Nanoradiopharmaceuticals Based on Alpha Emitters: Recent Developments for Medical Applications
Нанорадиофармацевтические препараты на основе альфа-излучателей: последние достижения для медицинского применения
2021-07-23
SCID: 54.1/7xprdtmr
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alpha emittersnanoparticle radiolabelingnanoradiopharmaceuticalsrecoil energytargeted alpha-particle therapy
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Abstract (AI)
The application of nanotechnology in nuclear medicine offers attractive therapeutic opportunities for the treatment of various diseases, including cancer. Indeed, nanoparticles-conjugated targeted alpha-particle therapy (TAT) would be ideal for localized cell killing due to high linear energy transfer and short ranges of alpha emitters. New approaches in radiolabeling are necessary because chemical radiolabeling techniques are rendered sub-optimal due to the presence of recoil energy generated by alpha decay, which causes chemical bonds to break. This review attempts to cover, in a concise fashion, various aspects of physics, radiobiology, and production of alpha emitters, as well as highlight the main problems they present, with possible new approaches to mitigate those problems. Special emphasis is placed on the strategies proposed for managing recoil energy. We will also provide an account of the recent studies in vitro and in vivo preclinical investigations of α-particle therapy delivered by various nanosystems from different materials, including inorganic nanoparticles, liposomes, and polymersomes, and some carbon-based systems are also summarized.
Key Findings
1
Conventional chemical radiolabeling is suboptimal for alpha-emitting nanopharmaceuticals because recoil energy from alpha decay breaks chemical bonds.
2
Managing alpha-decay recoil energy is identified as a central technical challenge requiring new radiolabeling and containment strategies.
3
Nanoparticle-conjugated targeted alpha-particle therapy can enable localized cancer-cell killing through alpha emitters’ high linear energy transfer and short range.
4
Preclinical in vitro and in vivo studies have evaluated alpha-particle delivery using inorganic nanoparticles, liposomes, polymersomes, and carbon-based nanosystems.
5
The review synthesizes alpha-emitter physics, radiobiology, production, and associated challenges relevant to nanoradiopharmaceutical development.
Research Object
Nanoparticle-based targeted alpha-particle therapy (TAT) systems using alpha emitters, including inorganic nanoparticles, liposomes, polymersomes, and carbon-based nanosystems
Research Subject
Their radiolabeling strategies, recoil-energy management, and preclinical therapeutic performance in localized cancer-cell killing
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2021-07-23
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