Crans Debbie C, Henry LaRee, Cardiff Gabriel, Posner Barry I
Met Ions Life Sci. 2019 Jan 14;19. doi: 10.1515/9783110527872-014.
Vanadium has been known for centuries to have beneficial effects on health and has the potential to be used as an alternative to other diabetic and anticancer medicines. The beneficial effects of vanadium salts or organic compounds have been explored in vitro, ex vivo, and in vivo in animal and human studies. A consensus among researchers is that increased bioavailability of these compounds could markedly increase the efficacy of this class of compounds. In addition, because many commercially available vanadium derivatives are being used by body builders to enhance performance, more understanding of their mode of action is desirable. Future studies of various vanadium compounds need to evaluate their biodistribution, biotransformation, and the effects of food and formulation on the bioavailability of the compounds. To date, most studies in humans have employed vanadium salts, mainly vanadyl sulfate, and dose-limiting side effects were reported at therapeutic doses. One organic vanadium compound, bis(ethylmaltolato)oxovanadium(IV), had improved efficacy compared to the vanadyl sulfate and was selected for Phase 1 and 2 clinical trials. Future studies should be conducted as randomized, placebo controlled trials lasting several months, with monitoring of both fasting blood glucose and hemoglobin A1c. Now, the most promising potential uses of vanadium compounds are as nutritional supplements to control glucose levels and perhaps, as an anticancer agent potentiated by immunotherapy.
几个世纪以来,人们一直知道钒对健康有益,并且有潜力用作其他糖尿病和抗癌药物的替代品。在动物和人体研究中,已经在体外、离体和体内探索了钒盐或有机化合物的有益作用。研究人员的共识是,这些化合物生物利用度的提高可能会显著提高这类化合物的疗效。此外,由于许多市售的钒衍生物被健身者用来提高运动表现,因此需要更多地了解它们的作用方式。未来对各种钒化合物的研究需要评估它们的生物分布、生物转化以及食物和制剂对化合物生物利用度的影响。迄今为止,大多数人体研究使用的是钒盐,主要是硫酸氧钒,并且在治疗剂量下报告了剂量限制性副作用。一种有机钒化合物,双(乙基麦芽酚)氧钒(IV),与硫酸氧钒相比疗效有所提高,并被选用于1期和2期临床试验。未来的研究应以持续数月的随机、安慰剂对照试验进行,同时监测空腹血糖和糖化血红蛋白。目前,钒化合物最有前景的潜在用途是作为控制血糖水平的营养补充剂,也许还可以作为一种通过免疫疗法增强疗效的抗癌剂。