Abstract
Two different raltitrexed gold and silver nanoparticles for the delivery of an antitumoral drug into cancer cells were synthesized and characterized. A cysteine linker was used for the covalent bonding of raltitrexed to the surface of nanoparticles. To evaluate the efficacy of the antifolate-derivative nanoparticles, their cytotoxicity was assayed in vitro with A549 human lung adenocarcinoma and HCT‐116 colorectal carcinoma human cells. Modified nanoparticles are a biocompatible material, and administration of silver raltitrexed nanoparticles strongly inhibited the viability of the cancer cells; gold raltitrexed nanoparticles do not show any type of cytotoxic effect. The results suggest that silver raltitrexed nanoparticles could be a potential delivery system for certain cancer cells.
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Morey, J., Llinás, P., Bueno‐costa, A., León, A. J., & Nieves Piña, M. (2021). Raltitrexed‐modified gold and silver nanoparticles for targeted cancer therapy: Cytotoxicity behavior in vitro on A549 and HCT‐116 human cancer cells. Materials, 14(3), 1–11. https://doi.org/10.3390/ma14030534
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