1. Thymidine phosphorylase influences [18F]fluorothymidine uptake in cancer cells and patients with non-small cell lung cancer
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  2. Auger electron therapy of glioblastoma using [125I]5-iodo-2′-deoxyuridine and concomitant chemotherapy – Evaluation of a potential treatment strategy
    Karina Lindbøg Madsen et al, 2021, Nuclear Medicine and Biology CrossRef
  3. High efficacy of particle beam therapies against tumors under hypoxia and prediction of the early stage treatment effect using 3'-deoxy-3'-[18F]fluorothymidine positron emission tomography
    Akira Makino et al, 2024, Annals of Nuclear Medicine CrossRef
  4. Prognostic role of serum thymidine kinase 1 kinetics during neoadjuvant chemotherapy for early breast cancer
    A. Matikas et al, 2021, ESMO Open CrossRef
  5. Serum Thymidine Kinase 1 Activity in the Prognosis and Monitoring of Chemotherapy in Lung Cancer Patients: A Brief Report
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  6. Nucleoside transporters and immunosuppressive adenosine signaling in the tumor microenvironment: Potential therapeutic opportunities
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  7. [18F]fluorothymidine PET Informs the Synergistic Efficacy of Capecitabine and Trifluridine/Tipiracil in Colon Cancer
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