Skip to content
Review Open access

Multifaceted roles of CD44 in cancer progression and targeted therapeutic strategies

Aug 2026 · Experimental and Molecular Medicine · Vol 58, pp. 2451 - 2469 · 1 citation · 161 references
Medicine

TL;DR

The study reveals that glycosylation and phosphorylation of CD44 regulate its ligand-binding affinity and cell migration, and suggests that targeting CD44, particularly its variant forms, could disrupt cancer stem cell maintenance and metastasis, offering potential therapeutic avenues.

Abstract

CD44, a multifunctional transmembrane glycoprotein, is not only a bystander but also a crucial driver of cancer progression that promotes cancer stem cell maintenance, metastasis, and resistance to therapy. Therefore, CD44 is recognized as a promising therapeutic target in advanced malignancies. Here, we discuss its unique features, such as its structural diversity, which arise from alternative splicing and the post-translational modifications of cleavage and phosphorylation. In addition, we discuss the function of CD44 as a multivalent cell adhesion receptor for extracellular matrix components, including hyaluronic acid, fibronectin, osteopontin, and TSG6, thereby regulating lymphocyte activation, cell–cell interactions, cell adhesion, and migration within the extracellular matrix. Moreover, the emerging role of CD44 as a co-receptor of receptor tyrosine kinases such as epidermal growth factor receptor, c-MET, and vascular endothelial growth factor receptor 2 is highlighted to elucidate the contribution of CD44 to malignant signaling networks. We also discuss its potential as a therapeutic target in advanced cancers, particularly its applications in unconjugated antibodies, antibody–drug conjugates, peptide-based inhibitors, and chimeric antigen receptor-T cell therapies. We conclude by addressing the limitations observed in clinical studies and outlining promising opportunities for future development. CD44 is a transmembrane glycoprotein involved in various cellular functions, including cell adhesion, migration, and lymphocyte activation. It is recognized as a cancer stem cell marker and therapeutic target owing to its high expression in advanced cancer stages. This study explores structural diversity of CD44, focussing on its isoforms generated through alternative splicing and post-translational modifications. The authors highlight the role of CD44 in cancer progression, emphasizing its interactions with extracellular matrix components such as hyaluronic acid and osteopontin. The study reveals that glycosylation and phosphorylation of CD44 regulate its ligand-binding affinity and cell migration. Notably, interaction of CD44 with receptor tyrosine kinases, such as epidermal growth factor receptor and vascular endothelial growth factor, enhances oncogenic signaling pathways. The findings suggest that targeting CD44, particularly its variant forms, could disrupt cancer stem cell maintenance and metastasis, offering potential therapeutic avenues. This summary was initially drafted using artificial intelligence, then revised and fact-checked by the author.

Read PDF

Similar papers

Review Aug 2026

Comprehensive Insights into CD20: Molecular Structure, Biological Functions, Therapeutic Applications, and Its Role in B-cell Malignancies

Cluster of differentiation 20 (CD20), a membrane protein of the MS4A family, plays a key role in the proliferation, differentiation, and activation of B cells. In this review, we present an integrated analysis of the molecular structure of CD20. Its membrane domains, lipid raft localization, and critical phosphoryl...

Seyed Saman Nemati, Gholamreza Dehghan · 0 citations
Review Open access Aug 2026

GPR65 in cancer: expression heterogeneity, invasion and metastasis, the tumor immune microenvironment, and translational implications.

GPR65, also known as TDAG8, is a proton-sensing G protein-coupled receptor that links extracellular acidosis to intracellular signaling. Because acidic stress is a prominent feature of the tumor microenvironment, GPR65 has emerged as a potential regulator of tumor progression, immune suppression, and therapeutic respon...

Fei Pan, Xielin Yan, Ye Chen et al. · 0 citations
Review Open access Sep 2026

CD97/ADGRE5 in Cancer: Structural Activation, Context-Dependent Signaling, and Therapeutic Targeting

Highlights What are the main findings? CD97 is involved in tumor stemness, invasion, metastasis, and cell survival through adhesion-related signaling, mechanosensing, and downstream pathway activation. CD97-targeted chimeric antigen receptor (CAR) therapies have shown antitumor activity in animal models, whereas CD97-t...

Yu-Hong Lei, Yuan Zhang, Yu-Feng Wang et al. · 0 citations
Review Open access Jul 2026

Matricellular Proteins in Bladder Cancer: Context-Dependent Roles in Tumor Promotion and Suppression

Bladder cancer (BLCA) is a common and heterogeneous malignancy in which disease progression is driven not only by tumor-intrinsic alterations but also by dynamic interactions within the tumor microenvironment (TME). Increasing evidence positions the extracellular matrix (ECM) as a critical regulator of these processes....

Azamat Akhmetkaliyev, José Héctor Gibrán Fritz García, E. Sonnenberg-Riethmacher et al. · 0 citations
Review Open access Jul 2026

S100A8/A9 as a key player in colorectal cancer: from diagnosis to therapeutic targeting

This review systematically summarizes the biological properties, clinical significance, and tumor microenvironment-related mechanisms of S100A8/A9 in CRC, with emphasis on inflammation, immune regulation, invasion, metastasis, biomarker potential, and therapeutic targeting.

Yifan Wei, Hua Hao · 0 citations
Review Aug 2026

Deciphering the colorectal tumor microenvironment: Interactions and targets for effective therapy.

The colorectal tumor microenvironment (TME) includes a stroma that exerts diverse effects on cancer cells that can either promote metastasis and resistance to anticancer agents or suppress tumor growth. Recent studies suggest that a comprehensive elucidation of the intricate cellular and molecular interdependencies wit...

Jingmin Zhao, Chong Shi, Yu Du et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.