Leveelahti Lotta, Rytkönen Kalle T, Renshaw Gillian M C, Nikinmaa Mikko
Laboratory of Animal Physiology, Department of Biology, University of Turku, 20014, Turku, Finland,
Fish Physiol Biochem. 2014 Feb;40(1):183-91. doi: 10.1007/s10695-013-9835-1. Epub 2013 Aug 2.
It is not known whether changes in antioxidant levels always occur in fish in response to the oxidative stress that usually accompanies a hypoxic challenge. The studies of antioxidant responses to hypoxia in fish have mostly focused on very anoxia-tolerant species and indicate that there is an enhancement of antioxidant defenses. Here we present new data on redox-active antioxidants from three species, which range in their tolerance to hypoxia: the epaulette shark, threespine stickleback, and rainbow trout, together with a compilation of results from other studies that have measured oxidative stress parameters in hypoxia-exposed fish. The results suggest that in general, fish do not show an increase in redox-active antioxidant defense in response to oxidative stress associated with hypoxia. Rather, the changes in antioxidant defenses during hypoxia are very much species- and tissue-specific and are not linked to the level of hypoxia tolerance of the fish species.
尚不清楚鱼类抗氧化剂水平的变化是否总是因通常伴随缺氧挑战的氧化应激而发生。对鱼类缺氧抗氧化反应的研究大多集中在非常耐缺氧的物种上,表明抗氧化防御能力有所增强。在此,我们展示了来自三种对缺氧耐受性不同的物种——肩章鲨、三刺鱼和虹鳟鱼的氧化还原活性抗氧化剂的新数据,以及其他研究测量缺氧暴露鱼类氧化应激参数的结果汇总。结果表明,一般而言,鱼类不会因与缺氧相关的氧化应激而表现出氧化还原活性抗氧化防御的增加。相反,缺氧期间抗氧化防御的变化非常具有物种和组织特异性,并且与鱼类物种的耐缺氧水平无关。