黄蜡菊叶片的植物化学成分及生物活性分析

Nejmi Işik, Muzaffer Mükemre, Rabia Sena Türker, G. Zengin, Abdullah Dalar
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引用次数: 1

摘要

本研究旨在研究从蜡菊叶器官中提取的各种提取物(乙醇浸渍、水浸液和水煎液)的体外生物活性(抗氧化和酶抑制)和植物化学成分,实验分析表明,乙醇提取物具有较高的总酚含量(TPC:103 mg GAE/gE),并显示出优异的抗氧化潜力(FRAP:2205μmol Fe2+/gE;ORAC:2540μmol Trolox Eq./gE;DPPH:IC50=0.58 mg/ml;CUTRAC:IC50=0.37 mg/ml;磷钼:IC50=1.34 mg/ml ve金属螯合:IC50=1.42 mg/ml)和酶抑制(乙酰胆碱酯酶:IC50=1.49 mg/ml;丁酰胆碱酯酶:IC50:1.98 mg/ml;酪氨酸酶:IC50=0.68 mg/ml;α-淀粉酶:IC50=2.09 mg/ml;β-葡萄糖苷酶:IC50:0.51 mg/ml;胰脂肪酶:IC50=42.5μg/ml),与传统制剂相比,其酚类(绿原酸异构体和芦丁)和脂肪酸(棕榈酸、亚油酸和亚麻酸)化合物含量更高(输液和煎煮)。目前的研究结果表明,蜡菊的叶子是一种具有强大抗氧化和酶抑制特性的植物化学物质来源,这意味着它可能是生物治疗剂研发的候选者。
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Analysis of phytochemical composition and biological activities of Helichrysum pallasii (Sprengel) ledeb leaves
This study aimed at the investigation of in vitro biological activities (antioxidant and enzyme inhibition) and phytochemical composition of various extracts (ethanol maceration, aqueous infusion, and aqueous decoction) obtained from leaf organs of Helichrysum pallasii, which has been traditionally used as herbal tea and medicine in Eastern Anatolia. Experimental analysis showed that ethanol-based extract had higher total phenolic content (TPC: 103 mg GAE/gE) and showed superior antioxidant potentials (FRAP: 2205 μmol Fe2+/gE; ORAC: 2540 μmol Trolox Eq./gE; DPPH: IC50=0.58 mg/ml; CUPRAC: IC50=0.37 mg/ml; Phosphomolybdenum: IC50=1.34 mg/ml ve metal chelation: IC50=1.42 mg/ml) and enzyme inhibition (Acetylcholinesterase: IC50=1.49 mg/ml; Butyrylcholinesterase: IC50=1.98 mg/ml; Tyrosinase: IC50=0.68 mg/ml; Alpha-amylase: IC50=2.09 mg/ml; Alpha-glucosidase: IC50=0.51 mg/ml; and Pancreatic lipase: IC50=42.5 μg/ml) and contained higher amounts of phenolic (chlorogenic acid isomers and rutin) and fatty acid (palmitic, linoleic, and linolenic acids) compounds than traditional preparations (infusion and decoction). The current study's findings indicate that the leaves of the Helichrysum pallasii are a source of phytochemicals with strong antioxidant and enzyme inhibitory properties, implying that it could be a candidate for biotherapeutic agent research and development.
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来源期刊
International Journal of Secondary Metabolite
International Journal of Secondary Metabolite Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
1.40
自引率
0.00%
发文量
28
期刊最新文献
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