Enogieru Adaze Bijou, Momodu Oghenakhogie Iroboudu
Department of Anatomy, School of Basic Medical Sciences, University of Benin, Benin City, Edo State, Nigeria.
Cerebellum. 2021 Aug;20(4):614-630. doi: 10.1007/s12311-021-01231-0. Epub 2021 Jan 21.
Cerebellar development begins during the late embryological period and continues to undergo organizational changes long after birth. The cerebellum is particularly susceptible to developmental abnormalities on exposure to oxidants and free radicals, thus leading to oxidative stress. Oxidative stress occurs when there is an imbalance between reactive oxygen species generation and antioxidant defences which may disrupt signalling pathways, leading to cerebellar anomalies and dysfunction. In this regard, this review assesses current research underlining the importance of the cerebellum, provides an update on substances affecting cerebellar development and highlights some promising antioxidants that may play a role in attenuating toxicity in the developing cerebellum. To accomplish this, the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) system was employed and key scientific databases such as Science Direct, PubMed, Scopus, Web of Science and Google Scholar were searched to explore and collect information on the cerebellum and the role of antioxidants during its development. Originally, 109 articles were obtained but 22 articles which met the inclusion criteria were selected for the review. These findings provide an updated compilation of antioxidants capable of attenuating oxidative damage in the developing cerebellum, thus allowing future interdisciplinary studies in the form of clinical applications for screening and possible development of novel therapeutic agents from the identified products.
小脑发育始于胚胎后期,并在出生后很长一段时间内持续经历组织变化。小脑在接触氧化剂和自由基时特别容易出现发育异常,从而导致氧化应激。当活性氧生成与抗氧化防御之间失衡时,就会发生氧化应激,这可能会扰乱信号通路,导致小脑异常和功能障碍。在这方面,本综述评估了强调小脑重要性的当前研究,提供了影响小脑发育的物质的最新信息,并强调了一些可能在减轻发育中小脑毒性方面发挥作用的有前景的抗氧化剂。为了实现这一目标,采用了系统评价和荟萃分析首选报告项目(PRISMA)系统,并检索了科学Direct、PubMed、Scopus、科学网和谷歌学术等关键科学数据库,以探索和收集有关小脑及其发育过程中抗氧化剂作用的信息。最初获得了109篇文章,但选择了22篇符合纳入标准的文章进行综述。这些发现提供了一份能够减轻发育中小脑氧化损伤的抗氧化剂的最新汇编,从而允许未来以临床应用的形式进行跨学科研究,以便从已确定的产品中筛选和可能开发新型治疗药物。