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Age-Related Changes in Antioxidant and Glutathione S-Transferase Enzyme Activities in the Asian Clam

机译:亚洲蛤仔中抗氧化剂和谷胱甘肽S-转移酶活性的年龄相关变化

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Aging is accompanied by increased production of free oxygen radicals and impairment of normal cellular functions. The aim of this work was to provide preliminary data on age-related differences in the activities of antioxidant enzymes and phase II biotransformation enzyme glutathione S-transferase (GST) in a wild population of the Asian clam Corbicula fluminea. The antioxidant enzymes superoxide dismutase (SOD), catalase (CAT), glutathione peroxidase (GPX), glutathione reductase (GR), and GST were assessed in visceral mass of four age classes (0+-, 1+-, 2+-, and 3+-year-old) of C. fluminea clams. Age-related changes were seen in antioxidant enzyme status: levels of total SOD (totSOD) (P < 0.05), MnSOD, and CuZnSOD (P < 0.05) activities increased progressively during aging from younger to older clams. Changes in CAT and GR activities with advancing age were found, the levels being the highest in age class II, then being lower in age classes III and IV (P < 0.05). Activities of GPX and GST were lower in the senescent individuals (2+- and 3+-year-old clams) compared with young individuals (0+- and 1+-year-old clams). Overall, the decline of glutathione-dependent enzyme activities, coupled with higher and lower activities of totSOD and CAT, respectively, as the individual grows older, may render the older animals more susceptible to oxidative stress. Data reported here are not intended to be exhaustive since they concern only age/size structure of the population at one locality, so more detailed studies on both the developmental stages and levels of antioxidant enzymes of this new alien species in Serbian rivers are required.
机译:衰老伴随着游离氧自由基的产生增加和正常细胞功能的损害。这项工作的目的是提供关于亚洲蛤Cor(Corbicula fluminea)野生种群中抗氧化酶和II期生物转化酶谷胱甘肽S-转移酶(GST)活性与年龄相关的差异的初步数据。抗氧化剂酶超氧化物歧化酶(SOD),过氧化氢酶(CAT),谷胱甘肽过氧化物酶(GPX),谷胱甘肽还原酶(GR)和GST在四个年龄段的内脏质量中进行了评估(0 +-,1 +-,2 +-, (及3岁以上)的C. fluminea蛤。在抗氧化酶状态中发现了与年龄相关的变化:从老到老的蛤随着年龄增长,总SOD(totSOD)(P <0.05),MnSOD和CuZnSOD(P <0.05)的水平逐渐增加。发现随着年龄的增长,CAT和GR活动发生变化,其水平在II级年龄段最高,而在III级和IV级年龄段较低(P <0.05)。与年轻个体(0+和1+岁的蛤)相比,衰老个体(2+和3+岁的蛤)的GPX和GST活性较低。总体而言,随着个体年龄的增长,谷胱甘肽依赖性酶活性的下降,以及totSOD和CAT的较高和较低的活性,可能会使年龄较大的动物更容易受到氧化应激的影响。此处报告的数据并非详尽无遗,因为它们仅涉及一个地区的人口年龄/大小结构,因此需要对塞尔维亚河中这种新外来物种的发育阶段和抗氧化酶水平进行更详细的研究。

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