1. Targeted Osmotic Lysis: A Novel Approach to Targeted Cancer Therapies
    Harry J. Gould et al, 2022, Biomedicines CrossRef
  2. Voltage-gated sodium channels and cancer: is excitability their primary role?
    Sébastien Roger et al, 2015, Frontiers in Pharmacology CrossRef
  3. Molecular Characterization of Membrane Steroid Receptors in Hormone-Sensitive Cancers
    Mirco Masi et al, 2021, Cells CrossRef
  4. From HDAC to Voltage-Gated Ion Channels: What’s Next? The Long Road of Antiepileptic Drugs Repositioning in Cancer
    Michele Pellegrino et al, 2022, Cancers CrossRef
  5. Cancer as a Channelopathy—Appreciation of Complimentary Pathways Provides a Different Perspective for Developing Treatments
    Harry J. Gould et al, 2022, Cancers CrossRef
  6. Voltage-gated sodium channel as a target for metastatic risk reduction with re-purposed drugs
    Tomas Koltai, 2015, F1000Research CrossRef
  7. The invasiveness of human cervical cancer associated to the function of NaV1.6 channels is mediated by MMP-2 activity
    Osbaldo Lopez-Charcas et al, 2018, Scientific Reports CrossRef
  8. Overexpression of SCN5A overcomes ABC transporter-mediated multidrug resistance in acute myeloid leukemia through promoting apoptosis
    Kun Xu et al, 2024, Expert Review of Hematology CrossRef
  9. From Poison to Promise: The Evolution of Tetrodotoxin and Its Potential as a Therapeutic
    Gary M. Bucciarelli et al, 2021, Toxins CrossRef
  10. The Emerging Role of Voltage-Gated Sodium Channels in Tumor Biology
    Weijia Mao et al, 2019, Frontiers in Oncology CrossRef
  11. Nav1.5 regulates breast tumor growth and metastatic dissemination in vivo
    Michaela Nelson et al, 2015, Oncotarget CrossRef
  12. Voltage-gated sodium channels: from roles and mechanisms in the metastatic cell behavior to clinical potential as therapeutic targets
    Ana Laura Sanchez-Sandoval et al, 2023, Frontiers in Pharmacology CrossRef