Antiparkinsonian Potential Of Natural Products: Molecular Docking, Prediction Of Pharmacokinetic And Toxicological Properties

L. I. Hage-Melim, Henrique B. Lima, J. V. Ferreira, Mariela L. Nery, Gisele A. Chaves, A. L. P. Da Costa, L. R. de Souza, B. L. Marino, Maiara F B Brito, Hueldem R. C. Teixeira, Carlos H T P Silva, C. Taft
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Abstract

Parkinson's disease (PD) is a neurodegenerative pathology common in the elderly, and it may be related to several factors, such as excessive and continuous use of drugs, alcoholism, cerebral ischemia, among others. Emphasizing that there is still no cure for PD, current pharmacological treatment aims to restore reduced dopaminergic activity in the central nervous system and manage symptoms. However, due to the different side effects caused by antiparkinsonian drugs, their use is recommended just when symptoms are considerably impairing professional performance or the patient's daily tasks. Therefore, studies for the development of new drugs have been conducted, and natural products are gaining importance due to the possibility of discovering new bioactive molecular. In this sense, this research aimed to perform the in silico study of molecules of natural origin for the treatment of PD. A search for molecules from medicinal plants was carried out, they underwent a pharmacokinetic and toxicological prediction with subsequent molecular docking study, being coupled with the MAO-B enzyme and the dopamine receptor 2. The ginsenosides compounds present an unfavorable pharmacokinetic pattern, which can be explained by their molecular mass, while the other molecules present average patterns, with the exception of kavains, which obtained very satisfactory results. When it comes to toxicity, the molecules curcumin, dihydrokavain, vitexin, kavain and tetrahydrocurcumin did not exhibit any toxic alert. As for the molecular docking study, the compound curcumin stood out with a considerable number of interactions at many amino acid residues relevant to antiparkinsonian activity, both in the MAO-B enzyme and in the D2 receptor. Of 25 molecules of natural products, 3 are good candidates for studies of oral drugs, owing to their excellent pharmacokinetic profile and low probability of being toxic. The curcumin molecule has a great notoriety, as it obtained relevant interactions with the two proteins studied in molecular docking, speciallyin the MAO-B enzyme.
天然产物的抗帕金森病潜力:分子对接、药代动力学和毒理学特性预测
帕金森病(PD)是一种老年人常见的神经退行性病理,其发病可能与多种因素有关,如过度和持续使用药物、酗酒、脑缺血等。强调PD仍然无法治愈,目前的药物治疗旨在恢复中枢神经系统中减少的多巴胺能活性并控制症状。然而,由于抗帕金森药物引起的不同副作用,建议仅在症状严重影响专业表现或患者日常工作时使用。因此,开发新药的研究一直在进行,天然产物由于有可能发现新的生物活性分子而变得越来越重要。从这个意义上说,本研究旨在对天然来源的分子进行计算机研究,以治疗帕金森病。人参皂苷类化合物呈现不利的药代动力学模式,这可以通过其分子质量来解释,而其他分子呈现平均模式,除了kavains获得了非常令人满意的结果。在毒性方面,姜黄素、二氢姜黄素、牡荆素、姜黄素和四氢姜黄素分子没有表现出任何毒性警报。在25个天然产物分子中,有3个分子由于其良好的药代动力学特征和低毒性概率而成为口服药物研究的良好候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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