Author:
Mikolajczyk Alicja,Sizochenko Natalia,Mulkiewicz Ewa,Malankowska Anna,Nischk Michal,Jurczak Przemyslaw,Hirano Seishiro,Nowaczyk Grzegorz,Zaleska-Medynska Adriana,Leszczynski Jerzy,Gajewicz Agnieszka,Puzyn Tomasz
Abstract
Titania-supported palladium, gold and bimetallic nanoparticles (second-generation nanoparticles) demonstrate promising photocatalytic properties. However, due to unusual reactivity, second-generation nanoparticles can be hazardous for living organisms. Considering the ever-growing number of new types of nanoparticles that can potentially contaminate the environment, a determination of their toxicity is extremely important. The main aim of presented study was to investigate the cytotoxic effect of surface modified TiO2-based nanoparticles, to model their quantitative nanostructure–toxicity relationships and to reveal the toxicity mechanism. In this context, toxicity tests for surface-modified TiO2-based nanoparticles were performed in vitro, using Gram-negative bacteria Escherichia coli and Chinese hamster ovary (CHO-K1) cells. The obtained cytotoxicity data were analyzed by means of computational methods (quantitative structure–activity relationships, QSAR approach). Based on a combined experimental and computational approach, predictive models were developed, and relationships between cytotoxicity, size, and specific surface area (Brunauer–Emmett–Teller surface, BET) of nanoparticles were discussed.
Subject
Electrical and Electronic Engineering,General Physics and Astronomy,General Materials Science
Cited by
31 articles.
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