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首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >Comparisons of Ethanol Extracts of Chinese Propolis (Poplar Type) and Poplar Gums Based on the Antioxidant Activities and Molecular Mechanism
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Comparisons of Ethanol Extracts of Chinese Propolis (Poplar Type) and Poplar Gums Based on the Antioxidant Activities and Molecular Mechanism

机译:基于抗氧化活性和分子机理的中国蜂胶(杨树型)和杨树胶乙醇提取物的比较

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The biological activities of propolis are varied from plant sources and the prominent antioxidant effects of Chinese propolis (poplar type) have been extensively reported. Oxidative stress is associated with inflammation and induces many diseases. In the study, to evaluate antioxidant capacities and clarify the underlying molecular mechanisms of ethanol extracts of Chinese propolis (EECP) and ethanol extracts of poplar gums (EEPG), we analyzed their compositions by HPLC, evaluating their free radical scavenging activities and reducing power by chemical analysis methods. Moreover, we studied the roles of EECP and EEPG on the elimination of ROS and expressions of antioxidant genes (HO-1, TrxR1, GCLM, and GCLC) in RAW264.7 cells. We further investigated the effects of MAPKs on the antioxidant genes expression by specific inhibitors. The nucleus translocation effects of Nrf2 were also measured by confocal microscopy analysis. The results indicated that EECP had higher TPC and FDC values but regarding TFC values were not significant. EECP also possessed more contents of 11 compounds than EEPG. Both phytochemical analysis and cell experiment reflected that EECP exerted stronger antioxidant activities than EEPG. EECP and EEPG enhanced endogenous antioxidant defenses by eliminating reactive oxygen species directly and activating Erk-Nrf2-HO1, GCLM, and TrxR1 signal pathways.
机译:蜂胶的生物学活性因植物来源而异,并且广泛报道了中国蜂胶(杨树型)的显着抗氧化作用。氧化应激与炎症相关,并诱发许多疾病。在这项研究中,为了评估抗氧化能力并弄清中国蜂胶乙醇提取物(EECP)和杨树胶乙醇提取物(EEPG)的潜在分子机理,我们通过HPLC分析了它们的成分,评估了它们的自由基清除活性和还原能力。化学分析方法。此外,我们研究了EECP和EEPG在RAW264.7细胞中清除ROS和抗氧化剂基因(HO-1,TrxR1,GCLM和GCLC)的表达中的作用。我们进一步研究了MAPK对特定抑制剂对抗氧化剂基因表达的影响。 Nrf2的核移位效应也通过共聚焦显微镜分析进行了测量。结果表明,EECP的TPC和FDC值较高,但TFC值并不显着。 EECP还比EEPG具有11种化合物的更多含量。植物化学分析和细胞实验均表明,EECP具有比EEPG更强的抗氧化活性。 EECP和EEPG通过直接消除活性氧并激活Erk-Nrf2-HO1,GCLM和TrxR1信号通路来增强内源性抗氧化剂防御能力。

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