4.7 Article

Exploiting Blood Transport Proteins as Carborane Supramolecular Vehicles for Boron Neutron Capture Therapy

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NANOMATERIALS
卷 13, 期 11, 页码 -

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MDPI
DOI: 10.3390/nano13111770

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carborane; boron neutron capture therapy (BNCT); virtual screening; docking; reverse docking; MD simulations; MM-GBSA; plasma proteins

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Blood transport proteins, especially hemoglobin, have been identified as potential carriers for carboranes, which can improve their solubility and bioavailability. The carborane@protein complexes formed in water are stable and characterized by favorable binding energy. This study suggests an innovative formulation for carboranes by forming a carborane@protein complex prior to administration.
Carboranes are promising agents for applications in boron neutron capture therapy (BNCT), but their hydrophobicity prevents their use in physiological environments. Here, by using reverse docking and molecular dynamics (MD) simulations, we identified blood transport proteins as candidate carriers of carboranes. Hemoglobin showed a higher binding affinity for carboranes than transthyretin and human serum albumin (HSA), which are well-known carborane-binding proteins. Myoglobin, ceruloplasmin, sex hormone-binding protein, lactoferrin, plasma retinol-binding protein, thyroxine-binding globulin, corticosteroid-binding globulin and afamin have a binding affinity comparable to transthyretin/HSA. The carborane@protein complexes are stable in water and characterized by favorable binding energy. The driving force in the carborane binding is represented by the formation of hydrophobic interactions with aliphatic amino acids and BH-p and CH-p interactions with aromatic amino acids. Dihydrogen bonds, classical hydrogen bonds and surfactant-like interactions also assist the binding. These results (i) identify the plasma proteins responsible for binding carborane upon their intravenous administration, and (ii) suggest an innovative formulation for carboranes based on the formation of a carborane@protein complex prior to the administration.

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