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白花地胆草(学名:*Elephantopus tomentosus* L. ssp. *pilosus* (Roth) G. Don)(菊科)的植物化学分析、抗氧化及认知增强作用

Phytochemical Profiling, Antioxidant and Cognitive-Enhancing Effect of ssp. (Roth) G. Don (Asteraceae).

作者信息

Gevrenova Reneta, Kostadinova Ivanka, Stefanova Alexandra, Balabanova Vessela, Zengin Gokhan, Zheleva-Dimitrova Dimitrina, Momekov Georgi

机构信息

Department of Pharmacognosy, Faculty of Pharmacy, Medical University, 1000 Sofia, Bulgaria.

Department of Pharmacology, Pharmacotherapy, and Toxicology, Faculty of Pharmacy, Medical University, 1000 Sofia, Bulgaria.

出版信息

Plants (Basel). 2023 Jul 25;12(15):2755. doi: 10.3390/plants12152755.

Abstract

This study aimed at the evaluation of the antioxidant and cognitive-enhancing effect of methanol-aqueous extract from ssp. aerial parts. Significant radical scavenging activity (110.33 ± 3.47 and 234.70 ± 5.21 mg TE/g for DPPH and ABTS) and reducing power (354.23 ± 17.51 and 210.24 ± 8.68 mg TE/g for CUPRAC and FRAP) were observed. The extract showed average acetylcholinesterase and low butyrylcholinesterase inhibitory potential. extract (200 mg/kg/po) administered in combination with galantamine (3 mg/kg/po) for 12 days significantly improved the memory and learning process compared with galantamine alone in the passive avoidance test. The effect was comparable to that of extract (100 mg/kg/po). In deep secondary metabolite annotation of the extract by UHPLC-HRMS, more than 90 hydroxybenzoic and hydroxicinnamic acid-glycosides, phenylethanoid glycosides, a series of acylquinic and caffeoylhexaric acids, methoxylated derivatives of scutellarein, quercetagetin and 6-hydroxyluteolin, and prenylated phloroglucinol-α-pyrones were reported for the first time in . Fragmentation patterns of four subclasses of heterodimer-pyrones were proposed. In-depth profiling of the pyrones revealed 23 compounds undescribed in the literature. Pyrones and acylphloroglucinols together with acylquinic acids could account for memory improvement. The presented research advanced our knowledge of , highlighting the species as a rich source of secondary metabolites with cognitive-enhancing potential.

摘要

本研究旨在评估 地上部分甲醇水提取物的抗氧化和增强认知作用。观察到显著的自由基清除活性(DPPH 和 ABTS 的清除活性分别为 110.33 ± 3.47 和 234.70 ± 5.21 mg TE/g)和还原能力(CUPRAC 和 FRAP 的还原能力分别为 354.23 ± 17.51 和 210.24 ± 8.68 mg TE/g)。该提取物显示出平均乙酰胆碱酯酶抑制潜力以及较低的丁酰胆碱酯酶抑制潜力。在被动回避试验中,提取物(200 mg/kg/口服)与加兰他敏(3 mg/kg/口服)联合给药 12 天,与单独使用加兰他敏相比,显著改善了记忆和学习过程。该效果与提取物(100 mg/kg/口服)相当。通过超高效液相色谱 - 高分辨质谱对提取物进行深度次生代谢物注释时,首次在 中报道了 90 多种羟基苯甲酸和羟基肉桂酸 - 糖苷、苯乙醇苷、一系列酰基奎尼酸和咖啡酰己糖酸、黄芩素、槲皮素和 6 - 羟基木犀草素的甲氧基化衍生物以及异戊烯基化间苯三酚 -α- 吡喃酮。提出了四类异二聚体 - 吡喃酮的裂解模式。对吡喃酮的深入分析揭示了 23 种文献中未描述的化合物。吡喃酮、酰基间苯三酚以及酰基奎尼酸共同作用可能导致记忆改善。本研究推进了我们对 的认识,突出了该物种作为具有增强认知潜力的次生代谢物丰富来源的地位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2449/10420817/2b5c735c7161/plants-12-02755-g001.jpg

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