1. Differences in time-domain and spectral indexes of skin-surface laser-Doppler signals between controls and breast-cancer subjects
    Hsin Hsiu et al, 2018, CH CrossRef
  2. Calcium signaling affects migration and proliferation differently in individual cancer cells due to nifedipine treatment
    Barbora Chovancova et al, 2019, Biochemical Pharmacology CrossRef
  3. The Antihypertensive Drug Nifedipine Modulates the Metabolism of Chondrocytes and Human Bone Marrow-Derived Mesenchymal Stem Cells
    Ilona Uzieliene et al, 2019, Front. Endocrinol. CrossRef
  4. Anti-hypertensive Calcium-Blocking Drugs Induce a Change in Viscoelasticity of Mcf-7 Cancer Cells
    S. R. Vaibavi et al, 2020 CrossRef
  5. Calcium Channel Blockers Impair the Antitumor Activity of Anti-CD20 Monoclonal Antibodies by Blocking EGR-1 Induction
    Ivana Spasevska et al, 2020, Mol Cancer Ther CrossRef
  6. Association Between Antihypertensive Medication Use and Breast Cancer: A Systematic Review and Meta-Analysis
    Yuxiu Xie et al, 2021, Front. Pharmacol. CrossRef
  7. Calcium-channel-blockers exhibit divergent regulation of cancer extravasation through the mechanical properties of cancer cells and underlying vascular endothelial cells
    S. R. Vaibavi et al, 2021, Cell Biochem Biophys CrossRef
  8. Drug repositioning in non-small cell lung cancer (NSCLC) using gene co-expression and drug–gene interaction networks analysis
    Habib MotieGhader et al, 2022, Sci Rep CrossRef
  9. The interactive effect of amlodipine and chemotherapeutic agents in lung cancer cells
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  10. High-throughput drug screen identifies calcium and calmodulin inhibitors that reduce JCPyV infection
    Avery C.S. Bond et al, 2024, Antiviral Research CrossRef
  11. The L‐type calcium channel CaV1.3: A potential target for cancer therapy
    Xuerun Liu et al, 2024, J Cellular Molecular Medi CrossRef