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Methemoglobin determination by multi-component analysis in coho salmon (Oncorhynchus kisutch) possessing unstable hemoglobin

机译:多组分分析法测定具有不稳定血红蛋白的银大麻哈鱼(Oncorhynchus kisutch)中的高铁血红蛋白

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摘要

Hemoglobin derivatives are often quantified in blood to establish cardio-respiratory status and possible causes of impaired oxygen transport. The derivative known as methemoglobin results from oxidation of hemoglobin and is pathologically relevant because it cannot transport oxygen. In species and individuals possessing unstable methemoglobin, methemoglobin formation leads to rapid hemichrome formation and precipitation. Oxidizing reagents in standard methemoglobin analysis techniques therefore prevent accurate quantification of hemoglobin oxidative degradation products in species possessing unstable hemoglobin. In this study, we demonstrated that individual coho salmon ( ) possess unstable methemoglobin. Because molar absorptivities of coho methemoglobin, hemichrome and carboxyhemoglobin were significantly different from humans, the use of previous standard methods leads to an overestimation of methemoglobin in coho. Spontaneous conversion of methemoglobin to hemichrome was also demonstrated in Chinook ( ), pink ( ) and chum salmon ( ), but not steelhead ( ), indicating there may be a frequent need to account for unstable hemoglobin when quantifying methemoglobin in salmonids.
机译:经常在血液中对血红蛋白衍生物进行定量,以建立心脏呼吸状态以及可能的氧气转运障碍。称为高铁血红蛋白的衍生物是由血红蛋白的氧化产生的,并且在病理上相关,因为它不能转运氧气。在具有不稳定的高铁血红蛋白的物种和个体中,高铁血红蛋白的形成导致快速的半色素形成和沉淀。因此,标准高铁血红蛋白分析技术中的氧化剂会阻止对具有不稳定血红蛋白的物种中的血红蛋白氧化降解产物进行准确定量。在这项研究中,我们证明了单独的银鲑()具有不稳定的高铁血红蛋白。由于高银高铁血红蛋白,半色素和羧基血红蛋白的摩尔吸收率与人类有显着差异,因此使用先前的标准方法会导致高银高铁血红蛋白的高估。在Chinook(),粉红色()和密友鲑鱼()中也证明了高铁血红素向半色素的自发转化,但在黑头(sheadhead)中却没有,表明在对鲑鱼中的高铁血红素进行定量时可能经常需要考虑不稳定的血红蛋白。

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