Enhanced Resolution of Neutron Autoradiography with UV-C Sensitization to Study Boron Microdistribution in Animal Models

Author:

Portu Agustina Mariana123ORCID,Espain María Sol123ORCID,Thorp Silvia Inés12,Trivillin Verónica Andrea12ORCID,Curotto Paula1,Monti Hughes Andrea12ORCID,Pozzi Emiliano César Cayetano1,Garabalino Marcela Alejandra1ORCID,Palmieri Mónica Alejandra4ORCID,Granell Pablo Nicolás5ORCID,Golmar Federico235ORCID,Schwint Amanda Elena12ORCID,Saint Martin Gisela1ORCID

Affiliation:

1. National Atomic Energy Commission (CNEA), San Martín C1429BNP, Argentina

2. National Scientific and Technological Research Council (CONICET), Ciudad Autónoma de Buenos Aires C1425FQB, Argentina

3. School of Science & Technology, National University of San Martín (UNSAM), San Martín B1650JKA, Argentina

4. Department of Biodiversity and Experimental Biology, Faculty of Exact and Natural Sciences, University of Buenos Aires (UBA), Ciudad Autónoma de Buenos Aires C1428EGA, Argentina

5. Micro and Nanotechnology Centre of the Bicentennial (CNMB), National Institute of Industrial Technology (INTI), San Martín B1650JKA, Argentina

Abstract

The assessment of boron microdistribution is essential to evaluate the suitability of boron neutron capture therapy (BNCT) in different biological models. In our laboratory, we have reported a methodology to produce cell imprints on polycarbonate through UV-C sensitization. The aim of this work is to extend the technique to tissue samples in order to enhance spatial resolution. As tissue structure largely differs from cultured cells, several aspects must be considered. We studied the influence of the parameters involved in the imprint and nuclear track formation, such as neutron fluence, different NTDs, etching and UV-C exposure times, tissue absorbance, thickness, and staining, among others. Samples from different biological models of interest for BNCT were used, exhibiting homogeneous and heterogeneous histology and boron microdistribution. The optimal conditions will depend on the animal model under study and the resolution requirements. Both the imprint sharpness and the fading effect depend on tissue thickness. While 6 h of UV-C was necessary to yield an imprint in CR-39, only 5 min was enough to observe clear imprints on Lexan. The information related to microdistribution of boron obtained with neutron autoradiography is of great relevance when assessing new boron compounds and administration protocols and also contributes to the study of the radiobiology of BNCT.

Funder

National Scientific and Technical Research Council from Argentina

Balseiro Foundation

Publisher

MDPI AG

Subject

Paleontology,Space and Planetary Science,General Biochemistry, Genetics and Molecular Biology,Ecology, Evolution, Behavior and Systematics

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