Publication Type Journal Article
Title Evaluation of Acridine Orange Derivatives as DNA-Targeted Radiopharmaceuticals for Auger Therapy: Influence of the Radionuclide and Distance to DNA
Authors Edgar Pereira Leticia do Quental E Palma Maria Cristina Oliveira Filipa Mendes Paula Raposinho Isabel Correia Joao Lavrado Salvatore Di Maria Ana Belchior Pedro Vaz Isabel Santos Antonio Paulo
Groups BIOIN
Journal SCIENTIFIC REPORTS
Year 2017
Month February
Volume 7
Number
Pages
Abstract A new family of Tc-99m(I)-tricarbonyl complexes and I-125-heteroaromatic compounds bearing an acridine orange ( AO) DNA targeting unit was evaluated for Auger therapy. Characterization of the DNA interaction, performed with the non-radioactive Re and I-127 congeners, confirmed that all compounds act as DNA intercalators. Both classes of compounds induce double strand breaks ( DSB) in plasmid DNA but the extent of DNA damage is strongly dependent on the linker between the Auger emitter ( Tc-99m or I-125) and the AO moiety. The in vitro evaluation was complemented with molecular docking studies and Monte Carlo simulations of the energy deposited at the nanometric scale, which corroborated the experimental data. Two of the tested compounds, I-125-C-5 and Tc-99m-C-3, place the corresponding radionuclide at similar distances to DNA and produce comparable DSB yields in plasmid and cellular DNA. These results provide the first evidence that Tc-99m can induce DNA damage with similar efficiency to that of I-125, when both are positioned at comparable distances to the double helix. Furthermore, the high nuclear retention of Tc-99m-C-3 in tumoral cells suggests that Tc-99m-labelled AO derivatives are more promising for the design of Auger-emitting radiopharmaceuticals than the I-125-labelled congeners.
DOI http://dx.doi.org/10.1038/srep42544
ISBN
Publisher NATURE PUBLISHING GROUP
Book Title
ISSN 2045-2322
EISSN
Conference Name
Bibtex ID ISI:000393811100001
Observations
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