Department of Nanomedicine and Theranostics, Institute for Experimental Molecular Imaging, RWTH Aachen University Clinic, Aachen, Germany.
Department of Nanomedicine and Theranostics, Institute for Experimental Molecular Imaging, RWTH Aachen University Clinic, Aachen, Germany; Institute of Pathology, Medical Faculty, RWTH Aachen University Clinic, Aachen, Germany.
Adv Drug Deliv Rev. 2019 Jan 1;138:302-325. doi: 10.1016/j.addr.2019.01.005. Epub 2019 Jan 11.
Many different iron oxide nanoparticles have been evaluated over the years, for a wide variety of biomedical applications. We here summarize the synthesis, surface functionalization and characterization of iron oxide nanoparticles, as well as their (pre-) clinical use in diagnostic, therapeutic and theranostic settings. Diagnostic applications include liver, lymph node, inflammation and vascular imaging, employing mostly magnetic resonance imaging but recently also magnetic particle imaging. Therapeutic applications encompass iron supplementation in anemia and advanced cancer treatments, such as modulation of macrophage polarization, magnetic fluid hyperthermia and magnetic drug targeting. Because of their properties, iron oxide nanoparticles are particularly useful for theranostic purposes. Examples of such setups, in which diagnosis and therapy are intimately combined and in which iron oxide nanoparticles are used, are image-guided drug delivery, image-guided and microbubble-mediated opening of the blood-brain barrier, and theranostic tissue engineering. Together, these directions highlight the versatility and the broad applicability of iron oxide nanoparticles, and indicate the integration in future medical practice of multiple iron oxide nanoparticle-based materials.
多年来,人们已经评估了许多不同的氧化铁纳米粒子,用于各种生物医学应用。我们在这里总结了氧化铁纳米粒子的合成、表面功能化和表征,以及它们在诊断、治疗和治疗学方面的(临床前)应用。诊断应用包括肝脏、淋巴结、炎症和血管成像,主要采用磁共振成像,但最近也采用磁粒子成像。治疗应用包括贫血的铁补充和先进的癌症治疗,如调节巨噬细胞极化、磁流体热疗和磁性药物靶向。由于其特性,氧化铁纳米粒子在治疗学方面特别有用。这种设置的例子,其中诊断和治疗紧密结合,氧化铁纳米粒子被使用,包括图像引导药物输送、图像引导和微泡介导的血脑屏障开放,以及治疗学组织工程。这些方向共同强调了氧化铁纳米粒子的多功能性和广泛适用性,并表明了基于多种氧化铁纳米粒子的材料在未来医学实践中的整合。