Beijing National Laboratory for Molecular Sciences (BNLMS), Key Laboratory of Molecular Nanostructure and Nanotechnology, Institute of Chemistry, Chinese Academy of Sciences, 100190, Beijing, China.
Small. 2019 Nov;15(48):e1901522. doi: 10.1002/smll.201901522. Epub 2019 May 27.
Endohedral metallofullerenes exhibit combined properties from carbon cages as well as internal metal moieties and have great potential in a wide range of applications as molecule materials. Along with the breakthrough of mass production of metallofullerenes, their applied research has been greatly developed with more and more new functions and practical applications. For gadolinium metallofullerenes, their water-soluble derivatives have been demonstrated with antitumor activity and unprecedented tumor vascular-targeting therapy. Metallofullerene water-soluble derivatives also can be applied to treat reactive oxygen species (ROS)-induced diseases due to their high antioxidative activity. For magnetic metallofullerenes, the internal electron spin and metal species bring about spin sensitivity, molecular magnets, and spin quantum qubits, which have many promising applications. Metallofullerenes are significant candidates for fabricating useful electronic devices because of their various electronic structures. This Review provides a summary of the metallofullerene studies reported recently, in the fields of tumor inhibition, tumor vascular-targeting therapies, antioxidative activity, spin probes, single-molecule magnets, spin qubits, and electronic devices. This is not an exhaustive summary and there are many other important study results regarding metallofullerenes. All of this research has revealed the irreplaceable role of metallofullerene materials.
笼内金属富勒烯兼具碳笼和内部金属基团的特性,在分子材料的广泛应用中具有巨大的潜力。随着金属富勒烯大规模生产的突破,其应用研究得到了极大的发展,出现了越来越多的新功能和实际应用。对于镝金属富勒烯,其水溶性衍生物已被证明具有抗肿瘤活性和前所未有的肿瘤血管靶向治疗作用。由于其高抗氧化活性,金属富勒烯水溶性衍生物也可用于治疗活性氧(ROS)诱导的疾病。对于磁性金属富勒烯,内部电子自旋和金属种类带来了自旋灵敏度、分子磁体和自旋量子位,具有许多有前途的应用。由于其多种电子结构,金属富勒烯是制造有用电子设备的重要候选材料。本文综述了近年来在肿瘤抑制、肿瘤血管靶向治疗、抗氧化活性、自旋探针、单分子磁体、自旋量子位和电子器件等领域报道的金属富勒烯研究进展。这并不是一个详尽的总结,还有许多其他关于金属富勒烯的重要研究结果。所有这些研究都揭示了金属富勒烯材料不可替代的作用。