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Mitochondrial function of isolated rat hepatocytes from normal and cirrhotic liver.

Mitochondrial fractions were obtained from purely isolated hepatocytes of the normal and cirrhotic livers. Mitochondrial function of isolated hepatocytes was evaluated to compare between those from the normal and those from the cirrhotic livers in addition to the evaluation of the mitochondrial function of the normal and cirrhotic liver tissues. Respiratory control, ADP/O ratio and ATP synthesis were significantly lower in the cirrhotic liver tissue than those in the normal liver tissue. However, the mitochondrial function of isolated hepatocytes showed no difference between normal and cirrhotic groups. By electron microscopic examination, debris was more observed in the mitochondrial fractions from the normal and cirrhotic tissues compared to those from hepatocytes. However, no difference of the shape and size of the mitochondria was seen between the fraction from hepatocytes and that from the tissue in each group. These results suggest that as far as hepatocyte itself is concerned, the cirrhotic liver preserves the sufficient function as well as the normal liver.

Adenosine Triphosphate↗

Dynamic regulation of yeast glycolytic oscillations by mitochondrial functions.

The control exerted in vivo by mitochondrial functions on the dynamics of glycolysis was investigated in starved yeast cells that were metabolizing glucose semianaerobically. Glycolytic oscillations were triggered after a pulse of glucose by inhibition of mitochondrial respiration with KCN, myxothiazol and antimycin A or in mutants in the bc1 complex (ubiquinol:cytochrome c reductase) that were largely deficient in respiratory capacity. Inhibition of the adenine nucleotide translocator by preincubation with bongkrekic acid also triggered a train of damped sinusoidal oscillations after glucose addition. The oscillations consisted of cycles of reduction and oxidation of the intracellular pool of nicotinamide nucleotides with periods of 45 s to 1 min and amplitudes of 0.8 mM or lower. Preincubation with the uncoupler carbonyl cyamide p-(trifluoromethoxy)phenylhydrazone (FCCP) annihilated cyanide-induced oscillations of NAD(P)H. Evidence for de-energization of mitochondrial membranes in vivo was obtained by mitochondrial staining with dimethylaminostyryl-methyl-pyridiniumiodine (DASPMI) of starved cells. The low rates of NADH reoxidation shown by respiratory mutants and the FCCP-treated X2180 strain open up the possibility that mitochondrial dehydrogenases also control glycolytic oscillations. Low rates of cytosolic NADH reoxidation induced by pyrazole, an inhibitor of alcohol dehydrogenase, were also associated with the disappearance of glycolytic oscillations. From experimental evidence and model calculations we conclude that the modulation of the levels of cytosolic ATP by mitochondrial functions in turn modulates the approach of the dynamic behavior of glycolysis to an oscillatory domain. The mitochondrial NADH dehydrogenase and the glycolytic steps associated with NADH reoxidation downstream from pyruvate appear to provide another control level of glycolysis dynamics in vivo.

Adenosine Triphosphate↗

Age-associated damage in mitochondrial function in rat hearts.

The aim of this study is to elucidate effects of aging on mitochondrial function and mitochondrial DNA (mtDNA) in rat heart and liver. The activities of complex I and complex IV of heart mitochondria of rats aged 100 weeks decreased significantly by 31% and 22%, respectively, compared with those of rats aged 7 weeks. No significant changes were observed in these two parameters in rats aged 7 weeks and aged 55 weeks. There were no significant differences in the specific activities of complex II and complex III among the age groups of 7, 55, and 100 weeks. The mtDNA content decreased by 58% in rats aged 100 weeks compared with that in rats aged 7 weeks. Content of 8-hydroxydeoxyguanosine (8-OH-dG), an oxidative product of deoxyguanosine (dG), increased by 130% in rats aged 100 weeks compared with that in rats aged 7 weeks. No significant changes were observed in these parameters between rats aged 7 weeks and 55 weeks. In contrast to heart mtDNA, these age-dependent changes were not observed in liver mitochondria at rats aged up to 100 weeks. From our results, age-associated decline in mitochondrial function might play an important role in cell aging, particularly in postmitotic cells such as heart muscle, and accumulation of oxidative damage to mtDNA might be involved in this mechanism.

8-Hydroxy-2'-Deoxyguanosine↗

Impaired in vivo mitochondrial function but similar intramyocellular lipid content in patients with type 2 diabetes mellitus and BMI-matched control subjects.

AIMS/HYPOTHESIS: Mitochondrial dysfunction and increased intramyocellular lipid (IMCL) content have both been implicated in the development of insulin resistance and type 2 diabetes mellitus, but the relative contributions of these two factors in the aetiology of diabetes are unknown. As obesity is an independent determinant of IMCL content, we examined mitochondrial function and IMCL content in overweight type 2 diabetes patients and BMI-matched normoglycaemic controls. METHODS: In 12 overweight type 2 diabetes patients and nine controls with similar BMI (29.4 +/- 1 and 29.3 +/- 0.9 kg/m(2) respectively) in vivo mitochondrial function was determined by measuring phosphocreatine recovery half-time (PCr half-time) immediately after exercise, using phosphorus-31 magnetic resonance spectroscopy. IMCL content was determined by proton magnetic resonance spectroscopic imaging and insulin sensitivity was measured with a hyperinsulinaemic-euglycaemic clamp. RESULTS: The PCr half-time was 45% longer in diabetic patients compared with controls (27.3 +/- 3.5 vs 18.7 +/- 0.9 s, p < 0.05), whereas IMCL content was similar (1.37 +/- 0.30 vs 1.25 +/- 0.22% of the water resonance), and insulin sensitivity was reduced in type 2 diabetes patients (26.0 +/- 2.2 vs 18.9 +/- 2.3 mumol min(-1) kg(-1), p < 0.05 [all mean +/- SEM]). PCr half-time correlated positively with fasting plasma glucose (r (2) = 0.42, p < 0.01) and HbA(1c) (r (2) = 0.48, p < 0.05) in diabetic patients. CONCLUSIONS/INTERPRETATION: The finding that in vivo mitochondrial function is decreased in type 2 diabetes patients compared with controls whereas IMCL content is similar suggests that low mitochondrial function is more strongly associated with insulin resistance and type 2 diabetes than a high IMCL content per se. Whether low mitochondrial function is a cause or consequence of the disease remains to be investigated.

Aged↗

The major 45-kDa protein of the yeast mitochondrial outer membrane is not essential for cell growth or mitochondrial function.

As part of an analysis of the function and assembly of the mitochondrial outer membrane, we have cloned and characterized the yeast gene encoding a 45-kDa polypeptide (OM45) which is a major constituent of this membrane. The nuclear gene was isolated by immunological screening of plaques of recombinant phage lambda gt11 containing fragments of yeast genomic DNA using an antibody against OM45. Determination of the nucleotide sequence of the DNA fragment isolated by this approach revealed a single open reading frame of 1179 base pairs which encodes a protein having a predicted molecular mass of 44.6-kDa. Disruption of the OM45 gene in haploid yeast cells eliminated the expression of OM45. The mutant strain showed no apparent defect in cell viability, growth, mitochondrial function, or mitochondrial protein import.

Amino Acid Sequence↗

Sensitivity of liver mitochondrial functions to various levels of ethanol intake in the rat.

Mitochondrial function appears to be an early target for ethanol toxicity, however it is not clear to what extent the effects of ethanol, which occur at levels of intake lower than those already reported in the literature, can induce an alteration of it. To produce different levels of ethanol intake, the spontaneous consumption of ethanol by genetically low (UChA) and genetically high (UChB) rats, as well as the forced intake obtained by offering 10% v/v ethanol solution as the only source of drinking fluid, were employed. The O2 uptake by liver mitochondria of rats submitted to these conditions in the presence of glutamate + malate, succinate or ascorbate + TMPD, was measured polarographically with a Clark electrode at 25 degrees C. Results indicate that alterations of the hepatic mitochondrial function can be detected at levels of ethanol intake much lower than those previously reported. Whereas, a level of a daily ethanol intake of 2-3 g/kg body weight in UChA rats under free choice was insufficient to produce detectable changes in the mitochondrial function, the latter was decreased in the high ethanol consumers (UChB), which drank 4-5 g/kg per day under free choice conditions, and in both strains forced to drink 10% ethanol as only source of fluid, which produced intakes of about 7 g/kg per day. Therefore, mitochondrial dysfunction may contribute to effects observed even at low levels of ethanol intake.

Alcohol Drinking↗

Mitochondrial function, fibre types and ageing: new insights from human muscle in vivo.

Mitochondrial changes are at the centre of a wide range of maladies, including diabetes, neurodegeneration and ageing-related dysfunctions. Here we describe innovative optical and magnetic resonance spectroscopic methods that non-invasively measure key mitochondrial fluxes, ATP synthesis and O(2) uptake, to permit the determination of mitochondrial coupling efficiency in vivo (P/O: half the ratio of ATP flux to O(2) uptake). Three new insights result. First, mitochondrial coupling can be measured in vivo with the rigor of a biochemical determination and provides a gold standard to define well-coupled mitochondria (P/O approximately 2.5). Second, mitochondrial coupling differs substantially among muscles in healthy adults, from values reflective of well-coupled oxidative phosphorylation in a hand muscle (P/O = 2.7) to mild uncoupling in a leg muscle (P/O = 2.0). Third, these coupling differences have an important impact on cell ageing. We found substantial uncoupling and loss of cellular [ATP] in a hand muscle indicative of mitochondrial dysfunction with age. In contrast, stable mitochondrial function was found in a leg muscle, which supports the notion that mild uncoupling is protective against mitochondrial damage with age. Thus, greater mitochondrial dysfunction is evident in muscles with higher type II muscle fibre content, which may be at the root of the preferential loss of type II fibres found in the elderly. Our results demonstrate that mitochondrial function and the tempo of ageing varies among human muscles in the same individual. These technical advances, in combination with the range of mitochondrial properties available in human muscles, provide an ideal system for studying mitochondrial function in normal tissue and the link between mitochondrial defects and cell pathology in disease.

Adenosine Triphosphate↗

Evaluation of mitochondrial function and membrane integrity by dual fluorescent staining for assessment of sperm status in rats.

Dual fluorescent staining (DFS) with calcein acetoxy methyl ester (CAM), which labels the cellular esterase activity that is a major component of energy metabolism in cellular mitochondria, and with ethidium homodimer-1 (EthD-1) was used to evaluate mitochondrial function and membrane integrity in rat spermatozoa. The spermatozoa stained by DFS could be classified into three different populations microscopically when excited at 490 nm after 60 min incubation. 1) Spermatozoa, which were stained with CAM alone and had maintained either mitochondrial function or membrane integrity, were identified as live during incubation. 2) Spermatozoa, which were stained with EthD-1 alone and had lost either mitochondrial function or membrane integrity, were identified as already dead at the beginning of incubation. 3) Spermatozoa, which were stained with both CAM and EthD-1 and had maintained mitochondrial function with membrane breached, were identified as having died during incubation. Two toxicological tests, an in vitro triton X-100 experiment and an in vivo nitrobenzene experiment, were done. All spermatozoa were immobilized and lost either mitochondrial function or membrane integrity by 1.0% triton X-100 treatment. Almost no motile sperm were found at 0.1% in the triton X-100 group and in the groups treated with 60 and 40 mg/kg/day of nitrobenzene, and these spermatozoa maintained their mitochondrial function but had their membrane breached. In conclusion, the DFS procedure, which uses CAM and EthD-1, can clearly and visually identify the population of viable and dead spermatozoa simultaneously by fluorescence microscopy in rats. This is a useful technique to characterize sperm status, which is determined by the mitochondrial function assessed by CAM and membrane integrity evaluated by EthD-1.

Administration, Oral↗

Alterations in mitochondrial function and morphology in chronic liver disease: pathogenesis and potential for therapeutic intervention.

Studies assessing mitochondrial function and structure in livers from humans or experimental animals with chronic liver disease, including liver cirrhosis, revealed a variety of alterations in comparison with normal subjects or control animals. Depending on the etiology of chronic liver disease, the function of the electron transport chain and/or ATP synthesis was found to be impaired, leading to decreased oxidative metabolism of various substrates and to impaired recovery of the hepatic energy state after a metabolic insult. Changes in mitochondrial structure include megamitochondria with reduced cristae, dilatation of mitochondrial cristae and crystalloid inclusions in the mitochondrial matrix. The most important strategies to maintain an adequate mitochondrial function per liver are mitochondrial proliferation and increases in the activity of critical enzymes or in the content of cofactors per mitochondrion. Possibilities to assess hepatic mitochondrial function and to treat mitochondrial dysfunction in patients with chronic liver disease are discussed.

Animals↗

[Effect of superoxide dismutase on mitochondrial function in rats with hemorrhagic shock].

We observed the alterations in mitochondrial function and activity of endogenous SOD, and studied the protective effects of SOD on rats with hemorrhagic shock. It was found that after two hours' shock, RCR in hepatic and kidney mitochondria decreased significantly (liver P less than 0.01, kidney P less than 0.05), the activity of endogenous SOD depressed more or less in samples of blood and mitochondrial fraction (blood P less than 0.01. liver P less than 0.01. kidney P greater than 0.05). Further descent was found in these parameters in the deteriorating process of shock. After the rats were treated with SOD, RCR and activity of endogenous SOD increased considerably. Mere reflow did not affect them remarkably. This results suggest that oxygen-derived free radicals be the important factor impairing mitochondrial function in hemorrhagic shock, and that SOD can effectively ameliorate mitochondrial function.

Animals↗

Enhancement of rat liver mitochondrial function by portal branch ligation secures subsequent extended hepatectomy.

We have examined the effects of portal branch ligation on liver mitochondrial function and on subsequent extended hepatectomy in rat. In the occluded lobes, mitochondrial function was depressed immediately after the ligation. In the unoccluded lobes, mitochondrial function was enhanced and reached the maximum two days after the ligation. This enhancement was associated with increases in the enzymic activities and subunit amounts of the energy-transducing complexes, and with increase in mitochondrial DNA content. The ligation improved both survival rate and mitochondrial redox state monitored by the ratio of acetoacetate to beta-hydroxybutyrate after hepatectomy. These results suggest that the enhancement of mitochondrial function by portal branch ligation fills the energy demand for liver regeneration.

Animals↗

Fluorescent probes and flow cytometry to assess rat sperm integrity and mitochondrial function.

Fluorescent assessment of cellular integrity and mitochondrial function by flow cytometry can provide a rapid and precise means of determining the functional status of large numbers of spermatozoa. In the present study, rat sperm viability was assessed with SYBR-14 and PI and sperm mitochondria were differentially labeled with JC-1. Sperm samples of variable viability were prepared using varying proportions of fresh and frozen spermatozoa. SYBR-14 stained sperm correlated well with expected sperm viability (r = 0.98). Motile sperm stained with JC-1 appeared orange in the midpiece indicating a high mitochondrial membrane potential whereas immotile sperm with a low membrane potential stained green. The percentage of spermatozoa staining orange was highly correlated (r = 0.99) with expected sperm viability. Flow cytometry using specific fluorescent probes is a useful technique for detecting changes in rat sperm plasma membrane integrity and mitochondrial function in large numbers of spermatozoa.

Animals↗

Hepatic dearterialization in 3'-methyl-4-dimethylaminoazo-benzene-induced hepatocellular carcinoma with special reference to circulatory dynamics and mitochondrial functions.

This time trend of hemodynamics and mitochondrial functions were studied to determine whether the ligation of the hepatic artery would result in an antitumor effect on 3'-methyl-4-dimethylaminoazobenzene-induced hepatic carcinoma in rats. The studies revealed that the hepatic tumors were nourished predominantly by the artery and less by the portal vein; the size of the vascular beds in the hepatic tumors decreased as compared with those in the non-tumor area; and as the tumors grew larger, the artery became less predominant and the size of vascular beds decreased further. The mitochondria in the tumor were characterized by impaired growth, impaired oxidative phosphorylation, and by the low activity and nucleotide specificity of membrane bound ATPase. Hepatic dearterialization enhanced ischemia in the tumors and was accompanied by intensified impairment of the aerobic energy production, resulting in necrosis of the tumor. The effects of the dearterialization tended to decrease after the 5th day following the operation. In view of the gross findings upon relaparotomy and the recovery of hemodynamics and mitochondrial functions, this tendency appeared to be chiefly attributed to the increasing collateral circulation.

Adenosine Triphosphatases↗

Inhibition of mitochondrial function affects cellular Ca2+ handling in pancreatic B-cells.

The mitochondrial inhibitors NaN(3) and carbonyl cyanide p-(trifluoromethoxy)phenylhydrazone (FCCP) were used to study the role of mitochondria in pancreatic B-cell Ca2+ homeostasis. In glucose-stimulated B-cells NaN(3) and FCCP both increased the K(ATP) current and thus hyperpolarized the cell membrane potential, as expected for agents depleting cellular ATP. NaN(3) and FCCP stopped the glucose-induced oscillations in the cytosolic free Ca2+ concentration ([Ca2+](c)) and elicited a biphasic response. After a first rapid and transient increase, [Ca2+](c) rose in a second slow phase to a sustained level. In cells pretreated with thapsigargin the first inhibitor-induced rise in [Ca2+](c) was absent, suggesting that it may be due to Ca2+ mobilization from intracellular stores. The glucose-induced oscillations were terminated again by NaN(3) and FCCP, respectively, but the slow increase in [Ca2+](c)of the second phase was still present. A minute increase in [Ca2+](c)elicited by NaN(3) or FCCP was even visible after the removal of extracellular Ca2+, suggesting that the inhibitors also mobilize Ca2+ from mitochondria. NaN(3) and FCCP induced Ca2+ influx into B-cells treated with low glucose concentrations whose voltage-dependent Ca2+ channels are closed. Experiments with thapsigargin-preincubated cells indicate that disturbance of mitochondrial function stimulates Ca2+ influx through voltage-independent Ca2+ pathways. During the NaN(3)-induced increase in [Ca2+](c), K+-elicited depolarizations of the cells did not further augment [Ca2+](c). Evidently, this is due to a direct inhibitory effect of azide on L-type Ca2+ channels. The data demonstrate that disturbing the mitochondrial function affects cellular Ca2+ homeostasis in B-cells at several sites. Thus, it is concluded that intact mitochondrial function is a prerequisite for regular Ca2+ handling in B-cells.

Animals↗

Increased anxiety-like behaviors and mitochondrial dysfunction in mice with targeted mutation of the Bcl-2 gene: further support for the involvement of mitochondrial function in anxiety disorders.

There is growing evidence that anxiety disorders are associated with impairments of cellular plasticity and resilience. Paralleling these advances in our understanding of the neurobiologic underpinnings of anxiety disorders is the growing appreciation of the diverse functions that mitochondria play in regulating integrated CNS function. The emerging data suggest that mitochondrial Ca2+ sequestration has a key role in modulating the tone of synaptic plasticity in a variety of neuroanatomical regions, including those implicated in the pathophysiology of anxiety disorders. Furthermore, activation of peripheral mitochondrial benzodiazepine receptors resulted in reduced anxiety in rats. One of the major modulators of mitochondrial function is Bcl-2 proteins imbedded in the inner mitochondrial membrane. Bcl-2 overexpression increases mitochondria Ca2+ uptake capacity and resistance to Ca2+-inhibition of respiration and upregulation of Bcl-2 increases maximal uptake capacity of mitochondria. We have, therefore, explored the significance of Bcl-2 in the association between mitochondrial function and affective disorders testing Bcl-2 heterozygote mice in models of affective and anxiety disorders. Mutant mice have reduced mitochondrial Bcl-2 levels, and although they have no gross behavioral abnormalities, they demonstrate a significant increase of anxiety-like behaviors. Bcl-2 heterozygote mice spent less time in the center of an open field, spent less time outside an enclosure in the "emergence test", were less likely to explore the transparent part of a black/white box or the open arms of an elevated plus maze compared with WT controls. Mutant mice did not differ from WT in measures of locomotion or in the forced swim test for depression-like behavior suggesting a specific effect on anxiety-like behaviors. Our study, therefore demonstrates that Bcl-2 may be a key factor in anxiety disorders and that its effects may possibly originate from its role in the mitochondria.

Animals↗

[The relationship between alteration of mitochondrial enzyme activities and mitochondrial function after cervical cord injury].

To investigate the relationship between mitochondrial enzyme activities and mitochondrial function after cervical cord injury, cervical cord model was prepared using Allen method in cats. Changes in mitochondrial Na+, K(+)-ATPase, Ca2+, Mg(2+)-ATPase, superoxide dismutase (SOD) activities, contents of malondialdehyde (MDA) and mitochondrial function in cervical cord were observed by different biochemical methods. The results showed that mitochondrial Na+, K(+)-ATPase, CA2+, Mg(2+)-ATPase, SOD activities decreased; mitichondral respiratory control rate (RCR), P/O ratio and oxidative phosphorylation rate (OPR) were also depressed is compared with control group (P < 0.05), but MDA level significantly increased compared to control group (P < 0.01). The results demonstrate that there is close correlation, between mitochondrial ATPase. SOD activities and mitochondral function, suggesting that mitochondrial pathophysiological alteration plays important roles in the secondary damage after cervical cord injury.

Animals↗

[Protection of melatonin against damage of sperm mitochondrial function induced by reactive oxygen species].

OBJECTIVE: To study the damage of mitochondrial function of sperm induced by reactive oxygen species (ROS), and the protection of melatonin (MLT) against the damage. METHODS: Spermatozoa of normal physiological function selected from semen samples by Percoll gradient centrifugation technique were used as normal sperm models in the present study. Reactive oxygen species were generated by hypoxanthine xanthine oxidase system, and in the presence (or absence) of MLT (6 mmol/L), incubated with normal sperm models for 30 and 60 minutes. After incubation, the activity of succinate dehydrogenase (SDH) in mitochondria of spermatozoa was assessed by histochemical method, and spermatozoa were labeled with specific fluorescent probe of Rhodamine 123 to measure mitochondrial membrane potential (MMP) by flow cytometry. RESULTS: After normal spermatozoa were incubated with ROS, MMP of spermatozoa significantly decreased, and the activity of SDH almost decreased to zero. However, MLT had effect on reducing the damage of the mitochondrial function of sperm induced by ROS. CONCLUSION: ROS can damage the mitochondrial function of sperm by affecting MMP of spermatozoa and the activity of SDH. MLT can protect sperm mitochondria from the damage induced by ROS through its effective antioxidative potential.

Flow Cytometry↗