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Co_(0.5)Fe_(2.5)O_4 Nanoparticle Biological Impact - Comparative Study on Environmental Cellulolytic Fungi

机译:Co_(0.5)Fe_(2.5)O_4纳米颗粒的生物影响-环境纤维素分解真菌的比较研究

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Cobalt ferrite nanoparticles (NPs) with potential medical utilization were prepared by co-precipitation being further electrostatically stabilized with perchloric acid in aqueous solution. XRD analysis revealed typical spinel lattice crystallites with less than 10 nm size, SEM evidenced rather uniform quasi-spherical shape of 45 nm average NP size, dynamical analysis of particle movement in diluted solution indicated average hydrodynamical diameter of 65 nm; magnetometric investigation revealed dominant superparamagnetic features. We studied some biochemical aspects of NPs impact following their release in the environment with focus on the oxidative stress induced in cellulolytic fungi (able of degrading cellulose waste). The increase in malondialdehyde content of fungi mycelium indicated lipid peroxidation which could be correlated with the changes observed in catalase and superoxide dismutase activity. Different sensitivity to iron and cobalt ions was noticed in the studied fungi strains.
机译:通过将共沉淀物与高氯酸在水溶液中进一步静电稳定,可制备具有潜在医疗用途的钴铁氧体纳米颗粒(NPs)。 XRD分析表明典型的尖晶石晶格晶粒小于10nm,SEM证明准NP形为45nm平均NP尺寸,稀溶液中颗粒运动的动力学分析表明平均流体动力学直径为65nm。磁力测量显示出主要的超顺磁性特征。我们研究了NP在环境中释放后影响的一些生化方面,重点研究了纤维素分解真菌(可降解纤维素废物)中诱导的氧化应激。真菌菌丝体丙二醛含量的增加表明脂质过氧化,这可能与过氧化氢酶和超氧化物歧化酶活性的变化有关。在研究的真菌菌株中发现了对铁和钴离子的不同敏感性。

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