Semwal Prabhakar, Painuli Sakshi, Anand Jigisha, Martins Natália Cruz, Machado Marisa, Sharma Rohit, Batiha Gaber El-Saber, Yaro Clement Amen, Lorenzo Jose M, Rahman Md Mominur
Department of Life Sciences, Graphic Era Deemed to be University, Dehradun (248002), Uttarakhand, India.
Uttarakhand Council for Biotechnology (UCB), Prem Nagar, Dehradun (248007), Uttarakhand, India.
Evid Based Complement Alternat Med. 2022 Oct 1;2022:6214264. doi: 10.1155/2022/6214264. eCollection 2022.
Millions of people are affected by neuronal disorders that are emerging as a principal cause of death after cancer. Alzheimer's disease, ataxia, Parkinson's disease, multiple system atrophy, and autism comprise the most common ones, being accompanied by loss of cognitive power, impaired balance, and movement. In past decades, natural polyphenols obtained from different sources including bacteria, fungi, and plants have been utilized in the traditional system of medicine for the treatment of several ailments. Endophytes are one such natural producer of secondary metabolites, namely, polyphenols, which exhibit strong abilities to assist in the management of such affections, through modifying multiple therapeutic targets and weaken their complex physiology. Limited research has been conducted in detail on bioactive compounds present in the endophytic fungi and their neuroprotective effects. Therefore, this review aims to provide an update on scientific evidences related to the pharmacological and clinical potential along with proposed molecular mechanism of action of endophytes for neuronal protection.
数以百万计的人受到神经疾病的影响,这些疾病正成为继癌症之后的主要死因。阿尔茨海默病、共济失调、帕金森病、多系统萎缩和自闭症是最常见的神经疾病,常伴有认知能力丧失、平衡受损和运动障碍。在过去几十年里,从细菌、真菌和植物等不同来源获得的天然多酚已被用于传统医学体系中治疗多种疾病。内生菌就是这样一种次生代谢产物的天然生产者,即多酚,它通过改变多个治疗靶点并削弱其复杂的生理机能,表现出强大的辅助管理此类疾病的能力。关于内生真菌中存在的生物活性化合物及其神经保护作用的详细研究还很有限。因此,本综述旨在提供有关内生菌神经保护的药理学和临床潜力以及拟议的分子作用机制的科学证据的最新情况。