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Updated: Jul 24, 2025

Monitoring the Cancer-Immunity Cycle and Exploring Tumor Microenvironment Dynamics
Published on: June 7, 2024
Leveraging immune resistance archetypes in solid cancer to inform next-generation anticancer therapies
Kristin G Anderson1,2, David A Braun3, Aitziber Buqué4
1Department of Microbiology, Immunology and Cancer Biology, Obstetrics and Gynecology, Carter Center for Immunology Research, University of Virginia, Charlottesville, Virginia, USA kristin.anderson@virginia.edu.
Abstract:
Anticancer immunotherapies, such as immune checkpoint inhibitors, bispecific antibodies, and chimeric antigen receptor T cells, have improved outcomes for patients with a variety of malignancies. However, most patients either do not initially respond or do not exhibit durable responses due to primary or adaptive/acquired immune resistance mechanisms of the tumor microenvironment. These suppressive programs are myriad, different between patients with ostensibly the same cancer type, and can harness multiple cell types to reinforce their stability. Consequently, the overall benefit of monotherapies remains limited. Cutting-edge technologies now allow for extensive tumor profiling, which can be used to define tumor cell intrinsic and extrinsic pathways of primary and/or acquired immune resistance, herein referred to as features or feature sets of immune resistance to current therapies. We propose that cancers can be characterized by immune resistance archetypes, comprised of five feature sets encompassing known immune resistance mechanisms. Archetypes of resistance may inform new therapeutic strategies that concurrently address multiple cell axes and/or suppressive mechanisms, and clinicians may consequently be able to prioritize targeted therapy combinations for individual patients to improve overall efficacy and outcomes.
Insights
Anticancer immunotherapies show promise, but patient resistance limits effectiveness. This study proposes categorizing cancers by immune resistance archetypes to guide combination therapies for better patient outcomes.
Area of Science:
- Oncology
- Immunology
- Cancer Research
Background:
- Anticancer immunotherapies like immune checkpoint inhibitors have improved cancer treatment outcomes.
- However, many patients do not respond or develop resistance due to tumor microenvironment complexities.
- Current monotherapies have limited overall benefit due to diverse and multifactorial resistance mechanisms.
Purpose of the Study:
- To address limitations in current anticancer immunotherapies.
- To propose a novel framework for characterizing cancer immune resistance.
- To guide the development of more effective combination therapeutic strategies.
Main Methods:
- Utilizing cutting-edge tumor profiling technologies.
- Defining tumor cell intrinsic and extrinsic pathways of immune resistance.
- Developing a classification system based on immune resistance archetypes.
Main Results:
- Identified numerous immune resistance mechanisms within the tumor microenvironment.
- Proposed five distinct feature sets encompassing known immune resistance mechanisms.
- Cancers can be characterized by specific immune resistance archetypes.
Conclusions:
- Immune resistance archetypes can inform new therapeutic strategies.
- Targeted therapy combinations addressing multiple suppressive mechanisms are crucial.
- This approach may enable clinicians to prioritize personalized treatment combinations for improved efficacy.
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