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Electrochemical Synthesis and Magnetic Properties of MFe2O4 (M = Fe, Mn, Co, Ni) Nanoparticles for Potential Biomedical Applications

机译:MFE2O4(M = Fe,Mn,Co,Ni)纳米粒子的电化学合成和磁性均有生物医学应用

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In this study, we evaluate the magnetic properties and cytotoxic effect of magnetic nanoparticles (MNPs) based on magnetite and Mn, Co and Ni ferrites, obtained by electrochemical synthesis. These nanoparticles have almost spherical shape and an mode size of 9 +/- 1 nm. The electrochemical synthesis produces a single crystallographic phase with a spinel-like structure in all cases. Magnetization saturation at room temperature varies with the composition of the ferrites from M-S (Fe3O4) M-S (MnFe2O4) M-S (CoFe2O4) M-S (NiFe2O4). Ferrite MNPs present low magnetic remanence indicating a superparamagnetic-like response at room temperature. However, the different values of magnetic anisotropy and size produce variations in the values of coercivity and susceptibility of the ferrite MNPs. The cytotoxicity of the different ferrites was evaluated by internalizing MNP in HeLa cancer cells. Although magnetite and Mn ferrite present low toxicity for all the concentrations studied, significant cytotoxic effect were observed when incubating the cells with high concentration of Co and Ni ferrites.
机译:在该研究中,通过电化学合成获得的基于磁铁矿和Mn,Co和Ni铁氧体的磁性纳米颗粒(MNP)的磁性和细胞毒性作用评估磁性纳米颗粒(MNP)的磁性和细胞毒性作用。这些纳米颗粒具有几乎是球形的形状和9 +/-1nm的模式尺寸。电化学合成在所有情况下都产生具有尖晶石状结构的单一结晶相。室温下的磁化饱和随来自M-S(Fe3O4)&GT的铁氧体的组成而变化。 M-S(MNFE2O4)> M-S(Cofe2O4)& M-S(NiFe2O4)。铁氧体Mnps呈现低磁性遗弃,表明室温下的超顺磁性响应。然而,磁各向异性和尺寸的不同值产生了铁氧体MNP的矫顽力和易感性的变化。通过在HeLa癌细胞中内化MNP来评估不同铁氧体的细胞毒性。虽然磁铁矿和Mn铁氧体为所研究的所有浓度呈现低毒性,但是当以高浓度的CO和Ni铁氧体孵育细胞时,观察到显着的细胞毒性效果。

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