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December 6, 2025Nature Communications3 citationsOpen Access

Residual tumor cells after insufficient radiofrequency ablation promote lung metastasis by educating CD177hiPAD4hi neutrophils

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JWJianhua WuGHGenjie HuangBXBeibei Xu

Key Points

  • Lung metastases are induced by residual tumor cells through the MEK/ERK signaling pathway, resulting in neutrophil activation.
  • The presence of neutrophil extracellular traps is critical for tumor progression following radiofrequency ablation.
  • Analysis highlights the role of circulating tumor cells in identifying residual tumors with active lipid metabolism.
  • Early intervention targeting these mechanisms may improve outcomes post-radiofrequency ablation.

Abstract

Radiofrequency ablation (RFA) has been one of the most promising local treatments for colorectal liver metastases. However, tumor progression after RFA still severely affects patient prognosis, and its molecular mechanisms remain to be further explored. Here, we show that heat-stressed residual tumor cells following insufficient RFA (iRFA) can lead to lung metastases. Specific Cd177hiPad4hi neutrophils are found as the main pro-tumor phenotype in iRFA conditions, and neutrophil extracellular traps are produced to accelerate lung metastasis via the MEK/ERK signaling pathway. Mechanistically, PPARγ-triglyceride (TG) synthesis in residual tumor cells activates the P38 signaling pathway and CXCL5 secretion, contributing to Cd177hiPad4hi neutrophil infiltration. Furthermore, the specific CD36hi-EM (epithelial-mesenchymal) - circulating tumor cells (CTCs) with activated lipid metabolism characteristics are found to assist in early identification of residual tumor cells. This study not only provides specific targets for improving the efficacy of iRFA but also realizes its early identification and intervention.

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Cite This Study

Wu et al. (2025) studied this question.

synapsesocial.com/papers/69337cdbb3f947a0a125a00ehttps://doi.org/10.1038/s41467-025-66897-0
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