Exploring the Biochemical Foundations of a Successful GLUT1-Targeting Strategy to BNCT: Chemical Synthesis and In Vitro Evaluation of the Entire Positional Isomer Library of ortho-Carboranylmethyl-Bearing Glucoconjugates
Author(s) -
Jelena Matović,
Juulia Järvinen,
Iris K. Sokka,
Surachet Imlimthan,
JanErik Raitanen,
Ahmed Montaser,
Hannu Maaheimo,
Kristiina M. Huttunen,
Sirpa Peräniemi,
Anu J. Airaksinen,
Mirkka Sarparanta,
Mikael P. Johansson,
Jarkko Rautio,
Filip S. Ekholm
Publication year - 2020
Publication title -
molecular pharmaceutics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.13
H-Index - 127
eISSN - 1543-8392
pISSN - 1543-8384
DOI - 10.1021/acs.molpharmaceut.0c00917
Subject(s) - glut1 , chemistry , glucose transporter , combinatorial chemistry , computational biology , cancer research , nanotechnology , medicine , biology , materials science , insulin
Boron neutron capture therapy (BNCT) is a noninvasive binary therapeutic modality applicable to the treatment of cancers. While BNCT offers a tumor-targeting selectivity that is difficult to match by other means, the last obstacles preventing the full harness of this potential come in the form of the suboptimal boron delivery strategies presently used in the clinics. To address these challenges, we have developed delivery agents that target the glucose transporter GLUT1. Here, we present the chemical synthesis of a number of ortho -carboranylmethyl-substituted glucoconjugates and the biological assessment of all positional isomers. Altogether, the study provides protocols for the synthesis and structural characterization of such glucoconjugates and insights into their essential properties, for example, cytotoxicity, GLUT1-affinity, metabolism, and boron delivery capacity. In addition to solidifying the biochemical foundations of a successful GLUT1-targeting approach to BNCT, we identify the most promising modification sites in d-glucose, which are critical in order to further develop this strategy toward clinical use.
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