Department of Anatomy and Cell Biology, School of Medicine, Mashhad University of Medical Sciences, Mashhad, Iran.
Microanatomy Research Center, Mashhad University of Medical Sciences, Mashhad, Iran.
Rev Environ Health. 2020 Jul 18;35(4):545-556. doi: 10.1515/reveh-2020-0043. Print 2020 Nov 18.
Nowadays, different kinds of nanoparticles (NPs) are produced around the world and used in many fields and products. NPs can enter the body and aggregate in the various organs including brain. They can damage neurons, in particular dopaminergic neurons in the substantia nigra (SN) and striatal neurons which their lesion is associated with Parkinson's disease (PD). So, NPs can have a role in PD induction along with other agents and factors. PD is the second most common neurodegenerative disease in the world, and in patients, its symptoms progressively worsen day by day through different pathways including oxidative stress, neuroinflammation, mitochondrial dysfunction, α-synuclein increasing and aggregation, apoptosis and reduction of tyrosine hydroxylase positive cells. Unfortunately, there is no effective treatment for PD. So, prevention of this disease is very important. On the other hand, without having sufficient information about PD inducers, prevention of this disease would not be possible. Therefore, we need to have sufficient information about things we contact with them in daily life. Since, NPs are widely used in different products especially in consumer products, and they can enter to the brain easily, in this review the toxicity effects of metal and metal oxide NPs have been evaluated in molecular and cellular levels to determine potential of different kinds of NPs in development of PD.
如今,世界各地生产出了各种各样的纳米颗粒(NPs),并将其应用于许多领域和产品中。NPs 可以进入人体,并在包括大脑在内的各种器官中聚集。它们可以损伤神经元,特别是黑质(SN)中的多巴胺能神经元和纹状体神经元,这些神经元的损伤与帕金森病(PD)有关。因此,NPs 可以与其他因素一起在 PD 的诱导中发挥作用。PD 是世界上第二常见的神经退行性疾病,在患者中,其症状通过不同途径逐渐恶化,包括氧化应激、神经炎症、线粒体功能障碍、α-突触核蛋白增加和聚集、细胞凋亡和酪氨酸羟化酶阳性细胞减少。不幸的是,目前还没有针对 PD 的有效治疗方法。因此,预防这种疾病非常重要。另一方面,如果我们对 PD 的诱导因素没有足够的了解,那么预防这种疾病是不可能的。因此,我们需要对日常生活中接触到的物质有足够的了解。由于 NPs 广泛应用于各种产品,特别是消费品中,并且它们很容易进入大脑,因此在本综述中,评估了金属和金属氧化物 NPs 在分子和细胞水平上的毒性作用,以确定不同类型的 NPs 在 PD 发展中的潜在作用。