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Accès ouvert déclaré 2026 article

The RBMS1–SLC7A11 axis regulates ferroptosis susceptibility and lenvatinib sensitivity in hepatocellular carcinoma

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1Pays d’affiliation déclarés

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Le résumé fourni par la source

Hepatocellular carcinoma remains a leading cause of cancer-related mortality worldwide. Although lenvatinib is widely deployed as a frontline systemic therapy for advanced disease, its clinical utility is frequently subverted by primary or adaptive non-responsiveness. Evasion of ferroptosis, an iron-dependent form of regulated cell death driven by lipid peroxidation, has emerged as a key survival mechanism for tumor cells under therapeutic stress. While the RNA-binding protein RBMS1 is known to participate in oncogenic progression and ferroptotic regulation across several malignancies, whether it modulates lenvatinib sensitivity in hepatocellular carcinoma by intersecting with the SLC7A11-dependent antioxidant pathway has not been established. Expression profiles of RBMS1 and SLC7A11 were interrogated in paired clinical tissue samples and public transcriptomic datasets. Stable lentiviral overexpression or short hairpin RNA-mediated knockdown was executed in HepG2 and Huh7 cells to modulate candidate gene abundance. Cellular phenotypes, comprising viability, clonogenicity, migration, invasion, and drug sensitivity, were mapped via cell counting kit-eight, colony formation, wound healing, and transwell migration assays. Ferroptotic kinetics and oxidative shifts were tracked by measuring intracellular reactive oxygen species and lipid peroxidation using fluorescent probes. Finally, a subcutaneous xenograft model was established to validate the synergistic potential of RBMS1 depletion with lenvatinib therapy in vivo. In clinical specimens, SLC7A11 was markedly upregulated and tied to shortened overall survival, while RBMS1 expression exhibited a strong upward trend that correlated robustly with SLC7A11 abundance in broader transcriptomic cohorts. Functionally, overexpressing RBMS1 accelerated malignant behaviors, expanded SLC7A11 protein levels, neutralized reactive oxygen species, and shielded cells from lipid peroxidation, ultimately lowering lenvatinib sensitivity. Conversely, silencing RBMS1 yielded opposite phenotypes, aggravating ferroptotic oxidative damage and amplifying lenvatinib responsiveness. Epistatic rescue experiments demonstrated that SLC7A11 knockdown completely abrogated the anti-ferroptotic defense and drug tolerance conferred by RBMS1 hyperactivation. In vivo animal models corroborated these dynamics, showing that RBMS1 knockdown significantly potentiated the antitumor efficacy of lenvatinib. These findings position RBMS1 as a novel upstream post-transcriptional regulator of SLC7A11-dependent ferroptosis susceptibility and lenvatinib responsiveness in hepatocellular carcinoma. By reinforcing the SLC7A11 antioxidant network, RBMS1 shields malignant cells from drug-induced oxidative catastrophe. Targeting this newly uncovered post-transcriptional axis represents a viable therapeutic strategy to overcome lenvatinib tolerance in advanced disease.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
The RBMS1–SLC7A11 axis regulates ferroptosis susceptibility and lenvatinib sensitivity in hepatocellular carcinoma
Date Crossref
15/08/2026
Éditeur
Springer Science and Business Media LLC
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Où se fait cette recherche

  • Lishui University pays non établi dans la notice
    Université ou école supérieure
  • Lishui Central Hospital pays non établi dans la notice
    Établissement de santé
  • Lishui City People's Hospital pays non établi dans la notice
    Établissement de santé
  • Lishui Hospital of Wenzhou Medical University Department of Hepatobiliary Pancreatic Surgery pays non établi dans la notice
    Université ou école supérieure

Lishui University, Lishui Central Hospital et Lishui City People's Hospital, avec 1 autre affiliation.

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Ferroptosis and cancer prognosisCancer, Lipids, and MetabolismTrace Elements in Health

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