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The antiradical activity of some plant raw materials and extracts obtained from these raw materials

机译:一些植物原料及其提取物的抗自由基活性

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Introduction: Free radicals and reactive oxygen species are compounds usually present in healthy organisms as natural products of many metabolic pathways, and they are important in cell signaling and homeostasis. As a source of reactive oxygen species one can mention phagocytic cells and enzymes such as xanthine oxidase. Sometimes the level of reactive oxygen species strongly increases. This may lead to damage of very important cell structures such as nucleic acids, proteins or lipids. In this situation one should provide the organism with powerful antioxidants as a medicine or in the diet. A rich source of strong antioxidants such as phenolic compounds is plant raw materials, which are the subject of our study.Material/Methods: Antiradical potential of extracts was measured with DPPH radical (2,2-diphenyl-1-picrylhydrazyl) and was expressed as the number of units per mg of extracts (TAU515/mg) and per g of raw material (TAU515/g). The amount of phenolic compounds was determined colorimetrically using Folin-Ciocalteu phenol reagent (3H2O ? P2O5 ? 13WO3 ? 5MoO3 ? 10H2O).Results: The strongest antiradical activity was noted for extracts obtained from Cinnamomi cortex; the number of antiradical units per mg of extract (TAU515/mg) was 10.31±1.052. The lowest antiradical features were exhibited by extract from Zingiberis rhizoma (0.28±0.174) and extract from Cichorii radix (0.38±0.669). The highest amount of phenolic compounds was measured for extracts from Bistortae rhizoma, with a value (in percentage) of 78.6±13.5. The correlation coefficient between the number of antiradical units in extracts and amount of phenolic compounds in these extracts was 0.7273. When the number of antiradical units was calculated per g of raw material (TAU515/g) the strongest antiradical properties were noted for Bistortae rhizoma (1406±274.9), the weakest for Cichorii radix (122±158.3).
机译:简介:自由基和活性氧是健康生物中通常存在的化合物,是许多代谢途径的天然产物,它们在细胞信号传导和体内平衡中很重要。作为活性氧物质的来源,可以提及吞噬细胞和酶,如黄嘌呤氧化酶。有时活性氧的含量会大大增加。这可能会导致非常重要的细胞结构(如核酸,蛋白质或脂质)损坏。在这种情况下,应为生物体提供强大的抗氧化剂,以作为药物或饮食中的抗氧化剂。材料/方法:用DPPH自由基(2,2-二苯基-1-吡啶并肼基)测定提取物的抗自由基能力,并表达为植物抗氧化剂,该物质是植物抗氧化剂的丰富来源。表示为每毫克提取物(TAU515 / mg)和每克原料(TAU515 / g)的单位数。用Folin-Ciocalteu酚试剂(3H2O→P2O5→13WO3→5MoO3→10H2O)进行比色法测定酚类化合物的含量。每毫克提取物的抗自由基单位数(TAU515 / mg)为10.31±1.052。根茎姜提取物(0.28±0.174)和菊苣(Cichorii radix)提取物(0.38±0.669)显示出最低的抗自由基特性。测得的连翘提取物中的酚类化合物含量最高,其值(百分比)为78.6±13.5。提取物中反自由基单元的数量与这些提取物中酚类化合物的含量之间的相关系数为0.7273。当计算每克原料的反激基单位数(TAU515 / g)时,对菊苣(Bistortae rhizoma)的抗自由基性能最强(1406±274.9),对菊苣(Cichorii radix)最弱(122±158.3)。

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