Astatine-211-Labeled Gold Nanoparticles for Targeted Alpha-Particle Therapy via Intravenous Injection.
Xuhao HuangKazuko Kaneda-NakashimaYuichiro KadonagaKazuya KabayamaAtsushi ShimoyamaKazuhiro OoeHiroki KatoAtsushi ToyoshimaAtsushi ShinoharaHiromitsu HabaYang WangKoichi FukasePublished in: Pharmaceutics (2022)
Alpha-particle radiotherapy has gained considerable attention owing to its potent anti-cancer effect. 211 At, with a relatively short half-life of 7.2 h, emits an alpha particle within a few cell diameters with high kinetic energy, which damages cancer cells with high biological effectiveness. In this study, we investigated the intravenous injection of 211 At-labeled gold nanoparticles (AuNPs) for targeted alpha-particle therapy (TAT). Different kinds of surface-modified gold nanoparticles can be labeled with 211 At in high radiochemical yield in 5 min, and no purification is necessary. The in vivo biodistribution results showed the accumulation of 5 nm 211 At-AuNPs@mPEG at 2.25% injection dose per gram (% ID/g) in tumors within 3 h via the enhanced permeability and retention (EPR) effect. Additionally, we observed a long retention time in tumor tissues within 24 h. This is the first study to demonstrate the anti-tumor efficacy of 5 nm 211 At-AuNPs@mPEG that can significantly suppress tumor growth in a pancreatic cancer model via intravenous administration. AuNPs are satisfactory carriers for 211 At delivery, due to simple and efficient synthesis processes and high stability. The intravenous administration of 5 nm 211 At-AuNPs@mPEG has a significant anti-tumor effect. This study provides a new framework for designing nanoparticles suitable for targeted alpha-particle therapy via intravenous injection.
Keyphrases
- gold nanoparticles
- high dose
- randomized controlled trial
- systematic review
- pet imaging
- radiation therapy
- gene expression
- early stage
- stem cells
- reduced graphene oxide
- cancer therapy
- cell therapy
- low dose
- working memory
- endothelial cells
- bone marrow
- multidrug resistant
- computed tomography
- pet ct
- high resolution
- atomic force microscopy
- replacement therapy
- recombinant human
- positron emission tomography