Metal oxide nanoparticles could enter into the cells modified by surface charge and PhTitma, TiinaThe toxicologist : supplement of Toxicological sciences : 56th Annual Meeting and ToxExpo : Baltimore, Maryland, March 12-16, 20172017 / p. 128 https://www.toxicology.org/pubs/docs/Tox/2017Tox.pdf Nanodiamonds as a platform for biomedical applicationBondar, Denys; Karpichev, YevgenGSFMT Scientific Conference 2021 : Tartu, June 14-15, 2021 : abstracts2021 / P 23 https://fmtdk.ut.ee/wp-content/uploads/2021/06/GSFMT_abstractbook_2021.pdf Non-toxic and ultra-small biosilver nanoclusters trigger apoptotic cell death in fluconazole-resistant Candida albicans via Ras signalingPrakteeksha; Singh, Braj R.; Gupta, Vijai Kumar; Deeba, Farah; Gathergood, NicholasBiomolecules2019 / art. 47, 23 p. : ill https://doi.org/10.3390/biom9020047 Journal metrics at Scopus Article at Scopus Journal metrics at WOS Article at WOS Surface carboxylation or PEGylation decreases CuO nanoparticles’ cytotoxicity to human cells in vitro without compromising their antibacterial propertiesKubo, Anna-Liisa; Vasiliev, Grigory; Vija, Heiki; Krištal, Jekaterina; Tõugu, Vello; Visnapuu, Meeri; Kisand, Vambola; Kahru, Anne; Bondarenko, OlesjaArchives of toxicology2020 / p. 1561-1573 : ill https://doi.org/10.1007/s00204-020-02720-7