Prakash N T, Rao K S
Centre for Future Studies, Pondicherry University, India.
Mol Cell Biochem. 1995 May 24;146(2):107-13. doi: 10.1007/BF00944602.
Lipid peroxidation induced by metals at sub-lethal levels, alter physiological and biochemical characteristics of biological systems. To counter the detrimental effects of the prooxidant activity of metals, a group of antioxidant enzyme systems function in the organisms. The present study was performed to investigate into the lipid peroxidation product formation due to the exposure to effects of the metals namely aluminium, lead and cadmium at sub-lethal concentrations and the biological response through protective antioxidant enzyme activity in the marine mussels, Perna viridis Lin.. This organism is a known bioindicator and bioconcentrator of metals in the environment. The results of the present study were: (a) accumulation of lead showed a definite linear increase during the period of exposure whereas aluminium and cadmium showed fluctuations. Mantle and gill tissues showed greater accumulation of metals when compared to digestive gland; (b) lead and aluminium induced lipid peroxidation was greater in tissues than the peroxidation induced by cadmium. Cadmium induced peroxidation was observed only after the day 7 of the exposure; (c) anti-oxidant enzymes activity levels were significantly higher in digestive gland and mantle than gills; (d) mantle was observed to significantly contribute to the organismal response to lipid peroxidation as indicated by high activity levels of anti-oxidant enzymes.
亚致死水平的金属诱导的脂质过氧化会改变生物系统的生理和生化特征。为了对抗金属促氧化活性的有害影响,生物体中存在一组抗氧化酶系统发挥作用。本研究旨在调查亚致死浓度的铝、铅和镉等金属暴露所导致的脂质过氧化产物形成情况,以及通过海洋贻贝(绿贻贝)中保护性抗氧化酶活性所产生的生物反应。这种生物体是环境中已知的金属生物指示物和生物富集器。本研究的结果如下:(a)在暴露期间,铅的积累呈明显的线性增加,而铝和镉则呈现波动。与消化腺相比,外套膜和鳃组织显示出更高的金属积累;(b)铅和铝诱导的脂质过氧化在组织中比镉诱导的过氧化作用更强。镉诱导的过氧化作用仅在暴露第7天后才观察到;(c)消化腺和外套膜中的抗氧化酶活性水平显著高于鳃;(d)如抗氧化酶的高活性水平所示,观察到外套膜对生物体对脂质过氧化的反应有显著贡献。