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1.
Antioxidants have possible therapeutic value in neurodegenerative disorders, although they may have pro-oxidant effects under certain conditions. Glutathione (GSH) is a key free radical scavenger. N-acetylcysteine (NAC) bolsters GSH and intracellular cysteine and also has effective free radical scavenger properties. The effects of chronic NAC administration (50 mg/kg/day, 500 mg/kg/day, 1500 mg/kg/day × 21 days) on cellular markers of oxidative status was studied in striatum of healthy male Sprague-Dawley rats as well as in animals with apparent striatal oxidative stress following chronic haloperidol treatment (1.5 mg/kg/day × 3 weeks). In non-haloperidol treated animals, NAC 50 and 500 mg/kg did not affect oxidative status, although NAC 1,500 mg/kg significantly increased striatal superoxide levels, decreased lipid peroxidation and increased consumption of reduced glutathione (GSH). Haloperidol alone evoked a significant increase in superoxide and lipid peroxidation. All NAC doses blocked haloperidol induced increases in superoxide levels, while NAC 500 mg/kg and 1,500 mg/kg prevented haloperidol-associated lipid peroxidation levels and also increased the GSSG/GSH ratio. NAC may protect against conditions of striatal oxidative stress, although possible pro-oxidative actions at high doses in otherwise healthy individuals, e.g. to offset worsening of neurodegenerative illness, should be viewed with caution.  相似文献   

2.
本文旨在研究姜黄素(CRC)对双酚A(BPA)诱导的小鼠卵巢氧化损伤的保护作用。将28日龄雌性小鼠分为对照组、姜黄素组、双酚A组和双酚A加姜黄素组,连续灌胃6周。收集卵巢,通过活性氧(ROS)水平的检测、卵巢闭锁卵泡的观察以及3种关键抗氧化酶表达和活性的测定,研究姜黄素对双酚A诱发的卵巢氧化损伤的保护作用及机制。结果显示,与对照组相比,双酚A暴露后明显增加了卵巢的活性氧水平,造成氧化应激,提高了卵巢中有腔卵泡闭锁比例。与双酚A组相比,双酚A和姜黄素共同处理组降低了卵巢的活性氧水平和卵巢中有腔卵泡闭锁比例。双酚A暴露降低了卵巢超氧化物歧化酶(SOD)、谷胱甘肽过氧化物酶(GPx)以及过氧化氢酶(CAT)的表达和活性,姜黄素逆转了双酚A诱导的3种抗氧化酶表达和活性的下降。结果表明,姜黄素可逆转双酚A通过氧化应激造成的卵巢损伤。  相似文献   

3.
Abstract: The effects of lithium on muscarinic cholinoceptor-stimulated phosphoinositide turnover have been investigated in rat hippocampal, striatal, and cerebral cortical slices using [3H]inositol or [3H]cytidine prelabelling and inositol 1,4,5-trisphosphate [lns(1,4,5)P3] and inositol 1,3,4,5-tetrakisphosphate [lns(1,3,4,5)P4] mass determination methods. Carbachol addition resulted in maintained increases in lns(1,4,5)P3 and lns(1,3,4,5)P4 mass levels in hippocampus and cerebral cortex, whereas in striatal slices these responses declined significantly over a 30-min incubation period. Carbachol-stimulated lns(1,4,5)P3 and lns(1,3,4,5)P4 accumulations were inhibited by lithium in all brain regions studied in a time-and concentration-dependent manner. For example, in hippocampal slices significant inhibitory effects of LiCl were observed at times > 10 min after agonist challenge; IC50 values for inhibition of agonist-stimulated lns(1,4,5)P3 and lns(1,3,4,5)P4 accumulations by lithium were 0.22 ± 0.09 and 0.33 ± 0.13 mM, respectively. [3H]CMP-phosphatidate accumulation increased in all brain regions when slices were stimulated by agonist and lithium. The ability of myo-inositol to reverse these effects, as well as lithium-suppressed lns(1,4,5)P3 accumulation, implicates myo-inositol depletion in the action of lithium in the hippocampus and cortex at least. The results of this study suggest that although significant differences in the magnitude and time courses of changes in inositol (poly)phosphate metabolites occur in different brain regions, lithium evokes qualitatively similar enhancements of [3H]inositol monophosphate and [3H]CMP-phosphatidate levels and inhibitions of lns(1,4,5)P3 and lns(1,3,4,5)P4 accumulations. However, the inability of striatal slices to sustain carbachol-stimulated inositol polyphosphate accumulation in the absence of lithium and the inability to reverse effects with myo-inositol may indicate differences in phosphoinositide signalling in this brain region.  相似文献   

4.
Extracellular levels of acetylcholine (ACh) were measured in the nucleus accumbens (NAC), striatum (STR), and hippocampus (HIPP) using microdialysis in 30-min intervals before, during, and after free-feeding in 20-h food-deprived rats. The effects on ACh in the NAC and STR were also observed in response to water intake in 20-h water-deprived animals. Neostigmine was used in the perfusate to improve ACh recovery. Basal ACh was sensitive to tetrodotoxin and low calcium, and therefore largely neuronal in origin. Feeding caused a 38% increase in extracellular ACh in the NAC and no change in the STR or HIPP. Dopamine was also increased in the NAC (48%) and to a lesser extent in the STR (21%) following feeding. Drinking caused 18-20% increases in ACh release in both the NAC and STR. In a separate experiment, ACh release in the NAC was monitored in 10-min intervals during free-feeding; ACh increased in the interval immediately following maximal food intake. These results suggest a site-specific increase in ACh release following feeding that cannot be solely attributed to the activation associated with this behavior.  相似文献   

5.
Song L  Zheng J  Li H  Jia N  Suo Z  Cai Q  Bai Z  Cheng D  Zhu Z 《Neurochemical research》2009,34(4):739-745
Mitochondrion, the primary source of reactive oxygen species (ROS), is also the target of ROS. 8-Hydroxy-2′-deoxyguanosine (8-OH-dG) is the major end-product of damaged DNA caused by ROS. In our previous studies, we showed that prenatal stress (PNS) preferentially caused cognitive dysfunction and increased ROS in the hippocampus of female offspring rats. The present study aimed to determine 8-OH-dG level of mitochondria in order to elucidate the mechanism of hippocampal pyramidal neuronal damage and cognitive dysfunction induced by PNS. Pregnant rats were divided into two groups: control group (undisturbed) and PNS group (exposed to a restraint stress for 7 days at the late stage of gestation). Offspring rats were divided into four groups: female-control group, male-control group, female-stress group, male-stress group and used at 30-day-old after their birth. The content of 8-OH-dG was determined by high performance liquid chromatography-electrochemical detection (HPLC-ECD). The results showed that the contents of 8-OH-dG in female and male prenatal stressed offspring were significantly higher than that in their respective controls (< 0.001). 8-OH-dG level was significantly higher in the female-stress group than in the male-stress group (< 0.05), whereas there was no any gender-dependent difference in the control groups. These results suggest that accumulation of oxidative mitochondrial DNA damage may play an important role in PNS-induced cognitive dysfunction in female offspring rats. Special issue article in honor of Dr. Akitane Mori.  相似文献   

6.
We investigated the effects of H2O2-induced oxidative stress on the delayed-rectifier current (IKDR), neuronal physiological and morphological properties. Measurements were obtained from hippocampal CA1 neurons in control solution and from the same neurons after exposure to oxidative stress (short- and long-term H2O2 external applications at 0.1, 1, and 10 mM). With short-term (6 min) H2O2 (1 mM) treatment, IKDR measured in the H2O2-containing solution (778 ± 23 pA, n = 20), was smaller than that measured in the control Ca2+-free Hepes solution (1,112 ± 38 pA, n = 20). Coenzyme Q10 (0.1 mM) pretreatment prevented the H2O2-induced inhibition of IKDR. With long-term (40, 80 min) H2O2 (0.1, 10 mM) treatment, the neuron lost its distinctive shape (rounded up) and the neurite almost disappeared. These results suggest that oxidative stress, which inhibits IKDR, can alter neural activity. The morphological changes caused by H2O2 support the idea that oxidative stress causes intracellular damage and compromises neural function.  相似文献   

7.
目的:探讨银杏内酯B对过氧化氢(H_2O_2)诱导的星形胶质细胞损伤的保护作用及可能机制。方法:星形胶质细胞传代培养,分为阴性对照组(以正常培养液培养),氧化损伤组(100μmol·L~(-1)的H_2O_2作用12 h),银杏内酯B低剂量组(1×10~(-6) mol·L~(-1)银杏内酯B孵育24 h后,加入H_2O_2作用12 h)和银杏内酯B高剂量组(1×10~(-4) mol·L~(-1)银杏内酯B孵育24 h后,加入H_2O_2作用12 h),MTT比色法检测细胞存活率,流式细胞仪检测细胞活性氧(ROS)水平,分光光度计检测上清液中超氧化物歧化酶(SOD)、如谷胱甘肽过氧化物酶(GSH-Px)活性及丙二醛(MDA)的含量。结果:银杏内酯B能抑制氧化损伤引起的细胞活性的下降,降低星形胶质细胞内ROS的生成,促进SOD、GSH-Px水平的升高及MDA水平的下降。结论:银杏内酯B通过提高细胞内SOD、GSH-Px含量,降低细胞内MDA含量发挥其较强的抗氧化作用,从而为其用于治疗神经系统疾病提供可靠的实验依据。  相似文献   

8.
体外研究表明,白灵菇多糖具有较高的清除自由基能力。然而,白灵菇多糖在体内对运动引起的氧化应激的影响尚不清楚。本研究将100只SPF级雄性昆明小鼠随机分为5组,低剂量组、中剂量组和高剂量组昆明小鼠分别按照50 mg·kg^-1·d^-1、100 mg·kg^-1·d^-1和200 mg·kg^-1·d^-1的剂量灌胃白灵菇多糖溶液,对照组和模型组昆明小鼠灌胃等体积的蒸馏水,连续灌胃4周。研究显示,白灵菇多糖溶液以浓度依赖性方式提高了小鼠的力竭游泳时间(p<0.05)。白灵菇多糖以浓度依赖性方式降低了小鼠血清AST、ALT和CK水平,并显著减少了骨骼肌的病理变化(p<0.05)。白灵菇多糖以剂量依赖方式升高力竭游泳小鼠体内SOD、CAT和GSH-PX水平,并降低了MDA水平(p<0.05)。此外,对小鼠灌胃白灵菇多糖可以剂量依赖方式提高小鼠血清总抗氧化活性(p<0.05)。上述研究表明,白灵菇多糖可有效提高力竭游泳小鼠的抗疲劳能力,减轻运动引起的心肌、肝脏、骨骼肌和氧化应激损伤,提高机体的抗氧化能力。  相似文献   

9.
Oxidative stress is believed to contribute to neurodegeneration following ischemic injury. The present study was undertaken to evaluate the possible antioxidant neuroprotective effect of curcumin (Cur) on neuronal death of hippocampal CA1 neurons following transient forebrain ischemia in rat. Treatment of Cur (200 mg/kg/day, i.p.) at three different times (immediately, 3 h and 24 h after ischemia) significantly (P<0.01) reduced neuronal damage 7 days after ischemia. Also, treatment of ischemic rats with Cur decreased the elevated levels of MDA and increased GSH contents, catalase and SOD activities to normal levels. In the in vitro, Cur was as potent as antioxidant (IC50 = 1 μM) as butylated hydroxytoluene. The present study demonstrates that curcumin treatment attenuates forebrain ischemia-induced neuronal injury and oxidative stress in hippocampal tissue. Thus treatment with curcumin immediately or even delayed until 24 h may have the potential to be used as a protective agent in forebrain ischemic insult in human.  相似文献   

10.
There are conflicts between the effects of free radical over-production induced by exercise on neurotrophins and brain oxidative metabolism. The objective of this study was to investigate the effects of intense physical training on brain-derived neurotrophic factor (BDNF) levels, COX activity, and lipoperoxidation levels in mice brain cortex. Twenty-seven adult male CF1 mice were assigned to three groups: control untrained, intermittent treadmill exercise (3 × 15 min/day) and continuous treadmill exercise (45 min/day). Training significantly (P < 0.05) increased citrate synthase activity when compared to untrained control. Blood lactate levels classified the exercise as high intensity. The intermittent training significantly (P < 0.05) reduced in 6.5% the brain cortex COX activity when compared to the control group. BDNF levels significantly (P < 0.05) decreased in both exercise groups. Besides, continuous and intermittent exercise groups significantly (P < 0.05) increased thiobarbituric acid reactive species levels in the brain cortex. In summary, intense exercise promoted brain mitochondrial dysfunction due to decreased BDNF levels in the frontal cortex of mice.  相似文献   

11.
It has been shown that emotional stress may induce oxidative damage, and considerably change the balance between pro-oxidant and antioxidant factors in the brain. The aim of this study was to verify the effect of repeated restraint stress (RRS; 1 h/day during 40 days) on several parameters of oxidative stress in the hippocampus of adult Wistar rats. We evaluated the lipid peroxide levels (assessed by TBARS levels), the production of free radicals (evaluated by the DCF test), the total radical-trapping potential (TRAP) and the total antioxidant reactivity (TAR) levels, and antioxidant enzyme activities (SOD, GPx and CAT) in hippocampus of rats. The results showed that RRS induced an increase in TBARS levels and in GPx activity, while TAR was reduced. We concluded that RRS induces oxidative stress in the rat hippocampus, and that these alterations may contribute to the deleterious effects observed after prolonged stress.  相似文献   

12.
Abstract: Regional 45Ca2+ accumulation and analysis of monoamines and metabolites in dissected tissues were used to localize, quantify, and characterize brain damage after intracerebral injections of Mn2+ into striatum and hippocampus. The specificity of Mn2+-induced lesions is described in relation to brain damage produced by local Fe2+or 6-hydroxydopamine (6-OHDA) injections. In striatum, Fe2+ and Mn2+ produced dose-dependent (0.05-0.8 μmol) dopamine (DA) depletion, with Fe2+ being 3.4 times more potent than Mn2+. Studies examining the time course of changes in monoamine levels in striatum following local application of 0.4 μmol of Mn2+ revealed maximal depletion of all substances investigated (except 5-hydroxyin-doleacetic acid) after 3 days. The effects on DA (87% depletion at day 3) and its major metabolites were most pronounced and lasted until at least 90 days (40% depletion), whereas serotonin and noradrenaline levels recovered within 21 and 42 days, respectively. In addition, levels of 3-methoxytyramine, which is used as an index of DA release, also recovered within 42 days, indicating a functional restoration of DA neurotransmission despite substantial loss of DA content. Intrastriatal Mn2+ (0.4 μmol) produced time-dependent 45Ca2+ accumulation in striatum, globus pallidus, entopeduncular nucleus, several thalamic nuclei, and substantia nigra pars reticulata ipsilateral to the injection site. In contrast, 6-OHDA injected at a dose equipotent in depleting DA produced significantly less 45Ca2+ accumulation in striatum and globus pallidus and no labeling of other brain areas, whereas Fe2+ (0.4 μmol) produced extensive 45Ca2+ accumulation throughout basal ganglia, accumbens, and cerebral cortex. In hippocampus, high Mn2+ (0.4 μmol) produced limited 45Ca2+ accumulation in subiculum and dentate gyrus, whereas low Fe2+ (0.1 μmol) produced widespread 45Ca2+ accumulation throughout hippocampus, thalamus, and cerebral cortex. It is concluded that (a) Mn2+ is selectively neurotoxic to pathways intrinsic to the basal ganglia, (b) intrastriatal injections can be used as a model for systemic Mn2+ intoxications, and (c) high endogenous Fe3+ and/or catecholamine levels potentiate the neurotoxicity of Mn2+.  相似文献   

13.
摘要 目的:探讨漏芦乙醇提取物(RUEE)对脂多糖(LPS)诱导的小鼠乳腺上皮细胞氧化损伤发挥保护作用。方法:采用体外培养的小鼠乳腺上皮细胞系 HC11 为模型,首先利用MTT法筛选RUEE的最佳作用浓度及检测LPS和RUEE对细胞活力的影响,然后用1 μg?mL-1 LPS单独处理,20、40、80 μg?mL-1的RUEE与 1 μg?mL-1 LPS 共处理 HC11细胞,检测氧化应激相关指标、抗氧化相关基因mRNA和蛋白表达的变化。结果:细胞活力实验确定20、40、80 μg?mL-1的RUEE作为后续试验的添加浓度。LPS诱导可显著提高HC11细胞内丙二醛(MDA)含量、一氧化氮(NO)水平、一氧化氮合酶(iNOS)活性(P<0.05);明显降低超氧化物歧化酶(SOD)、谷胱甘肽过氧化物酶(GPx)、过氧化氢酶(CAT)的活性和总抗氧化能力(T-AOC)(P<0.05);显著抑制核因子E2相关因子2(Nrf2)、血红素氧合酶1(HO-1)、NAD(P)H醌氧化还原酶1(NQO1)的mRNA及蛋白表达(P<0.05)。20、40、80 μg?mL-1的RUEE预处理后可明显下调LPS诱导的HC11细胞内MDA含量、NO水平及iNOS活性(P<0.05);显著提高SOD、GPx、CAT的活性及T-AOC(P<0.05);显著上调Nrf2、HO-1、NQO1 mRNA和蛋白表达(P<0.05)。结论:RUEE可以有效减轻LPS诱导的乳腺上皮细胞氧化损伤,这可能与RUEE能激活乳腺上皮细胞Nrf2进而促进抗氧化基因的表达有关。  相似文献   

14.
活性氧自由基作为脑内一类重要的病理因素直接或间接地参与脑缺血/再灌注的损伤过程。氧自由基不仅受到脑内促氧化酶与抗氧化酶间平衡的调节,同时也参与了细胞内信号转导通路,在神经元死亡中发挥着决定性作用。近年来,转基因及基因敲除鼠已广泛应用于这些影响活性氧自由基的形成和清除过程的酶类物质及各种介导细胞死亡与凋亡过程的蛋白质的研究中,为脑缺血/再灌注损伤治疗的基础及应用提供了必要条件。  相似文献   

15.
胰岛素对糖尿病大鼠肝细胞氧化损伤的影响   总被引:9,自引:1,他引:9  
利用四氧嘧啶建立糖尿病大鼠模型 ,研究了胰岛素对糖尿病大鼠肝细胞及线粒体氧化损伤的保护作用。结果表明 ,胰岛素 1U kg皮下注射 9d ,能明显降低肝组织谷丙转氨酶、谷草转氨酶、乳酸脱氢酶、黄嘌呤氧化酶的活性 ,显著提高肝组织丙二醛的含量及肝线粒体O· -2 (活性氧自由基 )的生成量 ,显著提高抗氧化酶谷胱甘肽过氧化物酶、超氧化物歧化酶的活性 ,提高肝线粒体H+ ATPase的合成活力 ,从而使受损的肝细胞功能得到改善  相似文献   

16.
目的 建立小鼠前胃癌模型,探讨番茄红素对小鼠前胃癌的抑制机制及对脂类和淋巴细胞DNA的抗氧化损伤作用.方法 昆明小鼠随机分成5组,实验3组饲喂高、中、低不同剂量的番茄红素饲料.阳性与正常对照组饲喂正常饲料,实验组与阳性组灌喂含人类致癌物苯并(a)芘B(a)P的色拉油(浓度为5 mg/mL),正常对照组给予相同剂量的色拉油,每周两次,共8次,建立前胃癌模型,24周后处死动物,观察肿瘤生长及脂类和淋巴细胞DNA的氧化损伤情况.结果 番茄红素具有明显的抗肿瘤作用,给予番茄红素后能降低前胃癌的发生率,可提高小鼠血清超氧化物歧化酶SOD、谷胱甘肽过氧化物酶GSH-Px活性,降低丙二醛MDA含量和减少淋巴细胞DNA的氧化损伤(P<0.05).结论 番茄红素具有明显抑制肿瘤生长的作用,其作用机制可能与增强机体抗氧化酶功能,降低脂类氧化产物MDA,减少淋巴细胞DNA损伤有关.  相似文献   

17.
目的观察热量限制培养条件下,SH-SY5Y细胞抗氧化应激损伤的能力。方法建立过氧化氢诱导的SH-SY5Y细胞损伤模型。体外培养SH-SY5Y细胞,分为对照组、损伤组(50、100、250、500、1 000μmol/L H2O2)、低糖组(2 g/L)、低糖+损伤组,进行细胞形态观察、测定各组细胞的噻唑蓝(MTT)代谢率、乳酸脱氢酶(LDH)漏出率。结果与对照组比较,(50、100、250、500、1 000)μmol/L H2O2损伤1 h后MTT代谢率测定细胞活力,50μmol/L组与对照组比较差异无统计学意义(P〉0.05);其他组与对照组比较,随着H2O2浓度的增加,细胞活力呈递减趋势,差异具有显著性(P〈0.01);选定250μmol/L H2O2组为损伤应激源。用低糖预处理细胞24 h,给与250μmol/L H2O2损伤1 h后测定MTT代谢率显示,与对照组比较,损伤组活力明显下降,低糖组活力上升(P〈0.01);与损伤组比较,低糖+损伤组活力明显上升(p〈0.01);继续培养至7 h发现,与对照组比较,低糖组活力上升(P〈0.01);与损伤组比较,低糖+损伤组活力明显上升(P〈0.01)。进一步检测LDH漏出率显示,损伤1 h后结果显示,与对照组比较,损伤组漏出率明显增加(P〈0.05),低糖组漏出率稍有减少(P〉0.05);与损伤组比较,低糖+损伤组漏出率明显减少(P〈0.01);继续培养7h显示,低糖7h组与低糖1 h组比较,漏出稍有增多(P〉0.05),低糖+损伤组7 h组与低糖+损伤组1 h比较漏出率稍有增加(P〈0.05);细胞形态学观察显示,未加损伤之前,低糖组的细胞形态,与对照组比较无明显改变。加入损伤药物1h后的细胞形态与对照组比较无明显改变。加入损伤药物7 h后的细胞形态,低糖组和对照组细胞突起伸展良好细长,损伤组可见细胞数目明显减少,死细胞多,突起回缩,细胞明显变圆,贴壁性不好,透光性差。结论热量限制能提高神经细胞的抗氧化应激能力,增加细胞生存率,降低死亡率。  相似文献   

18.
目的:探讨线粒体靶向抗氧化剂mitoTEMPO对糖尿病小鼠脂肪干细胞(Adipose-derived stem cells,ADSCs)氧化损伤的影响。方法:采用60%高脂饮食喂养雄性C57小鼠(4周龄)连续8周,并在高脂喂养第2周,对小鼠进行连续5天腹腔注射低剂量链脲佐菌素(streptozotocin,STZ)(25 mg·kg-1)制备2型糖尿病小鼠模型。喂养2周后,检测小鼠血浆葡萄糖水平等指标符合2型糖尿病标准者纳入实验。分别从正常小鼠与STZ诱导的糖尿病小鼠的腹股沟处皮下脂肪组织分离培养脂肪干细胞(ADSCs),并将其各分为4组:DMEM培养的正常ADSCs组(nADSCs组),DMEM培养的糖尿病ADSCs组(dADSCs组),TEMPO治疗的糖尿病ADSCs组(T-dADSCs组),mitoTEMPO治疗的糖尿病ADSCs组(mitoT-dADSCs组)。采用细胞计数试剂盒-8(CCK-8)检测细胞存活能力;油红-O和茜素红染色分别检测成脂细胞分化与成骨细胞分化能力;划痕实验和Transwell试验分别测定细胞迁移能力;DCF和mito SOX染色荧光成像分别检测细胞内和线粒体中的活性氧簇(Reactive oxygen species, ROS)水平。结果:①与nADSCs组相比,d ADSCs组的细胞活力明显下降(P0.05)、成骨细胞分化与成脂细胞分化程度明显下降(P0.05)、脂肪干细胞迁移能力明显下降(P0.05)、细胞内和线粒体中ROS水平明显升高(P0.05)。②与dADSCs组相比,T-dADSCs和mitoT-dADSCs组的细胞内和线粒体中的ROS水平明显降低(P0.05);与dADSCs组相比,mitoT-dADSCs组的成骨细胞分化与成脂细胞分化能力明显提升(P0.05),基本达到nADSCs组的分化水平;与dADSCs组相比,mitoT-dADSCs治疗组的细胞迁移能力显著升高(P0.05)、T-dADSCs组的细胞迁移能力增长无明显差异。结论:mitoTEMPO可以减轻糖尿病时线粒体内活性氧簇蓄积造成的脂肪干细胞的氧化应激损伤与功能紊乱。  相似文献   

19.
Although several advances have occurred over the past 20 years concerning refining the use and administration of electroconvulsive therapy to minimize side effects of this treatment, little progress has been made in understanding the mechanisms underlying its therapeutic or adverse effects. This work was performed in order to determine the level of oxidative damage at different times after the maintenance electroconvulsive shock (ECS). Male Wistar rats (250–300 g) received a protocol mimicking therapeutic of maintenance or simulated ECS (Sham) and were subsequently sacrificed immediately after, 48 h and 7 days after the last maintenance electroconvulsive shock. We measured oxidative damage parameters (thiobarbituric acid reactive species for lipid peroxidation and protein carbonyls for protein damage, respectively) in hippocampus, cortex, cerebellum and striatum. We demonstrated no alteration in the lipid peroxidation and protein damage in the four structures studied immediately after, 48 h and 7 days after a last maintenance electroconvulsive shock. Our findings, for the first time, demonstrated that after ECS maintenance we did protocol minimal oxidative damage in the brain regions, predominating absence of damage on the findings.  相似文献   

20.
Oxygen free radicals (ROS) of mitochondrial origin seem to be involved in aging. Whereas in other tissues complexes I or III of the respiratory chain contain the ROS generators, in this study we find that rat liver mitochondria generate oxygen radicals at complexes I, II, and III. Short-term (6 weeks) caloric restriction significantly decreased H2O2 production in rat liver mitochondria. This decrease in ROS production was located at complex I because it occurred with complex I-linked substrates (pyruvate/malate), but did not reach statistical significance with the complex II-linked substrate succinate. The mechanism responsible for the lowered ROS production was not a decrease in oxygen consumption. Instead, the mitochondria of caloric-restricted animals released less ROS per unit electron flow. This was due to a decrease in the degree of reduction of the complex I generator. Furthermore, oxidative damage to mitochondrial and nuclear DNA was also decreased in the liver by short-term caloric restriction. The results agree with the idea that caloric restriction delays aging, at least in part, by decreasing the rate of mitochondrial ROS generation and thus the rate of attack to molecules, like DNA, highly relevant for the accumulation of age-dependent changes.  相似文献   

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