A Laser Synthesis Route to Boron‐Doped Gold Nanoparticles Designed for X‐Ray Radiotherapy and Boron Neutron Capture Therapy Assisted by CT Imaging

材料科学 中子俘获 放射治疗 纳米颗粒 生物相容性 胶体金 纳米技术 生物医学工程 放射科 医学 化学 有机化学 冶金
作者
Stefano Scaramuzza,Clara Maria Gonçalves de Faria,Vito Coviello,Daniel Forrer,Luca Artiglia,Denis Badocco,Paolo Pastore,Paolo Ghigna,Ian Postuma,Laura Cansolino,Cinzia Ferrari,Silva Bortolussi,Riccardo Vago,Antonello E. Spinelli,Marina Bekić,Miodrag Čolić,Vincenzo Amendola
出处
期刊:Advanced Functional Materials [Wiley]
标识
DOI:10.1002/adfm.202303366
摘要

New multifunctional theranostic vectors allow the expansion of cancer therapeutic approaches toward scarcely investigated fields. One example is the combination of boron neutron capture therapy (BNCT) and X-ray radiotherapy (XRT) for treating normal and XRT-resistant hypoxic tumor regions and reduce recurrence. Of great relevance for BNCT is also the support of viable, rapid, safe, and reliable techniques for the localization and quantification of the radiosensitizers in the tissues. To address these challenges, polymer-coated Au-B nanoparticles (NPs) are obtained starting from a laser ablation in liquid process. Despite thermodynamic constraints, the two elements coexist by short-range boron segregation in the gold lattice, as demonstrated experimentally and explained with the support of density functional theory calculations. Thus, the Au-B NPs maintain a marked gold character such as biocompatibility, stability, and straightforward surface chemistry with thiolated compounds, desirable for the integration with agents capable of cell targeting and internalization. Overall, the Au-B NPs exhibit the appropriate features for the investigation of combined BNCT and XRT, supported by the localization and quantification with X-ray computed tomography imaging. Besides, the Au-B nanotechnology tool is achievable without renouncing to reproducibility, environmental sustainability, and cost affordability thanks to the laser-assisted synthetic pathway.

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