Laboratory of Inorganic Chemistry, Department of Chemistry, National and Kapodistrian University of Athens, Athens, Greece.
Institute of Nanoscience and Nanotechnology, National Center for Scientific Research "Demokritos", Athens, Greece.
Sci Rep. 2022 May 24;12(1):8697. doi: 10.1038/s41598-022-12687-3.
Magnetic hyperthermia (MHT) is in the spotlight of nanomedical research for the treatment of cancer employing magnetic iron oxide nanoparticles and their intrinsic capability for heat dissipation under an alternating magnetic field (AMF). Herein we focus on the synthesis of iron oxide nanoflowers (Nfs) of different sizes (15 and 35 nm) and coatings (bare, citrate, and Rhodamine B) while comparing their physicochemical and magnetothermal properties. We encapsulated colloidally stable citrate coated Nfs, of both sizes, in thermosensitive liposomes via extrusion, and RhB was loaded in the lipid bilayer. All formulations proved hemocompatible and cytocompatible. We found that 35 nm Nfs, at lower concentrations than 15 nm Nfs, served better as nanoheaters for magnetic hyperthermia applications. In vitro, magnetic hyperthermia results showed promising therapeutic and imaging potential for RhB loaded magnetoliposomes containing 35 nm Nfs against LLC and CULA cell lines of lung adenocarcinoma.
磁热疗(MHT)是纳米医学研究的焦点,可采用磁性氧化铁纳米粒子及其在交变磁场(AMF)下散热的固有能力来治疗癌症。在此,我们专注于合成不同尺寸(15nm 和 35nm)和涂层(裸、柠檬酸盐和罗丹明 B)的氧化铁纳米花(Nfs),同时比较它们的物理化学和磁热性能。我们通过挤压将胶体稳定的柠檬酸涂层 Nfs(两种尺寸)封装在热敏脂质体中,并将 RhB 加载在脂质双层中。所有制剂均表现出良好的血液相容性和细胞相容性。我们发现,35nm Nfs 比 15nm Nfs 浓度更低,更适合作为磁热疗应用的纳米加热器。体外磁热疗结果表明,负载 RhB 的磁脂体在含有 35nm Nfs 的情况下,对肺腺癌 LLC 和 CULA 细胞系具有有前途的治疗和成像潜力。