植物化学
化学
生物碱
氧化应激
抑制性突触后电位
石斛
传统医学
立体化学
生物化学
生物
医学
神经科学
作者
Ailing Hui,Jingchao Chen,Shaohuan Deng,Yan Chen,Xianglin He,Yang Li,Wencheng Zhang,Zeyu Wu
标识
DOI:10.1002/cbdv.202301332
摘要
Abstract This study aimed to explore the alkaloid profile of Dendrobium huoshanense and determine the potential protective effect against oxidative damage. The crude D. huoshanense alkaloid extract (DHAE) was obtained by 70 % ethanol extraction and liquid‐liquid partition. DHAE contained specific alkaloid components with abundant 6‐hydroxynobiline (58.15 %) and trace dendrobine (3.23 %) in the preliminary HPLC fingerprint and GC‐MS analysis, which was distinguished from D. officinale or D. nobile . Subsequently, six alkaloids including 6‐hydroxynobiline, 2‐hydroxy dendrobine, nobilonine, dendrobine, Findlayines D and trans‐dendrochrysanine were identified in the purified DHAE (namely DHSAE‐3, DHSAE‐3′) via further solid phase extraction coupled with UPLC‐MS/MS analysis. Meanwhile, pretreatment with DHAE or DHSAE (0.5, 5 μg/mL) increased cell viability by 14.0–57.4 % compared to that of H 2 O 2 ‐induced PC12 Model cells. Among them, 5 μg/mL DHSAE‐3‐treated cells displayed a pronounced reversion than the positive vitamin E ( p <0.01). Furthermore, a clear cellular morphological restoration and 38.4 % reduction in intracellular reactive oxidative species level were achieved. Our findings suggest that D. huoshanense has a characteristic alkaloid profile represented by abundant 6‐hydroxynobiline, and DHAEs exhibit obvious protection against oxidative neuronal damage. Overall, this study indicates that DHAEs might be used to inhibit oxidative stress and provide a source to develop novel neuroprotective drugs.
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