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August 19, 2025International Journal of Molecular Sciences14 citationsOpen Access

Galectin-9—An Emerging Glyco-Immune Checkpoint Target for Cancer Therapy

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AKAnastasia Iris KarkempetzakiTSTobias SchattonSBSteven R. Barthel

Key Points

  • Galectin-9 plays a crucial role in the tumor microenvironment, influencing cancer progression and immune response.
  • It interacts with immune glycoreceptors, including TIM-3 and PD-1, highlighting its significance in cancer therapy.
  • The review discusses the diverse biological functions of galectin-9 based on its structural features and cellular interactions.
  • Implications for cancer therapy are considered, focusing on galectin-9 as a promising target for immunotherapeutic strategies.

Abstract

Galectin-9 (Gal-9, LGALS9) is a member of the family of carbohydrate-binding lectins known as galectins. Galectins bind a diverse repertoire of galactose-bearing glycoprotein receptors expressed across multiple cell types. These interactions elicit a broad spectrum of pleiotropic effects important in both normal physiology and disease pathogenesis. Gal-9 contains two separate carbohydrate recognition domains with overlapping yet also divergent binding affinities for distinct glycostructures. This tandem repeat motif enables fine-tuning of its various biological functions. Additional control of Gal-9 activity is provided via multiple gene variants, protein isoforms, tissue distribution, and cell type-associated glycoprotein binding profiles. Within the tumor microenvironment, Gal-9 interacts with immune, non-immune, and cancer cells to influence malignant progression. Its binding of the premier immune checkpoint glycoreceptors, T-cell immunoglobulin and mucin-domain-containing-3 (TIM-3) and programmed cell death protein 1 (PD-1), places Gal-9 apart as a burgeoning target for immunotherapy. In this review, we delve into important aspects of Gal-9 immunobiology in tumorigenesis, including glycobiological and lineage-dependent functions. We further examine Gal-9 as a promising new glyco-immune checkpoint target for cancer therapy.

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Cite This Study

Karkempetzaki et al. (2025) studied this question.

synapsesocial.com/papers/68af4953ad7bf08b1ead4f0bhttps://doi.org/10.3390/ijms26167998
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