Matvieieva Nadiia, Bessarabov Volodymyr, Khainakova Olena, Duplij Volodymyr, Bohdanovych Taisa, Ratushnyak Yakiv, Kuzmina Galina, Lisovyi Vadym, Zderko Nazar, Kobylinska Natalia
Institute of Cell Biology and Genetic Engineering, National Academy of Sciences of Ukraine, 148 Zabolotnogo Str., Kyiv, 03143, Ukraine.
Kyiv National University of Technologies and Design, 2 Nemyrovycha-Danchenko Str., Kyiv, 01011, Ukraine.
Heliyon. 2023 Mar 17;9(3):e14516. doi: 10.1016/j.heliyon.2023.e14516. eCollection 2023 Mar.
The present study aimed to determine the bioactive profile of various extracts of Cichorium intybus L. "hairy" roots. In particular, the total content of flavonoids as well as the reducing power, antioxidant and anti-inflammatory activity of the aqueous and ethanolic (70%) extracts were evaluated. The total content of flavonoids the ethanolic extract of the dry "hairy" root reached up to 121.3 mg (RE)/g, which was twofold greater than in the aqueous one. A total of 33 diverse polyphenols were identified by the LC-HRMS method. The experimental results showed a high amount of gallic (6.103 ± 0.008 mg/g) and caffeic (7.001 ± 0.068 mg/g) acids. In the "hairy" roots, the presence of rutin, apigenin, kaempferol, quercetin, and its derivatives was found in concentrations of 0.201±0.003 - 6.710±0.052 mg/g. The broad spectrum of pharmacological activities (antioxidant, anti-inflammatory antimutagenic, anticarcinogenic, etc.) of the key flavonoids identified in the chicory "hairy" root extract was predicted by the General Unrestricted Structure-Activity Relationships algorithm based on in the substances detected in the extract. The evaluation of the antioxidant activity showed that the EC values of the ethanol and the aqueous extracts were 0.174 and 0.346 mg, respectively. Thus, the higher ability of the ethanol extract to scavenge the DPPH radical was observed. The calculated Michaelis and inhibition constants indicated that the ethanolic extract of C. intybus "hairy" roots is an efficient inhibitor of soybean 15-Lipoxygenase activity (IC = 84.13 ± 7.22 μM) in a mixed mechanism. Therefore, the obtained extracts could be the basis of herbal pharmaceuticals for the therapy of human diseases accompanied by oxidative stress and inflammation, including the pandemic coronavirus disease COVID-19.
本研究旨在确定菊苣“毛状”根不同提取物的生物活性特征。特别评估了黄酮类化合物的总含量以及水提取物和乙醇(70%)提取物的还原能力、抗氧化和抗炎活性。干燥“毛状”根的乙醇提取物中黄酮类化合物的总含量高达121.3毫克(相当于芦丁)/克,是水提取物的两倍。通过液相色谱-高分辨质谱法共鉴定出33种不同的多酚。实验结果显示含有大量没食子酸(6.103±0.008毫克/克)和咖啡酸(7.001±0.068毫克/克)。在“毛状”根中,发现芦丁、芹菜素、山奈酚、槲皮素及其衍生物的浓度为0.201±0.003 - 6.710±0.052毫克/克。基于提取物中检测到的物质,通过通用无限制构效关系算法预测了菊苣“毛状”根提取物中鉴定出的关键黄酮类化合物的广泛药理活性(抗氧化、抗炎、抗诱变、抗癌等)。抗氧化活性评估表明,乙醇提取物和水提取物的EC值分别为0.174毫克和0.346毫克。因此,观察到乙醇提取物清除DPPH自由基的能力更强。计算得到的米氏常数和抑制常数表明,菊苣“毛状”根的乙醇提取物在混合机制中是大豆15-脂氧合酶活性的有效抑制剂(IC =