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Article ; Online: Ultrasmall Gold Nanoparticles Radiolabeled with Iodine-125 as Potential New Radiopharmaceutical.

Wang, Runze / Liu, Huanhuan / Antal, Bas / Wolterbeek, Hubert Th / Denkova, Antonia G

ACS applied bio materials

2024  Volume 7, Issue 2, Page(s) 1240–1249

Abstract: The relatively high linear energy transfer of Auger electrons, which can cause clustered DNA damage and hence efficient cell death, makes Auger emitters excellent candidates for attacking metastasized tumors. Moreover, gammas or positrons are usually ... ...

Abstract The relatively high linear energy transfer of Auger electrons, which can cause clustered DNA damage and hence efficient cell death, makes Auger emitters excellent candidates for attacking metastasized tumors. Moreover, gammas or positrons are usually emitted along with the Auger electrons, providing the possibility of theragnostic applications. Despite the promising properties of Auger electrons, only a few radiopharmaceuticals employing Auger emitters have been developed so far. This is most likely explained by the short ranges of these electrons, requiring the delivery of the Auger emitters to crucial cell parts such as the cell nucleus. In this work, we combined the Auger emitter
MeSH term(s) Humans ; Radiopharmaceuticals/therapeutic use ; Gold ; Metal Nanoparticles/therapeutic use ; Iodine Radioisotopes ; Neoplasms
Chemical Substances Iodine-125 (GVO776611R) ; Radiopharmaceuticals ; Gold (7440-57-5) ; Iodine Radioisotopes
Language English
Publishing date 2024-02-07
Publishing country United States
Document type Journal Article
ISSN 2576-6422
ISSN (online) 2576-6422
DOI 10.1021/acsabm.3c01158
Database MEDical Literature Analysis and Retrieval System OnLINE

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