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Overcoming resistance to STING agonist therapy to incite durable protective antitumor immunity

  • Henrique Lemos
    ,
  • Rong Ou
    ,
  • Caroline McCardle
    ,
  • Yijun Lin
    ,
  • Jessica Calver
    ,
  • Jack Minett
*Corresponding author for this work
Scholary Output:
Contribution to journal
Article
Peer-review

Open access

Sustainable Development Goals

  • SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well

Abstract

Background Activating the Stimulator of Interferon Genes (STING) adaptor incites antitumor immunity against immunogenic tumors in mice, prompting clinical trials to test STING activators. However, STING signaling in the tumor microenvironment (TME) during development of Lewis lung carcinoma (LLC) suppresses antitumor immunity to promote tumor growth. We hypothesized that local immune balance favoring suppression of antitumor immunity also attenuates antitumor responses following STING activation. The purpose of this study was to evaluate how STING activation impacts antitumor responses in mice bearing LLC tumors. Methods Mice bearing established LLC tumors were treated with synthetic cyclic diadenyl monophosphate (CDA) to activate STING. Mice were monitored to assess LLC tumor growth, survival and protective antitumor immunity. Transcriptional and metabolic analyses were used to identify pathways responsive to CDA, and mice were co-treated with CDA and drugs that disrupt these pathways. Results CDA slowed LLC tumor growth but most CDA-treated mice (77%) succumbed to tumor growth. No evidence of tumor relapse was found in surviving CDA-treated mice at experimental end points but mice were not immune to LLC challenge. CDA induced rapid increase in immune regulatory pathways involving programmed death-1 (PD-1), indoleamine 2,3 dioxygenase (IDO) and cyclooxygenase-2 (COX2) in the TME. PD-1 blockade enhanced antitumor responses to CDA and increased mouse survival but mice did not eliminate primary tumor burdens. Two IDO inhibitor drugs had little or no beneficial effects on antitumor responses to CDA. A third IDO inhibitor drug synergized with CDA to enhance tumor control and survival but mice did not eliminate primary tumor burdens. In contrast, co-treatments with CDA and the COX2-selective inhibitor celecoxib controlled tumor growth, leading to uniform survival without relapse, and mice acquired resistance to LLC re-challenge and growth of distal tumors not exposed directly to CDA. Thus, mice co-treated with CDA and celecoxib acquired stable and systemic antitumor immunity. Conclusions STING activation incites potent antitumor responses and boosts local immune regulation to attenuate antitumor responses. Blocking STING-responsive regulatory pathways synergizes with CDA to enhance antitumor responses, particularly COX2 inhibition. Thus, therapy-induced resistance to STING may necessitate co-treatments to disrupt regulatory pathways responsive to STING in patients with cancer.

Publication Information

Output type

Scholary Output:
Contribution to journal
Article
Peer-review

Original language

English (US)

Article number

e001182

Journal (Volume, Issue Number)

Journal for ImmunoTherapy of Cancer (Volume 8, Issue 2)

Publication milestones

  • Published - 08/26/2020

Publication status

Published - 08/26/2020

ISSN

2051-1426

Publication IDs

  • Scopus: 85089981976
  • PubMed: 32847988

Publication metrics

Metrics

Fractional count
3
Fractional count
0.33
Fractional count
6
Fractional count
0.67
Fractional count
3
Fractional count
1
SciVal
FWCI
2.07
SciVal
Author count
9
SciVal
citations
6
SciVal
Paper percentile
92
SciVal
Top percentile
10
Scopus
citations

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Citation count
51
Captures
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Social media
10

Funding Details

Funding This study was supported by a grant to ALM from Cancer Research UK (Cancer Immunology Project A20970) and funds from the Faculty of Medical Sciences, Newcastle University.
FundersFunding number
CRUK
A20970
Newcastle University
-
Fakultet Medicinskih Nauka, Univerziteta U Kragujevcu
-