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Radioactive (90Y) upconversion nanoparticles conjugated with recombinant targeted toxin for synergistic nanotheranostics of cancer.


ABSTRACT: We report combined therapy using upconversion nanoparticles (UCNP) coupled to two therapeutic agents: beta-emitting radionuclide yttrium-90 (90Y) fractionally substituting yttrium in UCNP, and a fragment of the exotoxin A derived from Pseudomonas aeruginosa genetically fused with a targeting designed ankyrin repeat protein (DARPin) specific to HER2 receptors. The resultant hybrid complex UCNP-R-T was tested using human breast adenocarcinoma cells SK-BR-3 overexpressing HER2 receptors and immunodeficient mice, bearing HER2-positive xenograft tumors. The photophysical properties of UCNPs enabled background-free imaging of the UCNP-R-T distribution in cells and animals. Specific binding and uptake of UCNP complexes in SK-BR-3 cells was observed, with separate 90Y- and PE40-induced cytotoxic effects characterized by IC50 140 μg/mL (UCNP-R) and 5.2 μg/mL (UCNP-T), respectively. When both therapeutic agents were combined into UCNP-R-T, the synergetic effect increased markedly, ∼2200-fold, resulting in IC50 = 0.0024 μg/mL. The combined therapy with UCNP-R-T was demonstrated in vivo.

SUBMITTER: Guryev EL 

PROVIDER: S-EPMC6166851 | biostudies-other | 2018 Sep

REPOSITORIES: biostudies-other

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Radioactive (<sup>90</sup>Y) upconversion nanoparticles conjugated with recombinant targeted toxin for synergistic nanotheranostics of cancer.

Guryev Evgenii L EL   Volodina Natalia O NO   Shilyagina Natalia Y NY   Gudkov Sergey V SV   Balalaeva Irina V IV   Volovetskiy Arthur B AB   Lyubeshkin Alexander V AV   Sen' Alexey V AV   Ermilov Sergey A SA   Vodeneev Vladimir A VA   Petrov Rem V RV   Zvyagin Andrei V AV   Alferov Zhores I ZI   Deyev Sergey M SM  

Proceedings of the National Academy of Sciences of the United States of America 20180907 39


We report combined therapy using upconversion nanoparticles (UCNP) coupled to two therapeutic agents: beta-emitting radionuclide yttrium-90 (<sup>90</sup>Y) fractionally substituting yttrium in UCNP, and a fragment of the exotoxin A derived from <i>Pseudomonas aeruginosa</i> genetically fused with a targeting designed ankyrin repeat protein (DARPin) specific to HER2 receptors. The resultant hybrid complex UCNP-R-T was tested using human breast adenocarcinoma cells SK-BR-3 overexpressing HER2 rec  ...[more]

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