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Synthesis and characterization of monodispersed water dispersible Fe3O4 nanoparticles and in vitro studies on human breast carcinoma cell line under hyperthermia condition

机译:高热条件下单分散水分散性Fe3O4纳米粒子的合成表征及对人乳腺癌细胞的体外研究

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摘要

Monodispersed Fe3O4 magnetic nanoparticles (MNPs) having size of 7 nm have been prepared from iron oleate and made water dispersible by functionalization for biomedical applications. Three different reactions employing thioglycolic acid, aspartic acid and aminophosphonate were performed on oleic acid coated Fe3O4. In order to achieve a control on particle size, the pristine nanoparticles were heated in presence of ferric oleate which led to increase in size from 7 to 11 nm. Reaction parameters such as rate of heating, reaction temperature and duration of heating have been studied. Shape of particles was found to change from spherical to cuboid. The cuboid shape in turn enhances magneto-crystalline anisotropy (Ku). Heating efficacy of these nanoparticles for hyperthermia was also evaluated for different shapes and sizes. We demonstrate heat generation from these MNPs for hyperthermia application under alternating current (AC) magnetic field and optimized heating efficiency by controlling morphology of particles. We have also studied intra-cellular uptake and localization of nanoparticles and cytotoxicity under AC magnetic field in human breast carcinoma cell line.
机译:已经从油酸铁制备了尺寸为7 sizenm的单分散Fe3O4磁性纳米颗粒(MNP),并通过功能化使其可分散于生物医学应用中。使用硫代乙醇酸,天冬氨酸和氨基膦酸酯对油酸包覆的Fe3O4进行了三种不同的反应。为了控制粒径,在油酸铁的存在下加热了原始的纳米颗粒,这导致粒径从7nm增加到11nm。已经研究了反应参数,例如加热速率,反应温度和加热持续时间。发现颗粒的形状从球形变为长方体。长方体形状反过来会增强磁晶各向异性(Ku)。还针对不同形状和大小评估了这些纳米粒子对热疗的加热功效。我们展示了在交流电(AC)磁场下通过热疗应用从这些MNP产生的热量,并通过控制颗粒的形态优化了加热效率。我们还研究了人类乳腺癌细胞系在交流磁场下细胞内摄取和定位纳米颗粒以及细胞毒性。

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