Andersen H J, Chen H, Pellett L J, Tappel A L
Department of Dairy and Food Sciences, Royal Veterinary and Agricultural University, Frederiksberg, Denmark.
Free Radic Biol Med. 1993 Jul;15(1):37-48. doi: 10.1016/0891-5849(93)90123-c.
Hemichrome formation in chicken liver slices was determined by employing a Heme Protein Spectra Analysis Program (HPSAP) on the visible spectrum of the liver tissue. Relative hemichrome formation (RHF) in liver tissue exposed to ferrous iron for 1 h at 37 degrees C could be predicted according to the general catalytic equation RHF = k.[Fe2+]/(Ap + [Fe2+]), with k = 132 +/- 30, where the factor Ap represents the additive antioxidative potential in the liver tissue. RHF in Fe2+ exposed liver slices incubated at 37 degrees C for 1 h correlated significantly with formation of thiobarbituric acid-reactive substances (TBARS) (r = .77, P < .0001). RHF was found to decrease significantly with increasing vitamin E concentration in liver tissue exposed to ferrous iron (1 h, 37 degrees C). However, the influence of beta-carotene on RHF in ferrous-iron exposed liver slices (1 h, 37 degrees C) was less evident, as the concentration of Fe2+ was found to be decisive for whether beta-carotene acted as an antioxidant or a prooxidant under the conditions in question. Results in the liver slice model system regarding the effect of vitamin E and beta-carotene on iron overload were supported in a subsequent in vivo iron injection experiment with chicks. These observations indicate that RHF is a sensitive marker for ferrous-iron-induced oxidative damage in the present tissue slice system.
通过使用血红素蛋白光谱分析程序(HPSAP)对肝组织的可见光谱进行测定,来确定鸡肝切片中高铁血红素的形成。在37℃下暴露于亚铁1小时的肝组织中的相对高铁血红素形成(RHF)可根据一般催化方程RHF = k·[Fe2+]/(Ap + [Fe2+])进行预测,其中k = 132 ± 30,因子Ap代表肝组织中的相加抗氧化潜力。在37℃下孵育1小时的暴露于Fe2+的肝切片中的RHF与硫代巴比妥酸反应性物质(TBARS)的形成显著相关(r = 0.77,P < 0.0001)。发现在暴露于亚铁的肝组织中(1小时,37℃),随着维生素E浓度的增加,RHF显著降低。然而,β-胡萝卜素对暴露于亚铁的肝切片(1小时,37℃)中RHF的影响不太明显,因为发现在所述条件下Fe2+的浓度对于β-胡萝卜素是作为抗氧化剂还是促氧化剂起决定性作用。在随后的雏鸡体内铁注射实验中,肝切片模型系统中关于维生素E和β-胡萝卜素对铁过载影响的结果得到了支持。这些观察结果表明,在当前的组织切片系统中,RHF是亚铁诱导的氧化损伤的敏感标志物。