeutic efficacy of immune checkpoint blockade can be enhanced through strategies that induce tumor inflammation. To achieve this effect, we explored the immunotherapeutic potential of oncolytic Newcastle disease virus (NDV). We find that localized intratumoral therapy of B16 melanoma with NDV induces inflammatory responses, leading to lymphocytic infiltrates and antitumor effect in distant (nonvirally injected) tumors without distant virus spread. The inflammatory effect coincided with distant tumor infiltration with tumor-specific CD4+ and CD8+ T cells, which was dependent on the identity of the virus-injected tumor. Combination therapy with localized NDV and systemic CTLA-4 blockade led to rejection of preestablished distant tumors and protection from tumor rechallenge in poorly immunogenic tumor models, irrespective of tumor cell line sensitivity to NDV-mediated lysis. Therapeutic effect was associated with marked distant tumor infiltration with activated CD8+ and CD4 + effector but not regulatory T cells, and was dependent on CD8 + cells, natural killer cells, and type I interferon. Our findings demonstrate that localized therapy with oncolytic NDV induces inflammatory immune infiltrates in distant tumors, making them susceptible to systemic therapy with immunomodulatory antibodies, which provides a strong rationale for investigation of such combination therapies in the clinic.
Keywords: controlled study; interferon; drug potentiation; monotherapy; nonhuman; cd8+ t lymphocyte; animal cell; mouse; animal tissue; cytotoxic t lymphocyte antigen 4 antibody; cancer immunotherapy; animal experiment; animal model; inflammation; combination chemotherapy; antineoplastic activity; cancer resistance; regulatory t lymphocyte; immunogenicity; cd4+ t lymphocyte; oncolytic virus; melanoma b16; oncolytic virotherapy; natural killer cell; immunostimulation; metastasis potential; virus replication; lymphocytic infiltration; cell expansion; newcastle disease paramyxovirus; virogenesis; priority journal; article
Journal Title: Science Translational Medicine
Volume: 6
Issue: 226
ISSN: 1946-6234
Publisher: American Association for the Advancement of Science  
Date Published: 2014-03-05
Start Page: 226ra32
Language: English
DOI: 10.1126/scitranslmed.3008095
PROVIDER: scopus
PUBMED: 24598590
PMCID: PMC4106918
DOI/URL:
Notes: Export Date: 1 May 2014 -- Source: Scopus
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MSK Authors
  1. Jedd D Wolchok
    905 Wolchok
  2. Taha Merghoub
    364 Merghoub
  3. Dmitriy Zamarin
    201 Zamarin