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21.
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   
22.
Abstract

Glutathione content and glutahione‐dependent enzymes were measured in the liver of two fish species, gudgeon (Gobio gobio) and roach (Rutilus arcasii), from the river Bernesga (Spain) caught downstream and upstream of the waste site of several chemical industries. Animals from contaminated sites display a reduced glutathione concentration and a tendency to the decrease of glutathione S‐transferase activity. Glutathione peroxidase activity was significantly elevated only in the liver of Gobio gobio and glutathione reductase activity in that of Rutilus arcasii. Our data indicate that the glutathione system constitutes a sensitive biochemical indicator of chemical pollution. Relative changes of glutathione and glutathione‐dependent enzymes in both fish species suggest a different susceptibility to toxins.  相似文献   
23.
iththeintroductionofagriculturalandindustrialdevelopmentandimprovementofhumanlife ,environmentalpollutionbecomesmoreandmoreofconcernforpeople.MeHgisoneoforganiclipidsoluble ,heavymetallicpollutants.Althoughitsbiologicaleffectswerestudiedinmanyfieldsbyre…  相似文献   
24.
Enzymatic electrolysis cell(EEC) has advantages over microbial electrolysis cell(MEC) due to the needless of microbe inoculation and high-efficiency of enzymatic reaction. In this study, an EEC was first applied to achieve the effective degradation of halogenated organic pollutants and dichloromethane(CH_2Cl_2) was utilized as a model pollutant. The results indicate that the degradation efficiency of CH_2Cl_2 after 2 hr reaction in the EEC was almost100%, which was significantly higher than that with enzyme(51.1%) or current(19.0%). The current induced the continuous regeneration of reduced glutathione(GSH), thus CH_2Cl_2 was degraded under the catalysis of GSH-dependent dehalogenase through stepwise dechlorination, and successively formed monochloromethane(CH_3Cl) and methane(CH_4). The kinetic result shows that with a current of 15 mA, the maximum specific degradation rate of CH_2Cl_2(3.77 × 10~(-3) hr~(-1)) was increased by 5.7 times. The optimum condition for CH_2Cl_2 dechlorination was also obtained with pH, current and temperature of 7.0, 15 mA and 35°C,respectively. Importantly, this study helps to understand the behavior of enzymes and the fate of halogenated organic pollutants with EEC, providing a possible treatment technology for halogenated organic pollutants.  相似文献   
25.
The functional state of the indicator species, the Gray mussel Crenomytilus grayanus (Bivalvia), has been analyzed in five areas of Peter the Great Bay exposed to anthropogenic pollution. The following indices of the state of mussels have been used: molecular biomarkers of energy metabolism—Na+,K+-ATPase, Mg2+-ATPase, and total ATPase activity—as well as the level of lipid peroxidation (LPO) and glutathione concentration in the hepatopancreas, gills, and gonads of mussels. The activity of ATPases, LPO level, and glutathione concentration significantly change in mussels from polluted areas relative to those in mussels from a conventionally unpolluted area (a bay in the Far Eastern State Marine Reserve). The molecular biomarkers used in the study provide reliable information on animal metabolism in impact areas. With consideration of the data obtained, it is concluded that the state of mussels in polluted areas is impaired.  相似文献   
26.
沙地云杉生态型同工酶研究   总被引:3,自引:0,他引:3  
沙地云杉是内蒙古地区特有树种,只分布于浑善达克沙地东部边缘;由于长期适应干旱生态条件,分化出3种土壤生态型,即紫果型、红果型和绿果型沙地云杉,并在很多生态、生理特征上表现出明显的差异.本文采用聚丙烯酰胺凝胶电泳技术,分析了3种生态型沙地云杉的过氧化物同工酶和酯酶同工酶的酶谱特征.结果表明:不管是过氧化物同工酶还是酯酶同工酶,紫果型沙地云杉的酶带条数最多,红果型其次,绿果型酶带条数最少.在酶带强度方面也有类似的结果,紫果型沙地云杉具有较多的强、次强、中带,红果型其次,绿果型最少.这在一定程度上表明,在干旱条件下产生的3种不同生态型沙地云杉,以紫果型对干旱抗性最强,绿果型最弱,红果型居于二者之间,这一结论将为沙地云杉的经营管理及品种选择提供科学依据. 图2参21  相似文献   
27.
IntroductionBeingatypicalpolycyclicaromatichydrocarbons(PAHs) ,benzo[a]pyrene(BaP)deservesseriousstudybecausePAHsarenowrecognizedasmajorenvironmentalpollutants .ExposuretoPaHsisvirtuallyunavoidableandisstronglysuspendedofbeingacausativefactorincertaintumo…  相似文献   
28.
Chiral, atropisomeric 2,2'-dihydroxy-1,1'-binaphthyl has been extensively used to direct asymmetric processes. Its key role in asymmetric catalysis has spurred efforts to synthesize it in the optically pure form, but the reported synthetic routes have a significant environmental impact. In an aqueous peroxydase-cyclodextrin system the oxidative coupling of 2-naphthol took place very rapidly in almost quantitative yield and resulted in an enantiomeric excess. This one-pot synthesis do not require any organic solvents and oxidising metal cations.  相似文献   
29.
Quantum dots enhance Cu2+-induced hepatic L02 cells toxicity   总被引:1,自引:0,他引:1  
As a new class of xenogenous nanoparticle,quantum dots (QDs) possess the potential to co-exist with Cu2+ in human liver.The combined toxicity is thus concerned.Considering QDs and Cu2+ are known ROS (reactive oxygen species) inducer,we investigated the combined oxidative stress and corresponding protective strategy using human hepatic L02 cells.The results demonstrated that the presence of a small amount of MPA-CdTe QDs (2 μg/mL) in a Cu2+ solution (2.5-20 μg/mL) resulted in a higher toxicity with up to 8-fold cell viability decrease,which was accompanied by cell morphology changes.The combined toxicity was then confirmed as ROS associated oxidative stress with up to 300% and 35% increase of the intracellular ROS level and glutathione S-transferase (GST) activity,respectively.N-acetylcysteine (NAC) can also provide almost complete protection against the induced toxicity.Therefore,the ROS associated oxidant injury might be responsible for the QDs-Cu2+/Cu2+ induced toxicity and could be balanced through cytoprotective antioxidant enzyme GST.  相似文献   
30.
许多具有氧化作用的空气污染物,均能使细胞产生氧化损伤,使胸腺基质淋巴生成素(thymic stromal lymphopoietin,TSLP)含量上升。而TSLP是一种启动过敏性炎症的重要因子,会导致哮喘等疾病发生率的上升。在本研究中用过氧化氢(H_2O_2)模拟具有氧化作用的空气污染物进行染毒,研究细胞氧化应激水平的变化,并讨论还原型谷胱甘肽(GSH)对细胞受氧化损伤的保护作用。将大鼠支气管上皮细胞(RTE)分组培养,每组设置6个平行实验,分别用低、中、高剂量H_2O_2染毒3 h;高剂量设置1个重复,作为保护组,在染毒前用GSH保护2 h。结果显示,高剂量组H_2O_2(3.2 mmol·L~(~(-1)))染毒的细胞,其细胞活力下降(P0.01),丙二醛(MDA)水平上升(P0.01),TSLP水平上升(P0.05),与之相比,用GSH保护后的同剂量染毒组,上述指标得到全面缓解(P0.01)。这表明高浓度的H_2O_2会损伤细胞活力,并使MDA及TSLP水平上升,而GSH对TSLP及MDA的升高有极显著的抑制作用,即对细胞有一定的保护作用。  相似文献   
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