Antineoplastic mechanisms of niclosamide-loaded nanoparticles in human colorectal cancer cells

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Abstract

Using poly(lactic-co-glycolic) acid we developed a polymeric form of niclosamide (PFN) and investigated molecular mechanisms underlying its antitumor activity against human colorectal cancer cell lines (SW837, Caco-2, COLO 320 HSR). PFN was shown to be more cytotoxic against cancer cells and less cytotoxic against normal cells (human embryonic lung fibroblasts) as compared to niclosamide. Both niclosamide and its polymeric form caused mitochondrial damage (evaluated as a decrease in rhodamine 123 accumulation) and increased the levels of reactive oxygen species, particularly mitochondrial superoxide, resulting in the oxidative damage to biomolecules. Furthermore, niclosamide and PFN induced G0/G1 cell cycle arrest.

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Zhirnik, A. S., Semochkina, Y. P., Moskaleva, E. Y., Krylov, N. I., Tubasheva, I. A., Kuznetsov, S. L., & Vorontsov, E. A. (2017). Antineoplastic mechanisms of niclosamide-loaded nanoparticles in human colorectal cancer cells. Biomeditsinskaya Khimiya, 63(2), 132–138. https://doi.org/10.18097/PBMC20176302132

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