Atli Gülüzar, Canli Mustafa
Department of Biology, Faculty of Sciences and Letters, University of Cukurova, 01330 Adana, Turkey.
Comp Biochem Physiol C Toxicol Pharmacol. 2007 Mar;145(2):282-7. doi: 10.1016/j.cbpc.2006.12.012. Epub 2007 Jan 12.
Freshwater fish Oreochromis niloticus were exposed to 5, 10 and 20 microM concentrations of Cd, Cu, Zn and Pb for 14 days and responses of several enzymes were determined subsequently. Liver catalase (CAT) activity was influenced by Cd and Pb exposures, while it was inhibited by Zn exposure. Copper, on the other hand, did not cause significant changes in CAT activity. Liver alkaline phosphatase (AP) activity was first stimulated at lowest (5 microM) exposure concentration, while there were significant inhibitions at higher (10 microM) exposure concentration. At the highest (20 microM) exposure concentration, AP activity was compensated coming to the control level, except Pb exposure. Intestine and serum AP activities were stimulated by all Zn exposures and 10 microM Cu exposure, while other exposures did not cause significant changes on AP activity. Na,K-ATPase activity in the gill and intestine was inhibited by all the metal exposures, except 20 microM Pb exposure that resulted in an increase in the activity in the gill. Similarly, muscle Ca-ATPase activity was inhibited by all the metal exposures, except Cu exposures. This study indicated that enzymatic systems may be used as a sensitive bioindicator of metal contamination in aquatic systems. Nevertheless, the results also stress the importance of addressing the sensitivity of these enzymes when they are used as a bioindicator for metal contamination, because the responses of the enzymes varied considerably according to metal types and concentrations.
将淡水鱼尼罗罗非鱼暴露于浓度为5、10和20微摩尔的镉、铜、锌和铅中14天,随后测定几种酶的反应。肝脏过氧化氢酶(CAT)活性受镉和铅暴露的影响,而受锌暴露的抑制。另一方面,铜对CAT活性没有引起显著变化。肝脏碱性磷酸酶(AP)活性在最低(5微摩尔)暴露浓度时首先受到刺激,而在较高(10微摩尔)暴露浓度时有显著抑制。在最高(20微摩尔)暴露浓度时,除铅暴露外,AP活性得到补偿,恢复到对照水平。所有锌暴露和10微摩尔铜暴露均刺激肠道和血清AP活性,而其他暴露对AP活性没有引起显著变化。鳃和肠道中的钠钾ATP酶活性受到所有金属暴露的抑制,但20微摩尔铅暴露导致鳃中该酶活性增加。同样,除铜暴露外,所有金属暴露均抑制肌肉钙ATP酶活性。本研究表明,酶系统可作为水生系统中金属污染的敏感生物指标。然而,结果也强调了在将这些酶用作金属污染生物指标时考虑其敏感性的重要性,因为酶的反应根据金属类型和浓度有很大差异。