Pharmaceutics Research Center, Institute of Neuropharmacology, Kerman University of Medical Science, Kerman, Iran.
Institute of Nano Science and Nano Technology, University of Kashan, P.O. Box 87317-51167, Kashan, Iran.
Adv Colloid Interface Sci. 2019 Mar;265:29-44. doi: 10.1016/j.cis.2019.01.003. Epub 2019 Jan 23.
A valuable site-directed application in the field of nanomedicine is targeted drug delivery using magnetic metal oxide nanoparticles by applying an external magnetic field at the target tissue. The magnetic property of these structures allows controlling the orientation and location of particles by changing the direction of the applied external magnetic field. Pharmaceutical design and research in the field of nanotechnology offer novel solutions for diagnosis and therapies. This review summarizes magnetic nanoparticles and magnetic spinel ferrit's properties, remarkable approaches in magnetic liposomes, magnetic polymeric nanoparticles, MRI, hyperthermia and especially magnetic drug delivery systems, which have recently developed in the field of magnetic nanoparticles and their medicinal applications. Here, we discuss spinel ferrite (SF) as magnetic materials that are a significant class of composite metal oxides. They contain ferric ions and have the general structural formula MFeO (where M = Co,Ni,Zn,etc.). This structure indicates unique multifunctional properties, such as excellent magnetic characteristics, high specific surface area, surface active sites, high chemical stability, tuneable shape and size, and options for functionalization. The review assesses the current efforts on synthesis, properties and medical application of magnetic spinel ferrites nanoparticles based on cobalt, nickel and zinc. Based on this review, it can be concluded that MNPs and SFNPs have unlimited ability in biomedical applications. However, the practical application of SFNPs on a huge scale still needs to be considered and evaluated.
在纳米医学领域,一个有价值的靶向应用是通过在靶组织应用外部磁场,使用磁性金属氧化物纳米颗粒进行靶向药物输送。这些结构的磁性允许通过改变施加的外部磁场的方向来控制颗粒的取向和位置。药物设计和纳米技术领域的研究为诊断和治疗提供了新的解决方案。这篇综述总结了磁性纳米颗粒和磁性尖晶石铁氧体的性质、在磁性脂质体、磁性聚合物纳米颗粒、MRI、热疗方面的显著方法,特别是近年来在磁性纳米颗粒及其药物应用领域发展起来的磁性药物输送系统。在这里,我们讨论了尖晶石铁氧体(SF)作为磁性材料,是一类重要的复合金属氧化物。它们含有铁离子,具有一般的结构公式 MFeO(其中 M=Co、Ni、Zn 等)。这种结构表明具有独特的多功能特性,如优异的磁特性、高比表面积、表面活性位点、高化学稳定性、可调形状和尺寸以及功能化的选择。该综述评估了基于钴、镍和锌的磁性尖晶石铁氧体纳米颗粒的合成、性质和医学应用的最新进展。基于这篇综述,可以得出结论,MNPs 和 SFNPs 在生物医学应用中有无限的能力。然而,SFNPs 在大规模的实际应用仍需要考虑和评估。