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Bioactive constituents of Salvia przewalskii and the molecular mechanism of its antihypoxia effects determined using quantitative proteomics

机译:丹参生物活性成分及其使用定量蛋白质组学确定其抗血清氧化效应的分子机制

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Context: Environmental hypobaric hypoxia induces several physiological or pathological responses in individuals in high-altitude regions. Salvia przewalskii Maxim (Labiatae) (SPM) is a traditional Chinese herbal medicine and has known antibacterial, antiviral, antioxidant, anti-thrombotic, and anti-depressant activities. Objective: This study examined the antihypoxia effects of SPM in?vivo. Materials and methods: The dried and pulverised of SPM was extracted from root crude drug with 70% ethanol with ultrasound. Male Sprague-Dawley rats were divided into three groups (n?=?10): normal group, hypoxia group (altitude of 4260?m), and hypoxia?+?SPM group (altitude of 4260?m, SPM of 1.0?g/kg/day). The experiment persisted for 4 weeks. The mean pulmonary arterial pressure (mPAP), hypoxia-inducible factor-1α (HIF-1α) mRNA, and lung pathology were analysed using pulmonary artery pressure recorder, quantitative polymerase chain reaction, and histopathological analysis. Moreover, the effects of SPM on lung proteomes during hypoxia were observed by a TMT-based proteomic approach. Results: Pre-treatment with SPM decreased mPAP (24.86%) and HIF-1α (31.24%), and attenuated the pathological changes in lung tissues. In addition, a total of 28 proteins were differentially expressed in lung of hypoxia?+?SPM group (fold change ± 1.2 and p??0.05). The differentially altered proteins were primarily associated with antioxidative stress, as evidenced by the downregulated expression of Adh7, Cyp2d1, Plod2, Selenow, ND3, and Fabp1, and fructose metabolism, as evidenced by the downregulated expression of Khk and Aldob. Discussion and conclusions: These results suggested that SPM is a promising drug for antihypoxia. The mechanism of action might be related to increasing antioxidant capacity and inhibiting fructose metabolism.
机译:背景:环境缺氧缺氧在高空地区的个体中诱导若干生理或病理反应。 Salvia Przewalskii Maxim(Labiatae)(SPM)是一种传统的中草药,具有已知的抗菌,抗病毒,抗氧化剂,抗血栓形成和抗抑郁活性。目的:本研究检测了SPM在β体内的抗血清氧效应。材料和方法:用70%乙醇用超声波从根粗药物中萃取干燥和粉碎。雄性Sprague-Dawley大鼠分为三组(N?=?10):正常组,缺氧组(高度为4260?M),和缺氧?+?SPM组(高度为4260?M,SPM为1.0?G / kg /天)。实验持续了4周。使用肺动脉压记录仪,定量聚合酶链反应和组织病理学分析分析平均肺动脉压(MPAP),缺氧诱导因子-1α(HIF-1α)mRNA和肺部病理。此外,通过基于TMT的蛋白质组学方法观察到SPM对缺氧期间肺蛋白质的影响。结果:用SPM预处理降低MPAP(24.86%)和HIF-1α(31.24%),并减弱肺组织的病理变化。此外,总共28个蛋白质在缺氧的肺部咽部差异表达?SPM组(折叠变化>±1.2和P?<?0.05)。差异改变的蛋白质主要与抗氧化应激相关,如通过下调表达的ADH7,CYP2D1,PLOD2,SELENOW,ND3和FABP1和果糖代谢的所证明,如下调制的KHK和ALDOB的表达所证明。讨论和结论:这些结果表明SPM是一种有希望的抗肿瘤药物。作用机制可能与增加的抗氧化能力和抑制果糖代谢有关。

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