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Dive into the research topics where Amanda E. Schwint is active.

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Featured researches published by Amanda E. Schwint.


Oral Oncology | 2011

Boron Neutron Capture Therapy (BNCT) in an oral precancer model: Therapeutic benefits and potential toxicity of a double application of BNCT with a six-week interval

Andrea Monti Hughes; Emiliano C. C. Pozzi; Elisa M. Heber; Silvia I. Thorp; Marcelo Miller; Maria E. Itoiz; Romina F. Aromando; Ana J. Molinari; Marcela A. Garabalino; David W. Nigg; Verónica A. Trivillin; Amanda E. Schwint

Given the clinical relevance of locoregional recurrences in head and neck cancer, we developed a novel experimental model of premalignant tissue in the hamster cheek pouch for long-term studies and demonstrated the partial inhibitory effect of a single application of Boron Neutron Capture Therapy (BNCT) on tumor development from premalignant tissue. The aim of the present study was to evaluate the effect of a double application of BNCT with a 6 week interval in terms of inhibitory effect on tumor development, toxicity and DNA synthesis. We performed a double application, 6 weeks apart, of (1) BNCT mediated by boronophenylalanine (BPA-BNCT); (2) BNCT mediated by the combined application of decahydrodecaborate (GB-10) and BPA [(GB-10+BPA)-BNCT] or (3) beam-only, at RA-3 nuclear reactor and followed the animals for 8 months. The control group was cancerized and sham-irradiated. BPA-BNCT, (GB-10+BPA)-BNCT and beam-only induced a reduction in tumor development from premalignant tissue that persisted until 8, 3, and 2 months respectively. An early maximum inhibition of 100% was observed for all 3 protocols. No normal tissue radiotoxicity was detected. Reversible mucositis was observed in premalignant tissue, peaking at 1 week and resolving by the third week after each irradiation. Mucositis after the second application was not exacerbated by the first application. DNA synthesis was significantly reduced in premalignant tissue 8 months post-BNCT. A double application of BPA-BNCT and (GB-10+BPA)-BNCT, 6 weeks apart, could be used therapeutically at no additional cost in terms of radiotoxicity in normal and dose-limiting tissues.


Applied Radiation and Isotopes | 2014

Biodistribution of the boron carriers boronophenylalanine (BPA) and/or decahydrodecaborate (GB-10) for Boron Neutron Capture Therapy (BNCT) in an experimental model of lung metastases.

Verónica A. Trivillin; Marcela A. Garabalino; L.L. Colombo; Sj González; Ro Farías; A. Monti Hughes; Emiliano C. C. Pozzi; S. Bortolussi; S. Altieri; Maria E. Itoiz; Romina F. Aromando; David W. Nigg; Amanda E. Schwint

BNCT was proposed for the treatment of diffuse, non-resectable tumors in the lung. We performed boron biodistribution studies with 5 administration protocols employing the boron carriers BPA and/or GB-10 in an experimental model of disseminated lung metastases in rats. All 5 protocols were non-toxic and showed preferential tumor boron uptake versus lung. Absolute tumor boron concentration values were therapeutically useful (25-76ppm) for 3 protocols. Dosimetric calculations indicate that BNCT at RA-3 would be potentially therapeutic without exceeding radiotolerance in the lung.


Applied Radiation and Isotopes | 2014

Boron biodistribution for BNCT in the hamster cheek pouch oral cancer model: Combined administration of BSH and BPA

Marcela A. Garabalino; Elisa M. Heber; Andrea Monti Hughes; Emiliano C. C. Pozzi; Ana J. Molinari; David W. Nigg; William F. Bauer; Verónica A. Trivillin; Amanda E. Schwint

Sodium mercaptoundecahydro-closo-dodecaborate (BSH) is being investigated clinically for BNCT. We examined the biodistribution of BSH and BPA administered jointly in different proportions in the hamster cheek pouch oral cancer model. The 3 assayed protocols were non-toxic, and showed preferential tumor boron uptake versus precancerous and normal tissue and therapeutic tumor boron concentration values (70-85ppm). All 3 protocols warrant assessment in BNCT studies to contribute to the knowledge of (BSH+BPA)-BNCT radiobiology for head and neck cancer and optimize therapeutic efficacy.


Radiation and Environmental Biophysics | 2012

Boron neutron capture therapy (BNCT) for liver metastasis: therapeutic efficacy in an experimental model

Emiliano C. C. Pozzi; Jorge E. Cardoso; Lucas L. Colombo; Silvia I. Thorp; Andrea Monti Hughes; Ana J. Molinari; Marcela A. Garabalino; Elisa M. Heber; Marcelo Miller; Maria E. Itoiz; Romina F. Aromando; David W. Nigg; Jorge Quintana; Verónica A. Trivillin; Amanda E. Schwint


Oral Diseases | 2013

Boron neutron capture therapy for oral precancer: proof of principle in an experimental animal model

A. Monti Hughes; Ecc Pozzi; Silvia I. Thorp; Marcela A. Garabalino; Rubén O. Farías; Sj González; Elisa M. Heber; Maria E. Itoiz; Romina F. Aromando; Ana J. Molinari; Marcelo Miller; David W. Nigg; Paula Curotto; Verónica A. Trivillin; Amanda E. Schwint


Radiation and Environmental Biophysics | 2013

Boron neutron capture therapy (BNCT) for liver metastasis in an experimental model: dose–response at five-week follow-up based on retrospective dose assessment in individual rats

Emiliano C. C. Pozzi; Verónica A. Trivillin; Lucas Luis Colombo; Andrea Monti Hughes; Silvia I. Thorp; Jorge E. Cardoso; Marcela A. Garabalino; Ana Julia Molinari; Elisa M. Heber; Paula Curotto; Marcelo Miller; Maria E. Itoiz; Romina F. Aromando; David W. Nigg; Amanda E. Schwint


Radiation and Environmental Biophysics | 2013

Biodistribution of sodium borocaptate (BSH) for boron neutron capture therapy (BNCT) in an oral cancer model

Marcela A. Garabalino; Elisa M. Heber; Andrea Monti Hughes; Sara J. González; Ana J. Molinari; Emiliano C. C. Pozzi; Susana Nievas; Maria E. Itoiz; Romina F. Aromando; David W. Nigg; William F. Bauer; Verónica A. Trivillin; Amanda E. Schwint


Oral Diseases | 2015

Histamine reduces boron neutron capture therapy-induced mucositis in an oral precancer model

A. Monti Hughes; Ecc Pozzi; Silvia I. Thorp; Paula Curotto; Vanina A. Medina; Dj Martinel Lamas; Elena Rivera; Marcela A. Garabalino; Ro Farías; Sj González; Elisa M. Heber; Maria E. Itoiz; Romina F. Aromando; David W. Nigg; Verónica A. Trivillin; Amanda E. Schwint


Archive | 2018

Optimizing the Therapeutic Efficacy of Boron Neutron Capture Therapy (BNCT) for Different Pathologies: Research in Animal Models Employing Different Boron Compounds and Administration Strategies

Amanda E. Schwint; Andrea Monti Hughes; Marcela A. Garabalino; Emiliano C. C. Pozzi; Elisa M. Heber; Verónica A. Trivillin


Radiation and Environmental Biophysics | 2017

Boron neutron capture therapy (BNCT) translational studies in the hamster cheek pouch model of oral cancer at the new “B2” configuration of the RA-6 nuclear reactor

Andrea Monti Hughes; Juan Longhino; Esteban F. Boggio; Vanina A. Medina; Diego J. Martinel Lamas; Marcela A. Garabalino; Elisa M. Heber; Emiliano C. C. Pozzi; Maria E. Itoiz; Romina F. Aromando; David W. Nigg; Verónica A. Trivillin; Amanda E. Schwint

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Elisa M. Heber

National Atomic Energy Commission

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Verónica A. Trivillin

National Atomic Energy Commission

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David W. Nigg

Battelle Memorial Institute

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Marcela A. Garabalino

National Atomic Energy Commission

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Maria E. Itoiz

University of Buenos Aires

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Emiliano C. C. Pozzi

National Atomic Energy Commission

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Andrea Monti Hughes

National Atomic Energy Commission

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Silvia I. Thorp

National Atomic Energy Commission

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Ana J. Molinari

National Atomic Energy Commission

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