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HPLC Fingerprint Analysis with the Antioxidant and Cytotoxic Activities of Selected Lichens Combined with the Chemometric Calculations

机译:HPLC指纹分析与所选地衣的抗氧化剂和细胞毒性活性结合化学计量计算

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摘要

The aim of this study was to evaluate the ability of multivariate techniques to predict antioxidant and cytotoxic activity of the selected lichens from the chromatographic data. A simple and reproducible HPLC-DAD technique has been used to obtain the chromatographic fingerprint profiles. Reversed phase high performance liquid chromatography (RP-HPLC) linear gradient system with methanol, water and phosphoric acid (V) (pH 2.3) as the mobile phase was used (50 min). Principal Component Analysis (PCA) has been applied to the evaluation of the phytochemical similarity between studied samples, especially between the same species collected in various places of Poland (Cetraria islandica (L.) Ach., CI, Cladina mitis Sandst., CM, Hypogymnia physodes (L.) Nyl., HP). The ability to scavenge free radicals was evaluated using 2,2-diphenyl-1-picrylhydrazyl (DPPH) and ferric reducing antioxidant power (FRAP) methods and the total phenolic content was determined by Folin-Ciocalteu (F-C) test. In the case of DPPH % of inhibition was higher for selected species (Pseudevernia furfuracea (L.) Zopf, H. physodes in comparison to the literature data. The FRAP test showed that the H. physodes extract had higher ability to scavenge free radical in comparison to Cladonia furcata (Huds.) Schrader and Evernia prunastri (L.) Ach., whereas P. furfuracea extract showed higher ability than C. islandica. The high content of phenolics in P. furfuracea and H. physodes confirms their high antioxidant activity. The cytotoxic activity of studied extracts was tested by cell culture method using the human HL-60 / MX2 acute CKL-22 (CRL-2257) promyelocytic leukemia tumor cell line. The lowest values of IC50 [µg∙mL−1] were obtained for: H. physodes (HP1)—99.4; C. digitate—122.6; H. physodes (HP)—136.5, C. subulata—142.6; C. mitis—180.2.
机译:本研究的目的是评估多变量技术以预测来自色谱数据的所选地衣的抗氧化剂和细胞毒性活性的能力。已经使用简单而再现的HPLC-DAD技术来获得色谱指纹型材。使用具有甲醇,水和磷酸(V)(pH 2.3)的逆相高效液相色谱(RP-HPLC)线性梯度体系用流动相(50分钟)。主要成分分析(PCA)已经应用于评估研究样本之间的植物化学相似性,特别是在波兰各个地方收集的相同物种之间(CIRARIA Islandica(L.),CI,CI,Cladina MIOR SANDST。,CM, HOPOMNIA物理(L.)Nyl。,HP)。使用2,2-二苯基-1-富牛(DPPH)评估清除自由基的能力,并且还原抗氧化功率(FRAP)方法,并通过FOLIN-CIOCALTEU(F-C)测试确定总酚含量。对于所选物种的抑制DPP%(Pseudevernia Furfuracea(L.)Zopf,H.物理学与文献数据相比,抑制剂较高。FRAP测试表明H.物理提取物具有更高的清除自由基的能力与Cladonia Furcata(HUDS)的比较。通过使用人HL-60 / MX2急性CK1-22(CRL-2257)暴露细胞白血病肿瘤细胞系,通过细胞培养方法测试所研究的提取物的细胞毒性活性。获得IC50 [μg×ML-1]的最低值适用于:H.物理(HP1)-99.4; C. Digite-122.6; H.物理(HP)-136.5,C.Subulata-142.6; C.Mitis-180.2。

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