Библиографическое описание:Biological activity of carbonic nano-structures-comparison via enzymatic bioassay : научное издание / A. S. Sachkova [et al.]. - Текст : непосредственный // Journal of Soils and Sediments. - 2018. - № . - P. 2689-2696. - ISSN 1439-0108. - ISSN 1614-7480.
Аннотация:Purpose: The aim of the work is to compare the biological activity of carbonic nano-structures of natural and artificial origination, namely, humic substances (HS) and fullerenols. Materials and methods: The representative of the fullerenol group, С <sub>60</sub> О <sub>y</sub> (OH) <sub>x</sub> where у + x = 20–22, was chosen. Enzyme-based luminescent bioassay was applied to evaluate toxicity and antioxidant properties of HS and fullerenol (F); chemiluminescent luminol method was used to study a content of reactive oxygen species (ROS) in the solutions. Toxicity of the bioactive compounds was evaluated using effective concentrations ЕС <sub>50</sub> ; detoxification coefficients D <sub>OxT</sub> were applied to study and compare antioxidant activity of the compounds. Antioxidant activity and ranges of active concentrations of the bioactive compounds were determined in model solutions of organic and inorganic oxidizers—1,4-benzoquinone and potassium ferricianide. Results and discussion: Values of ЕС <sub>50</sub> revealed higher toxicity of HS than F (0.005 and 0.108 g L <sup>−1</sup> , respectively); detoxifying concentrations of F were found to be lower. Antioxidant ability of HS was demonstrated to be time-dependent; the 50-min preliminary incubation in oxidizer solutions was suggested as optimal for the detoxification procedure. On the contrary, F’ antioxidant effect demonstrated independency on time. Antioxidant effect of HS did not depend on amphiphilic characteristics of the media (values of D <sub>OxT</sub> were 1.3 in the solutions of organic and inorganic oxidizers), while this of F was found to depend: it was maximal (D <sub>OxT</sub> = 2.0) in solutions of organic oxidizer, 1,4-benzoquinone. Conclusions: Both HS and F demonstrated toxicity and low-concentration antioxidant ability; however, quantitative characteristics of their effects were different. The differences were explained with HS polyfunctionality, higher ability to decrease ROS content, non-rigidity, and diffusion restrictions in their solutions. Antioxidant effect of the bioactive compounds was presumably attributed to catalytic redox activity of their π-fragments. The paper demonstrates a high potential of luminescent enzymatic bioassay to study biological activity of nano-structures of natural and artificial origination.
Держатель оригинала документа:Institute of Biophysics FRC KSC SB RAS, Institute of Physics FRC KSC SB RAS, Irkutsk National Research Technical University, National Research Tomsk Polytechnic University, Siberian Federal University
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