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41.
This study examined the adverse effects of TiO2 nanoparticle (nano-TiO2) on the kidney and liver of Wistar rats. Changes of serum biochemical parameters and pathological lesions indicated that liver and kidney were significantly affected in animals treated with 50?mg?kg?1 of nano-TiO2. The inverse relationship between the level of reactive oxygen species and the activities of superoxide dismutase, catalase, and glutathione peroxidase indicates that nano-TiO2 induces oxidative stress. A significant increase in the apoptosis of liver and kidney in a dose-dependent manner was also observed. The ultrastructural observations confirmed the internalization of nano-TiO2 and their direct involvement in the mitochondria-mediated cytotoxicity. Data indicated that nano-TiO2 induce oxidative stress which produces genotoxicity such as oxidative DNA damage, micronuclei (MN) induction, and cell apoptosis in liver and kidney.  相似文献   
42.
In vertebrates and invertebrates Zn exist as complexed compounds with metallothioneins. However, its cellular level effects and metabolic fates are scantly documented. In the elucidation of this fact, EM results on hepatic cellular alterations in fish under lethal dose exposure at 4.0 ppm over a week is illustrated.

A large number of lysosomes in hepatic cells prevailed on exposure to Zn in its sulfate form. Evidently, due to metal compound stress and cellular damage lysosomal activity is augmented. The lysosomes harboured digestible material, presumably the aforementioned substrates. Contrary to it, fat droplets prevailed while glycogen depletion is noticeable. Unlike the effects of Hg, the nuclei were normal with granular chromatin and prominent nucleoli. However, the mitochondria contained some small intramitochondrial bodies. Similar to the effects of Hg, the cell membrane remained intact.

In vivo enzymatic studies indicated augmentation in catalase, acid‐ and alkaline‐phosphatases, while glucose‐6‐phosphatase is inhibited. However, only alkaline‐ and glucose‐6‐phosphatases are inhibited under in vitro conditions.

Thus, it is evident that Zn enhances cellular bioenergetic requirements culminating in glycogen depletion owing to stress, concomitantly envisaging inhibition of oxidative phosphorylation in the electron transport system.  相似文献   
43.
A field experiment was conducted to study the dissipation kinetics of herbicides pendimethalin and oxyfluorfen in black soil of peanut field at half recommended rate (HRE), recommended rate and double recommended rate as well as to assess their effects on soil microbial parameters and enzymatic activities. In addition, their role in the transformations and availability of some plant nutrients like nitrogen transformation (through ammonification and nitrification processes) and availability of phosphorous were also studied. Incorporation of these herbicides was found to stimulate the activity of soil microbial biomass carbon, fluorescein diacetate hydrolysing activity, alkaline phosphatase and ammonification rates, while dehydrogenase activity, acid phosphatase, nitrification rate and available phosphorous was adversely affected. However, urease remains almost unchanged except for little stimulation at later stages. Dissipation of pendimethalin and oxy?uorfen followed first-order reaction kinetics with half-life (T1/2) of 13.7–20.1 and 21.5–27.4 days, respectively. Residues of both herbicides persisted up to 60 days in the soil at all the doses except 45 days for pendimethalin at HRE.  相似文献   
44.
外源硒对黄瓜抗性、镉积累及镉化学形态的影响   总被引:3,自引:1,他引:3  
采用盆栽试验,在土壤Cd(20 mg·kg-1)污染条件下,测定了不同浓度的Na2Se O3(Se水平为0、0.5和1.0 mg·L-1)处理对2个黄瓜(Cucumis satiuus L.)品种(低Cd富集植物品种津优1号和高Cd富集品种燕白)生物量、丙二醛(MDA)含量、抗氧化酶活性及黄瓜体内Cd形态和Cd积累量的影响.结果表明,叶面喷施硒(Na2Se O3)后,黄瓜叶、茎、根、果实、植株干重,以及Cd含量和积累量在两个品种间的差异达到了显著性水平.随硒浓度的增加,燕白叶的丙二醛(MDA)含量逐渐增加,津优1号叶的丙二醛含量则逐渐减少;燕白根的丙二醛含量先增后降,津优1号根的丙二醛含量先降后增.喷施Na2Se O3后,黄瓜叶和根的CAT、SOD和POD活性呈现不同变化趋势.喷施外源硒降低了2个品种果实中不同形态Cd含量.叶面喷施Na2Se O3使黄瓜叶、茎、根和果实中的Cd含量分别下降了3.2%~17.9%、14.6%~28.2%、5.1%~18.5%和60.6%~75.8%.比较2个供试黄瓜品种,无论喷施Na2Se O3与否,黄瓜植株中Cd积累量以津优1号燕白.  相似文献   
45.
为评价多金属矿山废渣堆场生态修复过程中,废渣在先锋修复植物根系分泌的机酸参与下浸出液对周边环境生物的影响.以斑马鱼(Danio rerio)为受试生物,通过模拟添加典型先锋植物(黑麦草)根系分泌的有机酸(草酸和酒石酸)处理贵州威宁土法炼锌废渣,以废渣浸出液对受试生物抗氧化酶和乙酰胆碱酯酶(AchE)的不同响应为评价指标,研究各处理组对斑马鱼抗氧化系统、神经系统及组织学的影响.结果表明,两种有机酸的参与均会不同程度地降低炼锌废渣浸出液的pH,并导致废渣释放出更多重金属;暴露于有机酸参与的废渣浸出液14 d后,受试生物组织中的抗氧化酶受到显著影响,并因无法克服长时间的氧化应激最终引起丙二醇(MDA)在组织中累积;有机酸参与下废渣浸出液对斑马鱼具有明显的神经毒性,长时间暴露后受试生物出现游动迟缓、呼吸慢和鳃盖张合频率降低的现象;鳃组织存在上皮细胞水肿、增生或脱落、鳃丝充血和鳃小片扭曲或断裂的现象,而肌肉组织中出现更多肌纤维核增大、固缩和碎裂的现象.综上,选用适生性和耐受性较强、根系发达且有机酸分泌量较大的先锋植物来修复多金属废渣场地将可能促进废渣中重金属的释放并引起环境生物抗氧化系统和神经系...  相似文献   
46.
The aim of this study was to characterize biomarker responses in three-spined sticklebacks exposed to prochloraz (Pcz). For this purpose, adult sticklebacks were exposed for 2 weeks to prochloraz at 0, 10, 50, 100 and 500 μg/L prior to one week of depuration in clean water. At days 7, 14 and 21, several hepatic biomarkers were measured including 7-ethoxyresorufin-O-deethylase (EROD), glutathione-S-transferase (GST), glutathione peroxidase (GPx), catalase (CAT), total glutathione (GSH) content and thiobarbituric acid reactive substances (TBARS). Pcz induced a transient increase of antioxidant enzymes and a depletion of glutathione content during the first 7 days of exposure. This study showed that EROD activity and antioxidants were disrupted in a transient manner. GST was rapidly induced in a dose-dependent manner and this induction was persistent and observed also after depuration. GST appeared as a valuable biomarker to assess the exposure to Pcz.  相似文献   
47.
通过对3,5-二硝基水杨酸(DNS)法测定还原糖含量各影响因素的筛选,优化确定了显色时间8 min,稳定时间10 min,最佳波长490 nm下进行吸光度测定的检测方法;分析分别以葡萄糖和麦芽糖作为外加碳源时,降解菌Pseudomonas putida B-31的生长情况和共代谢降解典型药物苯扎贝特(BZF)的过程。结果表明,降解菌只有在外加碳源的条件下才可正常生长,而且其在葡萄糖环境中生长得更好;拟合得到的葡萄糖、麦芽糖和BZF代谢动力学结果显示,葡萄糖对BZF去除的促进作用更为明显,同时从葡萄糖培养基中降解菌所提取的酶比活力要高于麦芽糖培养基,分析原因可能是葡萄糖所诱导的降解菌关键酶活力更强,而且还可能会产生不同的蛋白质点位。  相似文献   
48.
硝基芳香化合物是环境中难降解的有机污染物之一 ,对环境的污染日益严重 ,利用生物技术对这类有机物进行降解是行之有效的新途径。针对几种单环硝基芳香化合物好氧降解的微生物、降解途径以及降解过程中的主要酶、降解性质粒、基因定位等分子遗传学的研究进展进行了综述  相似文献   
49.
50.
Cobalt is an essential element, but at high concentrations it is toxic. In addition to its well-known function as an integral part of cobalamin (vitamin B12), cobalt has recently been shown to be a mimetic of hypoxia and a stimulator of the production of reactive oxygen species. The present study investigated the responses of goldfish, Carassius auratus, to 96 h exposure to 50, 100 or 150 mg L−1 Co2+ in aquarium water (administered as CoCl2). The concentrations of cobalt in aquaria did not change during fish exposure. Exposure to cobalt resulted in increased levels of lipid peroxides in brain (a 111% increase after exposure to 150 mg L−1 Co2+) and liver (30-66% increases after exposure to 50-150 mg L−1 Co2+), whereas the content of protein carbonyls rose only in kidney (by 112%) after exposure to 150 mg L−1 cobalt. Low molecular mass thiols were depleted by 24-41% in brain in response to cobalt treatment. The activities of primary antioxidant enzymes, superoxide dismutase (SOD) and catalase, were substantially suppressed in brain and liver as a result of Co2+ exposure, whereas in kidney catalase activity was unchanged and SOD activity increased. The activities of glutathione-related enzymes, glutathione peroxidase and glutathione-S-transferase, did not change as a result of cobalt exposure, but glutathione reductase activity increased by ∼40% and ∼70% in brain and kidney, respectively. Taken together, these data show that exposure of fish to Co2+ ions results in the development of oxidative stress and the activation of defense systems in different goldfish tissues.  相似文献   
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