ArticleRedox biology2024
Redox-active vitamin C suppresses human osteosarcoma growth by triggering intracellular ROS-iron-calcium signaling crosstalk and mitochondrial dysfunction.
Article in Redox biology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 24 papers.
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Who cites it
24 citing papers in PubMed.
- Trial
- Fractionated high-dose vitamin c sustains higher plasma trough concentrations in advanced solid tumors: a phase I clinical study.Translational oncology · 2026Article
- Spatial enrichment of PTPRZ1 in the peritumoral niche drives glioblastoma migration via the OPA1/ROS/CDH2 axis.Journal of translational medicine · 2026Article
- Multifunctional biohybrid nanoplatform interferes electron transport chain amplifying mitochondrial metabolism-mediated anti-tumor therapy.Materials today. Bio · 2026Article
- Advanced Spray-Dried Cyanidin Chloride Inhalable Dry Powders with High Aerosol Dispersion Performance and Mitochondrial Bioenergetics Modulation for Targeted Pulmonary Delivery.ACS pharmacology & translational science · 2026Article
- Relationship between Prostate Cancer and Benign Hyperplasia: Role of Inflammation-Induced Oxidative Stress, Vitamin C, and Epigenetics.The world journal of men's health · 2026Review
- Metal-dependent regulated cell death: Molecular architecture and translational frontiers.iMeta · 2026Review
- Pyroptosis- and Necroptosis-Related Signaling in Salicylate UV Absorber-Induced Toxicity: Implications for Sustainable Chemistry and Human Health.International journal of molecular sciences · 2026Article
- Targeting Ferroptosis With Natural Products for the Treatment of Skeletal System Disease: An Updated Review.Journal of cellular and molecular medicine · 2026Review
- High-dose vitamin C: A promising anti-tumor agent, insight from mechanisms, clinical research, and challenges.Genes & diseases · 2026Review
- A Comprehensive Review of Vitamin C for Cancer Therapy: Anti-Tumor Mechanisms and Nano-Formulation Strategies.International journal of nanomedicine · 2026Review
- COX7A1-mediated mitochondrial dysfunction can induce ferroptosis in endometrial cancer cells.PloS one · 2026Article
- Dehydroascorbic Acid Induces Cell Death in Sarcoma Stem Cells Under bFGF-Mediated Stemness-Supporting Conditions.Antioxidants (Basel, Switzerland) · 2025Article
- Review
- Ascorbic Acid-Derived Supramolecular Gels Induce Immunogenic Ferroptosis in Cancer Cells to Potentiate Tumor Immunotherapy.ACS nano · 2025Article
- Article
- From mitochondrial dysregulation to ferroptosis: Exploring new strategies and challenges in radioimmunotherapy (Review).International journal of oncology · 2025Review
- Crosstalk between calcium and reactive oxygen species signaling in cancer revisited.Cell calcium · 2025Review
- Article
- Eriodictyol-cisplatin coated nanomedicine synergistically promote osteosarcoma cells ferroptosis and chemosensitivity.Journal of nanobiotechnology · 2025Article
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2 authors.
Funding
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Abstract
Pharmacological vitamin C (VC) has gained attention for its pro-oxidant characteristics and selective ability to induce cancer cell death. However, defining its role in cancer has been challenging due to its complex redox properties. In this study, using a human osteosarcoma (OS) model, we show that the redox-active property of VC is critical for inducing non-apoptotic cancer cell death via intracellular reactive oxygen species (ROS)-iron-calcium crosstalk and mitochondrial dysfunction. In both 2D and 3D OS cell culture models, only the oxidizable form of VC demonstrated potent dose-dependent cytotoxicity, while non-oxidizable and oxidized VC derivatives had minimal effects. Live-cell imaging showed that only oxidizable VC caused a surge in cytotoxic ROS, dependent on iron rather than copper. Inhibitors of ferroptosis, a form of iron-dependent cell death, along with classical apoptosis inhibitors, were unable to completely counteract the cytotoxic effects induced by VC. Further pharmacological and genetic inhibition analyses showed that VC triggers calcium release through inositol 1,4,5-trisphosphate receptors (IP3Rs), leading to mitochondrial ROS production and eventual cell death. RNA sequencing revealed down-regulation of genes involved in the mitochondrial electron transport chain and oxidative phosphorylation upon pharmacological VC treatment. Consistently, high-dose VC reduced mitochondrial membrane potential, oxidative phosphorylation, and ATP levels, with ATP reconstitution rescuing VC-induced cytotoxicity. In vivo OS xenograft studies demonstrated reduced tumor growth with high-dose VC administration, concomitant with the altered expression of mitochondrial ATP synthase (MT-ATP). These findings emphasize VC's potential clinical utility in osteosarcoma treatment by inducing mitochondrial metabolic dysfunction through a vicious intracellular ROS-iron-calcium cycle.
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