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精油:与中枢神经系统相关蛋白质靶点的提取、气相色谱 - 质谱联用分析、植物化学分析、抗氧化活性及计算机辅助分子对接

Essential Oil: Extraction, GC-MS, Phytochemical Analysis, Antioxidant Activity, and In Silico Molecular Docking for Protein Targets Related to CNS.

作者信息

Cortes-Torres Ana G, López-Castillo Guiee N, Marín-Torres Josefina L, Portillo-Reyes Roberto, Luna Felix, Baca Beatriz E, Sandoval-Ramírez Jesús, Carrasco-Carballo Alan

机构信息

Laboratorio de Elucidación y Síntesis en Química Orgánica, ICUAP-BUAP, Puebla 72570, Mexico.

Laboratorio de Interacción Bacteria-Planta, ICCM-BUAP, Puebla 72570, Mexico.

出版信息

Curr Issues Mol Biol. 2023 Jun 16;45(6):5164-5179. doi: 10.3390/cimb45060328.

Abstract

This study analyzed the chemical composition of essential oil from Puebla, México, assessed its antioxidant activity, and evaluated in silico protein-compound interactions related to central nervous system (CNS) physiology. GC-MS analysis identified myrcene (8.76%), Z-geranial (27.58%), and E-geranial (38.62%) as the main components, with 45 other compounds present, which depends on the region and growing conditions. DPPH and Folin-Ciocalteu assays using the leaves extract show a promising antioxidant effect (EC = 48.5 µL EO/mL), reducing reactive oxygen species. The bioinformatic tool SwissTargetPrediction (STP) shows 10 proteins as potential targets associated with CNS physiology. Moreover, protein-protein interaction diagrams suggest that muscarinic and dopamine receptors are related to each other through a third party. Molecular docking reveals that -geranial has higher binding energy than M1 commercial blocker and blocks M2, but not M4 muscarinic acetylcholine receptors, whereas -pinene and myrcene block M1, M2, and M4 receptors. These actions may positively affect cardiovascular activity, memory, Alzheimer's disease, and schizophrenia. This study highlights the significance of understanding natural product interactions with physiological systems to uncover potential therapeutic agents and advanced knowledge on their benefits for human health.

摘要

本研究分析了来自墨西哥普埃布拉的精油的化学成分,评估了其抗氧化活性,并在计算机上评估了与中枢神经系统(CNS)生理学相关的蛋白质 - 化合物相互作用。气相色谱 - 质谱联用(GC - MS)分析确定月桂烯(8.76%)、Z - 香叶醛(27.58%)和E - 香叶醛(38.62%)为主要成分,还存在其他45种化合物,这取决于产地和生长条件。使用叶片提取物进行的DPPH和福林 - 西奥尔特(Folin - Ciocalteu)测定显示出有前景的抗氧化作用(EC = 48.5 μL EO/mL),可减少活性氧。生物信息学工具瑞士靶点预测(SwissTargetPrediction,STP)显示有10种蛋白质作为与CNS生理学相关的潜在靶点。此外,蛋白质 - 蛋白质相互作用图表明毒蕈碱受体和多巴胺受体通过第三方相互关联。分子对接显示E - 香叶醛比M1商业阻滞剂具有更高的结合能,并可阻断M2,但不阻断M4毒蕈碱型乙酰胆碱受体,而α - 蒎烯和月桂烯可阻断M1、M2和M4受体。这些作用可能对心血管活动、记忆、阿尔茨海默病和精神分裂症产生积极影响。本研究强调了理解天然产物与生理系统相互作用对于发现潜在治疗药物以及深入了解其对人类健康益处的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b36/10297282/f948257cc7f6/cimb-45-00328-g001.jpg

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