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April 28, 2026Nature Communications0 citationsOpen Access

Spatial predictors of response to chemo-immunotherapy in microsatellite stable metastatic colorectal cancer

JCJoan ChooJZJoseph J. ZhaoMLMai Chan Lau

Key Points

  • This study aims to understand how spatial and immune characteristics influence responses to treatment in microsatellite stable colorectal cancer.
  • Conducted integrated spatial, transcriptomic, and immune profiling of tumor and blood samples from patients in the MAYA trial.
  • Analyzed changes in tumor mutational burden and immune cell distribution following temozolomide (TMZ) treatment.
  • Evaluated the relationship between immune markers and clinical outcomes in response to anti-PD-1 and anti-CTLA-4 therapy.
  • Patients treated with TMZ and immune checkpoint inhibitors showed improved progression-free survival associated with increased tumor mutational burden.
  • Spatial profiling revealed that responders had a more favorable tumor microenvironment characterized by abundant cytotoxic T cells, compared to non-responders.
  • Early upregulation of TIGIT and PD-1 was identified as a predictor of treatment resistance in non-responders.

Abstract

Microsatellite-stable (MSS) colorectal cancers (CRC) are largely unresponsive to immune checkpoint inhibition (ICI). The MAYA trial used temozolomide (TMZ) in MGMT-silenced MSS mCRC, hypothesizing that TMZ-induced hypermutation could sensitize tumors to ICI; the primary endpoint was met, showing durable responses with TMZ plus ipilimumab and nivolumab. We perform integrated spatial, transcriptomic, and immune profiling of longitudinal tumor and blood samples from patients treated on the MAYA trial. Post-TMZ increases in tumor mutational burden associate with improved progression-free survival. Spatial profiling demonstrates that clinical benefit is greatest in permissive tumor microenvironments. Responders exhibit enrichment of cytotoxic T cells across tumor and stromal compartments, whereas non-responders display heterogeneous cellular neighborhoods, with fibroblasts in close spatial proximity to T cells, consistent with barriers to immune-mediated clearance. Longitudinal peripheral immune profiling shows that early upregulation of TIGIT and PD-1 following TMZ exposure predicts resistance. Together, these findings indicate that both mutational evolution and spatial immune architecture contribute to immune sensitization in MGMT-silenced MSS CRC. Clinical Trial Identification: NCT03832621.

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Cite This Study

Choo et al. (2026) studied this question.

synapsesocial.com/papers/69f04e08727298f751e7202ehttps://doi.org/10.1038/s41467-026-72204-2
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