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从黄樟根中发现倍半萜及其通过抑制 IKBα/NF-κB p65 信号通路的抗炎活性。

Discovery of sesquiterpenoids from the roots of Chloranthus henryi Hemsl. var. hupehensis (Pamp.) K. F. Wu and their anti-inflammatory activity by IKBα/NF-κB p65 signaling pathway suppression.

机构信息

School of Pharmacy, North China University of Science and Technology, Tangshan 063210, Hebei Province, People's Republic of China.

Department of Pharmacology, School of Pharmacy, China Medical University, Shenyang 110112, Liaoning Province, People's Republic of China.

出版信息

Bioorg Chem. 2024 Jun;147:107420. doi: 10.1016/j.bioorg.2024.107420. Epub 2024 Apr 30.

Abstract

Phytochemical analysis of Chloranthus henryi var. hupehensis roots led to the identification of a new eudesmane sesquiterpenoid dimer, 18 new sesquiterpenoids, and three known sesquiterpenoids. Among the isolates, 1 was a rare sesquiterpenoid dimer that is assembled by a unique oxygen bridge (C-O-C) of two highly rearranged eudesmane-type sesquiterpenes with the undescribed C carbon framework. (+)-2 and (-)-2 were a pair of new skeleton dinorsesquiterpenoids with a remarkable 6/6/5 tricyclic ring framework including one γ-lactone ring and the bicyclo[3.3.1]nonane core. Their structures were elucidated using spectroscopic data, single-crystal X-ray diffraction analysis, and quantum chemical computations. In the LPS-induced BV-2 microglial cell model, 17 suppressed IL-1β and TNF-α expression with EC values of 6.81 and 2.76 µM, respectively, indicating its excellent efficacy in inhibiting inflammatory factors production in a dose dependent manner and without cytotoxicity. In subsequent mechanism studies, compounds 3, 16, and 17 could reduce IL-1β and TNF-α production by inhibiting IKBα/p65 pathway activation.

摘要

对黄樟的根的植物化学分析导致鉴定出一种新的愈创木烷倍半萜二聚体,18 种新的倍半萜和三种已知的倍半萜。在这些分离物中,1 是一种罕见的倍半萜二聚体,由两个高度重排的愈创木烷型倍半萜通过独特的氧桥(C-O-C)组装而成,具有未描述的 C 碳骨架。(+)-2 和(-)-2 是一对新的骨架二萜,具有引人注目的 6/6/5 三环骨架,包括一个γ-内酯环和双环[3.3.1]壬烷核心。它们的结构通过光谱数据、单晶 X 射线衍射分析和量子化学计算来阐明。在 LPS 诱导的 BV-2 小胶质细胞模型中,17 以 6.81 和 2.76µM 的 EC 值分别抑制了 IL-1β 和 TNF-α 的表达,表明其在抑制炎症因子产生方面具有优异的功效,呈剂量依赖性且无细胞毒性。在随后的机制研究中,化合物 3、16 和 17 可以通过抑制 IKBα/p65 途径的激活来减少 IL-1β 和 TNF-α 的产生。

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