24 June 2013 Optical properties of functional composite silver nanoparticles and their potential use in reproductive medicine
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Abstract
Silver nanoparticles are promising product of nanotechnology with attractive physicochemical and biological properties. The main aim of the study was to investigate optical properties of functional silver nanoparticles with different composite agents: polyvinylpyrrolidone, bovine serum albumin, hyaluronan and to explore their potential using in reproductive medicine. The date obtained in the study showed that surface modification of nanoparticles leads to change of their optical, physicochemical and biological properties. The optical properties of silver nanoparticles display, that AgNPs with PVP and BSA is most stable in PBS than AgNPs with HA. However the absorption curves after 120 hours of storage show, that AgNPs-HA were the most stable in ethanol. Results show, that silver nanoparticles did not effect on sperm viability and motility, but cause a changes of some biochemical parameters of conditioned medium, particular increase the concentration of triglycerides, activity of alkaline phosphatase, lactate dehydrogenase and decrease the activity of aspartate aminotransferase and alanine aminotransferase after 3 h of in vitro cultivation at 37°C. According to our latest data AgNPs with HA have a less toxic effect on biological processes in rabbits sperm compared with AgNPs with PVP and BSA. Nevertheless all functional composites of silver nanoparticles at the concentration of 0.1 μg/mL have no toxic effect on spermatozoa and can be successfully applied in reproductive medicine at low concentrations as signal enhancers, optical sensors, and biomarkers.
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Vasyl J. Syrvatka, Vasyl J. Syrvatka, Yurij I. Slyvchuk, Yurij I. Slyvchuk, Ivan I. Rozgoni, Ivan I. Rozgoni, Ivan I. Gevkan, Ivan I. Gevkan, Oleksandr I. Bilyy, Oleksandr I. Bilyy, } "Optical properties of functional composite silver nanoparticles and their potential use in reproductive medicine", Proc. SPIE 8803, Medical Laser Applications and Laser-Tissue Interactions VI, 88030V (24 June 2013); doi: 10.1117/12.2033462; https://doi.org/10.1117/12.2033462
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