دوره 14، شماره 3 - ( 5-1405 )                   جلد 14 شماره 3 صفحات 0-0 | برگشت به فهرست نسخه ها

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Kanani S, Karami M, Hajnorouzi A. Synergistic Effects of Static Magnetic Field and Zinc Oxide Nanoparticles on Paramecium caudatum Cyclosis. Res Mol Med (RMM) 2026; 14 (3)
URL: http://rmm.mazums.ac.ir/article-1-655-fa.html
Synergistic Effects of Static Magnetic Field and Zinc Oxide Nanoparticles on Paramecium caudatum Cyclosis. Research in Molecular Medicine. 1405; 14 (3)

URL: http://rmm.mazums.ac.ir/article-1-655-fa.html


چکیده:   (25 مشاهده)
Bcckgroud: Nanoparticles (NPs) have been increasingly noticed due to their unique properties. Static magnetic fields (SMFs) also have the potential to affect biological processes. We studied the effects of zinc oxide nanoparticles (ZnO NPs) and SMF on cyclosis, motor activity, and dynein density in Paramecium caudatum.
Methodology: Samples (0.1 mL) of P. caudatum pure culture were exposed to ZnO NPs (1, 5, and 25 μg/μL). Experiments were conducted under natural geomagnetic conditions (laboratory) and under SMF (0.061 T). Control groups received only 1 µL of distilled water. Over periods of 30 sec, the s-shaped movements, the acid/base status of cyclosis vacuoles, the escape behaviour, the levels of antioxidant factors and nitric oxide (NO), and dynein density were measured. Data were analyzed using analysis of variance (ANOVA).
Results: The field had a decreasing effect on the movement of Paramecium compared to the control. ZnO NPs, regardless of the conditions, caused an increase in movement at high concentrations. Avoidance was induced in exposure to high concentrations of NPs. The acid/base ratio characteristic of cyclosis vacuoles declined in high concentrations of NPs. Antioxidant factors, such as glutathione and catalase were reduced after exposure to NPs, but more severely, under the field. However, superoxide dismutase and NO did not change significantly. Dynein density decreased after exposure to high concentrations of nanomaterial under the field.
Conclusion: ZnO NPs and SMF probably have synergistic effects on the physiology of Paramecium, including cyclosis and motility, by affecting the density of motor and scaffold proteins.

 
     
نوع مطالعه: پژوهشي | موضوع مقاله: نانوتکنولوژی
انتشار: 1405/5/28

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