UNICAMP - State University of Campinas, Cidade Universitária Zeferino Vaz, Campinas, CEP 13083-970, Brazil.
LNLS - Brazilian Synchrotron Light Source, Rua Giuseppe Máximo Scolfaro, 10000, Campinas, CEP 13083-970, Caixa Postal, 6192, Brazil.
Sci Rep. 2017 Nov 1;7(1):14843. doi: 10.1038/s41598-017-14633-0.
This work explores a new class of vortex/magnetite/iron oxide nanoparticles designed for magnetic hyperthermia applications. These nanoparticles, named Vortex Iron oxide Particles (VIPs), are an alternative to the traditional Superparamagnetic Iron Oxide Nanoparticles (SPIONs), since VIPs present superior heating power while fulfilling the main requirements for biomedical applications (low cytotoxicity and nonremanent state). In addition, the present work demonstrates that the synthesized VIPs also promote an internalization and aggregation of the particles inside the cell, resulting in a highly localized hyperthermia in the presence of an alternating magnetic field. Thereby, we demonstrate a new and efficient magnetic hyperthermia strategy in which a small, but well localized, concentration of VIPs can promote an intracellular hyperthermia process.
这项工作探索了一类新型的涡旋/磁铁矿/氧化铁纳米粒子,旨在应用于磁热疗。这些纳米粒子被命名为涡旋氧化铁粒子(VIPs),是传统超顺磁性氧化铁纳米粒子(SPIONs)的替代品,因为 VIPs 具有更高的加热能力,同时满足生物医学应用的主要要求(低细胞毒性和非残留状态)。此外,本工作还表明,合成的 VIPs 还促进了粒子在细胞内的内化和聚集,从而在交变磁场存在下导致高度局域化的热疗。因此,我们证明了一种新的、有效的磁热疗策略,其中一小部分但定位良好的 VIP 浓度可以促进细胞内热疗过程。