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June 3, 2026Journal of Translational Medicine0 citationsOpen Access

CA9 targets ITGB1 to accelerate the progression of colorectal cancer by promoting the neutrophil extracellular traps formation

YWYì WángBLBen LiJZJie Zhou

Key Points

  • This research aims to understand the role of CA9 in promoting colorectal cancer through neutrophil extracellular traps (NETs).
  • Public single-cell RNA sequencing data screening identified CA9 as an oncogene in colorectal cancer.
  • In vitro and in vivo modulation of CA9 was performed along with flow cytometry and immunofluorescence assays to assess neutrophil infiltration.
  • Molecular docking, co-immunoprecipitation, and cytokine arrays investigated the mechanisms driving CA9-mediated tumor progression.
  • CA9 expression in serum is significantly elevated in colorectal cancer patients compared to controls (P < 0.05) and correlates with poor prognosis.
  • CA9 binds to ITGB1, activating the NF-κB pathway and leading to increased secretion of CXCL8, promoting neutrophil recruitment and NETs formation.
  • The CA9-ITGB1-CXCL8 axis accelerates colorectal cancer progression through reactive oxygen species production and NETs formation.

Abstract

The immunological role of carbonic anhydrase IX (CA9) in colorectal cancer (CRC) progression remains undefined. This study reveals a CA9-driven mechanism promoting tumor progression through neutrophil extracellular traps (NETs). CA9 was identified as ‌a candidate oncogene in CRC through public single-cell RNA sequencing data screening. Endogenous modulation of CA9 in vitro and in vivo was performed to elucidate its function. Flow cytometry and immunofluorescence assays were employed to assess how CA9 promotes neutrophil infiltration and NETs formation in tumor tissues. Finally, molecular docking, co-immunoprecipitation, and cytokine arrays were integrated to investigate the specific mechanisms of CA9-driven CRC progression. Serum CA9 expression level in CRC patients exhibited significantly elevated relative to controls, correlating with poor clinical prognosis (P < 0.05). Interestingly, CA9 mainly played a significant pro-tumor role in CRC mouse models, promoting tumor progression by regulating neutrophil recruitment and NETs formation. Mechanistically, CA9 binds to ITGB1, activating the NF-κB pathway and triggering increased secretion of C-X-C motif chemokine ligand 8 (CXCL8), which subsequently promoted neutrophil recruitment and NETs formation. Thus, the CA9-ITGB1-CXCL8 axis induces neutrophil reactive oxygen species production and NETs formation, thereby promoting CRC tumor progression. The CA9-driven ITGB1-CXCL8-NETs signaling axis significantly promotes CRC progression, thereby establishing CA9 as a novel potential therapeutic target for CRC.

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Cite This Study

Wáng et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc530dee9eb8c0dce6a7ahttps://doi.org/10.1186/s12967-026-08366-w
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