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Kinetics and mechanism of protection of thymine from sulphate radical anion under anoxic conditions

机译:缺氧条件下保护胸腺嘧啶免受硫酸根阴离子的动力学和机理

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The rates of photooxidation of thymine in presence of peroxydisulphate (PDS) have been determined by measuring the absorbance of thymine at 264 nm spectrophotometrically. The rates and the quantum yields (e???) of oxidation of thymine by sulphate radical anion have been determined in the presence of different concentrations of caffeic acid. Increase in [caffeic acid] is found to decrease the rate of oxidation of thymine suggesting that caffeic acid acts as an efficient scavenger of SO$^{ullet -}_{4}$ and protects thymine from it. Sulphate radical anion competes for thymine as well as for caffeic acid. The rate constant of sulphate radical anion with caffeic acid has been calculated to be 1.24 ?— 1010 dm3 mol-1 s-1. The quantum yields of photooxidation of thymine have been calculated from the rates of oxidation of thymine and the light intensity absorbed by PDS at 254 nm, the wavelength at which PDS is activated to sulphate radical anion. From the results of experimentally determined quantum yields (e???exptl) and the quantum yields calculated (e???cl) assuming caffeic acid acting only as a scavenger of SO$^{ullet -}_{4}$ radicals show that e???exptl values are lower than e???cl values. The e???' values, which are experimentally found quantum yield values at each caffeic acid concentration and corrected for SO$^{ullet-}_{4}$ scavenging by caffeic acid, are also found to be greater than e???exptl values. These observations suggest that the thymine radicals are repaired by caffeic acid in addition to scavenging of sulphate radical anions.
机译:在过氧二硫酸盐(PDS)存在下,胸腺嘧啶的光氧化速率已通过分光光度法测量胸腺嘧啶在264 nm的吸光度来确定。在存在不同浓度的咖啡酸的情况下,已经确定了硫酸根自由基阴离子氧化胸腺嘧啶的速率和量子产率(e-)。发现[咖啡酸]的增加会降低胸腺嘧啶的氧化速率,这表明咖啡酸可有效清除SO $ ^ {ullet-} _ {4} $并保护胸腺嘧啶。硫酸根阴离子可与胸腺嘧啶和咖啡酸竞争。硫酸根阴离子与咖啡酸的速率常数经计算为1.24×1010 dm3 mol-1 s-1。从胸腺嘧啶的氧化速率和PDS在254 nm(PDS被活化为硫酸根阴离子的波长)处吸收的光强度,计算出胸腺嘧啶光氧化的量子产率。根据实验确定的量子产率(e ??? exptl)和计算的量子产率(e ??? cl)的结果,假设咖啡酸仅充当SO $ ^ {ullet-} _ {4} $自由基的清除剂e的exptl值低于e的cl值。 e ???'实验上发现在每个咖啡酸浓度下的量子产率值和用咖啡酸清除的SO 3 ^ {ullet-} _ {4} $校正值也被发现大于e expt1值。这些观察结果表明,除了清除硫酸根阴离子外,胸腺嘧啶基还可以被咖啡酸修复。

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