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December 9, 2025Frontiers in Immunology3 citationsOpen Access

Chronic compression induces transcriptional, metabolic, and functional state changes in macrophages that recapitulate tumor-associated phenotypes

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ADAlice Burchett DarantiereHCHao ChenSHScott S. Howard

Key Points

  • This research explores how chronic compression affects macrophages in the glioblastoma tumor microenvironment.
  • Utilized a custom in vitro compression system to apply solid stress on murine macrophages.
  • Analyzed morphological, transcriptional, metabolic, and functional responses of macrophages to compression.
  • Compression induced significant changes in macrophage morphology and function.
  • Macrophage gene expression profiles resembled those of glioma-associated macrophages linked to poor outcomes.
  • Independently of tumor cell factors, compression may create tumor-associated macrophage characteristics.

Abstract

Introduction Macrophages comprise a significant portion of the glioblastoma tumor microenvironment and are essential in promoting immunosuppression and tumor progression. Solid tumors such as glioblastoma generate solid stress as they expand, creating a compressive microenvironment for mechanosensitive immune cells including macrophages. Macrophages are known to respond to various mechanical stimuli but have not yet been studied in the context of chronic compression observed in growing tumors. Methods Here, we used a custom in vitro compression system to elucidate the effects of compressive solid stress on murine macrophages. Results We found that macrophages have significant morphological, transcriptional, metabolic, and functional responses to compression. These changes corresponded to both canonical pro- and anti-inflammatory macrophage states. The gene expression signatures of compressed macrophages more closely resembled those of glioma-associated macrophages known to be associated with worse patient outcomes. Conclusion These results indicate that compression alone, independent from tumor cell-derived biochemical factors, may contribute to the pathological tumor-associated macrophage phenotype. This could represent a vicious cycle of tumor immunomechanics and mechano-immunology. Targeting solid stress in tumors or the response to solid stress by macrophages may interrupt this feedback loop to help normalize the tumor immune microenvironment and improve glioblastoma response to immunotherapy.

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Cite This Study

Darantiere et al. (2025) studied this question.

synapsesocial.com/papers/69401d5b2d562116f28f8b29https://doi.org/10.3389/fimmu.2025.1626024
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