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1.
由于线粒体能敏感地感受机体内氧浓度的变化,缺氧时会影响线粒体氧化磷酸化过程中电子传递链的正常功能,抑制ATP生成,产生大量活性氧(ROS)。ROS蓄积导致氧化损伤细胞内脂质、DNA和蛋白质等大分子物质,线粒体肿胀,通透性转换孔开放,释放细胞色素C等促凋亡因子,最终严重影响细胞的存活。因此这些功能异常或受损线粒体是缺氧应激状态下细胞是否存活的危险因素,及时清除这些线粒体,对维持线粒体质量、数量及细胞稳态具有重要意义。线粒体自噬是近年来发现的细胞适应缺氧的一种防御性代谢过程,它通过自噬途径选择性清除损伤、衰老和过量产生ROS的线粒体,促进线粒体更新和循环利用,确保细胞内线粒体功能稳定,保护缺氧应激下细胞的正常生长发挥重要的调节作用。本文就线粒体自噬在缺氧条件下发生过程、参与相关蛋白及调节机制等方面研究进行了综述。  相似文献   

2.
缺氧应激对肝癌细胞代谢信号通路的调节作用   总被引:4,自引:0,他引:4  
通过实验阐明在缺氧条件下糖酵解相关基因表达的变化规律及对肿瘤细胞和正常细胞增殖的影响,并探索活性氧(ROS)介导肝癌细胞代谢途径及对相关基因表达和酶活性的调节作用.以SMMC-7721人肝癌细胞和L02正常肝细胞作为研究对象,分别在单纯缺氧及加葡萄糖缺氧条件下,观察细胞生长,并检测糖代谢关键酶:丙酮酸激酶(pyruvate-kinase,PK)、己糖激酶(hexokinase,HK)、琥珀酸脱氢酶(succinic dehydrogenase,SDH)、异柠檬酸脱氢酶(isocitric dehydrogenase,IDH)mRNA表达水平和乳酸脱氢酶(lactate dehydrogenase,LDH)活性.还检测了pkb基因及缺氧诱导因子hif-1的表达.实验结果说明:a.肿瘤细胞较正常细胞具有更强的缺氧耐受性;b.缺氧条件下,糖酵解途径的增强是保证肿瘤细胞能快速增殖的机制之一;c.ROS通过HIF-1介导了糖代谢通路相关酶的基因表达,参与肝癌细胞缺氧信号通路调节,用抗氧化剂干预可以降低肿瘤细胞的缺氧耐受能力.  相似文献   

3.
雌激素神经保护作用机制:线粒体功能的调节   总被引:1,自引:0,他引:1  
大量研究表明雌激素具有神经保护作用,但其机制尚不清楚。近年来研究提示,雌激素的神经保护作用与线粒体有着密切联系。线粒体是细胞内能量和活性氧自由基(ROS)的主要来源,对细胞内信号转导、细胞存活与死亡调节等具有十分重要的影响。在生理和病理条件下,雌激素可多方面调节线粒体功能,包括影响ATP与ROS的生成、稳定线粒体膜电位、维护细胞内钙稳态,以及调节线粒体基因和蛋白表达等。本文主要从线粒体角度综述了雌激素神经保护作用及其机制。  相似文献   

4.
该文旨在探究高氧环境对星形胶质细胞的损伤情况及抗氧化剂N-乙酰半胱氨酸(N-acetyl-L-cysteine,NAC)对其的保护作用。该文将星形胶质细胞随机分为常氧组、高氧组(6 h、12 h、24 h)、常氧NAC组和高氧NAC组(6 h、12 h、24 h)。在高氧环境下培养不同时间后,检测星形胶质细胞的活性、细胞内线粒体膜电位的变化、细胞内的总活性氧(ROS)和线粒体ROS的改变,用免疫荧光染色法及Western blot检测细胞VEGF及VEGFR的表达情况。结果显示,高氧环境培养后,星形胶质细胞的活性显著下降(P0.05)。细胞内总ROS水平及线粒体ROS水平较常氧组明显增加。星形胶质细胞在高氧环境下VEGF与VEGFR的表达下调。加入抗氧化剂NAC后,星形胶质细胞的细胞活性在高氧6 h和高氧12 h组增强(P0.01),而在高氧24 h组减弱(P0.05)。加入抗氧化剂后6 h组与12 h组星形胶质细胞内的ROS较未加抗氧化剂组明显减少,但对24 h高氧处理的星形胶质细胞内ROS无明显影响。加入抗氧化剂后高氧处理的星形胶质细胞的VEGF与VEGFR的表达量也有所增加,但在高氧24 h组,星形胶质细胞的VEGF和VEGFR表达仅少量增加。结果证实,星形胶质细胞在高氧条件下产生损伤,且与高氧持续时间相关,而使用NAC能够在一定程度上挽救短期内高氧对星形胶质细胞的损伤。以上结果提示,对高氧刺激后星形胶质细胞的抗氧化保护可能可以作为ROP治疗的一种方法。  相似文献   

5.
目的肝刺激因子(hepatic stimulator substance,HSS)可以保护肝细胞免受各种毒素的影响,但机制尚未清楚,研究探讨肝刺激因子保护肝细胞的可能机制。方法利用稳定转染FLAG-pcDNA3.0/hHss的肝癌细胞BEL-7402为模型,使用Alexa Flour 488、Hoechst 33342、MitoTracker 580分别将HSS、细胞核以及线粒体染色,观察HSS在细胞中的定位情况。当野生型7402细胞、转染空载体FLAG-pcDNA3.0的7402细胞以及转染FLAppcDNA3.0/hHSS的7402细胞受到线粒体膜孔道开放剂羰基氰化间氯苯腙(carbonyl cyanide m—chlorophenylhydrazone,CCCP)的损伤后,用电镜观察线粒体形态、荧光素酶检测ATP、流式细胞仪测定线粒体膜电位(mitoehondrial membrane potential,MMP)等,综合观察过表达HSS的肝细胞的抗损伤能力。结果在稳定转染hHSS基因的7402细胞中,大部分HSS与线粒体共定位;在CCCP作用下,对照组野生型7402细胞以及转染空载体的7402细胞MMP下降明显,线粒体肿胀,嵴断裂、消失,ATP下降显著;实验组稳定转染hHSS基因的7402细胞MMP下降幅度较小,线粒体肿胀与嵴形态的改变明显减轻,ATP的含量较对照组高。结论肝刺激因子HSS在细胞中主要定位于线粒体,可以稳定MMP,维持线粒体形态及细胞内ATP的水平,从而增强肝细胞抗损伤的能力。  相似文献   

6.
目的:观察外源性精胺对缺氧所致的乳鼠心肌细胞凋亡的影响,并探讨其机制。方法:复制原代培养乳鼠心肌细胞缺氧损伤模型(使用pH=6.8的Hank's平衡盐溶液作为细胞培养基,排出氧气,然后在缺氧箱中培养24 h),细胞随机分为正常对照(Control)组、缺氧(Hypoxia)组和精胺干预(Hypoxia+Sp)组。Western blot检测心肌细胞多胺代谢关键酶(ODC、SSAT)蛋白质表达;CCK-8,Hoechst 33342染色观察细胞凋亡情况;光吸收法检测细胞(或培养液)内T-SOD和Caspase-3/-9活性,MDA、GSH含量;DCFH-DA染色观察细胞内活性氧(ROS)生成。结果:与正常组相比,Hypoxia组SSAT蛋白质表达、细胞凋亡率、MDA含量以及细胞内ROS生成增加,而ODC蛋白质表达、SOD活性、GSH含量降低;与Hypoxia组比较,Sp处理可减轻上述指标的变化。结论:外源性精胺可减轻缺氧引起的乳鼠心肌细胞损伤和凋亡,其机制与恢复多胺稳态和清除活性氧有关。  相似文献   

7.
目的:探讨apelin在肿瘤坏死因子(tumor necrosis factor-α,TNF-α)诱导的肝细胞凋亡中的作用及可能机制。方法:PCR检测HepG2细胞和原代小鼠肝细胞中APJ受体的表达;采用Hoechst 33342染色检测TNF-α诱导的HepG2细胞凋亡;用活性氧(ROS)检测试剂盒结合流式细胞术测定细胞内ROS水平;通过Western blot检测信号分子JNK的磷酸化水平;比较给予apelin处理对上述指标的影响。结果:HepG2细胞和原代小鼠肝细胞均表达APJ受体;apelin可抑制TNF-α导致的细胞内ROS生成增多和JNK磷酸化水平升高并减少TNF-α诱导的HepG2细胞凋亡。结论:Apelin可能通过拮抗TNF-α诱导的细胞内ROS水平升高,使JNK信号失活,从而抑制HepG2细胞凋亡。  相似文献   

8.
谷胱甘肽(GSH)是细胞内主要的抗氧剂和氧化还原、细胞信号调节器,它能还原过氧化氢、清除活性氧(ROS)和含氮自由基使细胞免受氧化应激损伤。不管细胞内是否存在ROS氧化细胞蛋白,谷胱甘肽均能诱导氧化还原反应发生转变,进一步使信号传导功能及转录因子分子功能发生改变。大量实验表明,ROS和GSH在多条细胞信号调节通路中发挥着重要作用。主要阐述了Fas、TNF-α和NF-κB信号通路及线粒体凋亡途径及GSH在这些通路中的作用。尤其是线粒体GSH耗竭能诱导线粒体内ROS显著增加,从而损害细胞生物能量和诱导线粒体通透性转换孔开启。根据线粒体损害程度,NF-κB信号通路可被抑制,肝细胞也可能经历不同的死亡模式(凋亡或坏死)并对刺激细胞死亡信号(如TNF-α)也更敏感。这些过程涉及许多肝脏疾病的发病机理。  相似文献   

9.
目的探讨核转录因子-κB(NF-κB)在大鼠肝癌发生发展中的作用和意义。方法应用免疫组织化学SP法,对二乙基亚硝胺(DEN)诱发的大鼠肝癌发生过程中NF-κB的动态表达进行了检测。结果 DEN诱发的肝癌为肝细胞癌,诱癌率为100%,大鼠肝癌癌变过程大致经过肝细胞损伤期、肝细胞增生-硬化期和肝细胞癌变期等三个阶段。在正常大鼠肝组织,偶见少量肝细胞呈阳性表达,随着肝癌发生发展,NF-κB阳性表达细胞逐渐增多,至诱癌晚期,可见大量NF-κB阳性表达细胞,均比正常肝组织表达高(P<0.05)。结论本研究表明肝细胞NF-κB的过度表达与肝癌的发生和发展密切有关。  相似文献   

10.
目的观察黄芩甙对肝癌细胞BEL-7402凋亡的影响,同时观察对肝癌细胞形态及超微结构、线粒体超微结构、线粒体膜电位和细胞内Ca^2+的影响,探讨线粒体损伤在黄芩甙诱导肝癌细胞凋亡中的作用及可能的机制。方法应用细胞培养技术培养肝癌细胞BEL-7402,光镜、倒置显微镜、扫描电镜、透射电镜观察细胞形态及超微结构的变化尤其是线粒体的变化,应用流式细胞仪检测细胞凋亡百分率及线粒体膜电位、细胞内Ca^2+的改变,免疫组化法检测细胞Bcl-2、Pax蛋白表达。结果黄芩甙诱导肝癌细胞BEL-7402凋亡呈剂量依赖关系,细胞形态、超微结构及线粒体超微结构出现明显改变,降低肝癌细胞线粒体膜电位,使细胞内Ca^2+增加,细胞Pax表达增加,广泛分布于胞核和胞质中,Bcl-2表达减少。结论黄芩甙诱导肝癌细胞BEL-7402凋亡,线粒体损伤在黄芩甙诱导肝癌细胞凋亡中起重要作用,其机制可能为抑制肝癌细胞Bcl-2蛋白表达,促进Pax蛋白表达及细胞内Ca^2+增加,激发线粒体膜通透性转运孔开放,线粒体跨膜电位降低,使肝癌细胞凋亡。  相似文献   

11.
We have already reported that exogenously added reactive oxygen species (ROS) could potentiate the invasive activity of rat hepatoma cell line of AH109A by activating autocrine loop of hepatocyte growth factor (HGF)-c-Met pathway. In this report, we examined the involvement of endogenous ROS in the invasive activity of hepatoma cells by using a cell-permeable antioxidant, N-acetyl-L-cysteine (NAC). NAC could certainly scavenge intracellular ROS when directly added to the media at the concentration of 1 or 5 mM and could significantly suppress hepatoma cell invasion, although it showed a little effect on hepatoma cell proliferation at these concentrations. NAC also decreased the content of HGF mRNA and the secretion of HGF at these concentrations, leading to suppression of their invasion. In the present study, blockade of endogenous ROS by NAC proved to efficiently suppress the invasive activity of hepatoma cells by down-regulating HGF gene expression, suggesting the importance of endogenous ROS in cellular signaling of tumor cell invasion.  相似文献   

12.
The chemical reduction and oxidation (redox) properties of alpha-lipoic acid (LA) suggest that it may have potent antioxidant potential. A significant number of studies now show that LA and its reduced form, dihydrolipoic acid (DHLA), directly scavenge reactive oxygen species (ROS) and reactive nitrogen species (RNS) species and protect cells against a host of insults where oxidative stress is part of the underlying etiology. However, owing to its limited and transient accumulation in tissues following oral intake, the efficacy of nonprotein-bound LA to function as a physiological antioxidant has been questioned. Herein, we review the evidence that the micronutrient functions of LA may be more as an effector of important cellular stress response pathways that ultimately influence endogenous cellular antioxidant levels and reduce proinflammatory mechanisms. This would promote a sustained improvement in cellular resistance to pathologies where oxidative stress is involved, which would not be forthcoming if LA solely acted as a transient ROS scavenger.  相似文献   

13.
Shi DY  Liu HL  Stern JS  Yu PZ  Liu SL 《FEBS letters》2008,582(12):1667-1671
We report here that alpha-lipoic acid (alpha-LA), a naturally-occurring antioxidant, scavenges reactive oxygen species (ROS) followed by an increase in apoptosis of human hepatoma cells. Apoptosis induced by alpha-LA was dependent upon the activation of the caspase cascade and the mitochondrial death pathway. alpha-LA induced increases in caspase-9 and caspase-3 but had no significant effect on caspase-8 activity. Apoptosis induced by alpha-LA was found to be mediated through the tensin homologue deleted on chromosome 10 (PTEN)/Akt pathway. Prior to cell apoptosis, PTEN was activated and its downstream target Akt was inhibited. Our findings indicate that increasing ROS scavenging could be a therapeutic strategy to treat cancer.  相似文献   

14.
This study was undertaken to evaluate whether chemical hypoxia-induced cell injury is a result of reactive oxygen species (ROS) generation, ATP depletion, mitochondrial permeability transition, and an increase in intracellular Ca2+, in A172 cells, a human glioma cell line. Chemical hypoxia was induced by incubating cells with antimycin A, an inhibitor of mitochondrial electron transport, in a glucose-free medium. Exposure of cells to chemical hypoxia resulted in cell death, ROS generation, ATP depletion, and mitochondrial permeability transition. The H2O2 scavenger pyruvate prevented cell death, ROS generation, and mitochondrial permeability transition induced by chemical hypoxia. In contrast, changes mediated by chemical hypoxia were not affected by hydroxyl radical scavengers. Antioxidants did not affect cell death and ATP depletion induced by chemical hypoxia, although they prevented ROS production and mitochondrial permeability transition induced by chemical hypoxia. Chemical hypoxia did not increase lipid peroxidation even when antimycin A was increased to 50 M, whereas the oxidant t-butylhydroperoxide caused a significant increase in lipid peroxidation, at a concentration that is less effective than chemical hypoxia in inducing cell death. Fructose protected against cell death and mitochondrial permeability transition induced by chemical hypoxia. However, ROS generation and ATP depletion were not prevented by fructose. Chemical hypoxia caused the early increase in intracellular Ca2+. The cell death and ROS generation induced by chemical hypoxia were altered by modulation of intracellular Ca2+ concentration with ruthenium red, TMB-8, and BAPTA/AM. However, mitochondrial permeability transition was not affected by these compounds. These results indicate that chemical hypoxia causes cell death, which may be, in part, mediated by H2O2 generation via a lipid peroxidation-independent mechanism and elevated intracellular Ca2+. In addition, these data suggest that chemical hypoxia-induced cell death is not associated directly with ATP depletion and mitochondrial permeability transition.  相似文献   

15.
α—硫辛酸对6—羟多巴胺诱导的PC12细胞凋亡的影响   总被引:2,自引:1,他引:1  
PC12 cell line, a clonal cell line derived from a pheochromocytoma of rat adrenal medulla, was used as a model of dopaminergic neuron in vitro to study the effect of alpha-lipoic acid on the 6-OHDA induced apoptosis. The results from MTT method show that 6-OHDA decreased the cell survival rate obviously. Through TUNEL (TdT-mediated dUTP-biotion nick end labeling) and Flow cytometer (FCM) detection, we found that 6-OHDA triggered cell apoptosis and induced necrosis. It was confirmed by the different percentage of cell survival rate and apoptosis concluded from FCM and MTT. alpha-lipoic acid was used as antioxidant to protect the cell from 6-OHDA's injury. The result indicateed that alpha-lipoic acid can partly prevent apoptosis induced by 6-OHDA but fail to prevent necrosis since it can decrease the apoptotic cell from 20.09% to 3.09%, just as increased cell survival rate from 56.8% to 72.6% but can not reach the normal level showed by MTT assay. Biochemical approach showed the cell's antioxidant ability especial for SOD activity and GSH content increased after the treatment of alpha-lipoic acid. The data suggest that alpha-lipoic acid may protect PC12 cells from apoptosis induced by 6-OHDA through the antioxidant path.  相似文献   

16.
Mitochondria are proposed to play an important role in hypoxic cell signaling. One currently accepted signaling paradigm is that the mitochondrial generation of reactive oxygen species (ROS) increases in hypoxia. This is paradoxical, because oxygen is a substrate for ROS generation. Although the response of isolated mitochondrial ROS generation to [O(2)] has been examined previously, such investigations did not apply rigorous control over [O(2)] within the hypoxic signaling range. With the use of open-flow respirometry and fluorimetry, the current study determined the response of isolated rat liver mitochondrial ROS generation to defined steady-state [O(2)] as low as 0.1 microM. In mitochondria respiring under state 4 (quiescent) or state 3 (ATP turnover) conditions, decreased ROS generation was always observed at low [O(2)]. It is concluded that the biochemical mechanism to facilitate increased ROS generation in response to hypoxia in cells is not intrinsic to the mitochondrial respiratory chain alone but may involve other factors. The implications for hypoxic cell signaling are discussed.  相似文献   

17.
In addition to the induction of cell proliferation and migration, bradykinin (BK) can increase c-fos mRNA expression, activate ERK 1/2 and generate reactive oxygen species (ROS) in vascular smooth muscle cells (VSMC). It is not known, however, whether BK can induce cellular proliferation and extracellular matrix production via redox-sensitive signaling pathways. We investigated the role(s) of ROS in proliferation, migration and collagen synthesis induced by BK in VSMC derived from Sprague Dawley rat aorta. BK (10 nM) increased VSMC proliferation by 30% (n=5); this proliferation was inhibited by the antioxidants N-acetylcysteine (20 mM) and alpha-lipoic acid (LA, 250 mM). In addition, BK induced an increase in cell migration and in collagen levels that were blocked by LA. ROS production induced by BK (n=10) was significantly inhibited by bisindolylmaleimide (4microM) and by PD98059 (40microM). These results suggest that: 1) ROS participate in the mechanism(s) used by bradykinin to induce cellular proliferation; 2) bradykinin induces ROS generation through a pathway that involves the kinases PKC and MEK; and 3) ROS participate in the pathways mediating cell migration and the production of collagen as a response to treatment with bradykinin. To our knowledge, this is the first report describing mechanisms to explain the participation of ROS in the cellular proliferation and extracellular matrix pathway regulated by BK.  相似文献   

18.
Endothelial mitochondria, the major site of ATP generation, modulate the intracellular dynamics of reactive oxygen species (ROS), which, in turn, control endothelial function. Adequate oxygen (O(2)) supply is required by endothelial cells (EC). Both hypoxia and hyperoxia may favor the overproduction of ROS leading to oxidative stress, mitochondrial damage and endothelial dysfunction. We investigated the capability and mechanisms of Cellfood? (CF), an antioxidant compound, to modulate O(2) availability and mitochondrial respiratory metabolism and to regulate ROS generated by hypoxia in EC in vitro. Human umbilical vein endothelial cells (HUVEC) and ECV-304 were evaluated for the O(2) consumption using a Clark's electrode. The O(2) consumption rate rose, during the first minutes after CF addition and was associated with increase in mitochondrial oxidative capacity and good cell viability. Similar behaviours were observed when EC were exposed to CF for up to 8 days. The O(2) consumption increased and was accompanied by both intracellular rise of ATP and maintainment of LDH concentration. Hypoxia-induced ROS generation was significantly inhibited by CF, through the up-regulated expression of MnSOD, an anti-oxidant responsible for mitochondrial function preservation. The EC hypoxic response is mediated by the hypoxia master regulator HIF-1alpha whose activation was attenuated by CF, in concomitance with MnSOD up-regulation. Our results suggest a role for CF in improoving respiratory metabolism and in activating anti-oxidant mechanisms in EC, thus preserving endothelial function.  相似文献   

19.
Hexokinase type II (HK II) is the key enzyme for maintaining increased glycolysis in cancer cells where it is overexpressed. 3-bromopyruvate (3-BrPA), an inhibitor of HK II, induces cell death in cancer cells. To elucidate the molecular mechanism of 3-BrPA-induced cell death, we used the hepatoma cell lines SNU449 (low expression of HKII) and Hep3B (high expression of HKII). 3-BrPA induced ATP depletion-dependent necrosis and apoptosis in both cell lines. 3-BrPA increased intracellular reactive oxygen species (ROS) leading to mitochondrial dysregulation. NAC (N-acetyl-l-cysteine), an antioxidant, blocked 3-BrPA-induced ROS production, loss of mitochondrial membrane potential and cell death. 3-BrPA-mediated oxidative stress not only activated poly-ADP-ribose (PAR) but also translocated AIF from the mitochondria to the nucleus. Taken together, 3-BrPA induced ATP depletion-dependent necrosis and apoptosis and mitochondrial dysregulation due to ROS production are involved in 3-BrPA-induced cell death in hepatoma cells.  相似文献   

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