Tb represents a powerful alternative to currently used α-emitters: the relatively short half-life (T = 4.1 h), low α-energy (3.97 MeV, I = 16.7 %), absence of α-emitting daughters and stable coordination via DOTA are favorable features for potential clinical application. In this letter, we wish to highlight the unique characteristics of Tb for PET imaging, based on its positron emission (E = 730 keV, I = 7.1 %) in addition to it's a therapeutic value. To this end, a preclinical study with a tumor-bearing mouse is presented. The perspective of alpha-PET makes Tb highly appealing for radiotheragnostic applications in future clinical trials.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5843804PMC
http://dx.doi.org/10.1186/s41181-016-0008-2DOI Listing

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Tb represents a powerful alternative to currently used α-emitters: the relatively short half-life (T = 4.1 h), low α-energy (3.97 MeV, I = 16.

View Article and Find Full Text PDF

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