Laboratório de Fitotecnia (LFIT), Universidade Estadual do Norte Fluminense Darcy Ribeiro-UENF, Campos dos Goytacazes 28013-602, Brazil.
Centro de Ciências Naturais e Humanas, Universidade Federal do ABC, Av. dos Estados, 5001, Bl. B, Santo André 09210-170, Brazil.
Int J Mol Sci. 2022 Jul 19;23(14):7935. doi: 10.3390/ijms23147935.
Alzheimer's disease (AD) and other forms of dementia was ranked 3rd in both the Americas and Europe in 2019 in a World Health Organization (WHO) publication listing the leading causes of death and disability worldwide. Copper (Cu) imbalance has been reported in AD and increasing evidence suggests metal imbalance, including molybdenum (Mo), as a potential link with AD occurrence.We conducted an extensive literature review of the last 60 years of research on AD and its relationship with Cu, sulfur (S), and Mo at out of range levels.Weanalyzed the interactions among metallic elements' metabolisms;Cu and Mo are biological antagonists, Mo is a sulfite oxidase and xanthine oxidase co-factor, and their low activities impair S metabolism and reduce uric acid, respectively. We found significant evidence in the literature of a new potential mechanism linking Cu imbalance to Mo and S abnormalities in AD etiology: under certain circumstances, the accumulation of Cu not bound to ceruloplasmin might affect the transport of Mo outside the blood vessels, causing a mild Mo deficiency that might lowerthe activity of Mo and S enzymes essential for neuronal activity. The current review provides an updated discussion of the plausible mechanisms combining Cu, S, and Mo alterations in AD.
阿尔茨海默病(AD)和其他形式的痴呆症在 2019 年世界卫生组织(WHO)公布的全球主要死亡和致残原因的报告中,在美洲和欧洲均排名第三。据报道,AD 患者体内铜(Cu)失衡,越来越多的证据表明,包括钼(Mo)在内的金属失衡可能与 AD 的发生有关。我们对过去 60 年来关于 AD 及其与 Cu、硫(S)和 Mo 之间关系的研究进行了广泛的文献回顾,这些元素的水平均超出了正常范围。我们分析了金属元素代谢之间的相互作用;Cu 和 Mo 是生物拮抗剂,Mo 是亚硫酸盐氧化酶和黄嘌呤氧化酶的辅助因子,它们的低活性会损害 S 代谢并分别降低尿酸。我们在文献中发现了一个新的潜在机制的重要证据,该机制将 Cu 失衡与 AD 发病机制中的 Mo 和 S 异常联系起来:在某些情况下,与铜蓝蛋白结合的 Cu 积累可能会影响 Mo 从血管外的运输,导致轻度 Mo 缺乏,从而降低对神经元活动至关重要的 Mo 和 S 酶的活性。本综述提供了一个关于 AD 中 Cu、S 和 Mo 改变的可能机制的最新讨论。