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Acute lung injury (ALI) is a serious disease with unacceptably high mortality and morbidity rates. Up to now, no effective therapeutic strategy for ALI has been established. Rutin, quercetin-3-rhamnosyl glucoside, expresses a wide range of biological activities and pharmacological effects, such as anti-inflammatory, antihypertensive, anticarcinogenic, vasoprotective, and cardioprotective activities. Pretreatment with rutin inhibited not only histopathological changes in lung tissues but also infiltration of polymorphonuclear granulocytes into bronchoalveolar lavage fluid in lipopolysaccharide (LPS)-induced ALI. In addition, LPS-induced inflammatory responses, including increased secretion of proinflammatory cytokines and lipid peroxidation, were inhibited by rutin in a concentration-dependent manner. Furthermore, rutin suppressed phosphorylation of NF-κB and MAPK and degradation of IκB, an NF-κB inhibitor. Decreased activities of antioxidative enzymes such as superoxide dismutase, catalase, glutathione peroxidase, and heme oxygenase-1 caused by LPS were reversed by rutin. At the same time, we found that ALI amelioration by chelation of extracellular metal ions with rutin is more efficacious than with deferoxamine. These results indicate that the protective mechanism of rutin is through inhibition of MAPK–NF-κB activation and upregulation of antioxidative enzymes.  相似文献   
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The superoxide-dismutase-like activity of a series of divalent metal saccharinates of general stoichiometry [MII(Sac)2(H2O)4]·2H2O (with MII=Mn,Fe,Co,Ni,Cu,Zn) has been investigated using the nitroblue tetrazolium O 2 reduction assay. The results show that all these complexes possess the capability to dismutate the superoxide anion generated in the xanthine/xanthine oxidase system. Interestingly, the greatest activity is shown by the corresponding copper complex. The results are discussed and compared with those obtained for native superoxide dismutase, which was tested under the same experimental conditions. Dedicated to Prof. Pedro J. Aymonino on the occasion of his 65th birthday.  相似文献   
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Foxtail millet (Pennisetum glaucum L.) is a vital crop that is planted as food and fodder crop around the globe. There is only limited information is present for abiotic stresses on the physiological responses to atrazine. A field experiment was conducted to investigate the effects of different atrazine dosages on the growth, fluorescence and physiological parameters i.e., malonaldehyde (MDA) and reactive oxygen species (ROS) (H2O2 and O2) in the leaves to know the extent of atrazine on oxidative damage of foxtail millet. Our experiment consisted of 0, 2.5, 12.5, 22.5 and 32.5 (mg/kg) of labeled atrazine doses on 2 foxtaill millet varieties. High doses of atrazine significantly enhanced ROS and MDA synthesis in the plant leaves. Enzymes activities like ascorbate peroxidase (APX) and peroxidase (POD) activities enhanced, while catalase (CAD) and superoxide dismutase (SOD) activities reduced with increasing atrazine concentrations. Finally atrazine doses at 32.5 mg/kg reduced chlorophyll contents, while chlorophyll (a/b) ratio also enhanced. Biomass, plant height, chlorophyll fluorescence parameters, minimal and maximal fluorescence (Fo, Fm), maximum and actual quantum yield, photochemical quenching coefficient, and electron transport rate are decreased with increasing atrazine doses.  相似文献   
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The procedure described allowed a convenient analysis of cyclic nucleotide phosphodiesterase. The different phosphodiesterase forms present in a crude cytosolic preparation from rat heart were separated by isoelectric focusing on a polyacrylamide gel plate. Phosphodiesterase activity bands were rendered evident by a specific staining method. They were then characterized by means of their substrate specificity and their sensitivity to selective phosphodiesterase inhibitors. The correspondence between the stain bands and the previously described activity peaks, obtained by a preparative technique and detected by radioisotopic enzyme assay, was also investigated.  相似文献   
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Stress granules (SG) are membrane‐less compartments involved in regulating mRNAs during stress. Aberrant forms of SGs have been implicated in age‐related diseases, such as amyotrophic lateral sclerosis (ALS), but the molecular events triggering their formation are still unknown. Here, we find that misfolded proteins, such as ALS‐linked variants of SOD1, specifically accumulate and aggregate within SGs in human cells. This decreases the dynamics of SGs, changes SG composition, and triggers an aberrant liquid‐to‐solid transition of in vitro reconstituted compartments. We show that chaperone recruitment prevents the formation of aberrant SGs and promotes SG disassembly when the stress subsides. Moreover, we identify a backup system for SG clearance, which involves transport of aberrant SGs to the aggresome and their degradation by autophagy. Thus, cells employ a system of SG quality control to prevent accumulation of misfolded proteins and maintain the dynamic state of SGs, which may have relevance for ALS and related diseases.  相似文献   
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采用生物毒性实验方法研究了氨氮对中华小长臂虾的急性毒性作用, 结果表明: 在温度为(18±1)℃, pH为7.3±0.1条件下, 氨氮对中华小长臂虾24h、48h、72h、96h 的半致死浓度(LC50)分别为565.47、371.16、291.16和272.50 mg/L, 安全浓度为 27.25 mg/L。转化为非离子氨的LC50分别为3.74、2.45、1.93 和1.80 mg/L, 安全浓度为0.18 mg/L。根据96h 的LC50和安全浓度按照等差数列设置5个氨氮浓度梯度, 分别60、100、140、180和220 mg/L, 研究氨氮胁迫对中华小长臂虾非特异性免疫指标的影响。结果显示: 在24h时, 除了220 mg/L的肌肉组织, 中华小长臂虾肝胰腺和肌肉中的超氧化物歧化酶(SOD)活性显著性高于对照组, 并具有明显的剂量效应, 在48—96h均回落到正常水平; 在24h时, 中华小长臂虾氨氮处理组中肝胰腺的酸性磷酸酶(ACP)与对照组未发生显著变化, 而碱性磷酸酶(AKP)则显著高于对照组, 在48—96h两者的140、180和220 mg/L处理组均显著低于对照组; 除了140 mg/L 处理组的ACP活性外, 肌肉中的ACP和AKP活性从24h开始就出现了显著性下降, 始终低于对照组。研究获得了氨氮对中华小长臂虾的急性毒性结果和在高氨氮胁迫下非特异性免疫指标的变化规律, 发现中华小长臂虾对氨氮具有较强的耐受性, 但高浓度的氨氮会对中华小长臂虾的免疫酶活性产生抑制作用, 研究结果可为中华小长臂虾健康养殖发展提供科学依据。  相似文献   
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Resistance to therapy-mediated apoptosis in inflammatory breast cancer, an aggressive and distinct subtype of breast cancer, was recently attributed to increased superoxide dismutase (SOD) expression, glutathione (GSH) content, and decreased accumulation of reactive species. In this study, we demonstrate the unique ability of two Mn(III) N-substituted pyridylporphyrin (MnP)-based SOD mimics (MnTE-2-PyP5+ and MnTnBuOE-2-PyP5+) to catalyze oxidation of ascorbate, leading to the production of excessive levels of peroxide, and in turn cell death. The accumulation of peroxide, as a consequence of MnP+ascorbate treatment, was fully reversed by the administration of exogenous catalase, showing that hydrogen peroxide is essential for cell death. Cell death as a consequence of the action of MnP+ascorbate corresponded to decreases in GSH levels, prosurvival signaling (p-NF-κB, p-ERK1/2), and in expression of X-linked inhibitor of apoptosis protein, the most potent caspase inhibitor. Although markers of classical apoptosis were observed, including PARP cleavage and annexin V staining, administration of a pan-caspase inhibitor, Q-VD-OPh, did not reverse the observed cytotoxicity. MnP+ascorbate-treated cells showed nuclear translocation of apoptosis-inducing factor, suggesting the possibility of a mechanism of caspase-independent cell death. Pharmacological ascorbate has already shown promise in recently completed phase I clinical trials, in which its oxidation and subsequent peroxide formation was catalyzed by endogenous metalloproteins. The catalysis of ascorbate oxidation by an optimized metal-based catalyst (such as MnP) carries a large therapeutic potential as an anticancer agent by itself or in combination with other modalities such as radio- and chemotherapy.  相似文献   
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