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Studies on phytochemical antioxidant anti-inflammatory hypoglycaemic and antiproliferative activities of Echinacea purpurea and Echinacea angustifolia extracts

机译:紫锥菊和紫锥菊提取物的植物化学抗氧化剂消炎降血糖和抗增殖活性的研究

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摘要

>Context:Echinacea (Asteraceae) is used because of its pharmacological properties. However, there are few studies that integrate phytochemical analyses with pharmacological effects.>Objective: Evaluate the chemical profile and biological activity of hydroalcoholic Echinacea extracts.>Materials and methods: Density, dry matter, phenols (Folin–Ciocalteu method), flavonoids (AlCl3 method), alkylamides (GC-MS analysis), antioxidant capacity (DPPH and ABTS methods), antiproliferative effect (SRB assay), anti-inflammatory effect (paw oedema assay, 11 days/Wistar rats; 0.4 mL/kg) and hypoglycaemic effect (33 days/Wistar rats; 0.4 mL/kg) were determined in three Echinacea extracts which were labelled as A, B and C (A, roots of Echinacea purpurea L. Moench; B, roots, leaves, flowers and seeds of Echinacea purpurea; C, aerial parts and roots of Echinacea purpurea and roots of Echinacea angustifolia DC).>Results: Extract C showed higher density (0.97 g/mL), dry matter (0.23 g/mL), phenols (137.5 ± 2.3 mEAG/mL), flavonoids (0.62 ± 0.02 mEQ/mL), and caffeic acid (0.048 mg/L) compared to A and B. A, B presented 11 alkylamides, whereas C presented those 11 and three more. B decreased the oedema (40%) on day 2 similar to indomethacin. A and C showed hypoglycaemic activity similar to glibenclamide. Antiproliferative effect was only detected for C (IC50 270 μg/mL; 8171 μg/mL; 9338 μg/mL in HeLa, MCF-7, HCT-15, respectively).>Discussion and conclusion: The difference in the chemical and pharmacological properties among extracts highlights the need to consider strategies and policies for standardization of commercial herbal extracts in order to guarantee the safety and identity of this type of products.
机译:>背景:使用紫锥菊(Asteraceae),因为其具有药理特性。但是,很少有研究将植物化学分析与药理作用相结合。>目的:评估水合紫锥菊提取物的化学特征和生物活性。>材料和方法:密度,干物质,酚类(Folin–Ciocalteu方法),类黄酮(AlCl3方法),烷基酰胺类(GC-MS分析),抗氧化能力(DPPH和ABTS方法),抗增殖作用(SRB测定),抗炎作用(爪水肿测定,11天/ Wistar大鼠;0.4μg/ kg)和降血糖作用(33天/ Wistar大鼠;0.4μmL/ kg)在三种分别标记为A,B和C的紫锥菊提取物中测定(A,紫锥菊的根; Moench; B。 B:紫锥菊的根,叶,花和种子; C,紫锥菊的气生部分和根以及紫锥菊的根。>结果:提取物C的密度较高(0.97 g / mL)。 ,干物质(0.23 g / mL),酚类(137.5±2.3 mEAG / mL),类黄酮(0.62± 0.02 mEQ / mL)和咖啡酸(0.048μmg/ L)与A和B相比。A,B代表11种烷基酰胺,而C代表另外11种和三种。 B与消炎痛类似,在第2天降低了水肿(40%)。 A和C显示出与格列本脲相似的降血糖活性。仅在C中检测到抗增殖作用(IC50分别为HeLa,MCF-7和HCT-15中的IC50270μg/ mL;8171μg/ mL;9338μg/ mL)。>讨论和结论:提取物的化学和药理特性方面的研究突出表明,需要考虑标准化商业草药提取物的策略和政策,以保证此类产品的安全性和特性。

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