Literature DB >> 8434111

Subcellular distribution of various boron compounds and implications for their efficacy in boron neutron capture therapy by Monte Carlo simulations.

T Nguyen1, G L Brownell, S A Holden, S Kahl, M Miura, B A Teicher.   

Abstract

Neutron capture therapy has a promising role in cancer treatment since it can achieve selectivity at the cellular level. The effect of this therapy depends on the subcellular localization of boron atoms in the target cell. Five boron compounds were investigated in this study: the monomeric and dimeric sulfhydryl boranes (BSH and BSSB), a boronated phenylalanine (BPA), and two porphyrin complexes (BOPP and VCDP). The study shows that when exponentially growing rat 9L gliosarcoma cells are exposed to an isoeffective concentration of each of the five compounds for 1 h, BOPP produces a much higher intracellular level of boron than the other four compounds; BSSB produces the second highest level, while exposure to BSH, VCDP, and BPA resulted in lower intracellular boron levels. Subcellular fractionation studies showed that most of the boron localized in the cytoplasm of the cells with all five compounds. A significantly higher boron concentration was found in the lysosomes of the cells, but the nuclei contained only minimal concentrations of boron. Computer simulations of neutron capture reactions with boron using a Monte Carlo simulation code indicated that BOPP would yield the highest potential effectiveness, followed by BSSB, BSH, VCDP, and BPA, in that order.

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Year:  1993        PMID: 8434111

Source DB:  PubMed          Journal:  Radiat Res        ISSN: 0033-7587            Impact factor:   2.841


  4 in total

1.  Subcellular biodistribution of sodium borocaptate (BSH: Na2B12H11SH) in a rat glioma model in boron neutron capture therapy.

Authors:  Teruyoshi Kageji; Shinji Nagahiro; Birte Otersen; Detlef Gabel; Manekazu Nakaichi; Yoshinobu Nakagawa
Journal:  J Neurooncol       Date:  2002-09       Impact factor: 4.130

2.  Synthesis and in vitro properties of trimethylamine- and phosphonate-substituted carboranylporphyrins for application in BNCT.

Authors:  Michael W Easson; Frank R Fronczek; Timothy J Jensen; M Graça H Vicente
Journal:  Bioorg Med Chem       Date:  2008-02-21       Impact factor: 3.641

3.  Estimation of relative biological effectiveness for boron neutron capture therapy using the PHITS code coupled with a microdosimetric kinetic model.

Authors:  Hironori Horiguchi; Tatsuhiko Sato; Hiroaki Kumada; Tetsuya Yamamoto; Takeji Sakae
Journal:  J Radiat Res       Date:  2014-11-26       Impact factor: 2.724

4.  Mechanistic Modeling of the Relative Biological Effectiveness of Boron Neutron Capture Therapy.

Authors:  Seth W Streitmatter; Robert D Stewart; Gregory Moffitt; Tatjana Jevremovic
Journal:  Cells       Date:  2020-10-15       Impact factor: 6.600

  4 in total

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