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Evaluation of radical scavenging properties of shikonin

机译:紫草素自由基清除性能的评估

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摘要

With the aim of developing effective anti-inflammatory drugs, we have been investigating the biochemical effects of shikonin of “Shikon” roots, which is a naphthoquinone with anti-inflammatory and antioxidative properties. Shikonin scavenged reactive oxygen species like hydroxyl radical, superoxide anion (O2•−) and singlet oxygen in previous studies, but its reactivity with reactive oxygen species is not completely understood, and comparison with standard antioxidants is lacking. This study aimed elucidation of the reactivity of shikonin with nitric oxide radical and reactive oxygen species such as alkyl-oxy radical and O2•−. By using electron paramagnetic resonance spectrometry, shikonin was found unable of reacting with nitric oxide radical in a competition assay with oxyhemoglobin. However, shikonin scavenged alkyl-oxy radical from 2,2'-azobis(2-aminopropane) dihydrochloride with oxygen radical absorbance capacity, ORAC of 0.25 relative to Trolox, and showed a strong O2•−-scavenging ability (42-fold of Trolox; estimated reaction rate constant: 1.7 × 105 M−1s−1) in electron paramagnetic resonance assays with CYPMPO as spin trap. Concerning another source of O2•−, the phagocyte NADPH oxidase (Nox2), shikonin inhibited the Nox2 activity by impairing catalysis when added before enzyme activation (IC50: 1.1 µM; NADPH oxidation assay). However, shikonin did not affect the preactivated Nox2 activity, although having potential to scavenge produced O2•−. In conclusion, shikonin scavenged O2•− and alkyl-oxy radical, but not nitric oxide radical.
机译:为了开发有效的抗炎药,我们一直在研究“ Shikon”根的紫草素的生化作用,紫草素是具有抗炎和抗氧化特性的萘醌。在先前的研究中,紫草素清除了活性氧,如羟基自由基,超氧阴离子(O2 •-)和单线态氧,但与活性氧的反应性尚不完全清楚,尚缺乏与标准抗氧化剂的比较。本研究旨在阐明紫草素与一氧化氮自由基和活性氧(如烷基-氧自由基和O2 •-)的反应性。通过使用电子顺磁共振光谱法,在与氧合血红蛋白的竞争测定中发现紫草素不能与一氧化氮自由基反应。然而,紫草素从2,2'-偶氮二(2-氨基丙烷)二盐酸盐中清除了烷基氧自由基,具有相对于Trolox的氧自由基吸收能力,ORAC为0.25,并显示出强大的O2 •--清除能力电子顺磁共振测定的能力(Trolox的42倍;估计的反应速率常数:1.7×10 5 M -1 s -1 )用CYPMPO作为自旋阱。关于O2的另一种来源,吞噬细胞NADPH氧化酶(Nox2),紫草素在酶活化之前加入(IC50:1.1 µM; NADPH氧化法),会削弱催化作用,从而抑制Nox2活性。然而,紫草素虽然可能清除产生的O2 •-,但并未影响预活化的Nox2活性。总之,紫草素清除了O2 •-和烷基-氧自由基,但没有清除一氧化氮自由基。

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