共查询到20条相似文献,搜索用时 73 毫秒
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观察SD大鼠一次急性运动至力竭后骨骼肌线粒体内膜流动性、NADH-CoQ还原酶及ATP酶活性变化.结果显示,大鼠骨骼肌线粒体内膜微粘度较安静时显著增高,线粒体内膜NADH-CoQ还原酶和ATP酶活性分别较安静时下降34.2%和46.2%.研究提示,耗竭性运动后大鼠骨骼肌线粒体呼吸链内膜分子动力学和呼吸链酶组分活性变化,可能是运动性疲劳重要的膜分子特征. 相似文献
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运动性疲劳状态下大鼠心肌线粒体内膜变化的研究 总被引:5,自引:0,他引:5
采用递增负荷力竭性运动模型,观察了Sprague-Dawley大鼠急性运动至力竭后心肌线粒体内膜流动性、NADH-CoQ还原酶及ATP酶活性的变化。结果表明,大鼠心肌线粒体内膜荧光偏振值较安静时显著增高(P<0.01),示膜流动性降低。线粒体内膜NADH-CoQ还原酶和肌线粒体内膜功能改变,其膜流动性和呼吸链酶活性变化,可能是运动性疲劳的重要膜分子制之一。 相似文献
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耗竭性游泳对大鼠心肌线粒体膜功能的影响 总被引:23,自引:0,他引:23
耗竭性游泳对大鼠心肌线粒体膜功能的影响王文信,丁树哲,许豪文(华东师范大学体育系运动生化实验室,上海200062)关键词心肌线粒体,内膜表面电位,游离钙,总钙,合成活力长时间耗竭性游泳或跑步引起心肌、骨骼肌、肝脏等线粒体结构和功能变化,这些变化可能与... 相似文献
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运动性内源自由基对大鼠心肌线粒体膜的影响 总被引:32,自引:1,他引:32
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用DPH和ANS标记大鼠肝线粒体内膜,以稳态荧光偏振法,研究了呼吸链底物和抑制剂对内膜流动性的影响。1.苹果酸+谷氨酸、琥珀酸分别为底物,均能引起内膜流动性增加。2.琥珀酸对含心磷脂的脂质体的膜流动性无影响。3.在鱼藤酮存在的条件下,苹果酸+谷氨酸对内膜流动性的增加作用消失,但琥珀酸的作用仍然存在。有氰化钾时则琥珀酸的作用消失。4.不论外加底物存在与否,鱼藤酮使内膜的流动性下降,而氰化钾则使之增加。抗霉素A亦可使内膜的流动性增加。上述结果表明:线粒体内膜流动性与其功能密切相关。电子沿呼吸链传递使线粒体内膜流动性增加,这种变化可能与呼吸链成分的氧化还原态有关。 相似文献
6.
运动训练对小鼠心肌线粒体能量转换功能增龄性改变的影响 总被引:4,自引:0,他引:4
目的和方法:以C57BL/6J雄性小鼠跑转笼为运动方式,研究以5月龄开始进行为期8个月或15个月的运动训练对小鼠心肌线粒体能量转换功能的影响。结果:以α-酮戊二酸为底物时,线粒体RCR、ADP/O均呈现随年龄的增加而下降,尤其以衰老晚期(小鼠20月龄)下降明显。结论:衰老过程中氧化磷酸化偶联程度降低,能量产出减少,长期运动训练的小鼠心肌线粒体出现适应性变化,表现为线粒体功能随增龄而下降的程度减小。 相似文献
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本文从观察温度的影响出发,探讨了鼠肝线粒体内膜体,在琥珀酸氧化建立跨膜质子电化学梯度(ΔμH^+)时,膜脂双分子层中DPH荧光偏振值(r)的变化与膜能量偶联活性之间的相互关系。结果表明,15 ̄35℃温度内,能化引起r值变化趋势相似,r值变化速率随温度升高而增加,但与温度对r值影响相比只是在较小的范围内变动。另一方面,15 ̄30℃温度内,随温度升高质子回漏速率加快,RCR值和ADP/O比值下降,但跨 相似文献
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Zhang GL 《中国应用生理学杂志》2011,27(1):92, I-92,129
目的:探讨竹节参对力竭运动大鼠心肌线粒体ATP酶活性的影响。方法:建立力竭运动大鼠模型,测定心肌线粒体ATP酶的活性,研究竹节参对大强度耐力训练大鼠心肌线粒体的保护作用。结果:力竭运动引起大鼠心肌线粒体ATPase(Na+,K+-ATPase和Ca2+-ATPase)活性显著下降,而运动加药组Ca2+-ATPase有显著升高,Na+,K+-ATPase也有明显升高,且ATPase活性均接近于安静对照组的水平。结论:竹节参可提高力竭运动大鼠心肌线粒体内Na+,K+-ATP酶和Ca2+-ATP酶的活性,提示其具有保护线粒体的作用。 相似文献
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线粒体呼吸链超级复合体(mitochondrial respiratory chain supercomplex, mitoSC)是线粒体内膜呼吸链上的自由复合体通过其亚基之间的相互作用形成的复合体超级组装,主要为mitoSCⅠ1+Ⅲ2+Ⅳ1-4、mitoSCⅠ1+Ⅲ2、mitoSCⅢ2+Ⅳ1-2、高分子量mitoSC (high molecular weight mitoSC, HMW mitoSC)和巨型超级复合体(mitochondrial metacomplex, mitoMC)。mitoSC已被证明具有提高呼吸链电子传递效率、减少活性氧产生的功能。在衰老的不同组织和诸多线粒体相关疾病组织中,mitoSC的种类和含量发生变化。本文通过归纳人类和哺乳动物不同组织中mitoSC的结构和功能,总结衰老、心脏疾病、2型糖尿病、癌症和基因缺陷疾病等条件下mitoSC的变化规律,重点探讨运动对mitoSC的影响及其相关调节机制,为线粒体相关疾病的运动干预提供参考。 相似文献
11.
《Free radical research》2013,47(3-6):375-380
Free radicals, including superoxide anions (O2??), hydroxyl radical (HO'), and hypohalite radical (OCl'), as well as oxidants such as hydrogen peroxide (H2O2) and hypochlorous acid (HOCl), have been indicated in the pathogenesis of myocardial ischemic and reperfusion injury. In this report, we compared the integrity of the myocardial membrane when exposed to these free radicals/oxidants. Isolated rat heart membrane preparations were exposed to chemically generated free radicals with or without their respective scavengers. Membrane fluidity was monitored by fluorescence polarization using the diphenylhexatriene probe, as well as by electron spin resonance (ESR) spectroscopy using 2,2,6,6-tetramethyl piperidine-n-oxyl as the spin labeling agent. HO', H2O2, and OCl' + HOCl increased the fluorescence polarization (FP) and microvis-cosity significantly by 1.7-fold, 1.8-fold, and 1.7-fold, respectively, as compared to an only 1.2– fold increase in FP by O2?? O2?? did not alter the fatty acid profiles of the membrane phospholipids. However, HO' and H2O2 reduced the arachidonic acid contents in phosphatidylcholine (PC), phosphatidylethanolamine (PE), and phosphatidylinositol (PI). These radicals also stimulated the lipid peroxidation by several-fold, while that by O2?? was only insignificant. These results suggest that HO' and H2O2 decreased the membrane fluidity and induced lipid peroxidation by releasing the arachidonic acid from PC, PE. and PI. 相似文献
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†Nicolai A. Avdulov †Svetlana V. Chochina †Urule Igbavboa ‡Eugene O. O'Hare Friedhelm Schroeder §James P. Cleary † W. Gibson Wood 《Journal of neurochemistry》1997,68(5):2086-2091
Abstract: Amyloid β-peptides (Aβ) may alter the neuronal membrane lipid environment by changing fluidity and inducing free radical lipid peroxidation. The effects of Aβ1–40 and Aβ25–35 on the fluidity of lipids adjacent to proteins (annular fluidity), bulk lipid fluidity, and lipid peroxidation were determined in rat synaptic plasma membranes (SPM). A fluorescent method based on radiationless energy transfer from tryptophan of SPM proteins to pyrene and pyrene monomer-eximer formation was used to determine SPM annular fluidity and bulk fluidity, respectively. Lipid peroxidation was determined by the thiobarbituric acid assay. Annular fluidity and bulk fluidity of SPM were increased significantly ( p ≤ 0.02) by Aβ1–40 . Similar effects on fluidity were observed for Aβ25–35 ( p ≤ 0.002). Increased fluidity was associated with lipid peroxidation. Both Aβ peptides significantly increased ( p ≤ 0.006) the amount of malondialdehyde in SPM. The addition of a water-soluble analogue of vitamin E (Trolox) inhibited effects of Aβ on lipid peroxidation and fluidity in SPM. The fluidizing action of Aβ peptides on SPM may be due to the induction of lipid peroxidation by those peptides. Aβ-induced changes in neuronal function, such as ion flux and enzyme activity, that have been reported previously may result from the combined effects of lipid peroxidation and increased membrane fluidity. 相似文献
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巴氏碳球C60光激发对红细胞膜流动性的影响 总被引:1,自引:0,他引:1
巴氏碳球C_(60)光激发对红细胞膜流动性的影响黄文栋,钱凯先,唐海琼(浙江大学生物科学与技术系,杭州310027)李文铸(渐江大学物理系,杭州310027)关键词C_(60);光激发;红细胞膜;荧光偏振;膜流动性C60是Kroto等人[1]于1985... 相似文献
14.
牛磺酸和力竭运动对大鼠血液生物化学的影响 总被引:5,自引:0,他引:5
30只雄性Wistar大鼠按体重随要分为安静组、运动组、服牛磺酸运动组。后两组进行跑台运动至力竭后即刻,取血测定血糖和血乳酸以及血清MDA、LDH、GOT和CK。结果表明:与运动组相比较,服牛磺酸运动阻力竭运动时间有延长趋势,说明补充牛磺酸提高大鼠运动能力;与安静组相比,运动组力竭运动后血糖显著降低,血清LD、MDA、CK、GOT和LDH都显著升高,提示大鼠长时间运动由于中枢疲劳和外周疲劳而导致力竭;与运动组相比较,服牛磺酸运动组血糖降低和血乳酸升高的程度有减小的趋势,而血清MDA、CK、GOT、LDH升高的程度显著减小。研究结果显示,补充牛磺酸能提高机体的运动能力其主要是通过抵抗要体外周疲劳的产生而实现的。 相似文献
15.
A. Villacara K. Kumami T. Yamamoto B. B. Mrsulja M. Spatz 《Journal of neurochemistry》1989,53(2):595-601
The effect of ischemia on the properties of 5-hydroxytryptamine1A + B (5-HT1A+B) and 5-hydroxytryptamine1B (5-HT1B) binding sites, physical-state "fluidity" of the membrane, and its susceptibility to peroxidation in vitro was investigated in the cerebral cortex of gerbils. Ischemia was induced by bilateral carotid artery occlusion for 15 min alone or with release for 1 h. Ischemia both with and without reflow decreased the number of 5-HT1A + B and 5-HT1B binding sites, whereas ischemia and reflow altered the affinity for 5-HT1B binding sites. Resistance to the temperature-dependent increase in "fluidity" of the membrane was detected (by fluorescence anisotropy using 1,6-diphenyl-1,3,5-hexatriene as a probe) after ischemia and reflow but not in ischemia alone. Susceptibility of the membranes to Fe2+- and ascorbic acid-stimulated lipid peroxidation in vitro was decreased following ischemia and recirculation only. These findings strongly suggest that the composition and the function of the membrane are markedly disturbed during recirculation after ischemia. 相似文献
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Tamoxifen (TAM) is a non-steroidal antiestrogen drug, which is widely used to prevent and treat breast, liver, pancreas and
brain cancers. The present work investigates, in detail, the concentration dependent behavior of TAM (varying from 1 mol%
to 45 mol%) on membrane fluidity. The differential scanning calorimetry (DSC) studies showed that tamoxifen eliminates the
pre-transition and decreases the main phase transition to lower temperatures. Using visible spectroscopy at 440 nm and Fourier
transform infrared (FTIR) spectroscopy it was found that membrane dynamics decreases for 1 and 3 mol% tamoxifen in both the
gel and liquid crystalline phases. Above these concentrations up to 18–24 mol%, it increases and reaches its maximum values.
As tamoxifen concentration was further increased, the membrane dynamics is found to be gradually decreased, although TAM still
has fluidifying effect in comparison to pure phospholipid membrane. These findings are important for the effective use of
tamoxifen in the cancer therapy to eliminate its dose dependent side effects reported in the literature. 相似文献
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为了探讨力竭运动诱导的氧化应激反应对大鼠红细胞Band3蛋白的影响,该文以大鼠跑步运动为模型,对三种不同运动条件下(静坐组、适度运动组和力竭运动组)大鼠红细胞抗氧化能力和氧化损伤程度进行了检测,并对氧化应激反应诱导的红细胞膜Band3蛋白表达和分布情况及其调控的阴离子通道活性进行了分析。结果表明:力竭运动条件下大鼠红细胞受到严重的氧化应激损伤,红细胞内抗氧化能力下降;导致膜Band3蛋白巯基交联为主的蛋白聚簇化反应及其阴离子转运能力的下降。Band3蛋白的损伤将进一步诱导红细胞携氧和变形能力的下降,成为运动相关疾病的潜在致病因素。 相似文献
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Aluminum is a redox-inert element that could induce cell damage via activation of oxidative stress. In this work, the effect of aluminum on different cellular compartments of human peripheral blood lymphocytes was studied. The presence of aluminum induced a lipid peroxidation and physico-chemical modifications at the membrane level. A decrease in fluorescence anisotropy of TMA-DPH and in the polarity of the lipid bilayer with a concomitant shift toward a gel phase was observed, while the pyrene excimerization coefficient (Kex) increased.Flow cytometry measurements, using JC-1, Rhodamine 123 and H2-DCFDA as fluorescent probes, indicated that aluminum induces a slight mitochondrial membrane depolarization that was associated with a moderate increase in reactive oxygen species production. A significative influence on these parameters was measured only at high aluminum concentration. 相似文献
20.
The hypothesis that thallium (Tl) interaction with membrane phospholipids could result in the alteration of membrane physical properties was investigated. Working with liposomes composed of brain phosphatidylcholine and phosphatidylserine, we found that Tl(+), Tl(3+), and Tl(OH)(3) (0.5-25 microM): (a) increased membrane surface potential, (b) decreased the fluidity of the anionic regions of the membrane, in association with an increased fluidity in the cationic regions, and (c) promoted the rearrangement of lipids through lateral phase separation. The magnitude of these effects followed the order Tl(3+), Tl(OH)(3)>Tl(+). In addition, Tl(3+) also decreased the hydration of phospholipid polar headgroups and induced membrane permeabilization. The present results show that Tl interacts with membranes inducing major alterations in the rheology of the bilayer, which could be partially responsible for the neurotoxic effects of this metal. 相似文献

