Abstract
Boron neutron capture therapy is a unique form of adjuvant cancer therapy for various malignancies including malignant gliomas. The conjugation of boron compounds and human serum albumin (HSA)—a carrier protein with a long plasma half-life—is expected to extend systemic circulation of the boron compounds and increase their accumulation in human glioma cells. We report on the synthesis of fluorophore-labeled homocystamide conjugates of human serum albumin and their use in thiol-‘click’ chemistry to prepare novel multimodal boronated albumin-based theranostic agents, which could be accumulated in tumor cells. The novelty of this work involves the development of the synthesis methodology of albumin conjugates for the imaging-guided boron neutron capture therapy combination. Herein, we suggest using thenoyltrifluoroacetone as a part of an anticancer theranostic construct: approximately 5.4 molecules of thenoyltrifluoroacetone were bound to each albumin. Along with its beneficial properties as a chemotherapeutic agent, thenoyltrifluoroacetone is a promising magnetic resonance imaging agent. The conjugation of bimodal HSA with undecahydro-closo-dodecaborate only slightly reduced human glioma cell line viability in the absence of irradiation (~30 μM of boronated albumin) but allowed for neutron capture and decreased tumor cell survival under epithermal neutron flux. The simultaneous presence of undecahydro-closo-dodecaborate and labeled amino acid residues (fluorophore dye and fluorine atoms) in the obtained HSA conjugate makes it a promising candidate for the combination imaging-guided boron neutron capture therapy.
Highlights
We suggest the use of thenoyltrifluoroacetone (TTFA) as a part of the anticancer theranostic construct human serum albumin (HSA)-Cy5-HcyAcB12 H11 -TTFA (Figure 1, arrow d)
We have proposed that the value of HSA as a boron neutron capture therapy (BNCT) drugs carrier may significantly increase if the TTFAlabeled homocystamide conjugate of human serum albumin is used for targeting
Maleimide reacts with sulfhydryl groups of cysteine and homocysteine under mild conditions. This reaction has been used for the rapid assembly of a variety of albumin conjugates by so-called thiol-‘click’ chemistry [37,38,39,49,56,65]
Summary
A newly emerging treatment option—boron neutron capture therapy (BNCT), in which drugs containing enriched boron are accumulated in tumor cells followed by their neutron beam radiation—offers an advantage over conventional chemo- and radiotherapies as it selectively targets tumor cells without significantly affecting healthy tissues. This is especially beneficial for clinical cases characterized by the infiltration of tumors into normal tissue or broad expansion of the tumor into the whole organ [1,2]. Two BNCT drugs are available for clinical investigation: L -para-boronophenylalanine (BPA)
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