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Updated: Sep 30, 2026

Synthesis of 1,2-Azaborines and the Preparation of Their Protein Complexes with T4 Lysozyme Mutants
Published on: March 25, 2017
Azanonaboranes [(RNH(2))B(8)H(11)NHR] as possible new compounds for use in boron neutron capture therapy
Claudia Bauer1, Detlef Gabel, Udo Dörfler
1Department of Chemistry, University of Bremen, D-28334 Bremen, Germany.
Abstract:
The synthesis and biological in vitro and in vivo activities of possible new compounds for Boron Neutron Capture Therapy (BNCT) are reported. The azanonaboranes of the type [(RNH(2))B(8)H(11)NHR] are water-soluble when hydrophilic groups are introduced. The reaction of B(9)H(13)SMe(2) with primary amines yields azanonaboranes. Five compounds with different numbers of hydroxypropyl groups have been isolated: [(HO(CH(2))(3)NH(2))B(8)H(11)NHCH(3)] (4), [(HO(CH(2))(3)NH(2))B(8)H(11)NH(CH(2))(3)OH] (2), [((HO(CH(2))(3))(2)NH)B(8)H(11)NHCH(3)] (6), [((HO(CH(2))(3))(2)NH)B(8)H(11)NH(CH(2))(3)OCH(3)] (11) and [((HO(CH(2))(3))(2)NH)B(8)H(11)NH(CH(2))(3)OH] (8). In vitro experiments as judged by cloning survival tests showed that two of the synthesised compounds are not toxic. The in vivo experiments were carried out with C3H/He mice bearing SCCVII tumours and C57 mice bearing B16 tumours. Compounds 2 and 6 have no particular affinity to any tissue, but are excluded from the brain.
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