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A biocompatible copper based therapeutic nanoplatform for CD44 specific tumor targeted therapy and potent immune reprogramming;




TekijätFang, Yifeng; Tu, Mengyan; Tu, Xinru; Zhang, Hongbo; Li, Yangyang; Xu, Junfen

KustantajaElsevier BV

Julkaisuvuosi2026

Lehti: Biomaterials

Artikkelin numero124373

Vuosikerta335

ISSN0142-9612

eISSN1878-5905

DOIhttps://doi.org/10.1016/j.biomaterials.2026.124373

Julkaisun avoimuus kirjaamishetkelläAvoimesti saatavilla

Julkaisukanavan avoimuus Osittain avoin julkaisukanava

Verkko-osoitehttps://doi.org/10.1016/j.biomaterials.2026.124373

Rinnakkaistallenteen osoitehttps://research.utu.fi/converis/portal/detail/Publication/526947153

Rinnakkaistallenteen lisenssiCC BY

Rinnakkaistallennetun julkaisun versioKustantajan versio

LisätietojaData will be made available on request.


Tiivistelmä

Despite advances in oncology, the dual challenge of achieving precise tumor-targeted therapy while simultaneously activating antitumor immunity remains a major clinical barrier. In this study, we engineered a biocompatible copper-based platform, hyaluronic acid (HA) modified Cu ions based therapeutic (B–Cu/HA), that integrates selective tumor targeting, intrinsic cytotoxicity, and immune activation within a single therapeutic system. Leveraging the HA-CD44 interaction, B–Cu/HA exhibited preferential accumulation and prolonged retention in CD44-overexpressing tumors, while maintaining an excellent biosafety profile. Across multiple cancer models, B–Cu/HA robustly inhibited tumor progression. Mechanistically, it induced cuproptosis through upregulation of FDX1 and aggregation of lipoylated DLAT, and triggered ROS-mediated activation of the cGAS–STING pathway, promoting immunogenic cell death. Transcriptomic analysis revealed activation of hypoxia and cytokine signaling pathways, aligning with enhanced CD8+ T-cell cytotoxicity and remodeling of the tumor immune microenvironment. The animal models studies demonstrated that B–Cu/HA significantly suppressed tumor growth without systemic toxicity, and synergistically enhanced the efficacy of the immune checkpoint inhibitors anti-TIGIT. Together, these findings establish B–Cu/HA as a multifunctional, immunomodulatory formulation that offers a clinically translatable strategy to enhance tumor immunotherapy and overcome resistance in CD44-overexpressing tumors.



Avainsanat:
CD44-medicated tumor targetingcGAS-STING activationcopper-based therapeutic systemcuproptosisimmune checkpoint blockade synergy

Ladattava julkaisu

This is an electronic reprint of the original article.
This reprint may differ from the original in pagination and typographic detail. Please cite the original version.




Julkaisussa olevat rahoitustiedot
The study was supported by the Noncommunicable Chronic Diseases-National Science and Technology Major Project (Grant No. 2025ZD0545603 to J.X.), the Key R&D Program of Zhejiang (Grant No. 2026C02A1110 to J.X.), the National Natural Science Foundation of China (Grant No. 82472891 to J.X.;82372145 to H.Z.), the Zhejiang Province Natural Science Foundation of China (Grant No. LZ24H160001 to J.X.; LBD24H180001 to H.Z.), and Medical Interdisciplinary Innovation Program 2024, Zhejiang University School of Medicine, China (J.X.).


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