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Pharmacological Studies on Fullerene (C60), a Novel Carbon Allotrope, and Its Derivatives

机译:新型碳同素异形体富勒烯(C60)及其衍生物的药理研究

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References(31) Cited-By(47) Fullerene (C60), a condensed ring aromatic compound with extended π systems, is a novel carbon allotrope. Because of its poor solubility in polar solvents, investigation of the biological and pharmacological properties of fullerene has been difficult. Recently, water-soluble fullerene derivatives have been synthesized, and we and others have found that they have potent and selective pharmacological effects on organs, cells, enzymes, and nucleic acids. In the presence of fullerene C60 derivative (10−5 M), endothelium-dependent relaxations induced by agonists in the vascular system were eliminated and acetylcholine-induced contractile response of smooth muscle was observed. Some investigators have reported free radical-scavenging activity and direct nitric oxide-quenching activity of fullerene derivatives. Knowledge of the chemical modifications, biological significance, and materials applications of functionalized fullerenes is growing rapidly; and these compounds are emerging as new tools in the field. The focus of this review is to introduce several pharmacological effects of fullerenes and to discuss the possible mechanisms of the pharmacological actions caused by previously synthesized fullerenes.
机译:参考文献(31)Cited-By(47)富勒烯(C60)是一种具有扩展π系统的稠环芳族化合物,是一种新型的碳同素异形体。由于其在极性溶剂中的溶解性差,因此难以研究富勒烯的生物学和药理特性。最近,已经合成了水溶性富勒烯衍生物,并且我们和其他人发现它们对器官,细胞,酶和核酸具有有效和选择性的药理作用。在富勒烯C60衍生物(10-5 M)存在的情况下,消除了激动剂在血管系统中引起的内皮依赖性松弛,并观察到乙酰胆碱引起的平滑肌收缩反应。一些研究者报道了富勒烯衍生物的自由基清除活性和直接一氧化氮猝灭活性。关于官能化富勒烯的化学修饰,生物学意义和材料应用的知识正在迅速增长。这些化合物正在成为该领域的新工具。这篇综述的重点是介绍富勒烯的几种药理作用,并讨论由先前合成的富勒烯引起的药理作用的可能机理。

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