Pharmacology Research Laboratory, UGC- Centre of Advanced Study, University Institute of Pharmaceutical Sciences, Panjab University, Chandigarh, 160 014, India.
Metab Brain Dis. 2024 Mar;39(3):387-401. doi: 10.1007/s11011-023-01247-x. Epub 2023 Jun 7.
Autism Spectrum Disorders (ASD) are a complex set of neurodevelopmental manifestations which present in the form of social and communication deficits. Affecting a growing proportion of children worldwide, the exact pathogenesis of this disorder is not very well understood, and multiple signaling pathways have been implicated. Among them, the ERK/MAPK pathway is critical in a number of cellular processes, and the normal functioning of neuronal cells also depends on this cascade. As such, recent studies have increasingly focused on the impact this pathway has on the development of autistic symptoms. Improper ERK signaling is suspected to be involved in neurotoxicity, and the same might be implicated in autism spectrum disorders (ASD), through a variety of effects including mitochondrial dysfunction and oxidative stress. Niclosamide, an antihelminthic and anti-inflammatory agent, has shown potential in inhibiting this pathway, and countering the effects shown by its overactivity in inflammation. While it has previously been evaluated in other neurological disorders like Alzheimer's Disease and Parkinson's Disease, as well as various cancers by targeting ERK/MAPK, it's efficacy in autism has not yet been evaluated. In this article, we attempt to discuss the potential role of the ERK/MAPK pathway in the pathogenesis of ASD, specifically through mitochondrial damage, before moving to the therapeutic potential of niclosamide in the disorder, mediated by the inhibition of this pathway and its detrimental effects of neuronal development.
自闭症谱系障碍(ASD)是一组复杂的神经发育表现,以社交和沟通缺陷的形式出现。这种疾病在全球范围内越来越多地影响到儿童,其确切的发病机制还不是很清楚,涉及到多种信号通路。其中,ERK/MAPK 通路在许多细胞过程中都很关键,神经元细胞的正常功能也依赖于这个级联反应。因此,最近的研究越来越关注这条通路对自闭症症状发展的影响。异常的 ERK 信号可能与神经毒性有关,同样可能与自闭症谱系障碍(ASD)有关,通过多种效应,包括线粒体功能障碍和氧化应激。尼氯硝唑是一种驱虫药和抗炎药,已显示出抑制这条通路的潜力,并能对抗其在炎症中过度活跃所产生的影响。虽然它以前曾在其他神经疾病(如阿尔茨海默病和帕金森病)以及各种癌症中通过靶向 ERK/MAPK 进行过评估,但它在自闭症中的疗效尚未得到评估。在本文中,我们试图讨论 ERK/MAPK 通路在自闭症发病机制中的潜在作用,特别是通过线粒体损伤,然后再讨论尼氯硝唑通过抑制这条通路及其对神经元发育的有害影响在该疾病中的治疗潜力。