Thangavel Prakash, Viswanath Buddolla, Kim Sanghyo
Department of Bionanotechnology, Gachon University, Bokjeong-Dong, Sujeong-Gu, Seongnam-Si, Gyeonggi-Do.
Graduate Gachon Medical Research Institute, Gil Medical Center, Incheon, Republic of Korea.
Int J Nanomedicine. 2017 Apr 4;12:2749-2758. doi: 10.2147/IJN.S131304. eCollection 2017.
In recent years, the field of metal-based drugs has been dominated by other existing precious metal drugs, and many researchers have focused their attention on the synthesis of various ruthenium (Ru) complexes due to their potential medical and pharmaceutical applications. The beneficial properties of Ru, which make it a highly promising therapeutic agent, include its variable oxidation states, low toxicity, high selectivity for diseased cells, ligand exchange properties, and the ability to mimic iron binding to biomolecules. In addition, Ru complexes have favorable adsorption properties, along with excellent photochemical and photophysical properties, which make them promising tools for photodynamic therapy. At present, nanostructured materials functionalized with Ru complexes have become an efficient way to administer Ru-based anticancer drugs for cancer treatment. In this review, the recent developments in the nanostructured materials functionalized with Ru complexes for targeted drug delivery to tumors are discussed. In addition, information on "traditional" (ie, non-nanostructured) Ru-based cancer therapies is included in a precise manner.
近年来,金属基药物领域一直由其他现有的贵金属药物主导,由于其潜在的医学和制药应用,许多研究人员将注意力集中在各种钌(Ru)配合物的合成上。钌的有益特性使其成为一种非常有前景的治疗剂,包括其可变的氧化态、低毒性、对病变细胞的高选择性、配体交换特性以及模拟铁与生物分子结合的能力。此外,钌配合物具有良好的吸附特性,以及出色的光化学和光物理特性,这使其成为光动力疗法的有前景的工具。目前,用钌配合物功能化的纳米结构材料已成为用于癌症治疗的钌基抗癌药物给药的有效途径。在这篇综述中,讨论了用钌配合物功能化的纳米结构材料用于肿瘤靶向药物递送的最新进展。此外,还精确地纳入了关于“传统”(即非纳米结构)钌基癌症疗法的信息。