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Fe 基金属和氧化物基纳米粒子的合成与表征:在生物学和医学中具有潜在应用的发现和研究亮点。

Synthesis and characterization of Fe-based metal and oxide based nanoparticles: discoveries and research highlights of potential applications in biology and medicine.

机构信息

Shanghai Institute of Ceramics, Chinese Academy of Science, 1295, Dingxi Road, Shanghai 200050, China.

出版信息

Recent Pat Nanotechnol. 2014 Jan;8(1):52-61. doi: 10.2174/1872210507666131117183008.

Abstract

In this review, we have presented the controlled synthesis of Fe-based metal and oxide nanoparticles with large size by chemical methods. The issues of the size, shape and morphology of Fe nanoparticles are discussed in the certain ranges of practical applications in biology and medicine. The homogeneous nanosystems of Fe-based metal and oxide nanoparticles with various sizes and shapes from the nano-to-micro ranges can be used in order to meet the demands of the treatments of dangerous tumors and cancers through magnetic hyperthermia and magnetic resonance imaging (MRI). In this context, the polyhedral Fe-based metal and oxide nanoparticles having large size in the ranges from 1000 nm to 5000 nm can be potentially used in magnetic hyperthermia and MRI in the innovative drug delivery, diagnosis, treatment, and therapy of tumor and cancer diseases because of their very high bio-adaptability. We have suggested that high stability and durability of Fe-based metal and oxide nanoparticles are very crucial to recent magnetic hyperthermia and MRI technology. The roles of various Fe-based nanostructures are focused in biomedical applications of tumors and cancers diagnostics, targeted drug delivery, and magnetic hyperthermia. Finally, Fe-based, α-, β- and γ-Fe2O3, and Fe3O4-based nanoparticles are shortly discussed in various potential applications in catalysis, biology, and medicine.

摘要

在这篇综述中,我们介绍了通过化学方法控制合成具有大尺寸的基于铁的金属和氧化物纳米粒子。讨论了在生物学和医学的某些实际应用范围内,铁纳米粒子的尺寸、形状和形态的问题。具有从纳米到微米范围的各种尺寸和形状的均匀纳米系统的基于铁的金属和氧化物纳米粒子,可以通过磁热疗和磁共振成像(MRI)用于满足治疗危险肿瘤和癌症的需求。在这种情况下,尺寸在 1000nm 到 5000nm 范围内的多面体基于铁的金属和氧化物纳米粒子由于其非常高的生物适应性,可能会在创新药物输送、诊断、治疗和肿瘤和癌症疾病的治疗中用于磁热疗和 MRI。我们提出,基于铁的金属和氧化物纳米粒子的高稳定性和耐久性对于最近的磁热疗和 MRI 技术非常重要。各种基于铁的纳米结构在肿瘤和癌症诊断、靶向药物输送和磁热疗的生物医学应用中起着重要作用。最后,简要讨论了基于铁、α-、β-和 γ-Fe2O3 以及 Fe3O4 的纳米粒子在催化、生物学和医学中的各种潜在应用。

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