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Serum Hydroxyl Radical Scavenging Capacity as Quantified with Iron-Free Hydroxyl Radical Source

机译:用无铁羟基自由基源定量的血清羟自由基清除能力

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We have developed a simple ESR spin trapping based method for hydroxyl (OH) radical scavenging-capacity determination, using iron-free OH radical source. Instead of the widely used Fenton reaction, a short (typically 5 seconds) in situ UV-photolysis of a dilute hydrogen peroxide aqueous solution was employed to generate reproducible amounts of OH radicals. ESR spin trapping was applied to quantify OH radicals; the decrease in the OH radical level due to the specimen’s scavenging activity was converted into the OH radical scavenging capacity (rate). The validity of the method was confirmed in pure antioxidants, and the agreement with the previous data was satisfactory. In the second half of this work, the new method was applied to the sera of chronic renal failure (CRF) patients. We show for the first time that after hemodialysis, OH radical scavenging capacity of the CRF serum was restored to the level of healthy control. This method is simple and rapid, and the low concentration hydrogen peroxide is the only chemical added to the system, that could eliminate the complexity of iron-involved Fenton reactions or the use of the pulse-radiolysis system.
机译:我们已经开发了一种简单的基于ESR自旋阱的方法,可使用不含铁的OH自由基源确定羟基(OH)自由基的能力。代替广泛使用的Fenton反应,采用稀氧化氢水溶液的短时间(通常为5秒)的原位UV光解来产生可重现数量的OH自由基。采用ESR自旋阱法定量OH自由基。由于样品的清除活性而导致的OH自由基水平的降低转化为OH自由基的清除能力(速率)。在纯抗氧化剂中证实了该方法的有效性,并且与先前数据的一致性令人满意。在这项工作的后半部分,将新方法应用于慢性肾衰竭(CRF)患者的血清。我们首次显示血液透析后,CRF血清的OH自由基清除能力恢复到健康对照水平。该方法简单,快速,低浓度的过氧化氢是添加到系统中的唯一化学物质,可以消除铁参与的Fenton反应的复杂性或使用脉冲辐射分解系统。

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