Metabolites of Culinary-medicinal Mushroom Hericium erinaceus Showed Anti-neuroinflammatory Activity in BV2 Cells and Anti-H2O2-induced Oxidative Stress Activity in SH-SY5Y Cells

猴头菌 一氧化氮 蘑菇 氧化应激 细胞毒性 细胞凋亡 SH-SY5Y型 药理学 免疫印迹 化学 食品科学 生物化学 生物 体外 细胞培养 有机化学 神经母细胞瘤 遗传学 原材料 基因
作者
Jing Wei,Lin Chao,Zhenxin Wang,Yilin Zhang,Shuolong Li,Xuansheng Hu,Heping Hui,Zhe Wang,Yi-Qi Zhao,Xue-Jun Wang,Xue-Jun Wang,Jianzhao Qi
出处
期刊:The Natural products journal [Bentham Science]
卷期号:15 (2) 被引量:4
标识
DOI:10.2174/0122103155295894240528061315
摘要

Background: Hericium erinaceus is a versatile mushroom with potential therapeutic benefits. A variety of bioactive compounds have been found in this mushroom that have anti-ulcer, antiinflammatory, immunomodulatory, and blood sugar and lipid regulating effects. Objectives: The aim is to isolate and characterize compounds from the rice medium of H. erinaceus and evaluate their potential therapeutic effects on oxidative stress-associated diseases. Methods: Fifteen compounds were isolated and characterized using NMR spectra and ESI-MS. The effects of compounds 3 and 7 on LPS-induced nitric oxide (NO) generation in BV2 cells and H2O2- induced cytotoxicity in SH-SY5Y cells were investigated. The regulation of nitric oxide production and apoptosis-associated proteins Bcl-2 and Bax were also examined. Results: Compounds 3 and 7 exhibited potent inhibitory effects on LPS-induced NO generation in microglial cells and significant resistance to H2O2-induced cytotoxicity in neuronal cells. Molecular docking simulations demonstrated the interaction of compounds 3 and 7 with iNOS and Bax, respectively. Western blot analysis revealed that 7 inhibited NO production and regulated the expression of Bax and Bcl-2, suggesting a protective effect against H2O2-induced apoptosis. Conclusion: Compounds 3 and 7 isolated from H. erinaceus are potential therapeutic candidates for oxidative stress-associated diseases, possibly through their regulation of nitric oxide production and apoptosis-related proteins. Further investigations are warranted to elucidate their mechanisms of action and therapeutic potential.
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