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Comprehensive profiling of phytochemical compounds, antioxidant activities, anti-HepG2 cell proliferation, and cholinesterase inhibitory potential of Elaeagnus mollis leaf extracts

机译:植物化学化合物的综合性分析,抗氧化活性,抗HEPG2细胞增殖和elaeagnus mollis叶提取物的胆碱酯酶抑制潜力

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摘要

The aim of this work was to enrich the knowledge on the potential applications of Elaeagnus mollis leaf extracts. For this purpose, the bioactive compounds (phenolic, flavonoid, alkaloid, proanthocyanidin, chlorophyll and carotene content), antioxidant activity, anti-HepG2 cell proliferation, and cholinesterase inhibitory potential (AChE and BChE) of E. mollis leaves which obtained from different habitats were quantitatively analyzed using various solvents (water, methanol, ethanol, and n-hexane). The results showed that the methanol extracts exhibited the strongest 1,1-diphenyl-2-picrylhydrazyl (DPPH) free radical scavenging activity and the water extracts showed the best antioxidant activity in the 2,2'-azinobis-3-ethylbenzothiazoline-6-sulfonic acid (ABTS) free radical scavenging activity, ferric reducing antioxidant power (FRAP), and reducing power (RP) assays. Moreover, the methanol extracts showed the best inhibitory activity against cholinesterase and HepG2 cancer cells. Correlation analysis revealed that the high antioxidant and anti-HepG2 cell proliferation activities were mainly attributed to the total phenolics, flavonoids, and proanthocyanidins while AChE inhibition was attributed to the total alkaloid and carotene content. The statistical results showed that the effect of habitats was lower than that of different solvents used. Additionally, the metabolic profiles of E. mollis leaves were evaluated using HPLC-ESI-Q TRAP-MS/MS, and a total of 1,017 chemical components were detected and classified into 23 classes. The organic acids and derivatives ranked the first, followed by flavone, amino acid and derivatives, and so on. In conclusion, the effects of different solvents were more significant than the effects of different habitats and the methanol extracts of E. mollis leaves could be used as an effective source of functional active components, provide benefits to physical health care and be applied to the food and pharmaceutical industries.
机译:这项工作的目的是丰富关于伊利斯叶提取物的潜在应用的知识。为此目的,生物活性化合物(酚类,黄酮类化合物,生物碱,原花青素,叶绿素和胡萝卜素含量),抗氧化活性,抗HEPG2细胞增殖和从不同栖息地获得的Mollis叶子的抗氧化物酶抑制潜力(ACHE和BCHE)使用各种溶剂(水,甲醇,乙醇和正己烷)定量分析。结果表明,甲醇提取物表现出最强的1,1-二苯基-2-富铬(DPPH)自由基清除活性,水提取物在2,2'-αzinobis-3-乙基苯并噻唑啉-6-6-乙基噻唑啉唑啉-6-中显示出最佳的抗氧化活性磺酸(ABTS)自由基清除活性,减少抗氧化功率(FRAP),降低功率(RP)测定。此外,甲醇提取物显示出对胆碱酯酶和HepG2癌细胞的最佳抑制活性。相关分析显示,高抗氧化剂和抗HEPG2细胞增殖活性主要归因于总酚类,黄酮类化合物和原花质酶,而疼痛抑制归因于总生物碱和胡萝卜素含量。统计结果表明,栖息地的效果低于所用溶剂的效果。另外,使用HPLC-ESI-Q Trap-MS / MS评估E.Mollis叶的代谢谱,并将总共1,017种化学成分分为23级。有机酸和衍生物排名第一,然后是黄酮,氨基酸和衍生物,等等。总之,不同溶剂的影响比不同栖息地的影响更大,E.Mollis叶的甲醇提取物可用作功能性活性组分的有效来源,为身体保健提供益处,并适用于食物和制药行业。

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