天麻酚和去铁胺保护培养兔晶状体上皮细胞免受H2O2损伤:H2O2诱导损伤机制的探讨。

Lens and eye toxicity research Pub Date : 1992-01-01
J Reddan, M Sevilla, F Giblin, V Padgaonkar, D Dziedzic, V Leverenz
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引用次数: 0

摘要

为了研究H2O2损伤上皮的机制,用TEMPOL或去铁胺处理8 × 10(5)只兔晶状体上皮细胞,并暴露于单次亚致死剂量的0.5 mM H2O2中。TEMPOL是一种SOD模拟物,具有典型的EPR谱,并且不依赖于金属。EPR光谱表明TEMPOL不被H2O2破坏,催化超氧阴离子破坏,穿透细胞。H2O2处理的细胞表现出膜起泡、生长抑制、GSSG增加、GSH、ATP、NAD+、G3PDH活性和乳酸生成的剂量依赖性降低。H2O2刺激己糖单磷酸分流,诱导DNA单链断裂。TEMPOL或去铁胺处理可以防止或减少h2o2诱导的生长抑制、NAD+的减少、DNA单链断裂的诱导和膜起泡,但对其他生化参数没有影响。TEMPOL和去铁胺都能阻止铁+2介导的有害羟基自由基的产生。TEMPOL与超氧化物发生反应,从而阻止铁+3再循环为铁+2。它也将DNA-Fe+2氧化为DNA-Fe+3。去铁胺螯合细胞内铁+3并阻止其还原为铁+2。这些化合物通过不同的方式限制了Fe+2的可用性,这表明过渡金属(包括与DNA结合的金属)介导了H2O2的某些破坏性作用。
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Tempol and deferoxamine protect cultured rabbit lens epithelial cells from H2O2 insult: insight into the mechanism of H2O2-induced injury.

In order to investigate the mechanism by which H2O2 damages the epithelium, 8 x 10(5) rabbit lens epithelial cells were treated with TEMPOL or deferoxamine and exposed to a single sublethal dose of 0.5 mM H2O2. TEMPOL is a SOD mimic, has a characteristic EPR spectrum and is metal independent. EPR spectra indicated that TEMPOL was not destroyed by H2O2, catalyzed the destruction of the superoxide anion, and penetrated the cells. Cells treated with H2O2 showed membrane blebbing, growth inhibition, an increase in GSSG, a dose-dependent decrease in GSH, ATP, NAD+, and in the activity of G3PDH, and in lactate production. H2O2 stimulated the hexose mono-phosphate shunt and induced single strand breaks in DNA. Treatment with TEMPOL or deferoxamine prevented or curtailed H2O2-induced inhibition of growth, the decrease in NAD+, the induction of single strand breaks in DNA, and membrane blebbing, but not the other biochemical parameters investigated. Both TEMPOL and deferoxamine prevent Fe+2-mediated generation of the damaging hydroxyl radical. TEMPOL reacts with superoxide and thus prevents it from recycling Fe+3 to Fe+2. It also oxidizes DNA-Fe+2 to DNA-Fe+3. Deferoxamine chelates intracellular Fe+3 and prevents its reduction to Fe+2. These compounds which limit the availability of Fe+2 by different means indicate that transition metals (including those bound to DNA) mediate certain of the damaging effects of H2O2.

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