Facultad de Ciencias Exactas, Universidad Nacional de La Plata. 47 y 115 (1900) La Plata, Argentina.
Curr Med Chem. 2010;17(31):3632-42. doi: 10.2174/092986710793213805.
Vanadium is a trace element present in practically all cells in plants and animals. While the essentiality of vanadium for human beings remains to be well established, vanadium has become an increasingly important environmental metal. Vanadium compounds exert a variety of biological activities and responses. At pharmacological doses, vanadium compounds display relevant biological actions such as insulin and growth factor mimetic or enhancing effects, as well as osteogenic and cardioprotective activity. On the other hand, depending on the nature of compounds and their concentrations, toxicological actions and adverse side effects may also be shown. Nevertheless, the toxic effects may be useful to develop new antitumoral drugs. In this review, the authors summarize current knowledge and new advances on in vitro and in vivo effects of inorganic and organically-chelated vanadium compounds. The effects of vanadium derivatives on some cellular signaling pathways related to different diseases are compiled. In particular, the pathways relevant to the insulin mimetic, osteogenic, cadioprotective and antitumoral actions of vanadium compounds have been comprehensively reviewed. The knowledge of these intracellular signaling pathways may facilitate the rational design of new vanadium compounds with promising therapeutic applications as well as the understanding of secondary side effects derived from the use of vanadium as a therapeutic agent.
钒是存在于动植物几乎所有细胞中的一种微量元素。虽然钒对人类的必要性仍有待充分确立,但钒已成为一种越来越重要的环境金属。钒化合物具有多种生物活性和反应。在药理学剂量下,钒化合物表现出相关的生物学作用,如胰岛素和生长因子模拟或增强作用,以及成骨和心脏保护活性。另一方面,根据化合物的性质和浓度,也可能表现出毒理学作用和不良反应。然而,这些毒性作用可能有助于开发新的抗肿瘤药物。在这篇综述中,作者总结了无机和有机络合钒化合物的体外和体内作用的最新知识和新进展。编译了钒衍生物对与不同疾病相关的一些细胞信号通路的影响。特别综述了与钒化合物的胰岛素模拟、成骨、心脏保护和抗肿瘤作用相关的途径。对这些细胞内信号通路的了解可以促进具有潜在治疗应用的新型钒化合物的合理设计,并有助于理解将钒用作治疗剂所带来的次要副作用。