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In Vivo Accelerator-Based Boron Neutron Capture Therapy for Spontaneous Tumors in Large Animals: Case Series.

Vladimir KanyginAleksandr KichiginAlexander ZaboronokAnna KasatovaElena PetrovaAlphiya TsygankovaEvgenii ZavjalovBryan J MathisSergey Yu Taskaev
Published in: Biology (2022)
(1) Background: accelerator-based neutron sources are a new frontier for BNCT but many technical issues remain. We aimed to study such issues and results in larger-animal BNCT (cats and dogs) with naturally occurring, malignant tumors in different locations as an intermediate step in translating current research into clinical practice. (2) Methods: 10 pet cats and dogs with incurable, malignant tumors that had no treatment alternatives were included in this study. A tandem accelerator with vacuum insulation was used as a neutron source. As a boron-containing agent, 10 B-enriched sodium borocaptate (BSH) was used at a dose of 100 mg/kg. Animal condition as well as tumor progression/regression were monitored. (3) Results: regression of tumors in response to treatment, improvements in the overall clinical picture, and an increase in the estimated duration and quality of life were observed. Treatment-related toxicity was mild and reversible. (4) Conclusions: our study contributes to preparations for human BNCT clinical trials and suggests utility for veterinary oncology.
Keyphrases
  • clinical trial
  • clinical practice
  • oxidative stress
  • poor prognosis
  • randomized controlled trial
  • combination therapy
  • study protocol
  • pet ct
  • placebo controlled