Department of Anatomy, Animal Physiology and Biophysics, Faculty of Biology, University of Bucharest, Bucharest, Romania.
Department of Biochemistry and Molecular Biology, Faculty of Biology, University of Bucharest, Bucharest, Romania.
Curr Med Chem. 2020;27(1):78-98. doi: 10.2174/0929867325666181031123127.
Synthetic compounds with pharmaceutical applications in brain disorders are daily designed and synthesized, with well first effects but also seldom severe side effects. This imposes the search for alternative therapies based on the pharmaceutical potentials of natural compounds. The natural compounds isolated from various plants and arthropods venom are well known for their antimicrobial (antibacterial, antiviral) and antiinflammatory activities, but more studies are needed for a better understanding of their structural and pharmacological features with new therapeutic applications.
Here we present some structural and pharmaceutical features of natural compounds isolated from plants and arthropods venom relevant for their efficiency and potency in brain disorders. We present the polytherapeutic effects of natural compounds belonging to terpenes (limonene), monoterpenoids (1,8-cineole) and stilbenes (resveratrol), as well as natural peptides (apamin, mastoparan and melittin).
Various experimental and in silico methods are presented with special attention on bioinformatics (natural compounds database, artificial neural network) and cheminformatics (QSAR, drug design, computational mutagenesis, molecular docking).
In the present paper we reviewed: (i) recent studies regarding the pharmacological potential of natural compounds in the brain; (ii) the most useful databases containing molecular and functional features of natural compounds; and (iii) the most important molecular descriptors of natural compounds in comparison with a few synthetic compounds.
Our paper indicates that natural compounds are a real alternative for nervous system therapy and represents a helpful tool for the future papers focused on the study of the natural compounds.
具有治疗脑部疾病的药物应用的合成化合物每天都在被设计和合成,这些化合物具有良好的初步疗效,但也很少有严重的副作用。这就要求我们寻找基于天然化合物药物潜力的替代疗法。从各种植物和节肢动物毒液中分离出来的天然化合物因其具有抗菌(抗细菌、抗病毒)和抗炎活性而闻名,但为了更好地了解其具有新治疗应用的结构和药理学特征,还需要更多的研究。
本文介绍了从植物和节肢动物毒液中分离出来的天然化合物的一些结构和药物特性,这些特性与其在脑部疾病中的疗效和效力有关。本文介绍了萜类(柠檬烯)、单萜类(1,8-桉叶素)和芪类(白藜芦醇)以及天然肽(蜂毒素、蜂毒素和蜂毒素)等天然化合物的多治疗作用。
本文介绍了各种实验和计算方法,特别关注生物信息学(天然化合物数据库、人工神经网络)和化学信息学(QSAR、药物设计、计算突变、分子对接)。
本文综述了:(i)最近关于天然化合物在大脑中药理作用的研究;(ii)包含天然化合物分子和功能特征的最有用数据库;(iii)与少数合成化合物相比,天然化合物最重要的分子描述符。
我们的论文表明,天然化合物是神经系统治疗的一种真正的替代方法,是未来专注于天然化合物研究的论文的有用工具。