Age-related changes in antioxidant defenses of the Mediterranean centipede Scolopendra cingulata (Chilopoda).

Bojan M Mitić, Slavica S Borković-Mitić, Jelena S Vranković, Dalibor Z Stojanović, Slađan Z Pavlović
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Abstract

The activity of superoxide dismutase (SOD), catalase (CAT), glutathione peroxidase (GSH-Px), glutathione reductase (GR), and glutathione S-transferase (GST), as well as the concentrations of sulfhydryl (SH) groups and glutathione (GSH) were analyzed in five age classes of the Mediterranean centipede Scolopendra cingulata as follows: embryo, adolescens, maturus junior, maturus, and maturus senior. The data obtained showed the presence of SOD, CAT, GSH-Px, GR, GST, and SH groups in embryos. The transition from embryo to adolescens was accompanied by an increase in the activities of all studied enzymes, in response to the increased production of ROS due to the increased metabolic activity of the centipede associated with growth and development. Our results show that trends in antioxidant enzyme (AOE) activities were not uniform among adult age classes, suggesting that maturus junior, maturus, and maturus senior differentially respond and/or have different susceptibility to ROS. On the other hand, GSH concentration in embryos was undetectable, highest in adolescens and decreased in the latter part of life. Pearson correlation analysis in embryos showed that the activities of the AOEs were strongly and positively correlated with each other but negatively correlated with GSH and SH groups. At later age classes, SOD, CAT, GSH-Px, GR, GSH, and SH groups were no longer significantly correlated with GST. In the discriminant analysis, the variables that separated the age classes were GR, GST, SH groups, and body length. Body length was directly related to the age of individuals, clearly indicating that development/aging affects the regulation of antioxidant defense in this species.

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地中海蜈蚣抗氧化防御的年龄相关变化。
研究了地中海蜈蚣胚胎、青少年、少年、成年、老年5个年龄阶段的超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、谷胱甘肽过氧化物酶(GSH- px)、谷胱甘肽还原酶(GR)、谷胱甘肽s -转移酶(GST)活性、巯基(SH)和谷胱甘肽(GSH)的含量。结果显示,胚胎中存在SOD、CAT、GSH-Px、GR、GST和SH组。从胚胎到青春期的转变伴随着所有研究酶的活性增加,这是由于蜈蚣与生长发育相关的代谢活性增加而增加ROS的产生。我们的研究结果表明,抗氧化酶(AOE)活性的变化趋势在不同的成年年龄阶层中并不一致,这表明幼龄、高龄和高龄的成熟鼠对ROS的反应和/或易感程度存在差异。另一方面,胚胎中的谷胱甘肽浓度是检测不到的,在青春期最高,在生命的后期下降。胚胎的Pearson相关分析表明,AOEs活性之间呈强正相关,与GSH和SH组呈负相关。在较晚年龄组,SOD、CAT、GSH- px、GR、GSH和SH组与GST不再显著相关。在判别分析中,区分年龄类别的变量为GR、GST、SH组和体长。体长与个体的年龄直接相关,清楚地表明发育/衰老影响了该物种抗氧化防御的调节。
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来源期刊
CiteScore
3.90
自引率
0.00%
发文量
51
审稿时长
3.5 months
期刊介绍: The Journal of Comparative Physiology B publishes peer-reviewed original articles and reviews on the comparative physiology of invertebrate and vertebrate animals. Special emphasis is placed on integrative studies that elucidate mechanisms at the whole-animal, organ, tissue, cellular and/or molecular levels. Review papers report on the current state of knowledge in an area of comparative physiology, and directions in which future research is needed.
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