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1.
镉胁迫对虾夷扇贝抗氧化防御系统的影响   总被引:1,自引:0,他引:1  
实验研究了虾夷扇贝在96 h的急性毒性效应,以及不同浓度Cd2+(0,0.005,0.025,0.050,0.150和0.300 mg/L)对虾夷扇贝内脏团超氧化物岐化酶(SOD)、过氧化氢酶(CAT)和谷胱甘肽-过氧化物酶(GSH-PX)活力的影响,以探讨其用于污染暴露的生物标记的可行性。结果表明:虾夷扇贝96 h的LC50为1.73 mg/L;其95%的置信区间是1.58~1.90 mg/L;安全浓度为0.0173 mg/L。酶活力:0.025 mg/L及以上的各实验组SOD活力先上升后下降,在第3 d时达到峰值,与对照组呈显著差异(P<0.05);处理第6 d,各浓度组SOD活力有所下降,到第9 d时受到抑制;CAT活力在处理0.5 d时,0.025mg/L0、.150 mg/L和0.300 mg/L三个浓度组均受到显著诱导(P<0.05),处理第6 d时,各实验组酶活力开始受到抑制。两种酶对实验设计的Cd2+浓度反应敏感,呈现出"诱导-抑制"规律,对海洋Cd2+早期污染具有指示作用。GSH-PX对Cd2+污染没有SOD和CAT那样敏感,GSH-PX的各个实验组与对照组相比差异均不显著,因而它作为对海洋Cd2+早期污染指示物的意义不大。  相似文献   
2.
Oxidative stress and DNA damages induced by cadmium accumulation   总被引:22,自引:0,他引:22  
Experimental evidence shows that cadmium (Cd) could induce oxidative stress and then causes DNA damage in animal cells, however, whether such effect exists in plants is still unclear. In the present study, Vicia faba plants was exposed to 5 and 10 mg/L Cd for 4 d to investigate the distribution of Cd in plant, the metal effects on the cell lipids, antioxidative enzymes and DNA damages in leaves. Cd induced an increase in Cd concentrations in plants. An enhanced level of lipid peroxidation in leaves and an enhanced concentration of H2O2 in root tissues suggested that Cd caused oxidative stress in Vicia faba. Compared with control, Cd-induced enhancement in superoxide dismutase activity was significant at 5 mg/L than at 10 mg/kg in leaves, by contrast, catalase and peroxidaseactivities were significantly suppressed by Cd addition. DNA damage was detected by neutral/neutral, alkaline/neutral and alkaline/alkaline Comet assay. Increased levels of DNA damages induced by Cd occurred with reference to oxidative stress in leaves, therefore, oxidative stress induced by Cd accumulation in plants contributed to DNA damages and was possibly an important mechanism of Cd-phytotoxicity in Vicia faba plants.  相似文献   
3.
非离子型表面活性剂AE对大薸损伤程度的酶学诊断   总被引:2,自引:1,他引:1  
以超氧化物歧化酶 (SOD)、过氧化氢酶 (CAT)和过氧化物酶 (POD)的比活力变化作为观测指标 ,进行了脂肪醇聚氧乙烯醚 (AE)对大薸 (PistiastratiotesL .)损伤程度的酶学诊断 .结果表明 :在 17℃下 ,ρ(AE) 0 .1mg L的AE对大薸的伤害程度极微 ;ρ(AE)为 1.0、10 .0mg L时 ,大薸受到较大的伤害 ,但能逐渐恢复正常生理活动 ;ρ(AE)为 2 0 .0、5 0 .0mg L时 ,由于伤害程度大 ,超出了酶的修复能力 ,组织逐渐坏死 .同时推测 :在AE污染下 ,大薸的POD是起保护作用的主导酶 .图 3表 1参 12  相似文献   
4.
Brassinosteroids (BRs) are involved in the amelioration of various biotic and abiotic stresses. With an aim to explore the role of BRs under heavy metal stress, plants of Brassica juncea L. were grown in pots. The plants were subjected to various concentrations of Nickel metal (0.0, 0.2, 0.4 and 0.6 mM) and harvested on 60th day in order to observe the expression of these hormones. The isolated BRs from the leaves of Brassica plants characterized by GC-MS include 24-Epibrassinolide (24-EBL), Castasterone, Dolicholide and Typhasterole. The effect of isolated 24-EBL was studied on Ni metal uptake and antioxidative defense system in 60 d old plants of Brassica. It was observed that 24-EBL significantly increased the activities of stress ameliorating enzymes and lowered the metal uptake in plants. This is the first report in B. juncea L. plants showing the expression of BRs under metal treatments and effect of the isolated 24-EBL on metal uptake and in oxidative stress management.  相似文献   
5.
Abstract

The in vivo effects of methomyl, thiodicarb and metaldehyde on total soluble proteins, total lipids and glycogen content, in addition, the activity of glutamic oxaloacetic transaminase, (GOT), (GPT) glutamic pyruvic transaminase and catalase (CAT) enzymes of terrestrial E. vermiculata snails was studied. The experimental snails were treated with low concentration of 0.2% bran bait w/w of the pesticides for a period of 1,3,5,7 and 10 days. The results showed that methomyl and thiodicarb lead to significant reduction in total soluble proteins, lipids, and glycogen content, while significant increases in the activity of all enzymes tested were noted. Metaldehyde treatment showed no significant effect on total soluble proteins, lipids and GOT level, whereas a significant increase in GPT and CAT enzymes was observed. Also, metaldehyde resulted a significant reduction in glycogen content of snails.  相似文献   
6.
Abstract

The effect of mercuric chloride (HgCl2) on the activities of catalase, Superoxide dismutase (SOD), glutathione peroxidase (GPx), glutathione reductase (GR) and its effect on glutathione (GSH) content were evaluated in different organs (liver, kidneys, and brain) of mice after administration at 0, 0.25, 0.5 and 1.0 mg/kg/day for 14 days. The uptake of mercury shows that the kidneys accumulated the highest levels of mercury compare to brain and liver. The enzyme levels varied in mercury treated organs compare to control. A dose dependent increase of antioxidant enzymes occurred in the liver and kidneys. The increase in enzyme activities correlated with highest mercury accumulation in the kidneys and liver. Mercury is known to generate reactive oxygen species (ROS) in vivo and in vitro, therefore, it is likely that enzyme activities increased to scavenge ROS levels produced as a result of mercury accumulation. Glutathione content increased in liver and kidneys of mercury treated mice compare to control. The results showed that the highest oral dose of mercury significantly increased antioxidant enzymes in kidneys and liver. The increased antioxidant enzymes enhance the antioxidant potential of the organs to reduce oxidative stress.  相似文献   
7.
The protective effect of hydroxytyrosol (HT), a strong antioxidant compound from extra virgin olive oil, against TCDD induced toxicity was investigated in human peripheral blood mononuclear cells (PBMC). PBMC (1 × 106 cells mL−1) were divided into four groups and were incubated in a CO2 incubator (5% CO2) for 12 h with vehicle, TCDD (10 nM), TCDD + HT (10 nM + 100 μM) and HT alone (100 μM) respectively. To clarify the role of HT against TCDD induced cytotoxicity, oxidative stress and the levels of antioxidant enzymes were assessed. Incubation of PBMC with TCDD significantly decreased cell viability, catalase (CAT) and glutathione peroxidase (GPx) and increased the levels of superoxide dismutase (SOD), glutathione reductase (GR) and oxidative stress markers such as lipid peroxidation products (LPO), protein carbonyl content (PCC) and reactive oxygen species (ROS). Whereas, HT had an effective antioxidant property as observed by the increased cell viability, normalization of antioxidant enzymes and decreased levels of LPO, PCC and ROS in PBMC co-treated with HT and TCDD. Apoptosis detection and comet assay results shows that HT, by acting as an antioxidant, prevents the damage to DNA induced by TCDD. In addition light microscopic and histopathological observations revealed that the cells are apoptotic and degenerated during TCDD treatment, whereas cells showed intact morphology during co-treatment with HT. On the whole, the results reveal that HT exerts a promising antioxidant potential in protecting the PBMC against TCDD induced oxidative stress, which might be due to the presence of catechol moiety in its structure.  相似文献   
8.
Cu在扇贝组织中的蓄积及其对酶活性的影响   总被引:9,自引:1,他引:9  
采用暴露实验方法,研究了不同浓度的Cu(Cu^2+)对栉孔扇贝(Chlamys farreri)鳃、肌肉、内脏团组织中Cu蓄积量及过氧化氢酶(CAT)活性的影响.结果表明:随水体中Cu浓度的升高,扇贝各组织中Cu蓄积量明显上升,Cu蓄积量顺序为:内脏〉鳃〉肌肉.Cu浓度对栉孔扇贝各组织中过氧化氢酶(CAT)活性均有明显影响,各组织中酶活性均随Cu浓度升高表现为抑制-诱导-抑制的规律.这表明,栉孔扇贝各组织中CAT酶对水体中Cu污染反映敏感,存在计量-效应关系,对海洋Cu早期污染具有指示作用.图2表1参19  相似文献   
9.
以奥尼杂交罗非鱼(Oreochromisaureus♂×Oreochromisniloticus♀)为试验鱼类,研究了其暴露于不同质量浓度苯酚后组织中过氧化氢酶CAT和谷胱甘肽-S-转移酶GST活性的动态变化。结果表明,罗非鱼肌肉和肝脏组织中的CAT正常值分别为8.56±0.2U·mg-1和15.48±0.1U·mg-1,GST的正常值分别为4.39±0.20U·mg-1和13.30±0.31U·mg-1,均是肝脏组织高于肌肉组织。采用不同质量浓度的苯酚处理罗非鱼25d,除了0.002mg·L-1质量浓度组罗非鱼体内CAT和GST与对照组相比无显著差异外,其余各质量浓度组的CAT和GST均发生了明显的变化,两者的变化趋势相近。CAT的变化规律为低质量浓度组先升高后降低,高质量浓度组不断下降。即低质量浓度苯酚对罗非鱼体内的CAT具有一定的诱导作用,而高质量浓度表现为抑制作用,可使鱼体内的CAT失活,且这种变化幅度肝脏比肌肉大。GST的变化规律为先升高后降低,即苯酚对罗非鱼体内的GST具有先诱导后抑制的作用。研究表明,0.002mg·L-1质量浓度以下的苯酚对罗非鱼没有生化毒性影响,罗非鱼组织中的CAT和GST可作为生物标志物来评价酚类污染物对鱼类的生化毒性。  相似文献   
10.
为了探索克雷伯氏杆菌的重金属抗性机理,提取Ag+、Pb2+和Cr3+胁迫后克雷伯氏杆菌的胞内蛋白,利用双向电泳技术和质谱技术分离、解析、鉴定特异性蛋白质斑点。结果表明,不同重金属离子胁迫后克雷伯氏杆菌的蛋白质斑点在数量和表达量上有较大的差异,但存在3个表达新增和10个表达关闭的共同蛋白斑点,质谱鉴定结果表明特异表达蛋白质与抗氧化系统、能量代谢调节机制有关。研究表明,克雷伯氏杆菌受到重金属胁迫后启动过氧化氢酶的表达,同时通过关闭胞内原有碳分解代谢途径、开启磷酸戊糖途径等相应的应急系统获取能量,降低重金属离子对细胞的毒害作用。  相似文献   
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