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异生物素对红细胞的影响。

The effects of xenobiotics on erythrocytes.

作者信息

Nohl H, Stolze K

机构信息

Institute of Pharmacology and Toxicology, Veterinary University of Vienna, Austria.

出版信息

Gen Pharmacol. 1998 Sep;31(3):343-7. doi: 10.1016/s0306-3623(97)00457-6.

DOI:10.1016/s0306-3623(97)00457-6
PMID:9703199
Abstract
  1. Methemoglobin formation was observed when erythrocytes were incubated with xenobiotics such as hydroxylamines or phenols, other metabolites resulting from the interaction of these compounds with erythrocytes being reactive free radicals derived from the respective xenobiotic, and a ferryl-heme oxo-complex. 2. Steady-state levels of these reaction products depended on the permeability of the erythrocyte membrane for the various methemoglobin (MetHb) generators and the presence of antioxidants that downregulate the radicals formed. 3. Electron spin resonance (ESR) spectra of xenobiotic-derived free radicals could be obtained only from the readily water soluble hydroxylamines, whereas the poorly water soluble phenolic compounds did not allow the use of concentrations required for the generation of detectable amounts of ESR-sensitive metabolites in erythrocytes. 4. Previous investigations with oxyhemoglobin solutions and with the MetHb/H2O2 model systems have shown that, apart from ESR-sensitive radical species, excited reaction intermediates such as compound 1 ferryl hemoglobin can be detected as well by using chemiluminescence measurements. 5. A strong correlation was found between the intensity of the emitted light and the MetHb formation rate, indicating that the production of compound 1 ferryl hemoglobin is closely related to the MetHb formation step. 6. The sensitivity of the photon-counting method allowed measurements of excited species in intact erythrocytes not only with the readily soluble hydroxylamines, but also with the less soluble phenolic compounds. 7. In addition, parameters indicative of xenobiotic-induced oxidative alterations were found: a significant decrease in intraerythrocytic thiol levels was a result of all compounds that initiate MetHb formation, as also described for slowly reacting xenobiotics. 8. With the most reactive compound investigated, unsubstituted hydroxylamine, a significant release of iron from the oxidatively modified hemoglobin was detected, facilitated by binding of this transition metal to hydroxylamine and its final oxidation product, nitric oxide. 9. The use of the ESR spin-labeling technique revealed membrane alterations of erythrocytes exposed to the reducing MetHb generators presented in this study. 10. A direct action of BHA and BHT on the integrity of the erythrocyte membrane was observed, leading to hemolysis independent of the formation of prooxidant species. 11. The presence of strong prooxidants (radicals) was indicated both by fluidity changes in the membrane and by an oxidative decrease in cytosolic thiol levels.
摘要
  1. 当红细胞与诸如羟胺或酚类等外源性物质一起孵育时,会观察到高铁血红蛋白的形成,这些化合物与红细胞相互作用产生的其他代谢产物是源自相应外源性物质的活性自由基以及高铁血红素氧络合物。2. 这些反应产物的稳态水平取决于红细胞膜对各种高铁血红蛋白(MetHb)生成剂的通透性以及下调所形成自由基的抗氧化剂的存在。3. 仅从易溶于水的羟胺中才能获得外源性自由基的电子自旋共振(ESR)光谱,而水溶性差的酚类化合物无法使用在红细胞中产生可检测量的ESR敏感代谢产物所需的浓度。4. 先前对氧合血红蛋白溶液和MetHb/H2O2模型系统的研究表明,除了ESR敏感的自由基种类外,还可以通过化学发光测量检测到诸如化合物1高铁血红蛋白等激发反应中间体。5. 发现发射光的强度与MetHb形成速率之间存在很强的相关性,表明化合物1高铁血红蛋白的产生与MetHb形成步骤密切相关。6. 光子计数法的灵敏度不仅允许用易溶性羟胺,而且还能用难溶性酚类化合物测量完整红细胞中的激发物种。7. 此外,还发现了表明外源性物质诱导氧化改变的参数:所有引发MetHb形成的化合物都会导致红细胞内硫醇水平显著降低,这与反应缓慢的外源性物质的情况相同。8. 对于所研究的反应性最强的化合物——未取代的羟胺,检测到氧化修饰的血红蛋白中有大量铁释放,这种过渡金属与羟胺及其最终氧化产物一氧化氮的结合促进了铁的释放。9. ESR自旋标记技术的使用揭示了暴露于本研究中所呈现的还原性MetHb生成剂的红细胞的膜改变。10. 观察到丁基羟基茴香醚(BHA)和二丁基羟基甲苯(BHT)对红细胞膜完整性有直接作用,导致溶血,这与促氧化剂物种的形成无关。11. 膜流动性变化和胞质硫醇水平的氧化降低均表明存在强促氧化剂(自由基)。

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The effects of xenobiotics on erythrocytes.异生物素对红细胞的影响。
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