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甲基黄嘌呤类药物己酮可可碱的γ射线和脉冲辐解研究

Gamma and pulse radiolysis study of pentoxifylline, a methylxanthine.

作者信息

Pasquier C, Franzini E, Abedinzadeh Z, Kaouadji M N, Hakim J

机构信息

INSERM U 294 CHU Xavier Bichat, Paris, France.

出版信息

Int J Radiat Biol. 1991 Sep;60(3):433-47. doi: 10.1080/09553009114552291.

Abstract

Pentoxifylline (Ptx) is a tri-substituted purine with anti-inflammatory properties which are thought to be due, in part, to oxygen radical scavenging. This paper reports an investigation of the reaction of Ptx with the hydroxyl radical [OH.], superoxide anion, azide radical and hydrogen peroxide generated by pulse and gamma-radiolysis, which was carried out to determine the scavenging properties of Ptx towards oxygen radicals. The superoxide anion, azide radical and hydrogen peroxide did not react with Ptx, whereas OH. reacted rapidly. In gamma-radiolysis, the action of OH. on Ptx at pH 7.4 gave rise to an end-product separated by high-performance liquid chromatography and identified by nuclear magnetic resonance and mass spectrometry as C-8-OH-Ptx (yield 0.12 x 10(-6) mol J-1). The reaction of Ptx with OH. after pulse radiolysis at pH 7-7.4 occurred with a rate constant of (7.7 +/- 1.0) x 10(9) mol-1 s-1, forming time-dependent transient radicals. The initial spectrum (2 microseconds after the pulse) showed three maxima (310, 338 and 500 nm). A decrease in the absorbance around 500 nm and an increase around 310 nm reflected a first-order reaction, suggesting a unimolecular rearrangement. It was shown by redox titration that at least two OH-adducts were formed, one with reducing and the other with oxidizing properties. These results suggest that the reducing radical may be (C-8-OH-Ptx)(.).

摘要

己酮可可碱(Ptx)是一种具有抗炎特性的三取代嘌呤,其抗炎特性被认为部分归因于氧自由基清除作用。本文报道了对Ptx与脉冲辐射和γ辐射产生的羟基自由基[OH·]、超氧阴离子、叠氮自由基和过氧化氢反应的研究,该研究旨在确定Ptx对氧自由基的清除特性。超氧阴离子、叠氮自由基和过氧化氢不与Ptx反应,而OH·反应迅速。在γ辐射中,pH 7.4时OH·对Ptx的作用产生了一种终产物,通过高效液相色谱分离,并通过核磁共振和质谱鉴定为C-8-OH-Ptx(产率为0.12×10⁻⁶ mol J⁻¹)。在pH 7 - 7.4下脉冲辐射后Ptx与OH·的反应速率常数为(7.7 ± 1.0)×10⁹ mol⁻¹ s⁻¹,形成随时间变化的瞬态自由基。初始光谱(脉冲后2微秒)显示三个最大值(310、338和500 nm)。500 nm左右吸光度的降低和310 nm左右吸光度的增加反映了一级反应,表明是单分子重排。氧化还原滴定表明至少形成了两种OH加合物,一种具有还原性质,另一种具有氧化性质。这些结果表明还原自由基可能是(C-8-OH-Ptx)(·)。

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