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Intratumoral delivery of RIG-I agonist SLR14 induces robust antitumor responses
Author(s) -
Xiaodong Jiang,
Viswanathan Muthusamy,
Olga Fedorova,
Yong Kong,
Daniel J. Kim,
Marcus Bosenberg,
Anna Marie Pyle,
Akiko Iwasaki
Publication year - 2019
Publication title -
the journal of experimental medicine
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 8.483
H-Index - 448
eISSN - 1540-9538
pISSN - 0022-1007
DOI - 10.1084/jem.20190801
Subject(s) - immune system , agonist , cancer research , metastasis , tumor microenvironment , cd8 , biology , immunology , cancer , pharmacology , medicine , receptor , biochemistry
Cytosolic nucleic acid-sensing pathways can be triggered to enhance immune response to cancer. In this study, we tested the antitumor activity of a unique RIG-I agonist, stem loop RNA (SLR) 14. In the immunogenic tumor models, we observed significant tumor growth delay and an extended survival in SLR14-treated mice. SLR14 also greatly improved antitumor efficacy of anti-PD1 antibody over single-agent treatment. SLR14 was mainly taken up by CD11b + myeloid cells in the tumor microenvironment, and many genes associated with immune defense were significantly up-regulated after treatment, accompanied by increase in the number of CD8 + T lymphocytes, NK cells, and CD11b + cells in SLR14-treated tumors. Strikingly, SLR14 dramatically inhibited nonimmunogenic B16 tumor growth, and the cured mice developed an immune memory. Furthermore, a systemic antitumor response was observed in both bilateral and tumor metastasis models. Collectively, our results demonstrate that SLR14 is a promising therapeutic RIG-I agonist for cancer treatment, either alone or in combination with existing immunotherapies.

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