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Phytochemical investigation, cytotoxicity and free radical scavenging activities of non-polar fractions of Acalypha hispida (leaves and twigs)

机译:姬松非极性部分(叶和细枝)的植物化学研究,细胞毒性和自由基清除活性

摘要

Free radicals are involved in the process of lipid peroxidation and play a cardinal role in numerous chronic diseases like cancer, coronary heart disease and ageing. Thus the ability to scavenge free radicals in order to minimize oxidative damage to living cells is very important. The hexane extract of Acalypha hispida (Burn F.) was screened for phytochemical constituents and was found to contain flavonoids, carbohydrates, phenols and alkaloids. Fractions obtained from chromatographic separation were screened for free radical scavenging activities using 2,2-diphenyl-1-picrylhydrazyl radical (DPPH) and hydrogen peroxide. Out of the sixteen pooled fractions (S1-S16) screened, compounds S10 (91.8 %), S11 (93.8 %), S14 (92.5 %) and S15 (91.4 %) at a concentration of 0.1 mg/ml had significant antioxidant activities whencompared to the known antioxidant ascorbic acid (90.9 %). However, in the analysis usinghydrogen peroxide, S1 (99.5 %), S9 (99.2 %), S10 (95.4 %),S11 (95.8 %) and S15 (95.6 %) gave better activity than ascorbic acid (94.8 %), while only S1 and S9 were more effective than butylated hydroxylanisole (98.9 %) and α-Tocopherol (99.1 %) at the same concentration. The cytotoxicity analysis using the Brine Shrimp lethality test gave LC50 values greater than1000 μg/ml for some of the fractions indicating very low level of toxicity. The better scavenging activity of A. hispida could be linked to the presence of secondary plant products like flavonoids and phenols, which have the ability to scavenge hydroxyl radicals, superoxide anions and lipid peroxy radicals.
机译:自由基参与脂质过氧化过程,并在许多慢性疾病(如癌症,冠心病和衰老)中发挥重要作用。因此清除自由基以最小化对活细胞的氧化损伤的能力非常重要。筛选了Acalypha hispida(Burn F.)的己烷提取物的植物化学成分,发现其中含有类黄酮,碳水化合物,酚和生物碱。使用2,2-二苯基-1-吡啶并肼基(DPPH)和过氧化氢,对色谱分离后的馏分进行自由基清除活性筛选。在筛选的十六个合并馏分(S1-S16)中,浓度为0.1 mg / ml的化合物S10(91.8%),S11(93.8%),S14(92.5%)和S15(91.4%)具有明显的抗氧化活性到已知的抗氧化剂抗坏血酸(90.9%)。但是,在使用过氧化氢的分析中,S1(99.5%),S9(99.2%),S10(95.4%),S11(95.8%)和S15(95.6%)的活性比抗坏血酸(94.8%)好,而在相同浓度下,S1和S9比丁基化羟基茴香醚(98.9%)和α-生育酚(99.1%)更有效。使用盐水虾杀伤力测试进行的细胞毒性分析显示,某些部分的LC50值大于1000μg/ ml,表明毒性水平非常低。组氨酸假单胞菌更好的清除活性可能与次要植物产物的存在有关,例如黄酮类化合物和酚类,它们具有清除羟自由基,超氧阴离子和脂质过氧自由基的能力。

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