Claudin-2 extracellular loop 1-mimetic peptides functionally inhibit combined hepatocellular-cholangiocarcinoma cells

Takeshi Honda1, Yuka Kondo2, Tatsuya Sakaguchi2

  • 1Department of Chemistry, Kurume University School of Medicine, 67 Asahi-machi, Kurume, Fukuoka, 830-0011, Japan. honda_takeshi@kurume-u.ac.jp.

Scientific Reports
|July 1, 2026
PubMed

Insights

Claudin-2 is overexpressed in combined hepatocellular-cholangiocarcinoma (cHCC-CCA), a rare liver cancer. A novel peptide, Ex1C, targeting claudin-2, reduced cancer cell viability and adhesion, offering a potential therapeutic strategy.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cell Biology

Background:

  • Combined hepatocellular-cholangiocarcinoma (cHCC-CCA) is a rare and aggressive liver cancer.
  • Effective targeted therapies for cHCC-CCA are currently lacking.

Purpose of the Study:

  • To investigate the role of claudin-2 in cHCC-CCA.
  • To explore the potential of targeting claudin-2 with extracellular loop-mimetic peptides for therapeutic intervention.

Main Methods:

  • Analysis of claudin expression in cHCC-CCA cell lines (KMCH-1, KMCH-2).
  • Claudin-2 knockdown experiments to assess its effect on cell viability.
  • Synthesis and testing of claudin-2 extracellular loop 1 (ECL1)-mimetic peptides, specifically Ex1C.
  • Evaluation of Ex1C's impact on cHCC-CCA cell proliferation, viability, and adhesion to primary hepatocytes.

Main Results:

  • Claudin-2 was significantly overexpressed in cHCC-CCA cell lines compared to other liver cells.
  • Claudin-2 knockdown reduced the viability of cHCC-CCA cells.
  • The peptide Ex1C selectively reduced cHCC-CCA cell viability and proliferation without inducing cell death.
  • Ex1C inhibited the adhesion of cHCC-CCA cells to primary hepatocytes, suggesting interference with claudin-2 interactions.

Conclusions:

  • Claudin-2 is a characteristic molecular feature of the studied cHCC-CCA cell lines.
  • Extracellular loop-mimetic peptides, like Ex1C, can modulate claudin-2 function.
  • These findings support the potential of claudin-2 as a therapeutic target and Ex1C as a probe for studying claudin-dependent processes in cHCC-CCA.

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