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Ni-Cu Nanoparticles and Their Feasibility for Magnetic Hyperthermia

机译:Ni-Cu纳米粒子及其对磁体热疗的可行性

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摘要

Ni-Cu nanoparticles have been synthesized by reducing Ni and Cu from metal precursors using a sol–gel route followed by annealing at 300 °C for 1, 2, 3, 6, 8, and 10 h for controlled self-regulating magnetic hyperthermia applications. Particle morphology and crystal structure revealed spherical nanoparticles with a cubic structure and an average size of 50, 60, 53, 87, and 87 nm for as-made and annealed samples at 300 °C for 1, 3, 6, and 10 h, respectively. Moreover, hysteresis loops indicated ferromagnetic behavior with saturation magnetization (Ms) ranging from 13–20 emu/g at 300 K. Additionally, Zero-filed cooled and field cooled (ZFC-FC) curves revealed that each sample contains superparamagnetic nanoparticles with a blocking temperature (TB) of 196–260 K. Their potential use for magnetic hyperthermia was tested under the therapeutic limits of an alternating magnetic field. The samples exhibited a heating rate ranging from 0.1 to 1.7 °C/min and a significant dissipated heating power measured as a specific absorption rate (SAR) of 6–80 W/g. The heating curves saturated after reaching the Curie temperature (Tc), ranging from 30–61 °C within the therapeutic temperature limit. An in vitro cytotoxicity test of these Ni-Cu samples in biological tissues was performed via exposing human breast cancer MDA-MB231 cells to a gradient of concentrations of the sample with 53 nm particles (annealed at 300 °C for 3 h) and reviewing their cytotoxic effects. For low concentrations, this sample showed no toxic effects to the cells, revealing its biocompatibility to be used in the future for in vitro/in vivo magnetic hyperthermia treatment of cancer.
机译:通过使用溶胶 - 凝胶途径从金属前体还原Ni和Cu来合成Ni-Cu纳米颗粒,然后在300℃下退火1,2,3,6,8和10小时,以进行受控的自调节磁体热热性应用。粒子形态和晶体结构揭示了具有立方结构的球形纳米颗粒,平均尺寸为50,60,53,87和87nm,在300℃下为1,3,6和10小时,分别。此外,滞后环用饱和磁化强度(MS)在300k的饱和磁化强度(MS)中指出了铁磁性行为。另外,零归档的冷却和现场冷却(ZFC-FC)曲线显示每个样品含有封闭的超顺磁性纳米颗粒196-260 K的温度(TB)。在交替磁场的治疗界限下测试它们对磁体热疗的潜在用途。样品表现出0.1至1.7℃/ min的加热速率,并且以6-80W / g的特定吸收率(SAR)测量的显着耗散的加热功率。在达到居里温度(TC)后饱和的加热曲线,在治疗温度下的30-61℃范围内。通过将人乳腺癌MDA-MB231细胞暴露于用53nm颗粒(在300℃下3小时内退火的样品浓度的样品浓度的浓度(300℃退火)进行生物组织中这些Ni-Cu样品的体外细胞毒性试验。细胞毒性效应。对于低浓度,该样品对细胞没有任何毒性作用,揭示了其在未来用于体外/体内磁体热疗治疗癌症的生物相容性。

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