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[植物名称]根茎中的吲哚生物碱和酚酰胺及其体外可溶性环氧化物水解酶(sEH)抑制活性 。(你提供的原文中“from the Rhizomes of ”后面缺少具体植物名称)

Indole Alkaloids and Phenolic Amides from the Rhizomes of and Their In Vitro Soluble Epoxide Hydrolase (sEH) Inhibitory Activity.

作者信息

Sun Yanwen, Fan Chunyu, Chen Liyi, Cui Xueting, Otsuki Kouharu, Zhang Mi, Qiu Feng, Ding Liqin, Li Wei

机构信息

Institute of Traditional Chinese Medicine, Tianjin University of Traditional Chinese Medicine, Tianjin 301617, China.

Tianjin Key Laboratory of Therapeutic Substance of Traditional Chinese Medicine, Tianjin University of Traditional Chinese Medicine, Tianjin 301617, China.

出版信息

Plants (Basel). 2025 Jun 6;14(12):1742. doi: 10.3390/plants14121742.

Abstract

is a perennial herb that belongs to the Ranunculaceae family. Its dried rhizomes are a source of Cimicifugae Rhizoma, a traditional Chinese medicine used for detoxification, the treatment of febrile diseases, and the prevention of pathogenic invasion. In the present study, a phytochemical investigation of the rhizomes of resulted in the isolation of three indole alkaloids (-) and seven phenolic amides (-), including three new compounds, 6-methoxy-3-(3-methyl-1-oxo-2-butenyl) 1 indole (), (3)-1-(-d-glucopyranosyl)-3-hydroxy-3-(3-methylbutyl)-2-oxindole (), and -acetyldopamine-3---d-allopyranoside (). Their structures were elucidated using extensive physicochemical and spectroscopic analyses. All the isolated compounds were evaluated for their inhibitory activity against soluble epoxide hydrolase (sEH). The results showed that cimicifugamide A () exhibited the most potent inhibitory activity, with an IC₅₀ value of 8.74 μM, followed by cimicifugamide (), demethoxycimicifugamide (), and --feruloyl tyramine (), with IC values ranging from 15.63 to 20.58 μM. Kinetic analysis revealed that compound inhibited sEH through a non-competitive mechanism.

摘要

是一种属于毛茛科的多年生草本植物。其干燥根茎是升麻的来源,升麻是一种用于解毒、治疗热病和预防病原体入侵的传统中药。在本研究中,对[植物名称]根茎进行植物化学研究,从中分离出三种吲哚生物碱(-)和七种酚酰胺(-),包括三种新化合物,6-甲氧基-3-(3-甲基-1-氧代-2-丁烯基)吲哚()、(3)-1-(-D-吡喃葡萄糖基)-3-羟基-3-(3-甲基丁基)-2-氧代吲哚()和-N-乙酰多巴胺-3--D-阿洛吡喃糖苷()。通过广泛的物理化学和光谱分析阐明了它们的结构。对所有分离出的化合物进行了对可溶性环氧化物水解酶(sEH)的抑制活性评估。结果表明,升麻酰胺A()表现出最强的抑制活性,IC₅₀值为8.74μM,其次是升麻酰胺()、去甲氧基升麻酰胺()和-N-阿魏酰酪胺(),IC值范围为15.63至20.58μM。动力学分析表明,化合物[具体化合物]通过非竞争性机制抑制sEH。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a17/12196358/0008143cfd33/plants-14-01742-g001.jpg

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