首页> 美国卫生研究院文献>Saudi Pharmaceutical Journal : SPJ >LC-ESI-MS/MS profiling of phenolics from Eleutherococcus spp. inflorescences structure-activity relationship as antioxidants inhibitors of hyaluronidase and acetylcholinesterase
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LC-ESI-MS/MS profiling of phenolics from Eleutherococcus spp. inflorescences structure-activity relationship as antioxidants inhibitors of hyaluronidase and acetylcholinesterase

机译:LC-ESI-MS / MS对大肠球菌(Eleutherococcus spp)的酚类进行分析。花序作为抗氧化剂的结构活性关系透明质酸酶和乙酰胆碱酯酶的抑制剂

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摘要

Nature is a source of many plant-based molecules used as pro- or drugs. Eleutherococcus species are native to Asia and the North Russia, and are traditionally used to treat various diseases. In turn, neither secondary metabolites of the species cultivated in the West Europe nor the bioactivity is known. No differences in the phenols and flavonoids content in the inflorescences were found. The richest in polyphenols was E. giraldii (5.18 mg/g), while in flavonoids it was E. gracilistylus (1.80 mg/g). Using LC-ESI-MS/MS, protocatechuic and trans-caffeic acids have been identified as the most abundant compounds in E. gracilistylus, E. giraldii, E. senticosus (833.4; 855.6; 614.7 and 280.8; 156.0; 167.6 μg/g DE). It was observed that all species were able to chelate Fe2+ with the EC50 value of 0.2, 0.6, 0.3 mg/mL for E. gracilistylus, E. giraldii, E. senticosus, respectively. E. gracilistylus exhibited the strongest antiperoxidation and anti-DPPH activity (EC50 3.2 and 0.48 mg/mL). The weak inhibitory potential has been observed in case of AChE inhibition at the level of 16.17 and 12.2% for E. gracilistylus, E. giraldii. We report for the first time that the extracts inhibited Hyal activity in the range from 16.4 to 60.7%. To our best knowledge, no information was available on this activity of the inflorescences and this provides a background to study inflorescences in more detail. Considering the SAR, an antioxidant activity may be correlated with a high amount of protocatechuic and trans-caffeic acids and their chemical structure.
机译:大自然是许多用作前体或药物的植物性分子的来源。肠球菌属物种起源于亚洲和俄罗斯北部,传统上用于治疗各种疾病。反过来,既不知道在西欧种植的物种的次生代谢产物,也不知道其生物活性。在花序中未发现酚和类黄酮含量的差异。多酚中含量最高的是吉拉尔肠杆菌(5.18 mg / g),而类黄酮中的含量最高的是格拉西叶肠杆菌(1.80 mg / g)。使用LC-ESI-MS / MS,原儿茶酸和反咖啡酸已被确定为gracilistylus,giraldii,E。senticosus(833.4; 855.6; 614.7和280.8; 156.0;167.6μg/ g)中含量最丰富的化合物DE)。观察到,所有物种均能螯合Fe 2 + ,其中E. gracilistylus,E.giraldii和E.senticosus的EC50值分别为0.2、0.6、0.3 mg / mL。 E. gracilistylus表现出最强的抗过氧化和抗DPPH 活性(EC50 3.2和0.48mg / mL)。在AChE的抑制作用下,对于革兰氏大肠杆菌,吉拉德氏大肠杆菌,分别具有16.17和12.2%的抑制力。我们首次报告提取物抑制Hyal活性的范围为16.4至60.7%。据我们所知,尚无关于这种花序活动的信息,这为更详细地研究花序提供了背景。考虑到SAR,抗氧化剂活性可能与大量的原儿茶酸和反咖啡因酸及其化学结构有关。

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