Published 2013 | Version v1
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Boron Neutron Capture Therapy (BNCT) in an experimental model of lung metastases in BDIX rats

  • 1. Dpto. de Radiobiología, Gerencia de Química Nuclear y Ciencias de la Salud, GAATEN, CNEA, Buenos Aires (Argentina)
  • 2. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET) (Argentina)

Description

Boron Neutron Capture Therapy (BNCT) in an experimental model of lung metastases in BDIX rats Introduction: Boron Neutron Capture Therapy (BNCT) is based on selective tumor uptake of boron compounds, followed by neutron irradiation. BNCT was proposed for the treatment of unresectable, diffuse lung metastases. The aim of the present study was to perform BNCT studies in an experimental model of lung metastases. Materials and Methods: 3 x 106/0.5 ml colon carcinoma cells (DHD/K12/TRb) were injected iv in syngeneic BDIX rats. Three weeks post-inoculation, rats with diffuse lung metastases were used for in vivo BNCT studies in the RA-3 Nuclear Reactor. Based on previous biodistribution studies and computational dosimetry with Monte Carlo simulation, 2 doses were prescribed, i.e. 4 Gy and 8 Gy minimum absorbed dose to tumor. The animals were assigned to 5 experimental groups (n= 4 to 8) at each dose level: T0 (euthanized pre-treatment), BPA-BNCT, Comb-BNCT (BPA+GB-10), Beam only (background dose) and Sham (same manipulation, no treatment). Boron concentration was measured in a blood sample taken pre-irradiation to verify that the value was in the range established in previous biodistribution studies. The animals were followed clinically for 2 weeks after neutron irradiation and then euthanized to assess the response of tumor and normal lung, macroscopically and histologically. To date we have evaluated the end-point weight of lung (normal lung + metastases) and % lung weight/body weight as an indicator of tumor growth. Results: The statistical analysis (ANOVA) of % lung weight/body weight showed statistically significant differences (p<0.05) between groups T0 (0.79 ± 0.38) and Sham (1.87 ± 0.91). No statistically significant differences were observed between the Beam only groups (at both dose levels) and Sham. Similar and statistically significant tumor control was induced in the groups BPA-BNCT Low dose (LD) (0.56 ± 0.11), BPA-BNCT High dose (HD) (0.80 ± 0.16), Comb-BNCT (LD) (0.75 ± 0.30), Comb-BNCT (HD) (0.75 ± 0.25) vs. the Sham group (1.87 ± 0.91). The BNCT groups did not differ significantly from the T0 groups, revealing the potential of BNCT to halt tumor growth. The end-point lung weight afforded similar results. No clinical, macroscopic or histological signs of toxicity were observed in any of the animals. Conclusion: BNCT induced partial, consistent and significant control of experimental lung metastases 2 weeks post-irradiation with no associated normal tissue toxicity. (author)

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Part of:
XL Annual meeting of the Argentine Association of Nuclear Technology (AATN 2013)

Additional details

Additional titles

Original title (Spanish)
Terapia de captura neutrónica en boro (BNCT) en un modelo experimental de metástasis en pulmón en ratas BDIX

Publishing Information

Publisher
AATN
Imprint Place
Buenos Aires (Argentina)
Imprint Title
XL Annual meeting of the Argentine Association of Nuclear Technology (AATN 2013)
Imprint Pagination
[vp.]
Journal Page Range
8 p.
Report number
INIS-AR-C--1704

Conference

Title
40. Annual meeting of the Argentine Association of Nuclear Technology: Participation in the national nuclear energy landscape
Original Conference Title
AATN 2013: 40. Reunion anual de la Asociacion Argentina de Tecnologia Nuclear: Participacion nuclear en el panorama energetico nacional
Acronym
AATN 2013
Dates
9-13 Dec 2013
Place
Buenos Aires (Argentina)

Optional Information

Notes
10 refs., 2 figs., 3 tabs. Imprint:XL Reunion anual de la Asociacion Argentina de Tecnologia Nuclear (AATN 2013)