Masood Nusrat, Fatima Kaneez, Luqman Suaib
Molecular Bioprospection Department, Biotechnology Division, CSIR-Central Institute of Medicinal and Aromatic Plants, Lucknow 226015, India.
Molecular Bioprospection Department, Biotechnology Division, CSIR-Central Institute of Medicinal and Aromatic Plants, Lucknow 226015, India ; Academy of Scientific and Innovative Research (AcSIR), CSIR-Central Institute of Medicinal and Aromatic Plants, Lucknow 226015, India.
ScientificWorldJournal. 2014 Feb 5;2014:931581. doi: 10.1155/2014/931581. eCollection 2014.
We have described a modified method for evaluating inhibitor of peroxyl radicals, a well-recognized and -documented radical involved in cancer initiation and promotion as well as diseases related to oxidative stress and ageing. We are reporting hydrophilic and lipophilic as well as natural and synthetic forms of antioxidants revealing a diversified behaviour to peroxyl radical in a dose-dependent manner (1 nM-10 μM). A simple kinetic model for the competitive oxidation of an indicator molecule (ABTS) and a various antioxidant by a radical (ROO(•)) is described. The influences of both the concentration of antioxidant and duration of reaction (70 min) on the inhibition of the radical cation absorption are taken into account while determining the activity. The induction time of the reaction was also proposed as a parameter enabling determination of antioxidant content by optimizing and introducing other kinetic parameters in 96-well plate assays. The test evidently improves the original PRTC (peroxyl radical trapping capacity) assay in terms of the amount of chemical used, simultaneous tracking, that is, the generation of the radical taking place continually and the kinetic reduction technique (area under curve, peak value, slope, and Vmax).
我们描述了一种改良方法,用于评估过氧自由基抑制剂。过氧自由基是一种在癌症起始和促进过程以及与氧化应激和衰老相关疾病中得到充分认识和记录的自由基。我们报告了亲水性、亲脂性以及天然和合成形式的抗氧化剂,它们对过氧自由基呈现出剂量依赖性(1 nM - 10 μM)的多样化行为。描述了一种用于指示分子(ABTS)与各种抗氧化剂被自由基(ROO(•))竞争性氧化的简单动力学模型。在测定活性时,考虑了抗氧化剂浓度和反应持续时间(70分钟)对自由基阳离子吸收抑制的影响。反应的诱导时间也被提议作为一个参数,通过在96孔板测定中优化和引入其他动力学参数来确定抗氧化剂含量。该测试在所用化学物质的量、同步跟踪(即自由基的持续产生)以及动力学还原技术(曲线下面积、峰值、斜率和Vmax)方面明显改进了原始的PRTC(过氧自由基捕获能力)测定法。