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11.
The effects of mercuric chloride (Hg) on lipid peroxidation (LPO), glutathione reductase (GR), glutathione peroxidase (GPx), superoxide dismutase (SOD) and glutathione (GSH) levels in different organs of mice (CD-1) were evaluated. Mice were exposed (2 days/week) to 0.0 (control), 0.8 (low) and 8.0 (mid) and 80.0 (high) gHg/kg/day for 2 weeks. The high dose group was excluded from the study due to high mortality. LPO levels in kidney, testis and epididymus at low and mid doses; GR and GPx levels in testis at mid dose; SOD levels in brain and testis at both doses, liver and epididymus at mid dose; GSH levels in testis at both doses were significantly increased compared to their controls. However, the GR levels in kidney at both doses and in epididymus at mid dose; GPx levels in kidney and epididymus and SOD levels in kidney at both the doses; GSH levels in epididymus at mid dose were significantly decreased compared to their control. Body weight gain and food efficiency were significantly reduced (<0.05) in mid dose. These results indicated that Hg treatment enhanced LPO in all tissues, but showed significant enhancement only in kidney, testis and epididymus suggesting that these organs were more susceptible to Hg toxicity. The increase in antioxidant enzyme levels in testis could be a mechanism protecting the cells against reactive oxygen species.  相似文献   
12.
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   
13.
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   
14.
iththeintroductionofagriculturalandindustrialdevelopmentandimprovementofhumanlife ,environmentalpollutionbecomesmoreandmoreofconcernforpeople.MeHgisoneoforganiclipidsoluble ,heavymetallicpollutants.Althoughitsbiologicaleffectswerestudiedinmanyfieldsbyre…  相似文献   
15.
锰氧化微生物能催化氧化MnII生成锰氧化物(MnIV&III),而生成的锰氧化物可强化水处理体系(如锰砂滤池、湿地)中的微量有机污染物降解及底泥中甲烷的厌氧氧化,因而受到广泛研究.从环境中分离出更多种属和生态位的锰氧化菌是生物强化环境中锰氧化过程的重要基础.依据锰氧化菌株对低浓度营养物的潜在偏好,本研究梯度稀释常用的锰氧化菌培养基(PYG培养基),配置出5级营养物梯度浓度的培养基.相对于原培养基,从较低浓度的4级培养基中多分离出6个菌属的锰氧化菌株,提高了锰氧化菌株的分离效率.分离出的Pseudoxanthomonas(假黄色单胞菌属)菌属的锰氧化菌株(Pseudoxanthomonas mexicana S5-3-5X),属中文文献首次报道.研究发现该菌株能在环境常见条件(pH 6.0~7.8、低营养物浓度(如稀释5~625倍PYG培养基)、50 μmol·L-1 ~1.6 mmol·L-1的MnII浓度)生长并产生锰氧化活性;可以产生胞外超氧化物和锰氧化蛋白等锰氧化活性物质;基因组具有编码锰氧化模式菌株Pseudomonas putida GB-1的3个MnII氧化蛋白的同源基因,并且具有降解一些有机污染物的代谢通路.因此,该菌株具有较好的工程应用潜力.  相似文献   
16.
大蒜培养细胞对水杨酸的应答比对温度和水分胁迫的应答更为强烈,其主要特征是抗氧化酶类超氧化物歧化酶的大量生成,同时还观察到水杨酸对冷胁迫或热休克介导的酶诱导作用的强化.上述结果暗示着自由基的生成是环境胁迫作用于植物细胞的机制之一,水杨酸诱导产生的抗氧化活性高于冷胁迫或热休克.这表明化学胁迫可能以一种与物理胁迫不同的方式诱导超氧化物歧化酶同工酶的生成  相似文献   
17.
细菌SOD对微生物紫外光辐射损伤的恢复作用   总被引:10,自引:0,他引:10  
将培养至对数中期的大肠杆菌、钝齿棒杆菌和啤酒酵母等3种微生物的细胞适度稀释液,分别涂布于培养皿上使受紫外光照射,在细胞受辐射后死亡率大于90%时停止照射,立即加入一定剂量的细菌超氧化物岐化酶(SOD),以观察SOD对微生物活力的恢复效应.结果表明,SOD可使受辐照的细胞存活率显著提高,且量效关系明显,而照前添加SOD则无上述效应.检测表明,紫外光照射可引发细菌的超弱发光,且该种超弱发光可因氧气的充入而瞬间增强,鲁米诺也能增强这种超弱发光,加入甘露醇对发光无影响.当紫外光照射后加入SOD能使发光强度大为减弱,表明此种超弱发光与的活动有关,并对SOD拮抗紫外线杀菌的机理作了讨论.  相似文献   
18.
The effects of di erent phosphate-amendments on lead (Pb) uptake, the activities of superoxide dismutase (SOD) and the level of malondialdehyde (MDA) in cauliflower (Brassica oleracea L.) in contaminated soils with 2500, or 5000 mg P2O5/kg soil of hydroxyapatite (HA), phosphate rock (PR), single-superphosphate (SSP) and the mix of HA/SSP (HASSP) were evaluated in pot experiments. Results showed that the Pb concentrations in shoots and roots decreased by 18.3%–51.6% and 16.8%–57.3% among the treatments respectively compared to the control samples. The e ciency order of these phosphate-amendments in reducing Pb uptake was as follows: HASSPt HA > SSP t PR.With the addition of SSP, HA and the mix of HA/SSP, the SOD activity in shoot was reduced markedly (P < 0.05) compared with that in the control group. For example, the SOD activities in shoot by the treatments of HASSP, SSP, and HA in 5000 mg P2O5/kg were found to be only 51.3%, 56.2%, and 56.7%, respectively. Similar e ects were also observed on the level of MDA in the shoots with a decrease in 24.5%–56.3%. The results verified the inference that phosphate compounds could be used to reduce the plant uptake of Pb and resist the Pb stress in the plant vegetated in Pb-contaminated soils.  相似文献   
19.
A Gram-negative, chromium(VI) tolerant and reductive strain CTS-325, isolated from a Chinese chromate plant, was identified as Ochrobactrum anthropi based on its biochemical properties and 16S rDNA sequence analysis. It was able to tolerate up to 10 mmol/L Cr(VI) and completely reduce 1 mmol/L Cr(VI) to Cr(III) within 48 h. When the strain CTS-325 was induced with Cr(VI), a protein increased significantly in the whole cell proteins. Liquid chromatography tandem mass spectrometry (LC-MS/MS) analysis revealed that this protein was a superoxide dismutase (SOD) homology. The measured superoxide dismutase activity was 2694 U/mg after three steps of purification. The SOD catalyzes the dismutation of the superoxide anion (O2·−) into hydrogen peroxide and molecular oxygen. This protein is considered to be one of the most important anti-oxidative enzymes for O. anthropi as it allows the bacterium to survive high oxygen stress environments, such as the environment produced during the reduction process of Cr(VI).  相似文献   
20.
基于苯酚降解中间产物(苯醌)、酸性甲基橙的目标化合物,研究了苯醌类与苯醌亚胺类在光/Fenton体系中的降解特性,分析了苯醌及酸性甲基橙的光敏特性,测定了光敏剂存在的情况下日光/Fenton和UV/Fenton体系中·OH的产量.结果表明,苯醌类光解,由于其光敏性好,能促进日光体系产生更多的·OH,日光/Fenton法好于UV/Fenton法.苯醌亚胺类降解,浓度较低时,UV/Fenton法好,浓度较高时,日光/Fenton法好,造成这种现象的主要原因是苯醌亚胺类光敏性一般,浓度低时日光体系中·OH的产量少于紫外体系,但苯醌亚胺类降解过程中有苯醌类生成,苯醌类的光敏性比苯醌亚胺类好,苯醌亚胺类浓度越高,其降解产物中苯醌类越多,进而导致日光体系中1O2、O2-·和·OH的产量多于紫外体系.  相似文献   
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