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Oncogenic Signalling Pathways in Cancer Immunotherapy: Leader or Follower in This Delicate Dance?
Douglas Cartwright1,2, Andrew C Kidd1,2, Sonam Ansel1,2
1School of Cancer Sciences, University of Glasgow, Bearsden, Glasgow G61 1QH, UK.
Abstract:
Immune checkpoint inhibitors have become a mainstay of treatment in many solid organ malignancies. Alongside this has been the rapid development in the identification and targeting of oncogenic drivers. The presence of alterations in oncogenic drivers not only predicts response to target therapy but can modulate the immune microenvironment and influence response to immunotherapy. Combining immune checkpoint inhibitors with targeted agents is an attractive therapeutic option but overlapping toxicity profiles may limit the clinical use of some combinations. In addition, there is growing evidence of shared resistance mechanisms that alter the response to immunotherapy when it is used after targeted therapy. Understanding this complex interaction between oncogenic drivers, targeted therapy and response to immune checkpoint inhibitors is vital for selecting the right treatment, at the right time for the right patient. In this review, we summarise the preclinical and clinical evidence of the influence of four common oncogenic alterations on immune checkpoint inhibitor response, combination therapies, and the presence of shared resistance mechanisms. We highlight the common resistance mechanisms and the need for more randomised trials investigating both combination and sequential therapy.
Insights
Immune checkpoint inhibitors combined with targeted therapies show promise for solid tumors. However, overlapping toxicities and shared resistance mechanisms require careful consideration for optimal patient treatment strategies.
Area of Science:
- Oncology
- Immunotherapy
- Molecular targeted therapy
Background:
- Immune checkpoint inhibitors (ICIs) are standard treatments for many solid organ malignancies.
- Targeted therapies, guided by oncogenic driver alterations, are rapidly advancing.
- Oncogenic alterations influence both targeted therapy response and the tumor immune microenvironment.
Purpose of the Study:
- To review the influence of common oncogenic alterations on ICI response.
- To examine combination therapies involving ICIs and targeted agents.
- To explore shared resistance mechanisms between targeted therapy and immunotherapy.
Main Methods:
- Review of preclinical and clinical evidence.
- Focus on four common oncogenic alterations.
- Analysis of combination and sequential therapy strategies.
Main Results:
- Oncogenic drivers impact ICI response and can modulate the immune microenvironment.
- Combination therapy presents therapeutic potential but faces toxicity challenges.
- Shared resistance mechanisms can diminish immunotherapy efficacy after targeted therapy.
Conclusions:
- Understanding the interplay between oncogenic drivers, targeted agents, and ICIs is crucial for personalized treatment.
- Further randomized trials are needed to investigate optimal combination and sequential therapeutic approaches.
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