Chan Ming-Hsien, Li Chien-Hsiu, Chang Yu-Chan, Hsiao Michael
Genomics Research Center, Academia Sinica, Taipei 115, Taiwan.
Department of Biomedical Imaging and Radiological Sciences, National Yang Ming Chiao Tung University, Taipei 112, Taiwan.
Pharmaceutics. 2022 Nov 24;14(12):2584. doi: 10.3390/pharmaceutics14122584.
Because of the unique physicochemical properties of magnetic iron-based nanoparticles, such as superparamagnetism, high saturation magnetization, and high effective surface area, they have been applied in biomedical fields such as diagnostic imaging, disease treatment, and biochemical separation. Iron-based nanoparticles have been used in magnetic resonance imaging (MRI) to produce clearer and more detailed images, and they have therapeutic applications in magnetic fluid hyperthermia (MFH). In recent years, researchers have used clay minerals, such as ceramic materials with iron-based nanoparticles, to construct nanocomposite materials with enhanced saturation, magnetization, and thermal effects. Owing to their unique structure and large specific surface area, iron-based nanoparticles can be homogenized by adding different proportions of ceramic minerals before and after modification to enhance saturation magnetization. In this review, we assess the potential to improve the magnetic properties of iron-based nanoparticles and in the preparation of multifunctional composite materials through their combination with ceramic materials. We demonstrate the potential of ferromagnetic enhancement and multifunctional composite materials for MRI diagnosis, drug delivery, MFH therapy, and cellular imaging applications.
由于磁性铁基纳米颗粒具有超顺磁性、高饱和磁化强度和高有效表面积等独特的物理化学性质,它们已被应用于诊断成像、疾病治疗和生化分离等生物医学领域。铁基纳米颗粒已被用于磁共振成像(MRI)以产生更清晰、更详细的图像,并且它们在磁流体热疗(MFH)中有治疗应用。近年来,研究人员已使用粘土矿物,如含铁基纳米颗粒的陶瓷材料,来构建具有增强的饱和度、磁化强度和热效应的纳米复合材料。由于其独特的结构和大比表面积,铁基纳米颗粒可以在改性前后通过添加不同比例的陶瓷矿物来进行均质化处理,以增强饱和磁化强度。在这篇综述中,我们评估了通过将铁基纳米颗粒与陶瓷材料结合来改善其磁性以及制备多功能复合材料的潜力。我们展示了铁磁增强和多功能复合材料在MRI诊断、药物递送、MFH治疗和细胞成像应用中的潜力。