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1.
4-methylimidazole (4MI) is a compound widely used in various industrial and consumer applications. The most important sources of exposure include chemical caramel coloring, ammoniated molasses, dyes and pigments, rube, cleaning and agricultural chemicals. Toxicity attributed to 4MI in foods has recently become a focus of research. Recent studies showed that 4MI induced adverse changes in various target tissues. Brain is known to be a target organ for 4MI-induced toxicity but its cytotoxic mechanisms have not yet been elucidated. In this study, experiments were divided into two parts: (1) using in vivo methodology, doses of 4MI at 100, 200, or 300 mg/kg were administered orally to mice daily for 14 to obtain brain mitochondria; and (2) utilizing in vitro methodology, brain mitochondria were incubated with 4MI at 400, 800, or 1600 μM concentrations. Subsequently, the neurotoxicity of 4MI was assessed using mitochondrial dysfunction tests, including reactive oxygen species (ROS) formation, mitochondrial membrane potential (MMP) collapse, mitochondrial swelling, and cytochrome c release. Our results from both in vivo and in vitro experiments on isolated brain mitochondria showed a significant decrease in complex II activity and also marked elevation in the ROS formation, MMP collapse, mitochondrial swelling, and enhanced release of cytochrome c. Data indicated that 4MI induced neurotoxicity through the impairment of electron transfer chain especially at complex II and elevated ROS formation leading to subsequent oxidative stress events including mitochondrial membrane depolarization, mitochondrial swelling, and release of cytochrome c, which is the starting point of mitochondrial-mediated apoptosis signaling and neurodegeneration.  相似文献   

2.
Role of mitochondrial dysfunction and oxidative stress has been well documented in various cognitive-related disorders such as Alzheimer's disease (AD). Evidence indicates that Aß formation impairs mitochondrial function and that mitochondrial dysfunction is an early event in the pathogenesis of AD. The present study was, therefore, designed to investigate the direct toxicity of Aß peptide on isolated mitochondria obtained from rat brain. Various mitochondrial toxicity/integrity parameters such as succinate dehydrogenase activity, reactive oxygen species (ROS) formation, mitochondrial membrane potential collapse (MMP), mitochondrial swelling, and cytochrome c release were measured following the addition of Aß peptide on isolated mitochondria and then, mitoprotective effect of aqueous extracts of Mangifera indica and Juglans regia against mitochondrial toxicity endpoints parameters induced by Aß peptide were assessed. Our results showed that exposure to Aß peptide (30 nM) in isolated brain mitochondria induced mitochondrial ROS formation, MMP collapse, mitochondrial swelling, and cytochrome c release which is the starting point of apoptosis signaling. All these mitochondrial toxic endpoints induced by Aß peptide inhibited by aqueous extracts of Mangifera indica (100–400 µg/ml) and Juglans regia (200–400 µg/ml). To our knowledge, this is one of the first apparent studies to claim directly targeting of brain mitochondria and induction of apoptosis by Aß peptide as a new hypothesis for etiology of AD and other related neurodegenerative diseases as well as mitopreventive role of common antioxidant nutritional products including walnut and mango.  相似文献   

3.
Depleted uranium (DU) is widely used in military anti-armor weapons. Recent evidence suggested that oxidative stress and mitochondrial dysfunction may contribute to DU-induced toxicity. However, the underlying mechanisms of DU toxicity in mitochondria are not well understood. In this study, liver mitochondria were obtained from Wistar rats treated with DU in the form of uranyl acetate (UA) (0.5, 1 or 2 mg/kg i.p.) using differential centrifugation. For in vitro experiments, control rat liver mitochondria were incubated with different concentrations of UA (50, 100 or 200 μM) for 1 hr. Mitochondrial reactive oxygen species (ROS) production, collapse of mitochondrial membrane potential, and mitochondrial swelling were examined by flow cytometry. Mitochondrial sources of ROS formation were determined using specific substrates and inhibitors. Extent of lipid peroxidation (LPO) and glutathione (GSH) oxidation, and also complex II and IV activities were detected via spectroscopy. Further, the concentration of ATP and ATP/ADP ratio was measured using luciferase enzyme and release of cytochrome c from mitochondria which was detected by ELISA kit. UA induced succinate-supported mitochondrial ROS production, elevated LPO levels, GSH oxidation, and mitochondrial complex II inhibition. UA also induced mitochondrial permeability transition and increase in cytochrome c release which subsequently disturbed oxidative phosphorylation and reduced the mitochondrial ATP concentration. Data suggest that mitochondrial oxidative stress and uncoupling of oxidative phosphorylation may play key roles in DU-induced hepatic toxicity.  相似文献   

4.
Antimony (Sb) accumulates in the liver which is one of the target organs for metal-mediated toxicity. Although toxicity of Sb was previously investigated, the precise mechanism of Sb-induced hepatotoxicity remains to be determined. The aim of this study was to examine the role of oxidative stress, and mitochondria in the induction of cell death by Sb. Our results showed that liver cell lysis induced by Sb is mediated by reactive oxygen species (ROS) formation, lipid peroxidation and decline of mitochondrial membrane potential (MMP). Antimony-induced ROS formation, lipid peroxidation and reduction of MMP were significantly diminished by antioxidants and ROS scavengers such as dimethyl sulfoxide and mannitol; mitochondrial permeability transition (MPT) pore sealing agents such as carnitine and trifluoperazine; and adenosine triphosphate (ATP) generator, L-glutamine. Antimony-induced ROS formation, lipid peroxidation and fall in MMP were potentiated by glutathione (GSH) depletion via n-bromoheptane. MPT pore sealing agents and ATP generator inhibited hepatotoxicity, indicating Sb-activated cell death via mitochondrial pathway. Pretreatment of hepatocytes with antioxidants and ROS scavengers also blocked cell death induced by Sb, whereas GSH depletion enhances Sb-induced cell death, suggesting that oxidative stress may be directly involved in the reduction of MMP. These findings contribute to a better understanding of the mechanisms that mediate Sb-induced cell death in isolated rat hepatocytes.  相似文献   

5.
Camptothecin (CPT), a broad spectrum antineoplastic agent, is known to induce oxidative stress and mitochondria are among the main sources of intracellular reactive oxygen species (ROS). We investigated the merit of vitamins E and C supplementation on CPT-induced mitochondrial alterations in vitro. Following treatment of isolated liver mitochondria with CPT, we assessed the mitochondrial membrane permeability transition (MPT), concentration of malondialdehyde, antioxidants and activities of the enzymes of the respiratory chain and Krebs cycle. Our results provide evidence that CPT caused mitochondrial swelling, increased lipid peroxidation and transition of mitochondrial permeability. The CPT lowered the levels of reduced mitochondrial thiols suggesting that thiol oxidation is the mechanism underlying CPT-induced MPT. Identical experiments were also performed after preincubating the mitochondria with vitamins E and C. It was found that vitamins E and C pretreatment inhibited the deleterious effects of CPT and loss of enzyme activity was restored by antioxidant supplementation. Our results suggest that the toxicity of CPT was mediated by an increase in ROS production by mitochondria. However, the addition of vitamins E or C ameliorated the oxidative stress. We propose that an attempt to counteract the deleterious consequences of chemotherapy with nutritional therapies may be a rational approach in superior patient care especially in a disease like cancer.  相似文献   

6.
A new series of 3-phenoxyazetidin-2-ones (β-lactams) were designed and synthesized for the evaluation as selective cyclooxygenase-2 (COX-2) inhibitors. In this study, the effects of a synthetic of β-lactam-structured COX-2 inhibitor with 4-(4-(methylsulfonyl)phenyl)-3-phenoxy-1-phenylazetidin-2-one on cell viability of cancerous lymphoblast isolated from patients diagnosed with acute lymphocytic leukemia (ALL) and normal lymphocytes collected from healthy donors were investigated. The viability % of cancer lymphoblast and normal lymphocyte treated 4-(4-(methylsulfonyl)phenyl)-3-phenoxy-1-phenylazetidin-2-one were tested with MTT assay. Apoptosis and necrosis were measured by double stains of annexin V and propidium iodide, and caspase-3 as a final mediator in apoptotic death measured by colorimetric assay. Mitochondria were isolated from both cancerous lymphoblast and normal lymphocytes to measure parameters of mitochondrial damage such as reactive oxygen species (ROS) formation, mitochondrial membrane potential decrease, swelling, and cytochrome c release following the administration of azithidine-2-one derivative, 4-(4-(methylsulfonyl)phenyl)-3-phenoxy-1-phenylazetidin-2-one. Our results showed that 4-(4-(methylsulfonyl)phenyl)-3-phenoxy-1-phenylazetidin-2-one inhibited proliferation of cancerous lymphoblast in a concentration-dependent manner by inducing apoptosis but not in normal lymphocytes. Treatment with azithidine-2-one derivative produced a rapid loss of mitochondrial transmembrane potential, stimulation of release of ROS and mitochondrial cytochrome c into cytosol, and subsequent induction of procaspase-9 processing. Data suggest that 4-(4-(methylsulfonyl)phenyl)-3-phenoxy-1-phenylazetidin-2-one-induced ROS production led to mitochondria-mediated death signaling that resulted in apoptosis in cancerous lymphoblast cells. The induction of apoptosis by azithidine-2-one compounds, such as 4-(4-(methylsulfonyl)phenyl)-3-phenoxy-1-phenylazetidin-2-one, may provide a mechanism for its cancer chemopreventive action in acute lymphocytic leukemia cells.  相似文献   

7.
Harmful algal blooms produced by the marine ichthyotoxic dinoflagellate Cochlodinium polykrikoides are responsible for mass mortalities of wild and farmed fish globally. This study compared the cytotoxic mechanisms of C. polykrikoides total extract on both trout and rat liver hepatocytes. Trout hepatocytes were more sensitive than rat hepatocytes against C. polykrikoides extract. The effective concentration 50 after 3 hour incubation (EC503hr) concentrations found for C. polykrikoides extract in trout and rat hepatocytes (i.e., 50% membrane lysis in 3 hr) were Eq. 1 cell/ml and Eq. 240 cell/ml, respectively. C. polykrikoides extract exposure in both isolated trout and rat hepatocytes resulted in membrane lysis, reactive oxygen species formation, glutathione depletion, collapse of mitochondrial membrane potential, ATP depletion, increase in adenosine diphosphate (ADP)/adenosine triphosphate (ATP) ratio, cytochrome c release into the hepatocyte cytosol, and activation of caspases cascade. Trout hepatocyte toxicity was also associated with lysosomal membrane injury. Mitochondrial permeability transition in both trout and rat hepatocytes produced cytochrome c release from the mitochondrial intramembrane space into the cytosol. Thus, the cytochrome c release triggered activation of caspase-3 and apoptosis. Finally, data demonstrated that C. polykrikoides extract may induce more apoptotic phenotype in rat than trout hepatocytes, which in the latter favored predominantly necrotic mode of cell death.  相似文献   

8.
氧化锌(ZnO)纳米粒子已被发现具有生物毒性,氧化应激被认为是最重要的因素之一。前期实验证实,ZnO纳米粒子能显著减少锰超氧化物歧化酶(Mn SOD)蛋白的表达,降低Mn SOD活性。本文通过检测乳酸脱氢酶(LDH)释放、线粒体活性氧(ROS)水平和膜电位(Δφm)、延迟整流钾电流变化和Na~+/K~+-ATP酶的表达及活性等变化,检测ZnO纳米粒子对小鼠光感受器细胞的细胞毒作用。结果表明,ZnO纳米粒子可显著增强小鼠光感受器细胞中LDH的释放、增加线粒体内ROS水平并下调Δφm、阻断延迟整流钾电流,同时降低Na~+/K~+-ATP酶的表达及活性,从而对小鼠视网膜光感受器细胞产生细胞毒作用,提示ZnO纳米粒子可通过线粒体通路引起氧化应激,从而抑制小鼠光感受器细胞Na~+/K~+-ATP酶表达和活性,产生细胞毒性,导致细胞死亡。本文的研究结果有助于理解ZnO纳米粒子引起细胞毒性的作用机理。  相似文献   

9.
Acrylamide (ACR) is a chemical frequently used in both industrial and synthetic processes and may be produced during food processing. ACR at very high concentrations is postulated to exert its toxicity through the stimulation of an oxidative stress. ACR in excessive doses induces the central nervous system, reproduction, and genetic toxicity. However, ACR effects on the liver, a major organ of drug metabolism, have not been adequately explored. In addition, the role of mitochondria in an ACR-mediated hepatotoxicity is still unclear. The aim of this study was to investigate the cytotoxic mechanisms attributed to ACR using isolated rat hepatocytes. Hepatocytes were isolated by the collagenase perfusion method and incubated with an EC502hr concentration of ACR for 3 hr. The EC502 hr of ACR on isolated rat hepatocytes was determined to be 1 mM. Based on our results, hepatocytes cytotoxicity of ACR (1 mM) was mediated by a reactive oxygen species formation and lipid peroxidation. Incubation of hepatocytes with ACR produced rapid hepatocyte glutathione depletion which is another marker of the cellular oxidative stress. ACR cytotoxicity was also associated with mitochondrial injury as evidenced by the decline of mitochondrial membrane potential and lysosomal membrane leakiness. Our results also showed that ACR induced caspase-3 activation, the final mediator of apoptosis signaling. These findings contribute to a better understanding underlying mechanisms involved in ACR hepatotoxicity originating from the oxidative stress and ending in mitochondrial/lysosomal damage and cell death signaling.  相似文献   

10.
探讨2,2',4,4'-四溴联苯醚(2,2',4,4'-tetrabromodiphenylether,BDE 47)对神经细胞Neuro-2a的毒性影响及机制。将Neuro-2a细胞暴露于浓度为6.25、12.5、25、50、100μmol·L-1的BDE 47,采用MTT法检测细胞存活率、荧光探针DCFH-DA检测细胞活性氧生成量、吖啶橙检测溶酶体膜通透性、罗丹明123检测细胞线粒体膜电位、Annexin V-FITC检测细胞凋亡、Western blot检测组织蛋白酶B(Cathespin B)表达。结果显示,与对照组相比,12.5、25、50、100μmol·L~(-1)BDE 47显著降低Neuro-2a细胞存活率和细胞线粒体膜电位(P0.05);6.25、12.5、25、50、100μmol·L~(-1)BDE 47显著诱导活性氧含量升高(P0.05),增加Neuro-2a细胞溶酶体膜通透性(P0.05),诱导Neuro-2a细胞凋亡(P0.05),升高Cathespin B蛋白表达(P0.05)。结果表明,BDE 47可能通过介导溶酶体-活性氧-线粒体环路,诱导Neuro-2a细胞凋亡。  相似文献   

11.
Although the cytotoxic effects of mercuric chloride (HgCl2) and methylmercury chloride (MeHg) have been extensively studied, the insoluble mercuric sulfide (HgS) has been the subject of fewer studies. Since the traditional Chinese mineral drug, cinnabar (containing >95% HgS) continues to be used as an ingredient for infant sedation, the pharmacological and toxicological effects of HgS need to be clarified. In previous experiments, HgS and cinnabar were shown to be absorbed from the gastrointestinal tract (GIT) and distributed in various tissues including the lungs. Thus, a preliminarily examination of whether HgS might exert any oxidative stress on a mouse lung was undertaken. HgS reduced GSH content and increased lipid peroxidation in the lung. Further studies on the cytotoxic effects and the possible mechanisms of action of HgS were compared with HgCl2 and MeHg in cultured lung fibroblast V79 cells. The results showed that HgS produced cytotoxicity at a concentration (400–1200 µM)in a dependent manner with IC50 of 795.6 µM, as compared to HgCl2 and MeHg, 8.1 µM and 5.9 µM, respectively. In addition, the HgS induced the phenomena of DNA fragmentation, increasing reactive oxygen species (ROS) and decreasing mitochondrial membrane potential, accompanied by decreased levels of intracellular ATP and GSH and higher lipid peroxidation levels, similar to HgCl2 and MeHg, but with different toxicokinetic properties. These findings provide evidence for understanding the mechanisms underlying the toxic effects of HgS.  相似文献   

12.
The impact of a methanolic extract of Ocimum sanctum leaves on isoproterenol-induced myocardial damage and its mechanism of action on mitochondrial function in male rats has been investigated. Administration of isoproterenol caused increased oxidative stress and mitochondrial damage leading to decreased production of adenosine triphosphate. Pre-treatment with the extract reduced the generation of the reactive oxygen species and increased the antioxidant status compared to an isoproterenol-treated group. There was enhancement in the activities of tricarboxylic acid cycle enzymes, electron transport chain components, and adenosine triphosphate production in the mitochondria of the extract pre-treated rats. Mitochondrial membrane damage induced by isoproterenol was also reduced, as evidenced by the increased mitochondrial membrane potential, decreased mitochondrial Ca2+ overload, and reduced release of cytochrome c. Hence, O. sanctum can protect the heart from isoproterenol-induced cardiac damage.  相似文献   

13.
Environmental metal toxins, generated through diverse anthropogenic activities, constitute one of the major contaminants that have led to global dispersion of these toxic metals in the ecosystem. Thallium is one of these widely dispersed metals that produce severe adverse effects on human and biological systems. The influence of thallium(I) and thallium(III) on the early events that trigger apoptosis signaling were examined in freshly isolated rat hepatocytes. In addition, the role of oxidative stress, and mitochondria in the induction of apoptosis were also investigated. Incubation of thallium(I) and thallium(III) with isolated rat hepatocytes generated reactive oxygen species (ROS), collapse of mitochondrial membrane potential, activation of caspases cascade, and appearance of apoptosis phenotype. Mitochondrial permeability transition (MPT) pore sealing agents (cyclosporine A and carnitine) and ATP generators (L-glutamine, fructose, and xylitol) inhibited the activation of caspase-3 and apoptosis, indicating that both the cations activated apoptosis signaling via mitochondrial pathway. Pretreatment of hepatocytes with antioxidants (α-tocopherol or deferoxamine) also blocked caspase-3 activation induced by these cations, suggesting that oxidative stress may be directly involved in a mitochondrial MPT pore opening and activation of caspases cascade. These findings contribute to a better understanding of the mechanisms that mediate thallium-induced apoptosis in isolated rat hepatocytes.  相似文献   

14.
It has often been suggested that ultrastructural properties of mitochondria are correlated with oxygen and sulfide levels from the environment, although careful analyses of this question are rare. In this study the ultrastructure and distribution of mitochondria in Tubificoides benedii, a marine oligochaete from sulfide-rich sediments, were investigated after a series of oxic, hypoxic and hypoxic–sulfidic (200 μM H2S) incubations up to 24 h. Succinate, one of the key endproducts of an anaerobic metabolism, was used as an indicator of mitochondrial anaerobiosis. Consistent differences in mitochondrial ultrastructure were not observed in any of the incubations, even after 24 h. Stereological parameters of mitochondria (volume density, surface density of the outer mitochondrial membrane, and specific surface) in epidermal and intestinal tissues of T. benedii were not affected by hypoxia or sulfide either. On the other hand, succinate concentrations increased significantly within 24 h under hypoxic and hypoxic–sulfidic conditions. Thus, experimental hypoxia and sulfide clearly caused mitochondrial anaerobiosis without affecting ultrastructure or distribution of mitochondria in T. benedii. Distinct differences in ultrastructural and stereological parameters were common between different tissues and between individuals, showing that different forms of mitochondria can occur within one species. Our results imply that a mitochondrial ultrastructure specific to thiobiotic animals does not appear to exist. Received: 4 August 1996 / Accepted: 20 September 1996  相似文献   

15.
铬(chromium)是一种在工业生产过程中广泛使用的重金属,进入人体后可导致急慢性中毒,具有神经毒性、基因毒性、致癌性和免疫毒性。了解六价铬(hexavalent chromium,Cr(Ⅵ))的细胞毒性,进一步探究Cr(Ⅵ)的毒作用机制,可为防治Cr(Ⅵ)对人群健康的损害提供实验依据。电压依赖性阴离子通道蛋白1(voltage-dependent anion channel-1,VDAC1)参与调控线粒体外膜通透性,影响细胞凋亡;同时VDAC1也是BCL-2家族的重要结合位点,它可与BAX/BAK相互作用形成孔道,使线粒体内的凋亡相关蛋白,如细胞色素C等,进入胞浆,引起细胞凋亡。但VDAC1影响细胞凋亡的确切路径与分子机制,目前尚未完全研究清楚。使用L02人正常肝细胞作为实验对象,通过慢病毒包装法建立VDAC1低表达细胞系,检测在相同浓度Cr(Ⅵ)处理的条件下,与非染毒组相比,不同受试细胞的生存率、凋亡情况、活性氧簇(reactive oxygen species,ROS)生成量、线粒体功能和凋亡诱导因子(AIF)的变化情况是否存在差异。结果表明,与VDAC1正常表达的细胞相比,VDAC1低表达组在Cr(Ⅵ)染毒的情况下,细胞生存率升高,凋亡率下降,细胞内ROS生成量减少,MPTP活性增加不明显,胞浆内细胞色素C(Cytochrome C,Cyt C)和AIF含量降低。上述研究结果表明VDAC1参与了由六价铬诱导的线粒体依赖性肝细胞凋亡,并且抑制VDAC1的表达可减轻因Cr(Ⅵ)暴露而引起的L02肝细胞损伤。  相似文献   

16.
逆境条件下植物体内产生并累积活性氧从而破坏植物组织结构与功能,同时植物也可以通过改变活性氧代谢相关酶活性清除活性氧而减轻活性氧伤害以适应环境胁迫。为研究铝胁迫下不同耐铝小麦品种(Triticum aestivum L.)在活性氧代谢上的差异及与小麦耐铝性的关系,本试验选用小麦品种ET8(耐铝型)、ES8(铝敏感型)为试验材料研究了不同耐铝小麦品种活性氧代谢变化上的差异。结果表明,50μmol·L-1铝处理24h,ET8和ES8活性氧含量显著升高,O2·ˉ产生速率增幅分别为10.5%和20.4%,H2O2含量增幅分别为3.3%和7.6%。ET8和ES8超氧化物歧化酶(SOD)活性增幅分别为11.9%和41.6%,过氧化物酶(POD)活性增幅为51.8%和77.8%,抗坏血酸过氧化物酶(APX)活性增幅为54.4%和29.1%,过氧化氢酶(CAT)活性增幅为32.9%和38.4%,谷胱甘肽还原酶(GR)活性增幅为83.1%和85.5%。虽然抗氧化酶活性增加后会清除一部分活性氧,但活性氧的累积仍然造成了膜脂的过氧化,ET8和ES8丙二醛(MDA)含量分别增加18.2%和50.0%,质膜透性也随着MDA含量的升高而增加,增幅分别为1.25倍和1.36倍。综上所述,不同耐铝品种间活性氧代谢的差异是小麦品种耐铝性差异显著的原因之一。  相似文献   

17.
Ultraviolet-B (UV-B) radiation generates an oxidative stress in plant cells due to excessive generation of reactive oxygen species (ROS). ROS can denature enzymes and damage important cellular components. In the present study, an important medicinal plant Acorus calamus (Sweet flag) was subjected to two doses of supplemental UV-B radiation (sUV-B): sUV1 (+ 1.8 kJ m(-2) d(-1)) and sUV2 (+3.6 kJ m(-2) d(-1)) to evaluate the relative response of antioxidant defense potential. Stimulation of activities of superoxide dismutase (SOD), catalase (CAT), ascorbate peroxidase (APX) and glutathione reductase (GR) was observed at initial growth period while the activities of CAT and SOD decreased at later age of sampling. sUV-B induced lipid peroxidation (LPO) was observed showing alteration of membrane properties. No definite trend of change was observed for ascorbic acid (AsA), while increments in thiol, proline, phenol and protein contents were observed due to sUV-B. Results suggested that sUV-B radiation may stimulate the enzymatic and non-enzymatic defense system of Acorus plants, showing its better adaptation at lower dose of sUV-B.  相似文献   

18.
以模式生物酵母菌为材料,研究铅对细胞的毒性效应,探讨胞内活性氧(ROS)和Ca~(2+)在铅诱导细胞死亡中的作用。结果显示,浓度为5~100 mg·L~(-1)的硝酸铅可降低酵母细胞活性,诱导酵母细胞死亡,随着铅浓度的提高和作用时间的延长,细胞死亡率增高。在铅处理组酵母细胞中,ROS和Ca~(2+)水平显著升高,线粒体膜电位明显下降;用1 mmol·L~(-1)的外源抗坏血酸(AsA)能降低铅引发的酵母细胞死亡,0.5 mmol·L~(-1)的钙离子螯合剂乙二醇双四乙酸(EGTA)或0.1 mmol·L~(-1)的质膜Ca~(2+)通道特异性抑制剂氯化镧(LaCl_3)亦可明显抑制铅引起的酵母细胞死亡。研究结果表明,铅诱发的酵母细胞死亡与处理组胞内ROS和Ca~(2+)升高有关,高浓度的Ca~(2+)可能通过诱导线粒体膜通透性转变孔道开放,或者高水平ROS可能损伤线粒体膜,致线粒体膜电位下降,继而激活相关下游信号导致细胞死亡。  相似文献   

19.
The use of organisms in biomonitoring studies allows the determination of the pollution levels, the assessment of the quality of the enviroment and the study of toxic effects of pollutants on the organisms. By studying the responses (biomarkers) of organisms, it is possible to assess the exposure and effects of pollutants. Land gastropods are widely used in relevant studies as they possess several characteristics that make them ideal for use as bioindicators. In the present study we sought to evaluate several biomarkers in the laboratory using snails of the species Cornu aspersum after the exposure to heavy metals (Cd, Hg) and a mixture of polycyclic aromatic hydrocarbons (PAHs) (anthracene, phenanthrene and naphthalene). The biomarkers studied were the following: lysosomic membrane stability using the neutral red retention assay (NRR), the production of reactive oxygen species (ROS) using the compound DCFH-DA and flow cytometry, lipid peroxidation using the TBARs assay that measures the concentration of malondialdehyde (MDA), protein carbonylation (–CO) using ELISA, and single strand breaks of DNA using the comet assay. Our results show significant differences in the responses between the control group and the groups that were exposed to pollutans, enhancing the role of Cornu aspersum as a promising bioindicator organism in terrestrial pollution studies with the use of the biomarkers applied.  相似文献   

20.
We demonstrated that environmentally relevant levels of UVA and UVB can reduce sperm motility (UVA: by 38–58%; UVB: by 42–85%; P < 0.05) and subsequently fertilisation success (UVA: by 38–72%; UVB: by 91–98%; P < 0.05) of urchins (Anthocidaris crassispina) in a dose-dependent manner, implicating that recruitment of urchin populations might be reduced by UVR (ultraviolet radiation) prevailing in their natural habitats. Concomitantly, reactive oxygen species (ROS) production was enhanced by UVA and UVB in a dose-dependent manner (UVA: by 1.3-fold; UVB: by 6.6–7.3-fold; P < 0.05), and the increase in ROS resulted in an increase in lipid peroxidation (LPO) in urchin sperm (UVA: by 4.2–7.2-fold; UVB: by 2.3–2.7-fold; P < 0.05). This study demonstrated that ROS production and oxidative damages enhanced by UVR may account for the observed declines in sperm motility and fertilisation, and suggests that levels of UVR prevailing in the environment may pose a significant threat to the reproductive success of natural populations of urchins spawning in shallow waters.  相似文献   

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