榄香烯甙B预处理通过AMPK/mTOR途径调节自噬通量减轻低压缺氧诱导的高海拔肺水肿

IF 6.1 2区 医学 Q1 CHEMISTRY, MEDICINAL Phytotherapy Research Pub Date : 2024-09-22 DOI:10.1002/ptr.8333
Caixia Pei, Zherui Shen, Yongcan Wu, Sijing Zhao, Yilan Wang, Shihua Shi, Demei Huang, Nan Jia, Junling Liu, Xiaomin Wang, Yacong He, Zhenxing Wang
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引用次数: 0

摘要

高海拔肺水肿(HAPE)是一种危及生命的疾病,而自噬缺陷与 HAPE 的发病机制有关。榄香甙 B(EB)是刺五加的主要生物活性成分,具有多种药理活性。我们之前的研究表明,自噬结构广泛存在于 HAPE 大鼠肺组织的超微结构中。然而,EB 是否能调节 HAPE 中的自噬缺陷仍是未知数。本研究旨在探讨EB对低压缺氧诱导的HAPE的保护作用,并探索调控自噬的潜在分子机制。研究使用低压缺氧室复制了大鼠高海拔肺水肿模型。肺水肿通过肺干湿比、支气管肺泡灌洗液总蛋白浓度和组织学分析进行评估。炎症和氧化应激使用商业生化试剂盒进行测量。自噬和自噬通量通过 Western 印迹、透射电子显微镜和腺相关病毒-mRFP-GFP 标记的串联荧光 LC3 进行评估。AMPK/mTOR信号通路通过Western印迹进行检测。EB以剂量依赖的方式减轻了低压氧诱导的肺水肿、低氧血症、血液中的酸碱失衡、炎症和氧化应激。EB 通过激活 AMPK/mTOR 信号通路恢复了受损的自噬通量。然而,氯喹或化合物C会抑制榄香烯甙B介导的自噬通量恢复。低压缺氧诱导的HAPE大鼠肺部自噬通量受损可能是由于AMPK/mTOR信号通路被激活所致。
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Eleutheroside B Pretreatment Attenuates Hypobaric Hypoxia-Induced High-Altitude Pulmonary Edema by Regulating Autophagic Flux via the AMPK/mTOR Pathway.

High-altitude pulmonary edema (HAPE) is a life-threatening disease, and autophagy deficiency is implicated in the pathogenesis of HAPE. Eleutheroside B (EB), which is the main bioactive component of Acanthopanax senticosus, exhibits various pharmacological activities. Our previous research demonstrated that autophagic structures were widely found in the ultrastructure of lung tissue in HAPE rats. However, whether EB regulates autophagy deficiency in HAPE remains unknown. This study aimed to investigate the protective effects of EB on hypobaric hypoxia-induced HAPE and explore the underlying molecular mechanism of regulating autophagy. The rat model of high-altitude pulmonary edema was replicated using a hypobaric hypoxic chamber. Rats were pretreated with EB or in combination with chloroquine or compound C. The pulmonary edema was assessed by the lung wet/dry ratio, total protein concentration in bronchoalveolar lavage fluid, and histological analysis. Inflammation and oxidative stress were measured using commercial biochemical kits. Autophagy and autophagic flux were evaluated by western blotting, transmission electron microscopy, and adeno-associated virus-mRFP-GFP-labeled tandem fluorescence LC3. The AMPK/mTOR signaling pathway was detected by western blotting. EB alleviated hypobaric hypoxia-induced pulmonary edema, hypoxemia, acid-base imbalance in the blood, inflammation, and oxidative stress in a dose-dependent manner. EB restored impaired autophagic flux by activating the AMPK/mTOR signaling pathway. However, chloroquine or compound C abolished eleutheroside B-mediated autophagy flux restoration. EB has the potential to restore impaired autophagic flux in the lung of hypobaric hypoxia-induced HAPE rats, which could be attributed to the activation of AMPK/mTOR signaling pathway.

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来源期刊
Phytotherapy Research
Phytotherapy Research 医学-药学
CiteScore
12.80
自引率
5.60%
发文量
325
审稿时长
2.6 months
期刊介绍: Phytotherapy Research is an internationally recognized pharmacological journal that serves as a trailblazing resource for biochemists, pharmacologists, and toxicologists. We strive to disseminate groundbreaking research on medicinal plants, pushing the boundaries of knowledge and understanding in this field. Our primary focus areas encompass pharmacology, toxicology, and the clinical applications of herbs and natural products in medicine. We actively encourage submissions on the effects of commonly consumed food ingredients and standardized plant extracts. We welcome a range of contributions including original research papers, review articles, and letters. By providing a platform for the latest developments and discoveries in phytotherapy, we aim to support the advancement of scientific knowledge and contribute to the improvement of modern medicine.
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