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Preparation of magnetite nanoparticle and fatty acid incorporated poly(methacrylic acid-ethyl acrylate) nanowebs via electrospinning for magnetic hyperthermia application

机译:磁体热疗磁性热刺激磁铁矿纳米粒子和脂肪酸掺入聚(甲基丙烯酸乙基乙基丙烯酸乙酯)纳米线的制备

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Magnetic hyperthermia has been arising as a promising approach for treatment of cancer. When magnetic nanoparticles (MNPs) are locally injected through cancerous tissues and subjected to an appropriate alternating magnetic field, they generate heat due to the rotation of the nanomagnets, causing the destruction of the cancer cells. For repeated applications of magnetic hyperthermia, it is highly preferred to keep the temperature constant at about 41^460C while preventing the leakage of MNPs, to minimize secondary effects on surrounding healthy tissues. In our study, we produced novel nanowebs provided with magnetic and thermal buffering properties by encapsulating MNPs and Laurie Acid in poly(methyl ethyl acrylate) matrix via uniaxial electrospinning. For the oleic acid functionalized magnetic nanoparticles, the magnetization for the corresponding nanowebs is higher by a factor of two for all concentrations than the ones with non-functionalized magnetic nanoparticles, indicating a more effective integration of the functionalized nanoparticles through the nanoweb. The heat absorption and release capacities of the nanowebs, incorporated with 1.25-2.50 % functionalized MNPs, vary between 70-75 Jg~(-1) at 40-48°C. They also demonstrate thermal' cycling ability and thermal stability.
机译:磁体热疗被引发为治疗癌症的有希望的方法。当磁性纳米颗粒(MNP)通过癌组织局部注射并进行适当的交替磁场时,它们由于纳米磁磁磁磁磁磁磁磁带的旋转而产生热量,从而导致癌细胞破坏。对于磁体热热的反复应用,非常优选在预防MNP的泄漏时保持温度常数在约41 ^ 460℃下,以最小化对周围健康组织的二次效果。在我们的研究中,我们通过单轴静电纺丝通过在聚(甲基乙基丙烯酸甲酯)基质中使用MNP和Laurie酸来生产具有磁性和热缓冲性质的新型纳米液。对于油酸官能化的磁性纳米颗粒,对于所有浓度,对应纳米线的磁化高于与具有非官能化磁性纳米颗粒的浓度的倍数,表明官能化纳米颗粒通过NANOWeb的更有效地整合。纳米线的吸热和释放容量,掺入1.25-2.50%官能化的MNP,在40-48℃的70-75Jg〜(-1)之间变化。它们还证明了热的“循环能力和热稳定性”。

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