Tumor Eradication by Boron Neutron Capture Therapy with <sup>10</sup> B-enriched Hexagonal Boron Nitride Nanoparticles Grafted with Poly(Glycerol).

Zhang, Yucai; Kang, Heon Gyu; Xu, Hua-Zhen; Luo, Honghui; Suzuki, Minoru; Lan, Qing; Chen, Xiao; Komatsu, Naoki et al. · Adv Mater · 2023

basic_science · Level V

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Abstract

Boron neutron capture therapy (BNCT) has emerged as a treatment modality with high precision and efficacy of intractable tumors. At the core of effective tumor BNCT are <sup>10</sup> B carriers with facile preparation as well as advantageous pharmacokinetic and therapeutic profiles. Herein, the design and preparation of sub-10 nm <sup>10</sup> B-enriched hexagonal boron nitride nanoparticles grafted with poly(glycerol) (h-<sup>10</sup> BN-PG), and their application to cancer treatment by BNCT are reported. By virtue of their small particle size and outstanding stealth property, h-<sup>10</sup> BN-PG nanoparticles accumulate efficiently in murine CT26 colon tumors with a high intratumor <sup>10</sup> B concentration of 8.8%ID g<sup>-1</sup> or 102.1 µg g<sup>-1</sup> at 12 h post-injection. Moreover, h-<sup>10</sup> BN-PG nanoparticles penetrate into the inside of the tumor parenchyma and then are taken up by the tumor cells. BNCT comprising a single bolus injection of h-<sup>10</sup> BN-PG nanoparticles and subsequent one-time neutron irradiation results in significant shrinkage of subcutaneous CT26 tumors. h-<sup>10</sup> BN-PG-mediated BNCT not only causes direct DNA damage to the tumor cells, but also triggers pronounced inflammatory immune response in the tumor tissues, which contributes to long-lasting tumor suppression after the neutron irradiation. Thus, the h-<sup>10</sup> BN-PG nanoparticles are promising BNCT agents to eradicate tumor through highly efficient <sup>10</sup> B accumulation.

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