Turning up the heat on non-immunoreactive tumours: opportunities for clinical development

María Ochoa de Olza1, Blanca Navarro Rodrigo1, Stefan Zimmermann1

  • 1Ludwig Institute for Cancer Research, University of Lausanne, Lausanne, Switzerland; Service of Immuno-Oncology, Department of Oncology, Lausanne University Hospital, Lausanne, Switzerland.

The Lancet. Oncology
|September 5, 2020
PubMed

Insights

Understanding why cancer patients don't respond to immunotherapy is key. Research explores turning "cold" tumors into "hot" ones to improve treatment effectiveness for more patients.

Area of Science:

  • Oncology
  • Immunology
  • Cancer Research

Background:

  • Immunotherapy, particularly immune checkpoint inhibitors, has advanced cancer treatment.
  • However, many patients do not respond to these therapies, indicating primary resistance.
  • The absence of lymphocytes in the tumor microenvironment (cold tumors) is a biomarker for non-responsiveness.

Purpose of the Study:

  • To review mechanisms for converting "cold" tumors into inflamed "hot" tumors.
  • To discuss preclinical and clinical data for treating non-immunoreactive tumors.
  • To enhance understanding of primary resistance to immunotherapy.

Main Methods:

  • Review of preclinical data supporting immunotherapy clinical trials.
  • Analysis of clinical and translational data for immunotherapy resistance.
  • Examination of tumor microenvironment composition and function.

Main Results:

  • Five mechanisms can potentially "hotten" cold tumors: increasing local inflammation, neutralizing immunosuppression, modifying vasculature, targeting tumor cells, and increasing tumor-specific T cells.
  • Preclinical and clinical data support strategies to overcome immunotherapy resistance.
  • Understanding resistance mechanisms provides a granular view of the tumor microenvironment.

Conclusions:

  • Elucidating resistance mechanisms is crucial for refining immunotherapy strategies.
  • Targeting the tumor microenvironment can improve patient response to cancer immunotherapy.
  • Further research aims to optimize therapy based on detailed tumor microenvironment analysis.

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