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Brain-metabolite transverse relaxation times in magnetic resonance spectroscopy increase as adenosine triphosphate depletes during secondary energy failure following acute hypoxia-ischaemia in the newborn piglet.

The adenosine triphosphate (ATP)-dependent sodium/potassium pump extrudes intracellular sodium in exchange for extracellular potassium. Low ATP causes pump dysfunction increasing both intracellular sodium and water thereby enhancing metabolite mobility. This should be detectable by proton magnetic resonance spectroscopy (MRS) as increased metabolite transverse relaxation times (T2s). During secondary cerebral energy failure in the newborn piglet, proton and phosphorus MRS showed large increases in the T2s of choline, creatine, N-acetylaspartate, and lactate that correlated with ATP depletion. These results provide insight into factors affecting metabolite T2s and show that T2s may be useful for studying cellular oedema.

Adenosine Triphosphate↗

Luciferin-luciferase assay of adenosine triphosphate from bacteria: a comparison of dimethylsulphoxide (DMSO) and acetone with other solvents.

The extraction of adenosine triphosphate (ATP) from six strains of bacteria, chosen for differences in cell-wall composition and habitat, was performed. The solvents were two in common use, Tris-ethylenediaminetetraacetate (Tris-EDTA) and trichloroacetic acid (TCA), and two promising, though less utilized solvents, dimethylsulphoxide (DMSO) and acetone. ATP was determined by the luciferin-luciferase reaction. Of the solvents used, DMSO and acetone were the most effective considering the different kinds of bacteria tested and, of these two, DMSO was the most convenient to use. Tris-EDTA was not as effective as the other solvents tested and TCA, which was effective with most strains, gave low yields when used with cultures grown in artificial seawater broth. Internal standards were used to determine if there were substances present that could inhibit the reaction of released ATP with the luciferin-luciferase reagent. Extracts of ATP, stored at -20 degrees C, were stable for up to 3 weeks.

Acetone↗

Adenosine triphosphate bioluminescence analysis for rapid screening of microbial contamination in non-sterile pharmaceutical samples.

An Adenosine Triphosphate (ATP) bioluminescence system was compared and validated against standard methods for rapid microbiological monitoring of several non-sterile pharmaceutical formulations such as creams, tablets, and capsules. Results obtained using 1%, 2.5%, and 10% of product suspensions indicated that most samples that did not contain non-microbial ATP neither inhibited the bioluminescence reaction nor did something else. Ten percent product suspensions were inoculated with different concentrations of Pseudomonas aeruginosa, Staphylococcus aureus, Escherichia coli, Salmonella typhimurium, Candida albicans, and Aspergillus niger. Samples were incubated for 24-120 h at 35 degrees C with shaking. Results indicated a strong inhibitory effect of microbial growth, as no microorganisms were detected by using the ATP bioluminescence assay. However, when 1% and 2.5% product suspensions were spiked with the same microorganisms, positive detection was confirmed. After incubation, all microorganisms were detected by the bioluminescence system within 24-72 h. All positive samples were confirmed by using standard plating media. However, to optimize detection of all microorganisms, different enrichment media were developed.

Adenosine Triphosphate↗

Erythrocyte adenosine triphosphate depletion during voluntary hyperventilation.

Chronic hypophosphatemia in humans is associated with a slow depletion of adenosine triphosphate (ATP) and 2,3-diphosphoglycerate (2,3-DPG) in erythrocytes, combined with shape alteration, impaired deformability, and viability of the cells. Likewise, incubation of erythrocytes in alkaline solution is associated with ATP depletion. Since in hyperventilation both hypophosphatemia and alkalosis are present, we have investigated red cell organic phosphates, shape, deformability, and osmotic fragility before, during, and after 20 min of voluntary hyperventilation. On the average, red cell ATP decreased by 42%, the blood pH increased by 0.2 units, and plasma inorganic phosphorus decreased by 46% compared with the initial values. Red cell 2,3-DPG, shape, deformability, and osmotic fragility remained unchanged. After the end of hyperventilation ATP increased rapidly to control values in parallel with the normalization of the blood pH, whereas inorganic plasma phosphorus remained at the low level observed during hyperventilation. It is concluded that the combined effects of hypophosphatemia and alkalosis in acute hyperventilation lead to an isolated fall of red cell ATP, which occurs as rapid as after total inhibition of red cell glycolysis in vitro.

2,3-Diphosphoglycerate↗

Intracellular levels of adenosine triphosphate in hamster trachea organ cultures exposed to Mycoplasma pneumoniae cells or membranes.

The amount of adenosine triphosphate (ATP) in hamster trachea organ cultures was determined with a technique based on light emission from a luciferin/luciferase/ATP reaction. The amount of ATP, expressed as ng per mg dry weight, was consistent in tracheal explants prepared from various animals and changed negligibly when explants were cultivated in vitro for several days. The amount of ATP was related directly to cellular activity and integrity in the epithelium since inactivation by heat or freeze-thaw rapidly depleted measurable ATP, and ciliary activity and ATP content were related directly. When tracheal explants were infected with 10(5) to 10(7) CFU of virulent Mycoplasma pneumoniae cells, both ciliary activity and ATP content in the tissue dropped dramatically after approximately 5 to 8 days (up to 85% and 60% decreases, respectively). Exposure of explants to 50 to 200 microgram per ml of purified M. pneumoniae membranes also caused significant decreases in ciliary activity and ATP. When explants were infected with attenuated or nonvirulent mycoplasmas, ciliary activity was only slightly decreased, while ATP values often rose slightly. The technology associated with the determination of ATP levels in tracheal explants should prove useful as a new, objective, analytical approach to cell viability in organ cultures.

Adenosine Triphosphate↗

An incubation medium for the elevation of adenosine triphosphate and 2,3-diphosphoglycerate in fresh and long-preserved human erythrocytes.

The levels of adenosine triphosphate (ATP) and 2,3-diphosphoglycerate in freshly drawn human erythrocytes can be tripled by a 2 h incubation at 37 degrees C in a medium containing 21 mM glucose, 1.8 mM adenine, 5 mM pyruvate, 10 mM inosine, and 96 mM phosphate. Similar incubation conditions will restore the levels of ATP and 2,3-diphosphoglycerate in erythrocytes from blood levels preserved for 12 and 15 weeks, respectively, to those of fresh cells. Omission of pyruvate from the incubation medium further increases the level of ATP slightly, but there is little elevation of 2,3-diphosphoglycerate. Under these conditions labelled pyruvate and lactate production from [14-C]glucose or [14-C]inosine is not diminished, but labelled fructose 1,6-diphosphate, rather than 2,3-diphosphoglycerate, accumulates. In addition, omission of pyruvate from the incubation medium, with a concomitant decrease in accumulation of 2,3-diphosphoglycerate, diminishes the concentration of inorganic phosphate required for optimal ATP elevation. A 5 h incubation in the glucose-adenine-pyruvate-inosine-phosphate medium elevates the levels of ATP and 2,3-diphosphoglycerate in erythrocytes from blood preserved in the cold for 15 weeks to twice that of fresh cells, indicating that the cells retain their metabolic potential even after prolonged storage at 2 degrees C. The medium may provide a method of rejuvenating 10-12 week cold-preserved erythrocytes for transfusion purposes, by a 1 h incubation at 37 degrees C.

Adenine↗

Evaluation of methotrexate sensitivity in human leukemia cell lines by an adenosine triphosphate bioluminescence assay.

To verify a recently developed in vitro tumor chemosensitivity assay (TCA) based on adenosine triphosphate (ATP) measurement for detection of methotrexate (MTX) sensitivity or resistance in human leukemias and solid tumors in which the antifol is indicated, we investigated the ability of the assay to discriminate between sensitivity and resistance to this antifolate in human leukemia cell lines sensitive (parental CCRF-CEM/S) and resistant (CCRF-CEM/E, CCRF-CEM/T and CCRF-CEM/P sublines) to MTX by virtue of known biochemical mechanisms. Correlation experiments with a standard cell growth inhibition assay and a radiometric method for measurement of thymidylate (dTMP) synthesis ([5-3H]-2'-deoxyuridine tritium release assay) were performed. No significant differences were observed in the IC50 values for the four cell lines tested as determined by cell growth evaluation (cell number counts) and the ATP-TCA after a 72 h MTX exposure. After short-term (4 h) high-dose MTX exposure, no significant correlation between ATP-TCA and the classic [5-3H]-2'-deoxyuridine tritium release assay was observed in both CCRF-CEM/S and CCRF-CEM/P cells. CCRF-CEM/T and CCRF-CEM/E displayed, instead, complete resistance with both methods. When using conditions proposed for clinical application (long-term exposure, i.e. 144 h) the ATP-TCA permitted the identification of cell lines highly resistant to MTX (CCRF-CEM/F and CCRF-CEM/E), while intermediate MTX resistance due to altered polyglutamylation was not detectable. Detection of this kind of resistance was obtained, as expected, using a short-term exposure (4 h) to MTX followed by a long-term efflux (72 h) in drug-free medium. On the basis of these results, ATP-TCA appears to be a suitable method for the evaluation of cytotoxicity induced by MTX.

Adenosine Triphosphate↗

Correlation between adenosine triphosphate content and apoptosis in liver of rats treated with alcohol.

BACKGROUND: Chronic alcohol consumption depresses adenosine triphosphate (ATP) synthesis and induces mitochondrial DNA (Mt-DNA) deletion. ATP content in cells may play a critical role in inducing cell death, apoptosis, or necrosis. However, it is unknown which type of cell death occurs in alcoholic liver disease. In this study, the deletions of hepatic Mt-DNA, hepatic ATP content, and the number of single-stranded DNA (ss-DNA) of hepatocytes in rats treated with ethanol were determined to elucidate the relationship among Mt-DNA deletion, ATP synthesis, and/or hepatic apoptosis. METHODS: Sixteen male Wistar rats were fed with a liquid diet containing 36% ethanol (E group) or liquid diet without ethanol (C group) for 5 weeks. Hepatic ATP content was measured and the deletions of Mt-DNA encoding complexes I, IV, and V were determined in fresh liver tissue, and ss-DNA was stained in paraffin sections. RESULTS: Fatty change was observed in the E group, but not in the C group. Hepatic ATP content in the E group was 0.44 micromol/g of liver, which was significantly lower than that in the C group (0.84 micromol/g of liver). However, no deletion of Mt-DNA encoding complexes I, IV, and V was detected in either the E or the C group. ss-DNA staining was clearly observed in the nuclei of hepatocytes in both groups. The number of ss-DNA-positive hepatocytes in the E group was 5.6 +/- 1.8/10,000 hepatocytes, which was significantly less than that in the C group: 20.6 +/- 4.8/10,000 hepatocytes. There was a positive correlation between hepatic ATP contents and the number of ss-DNA-positive cells. CONCLUSIONS: The results suggest that mitochondrial function, at least in part ATP synthesis, was depressed before the damage of Mt-DNA by chronic ethanol consumption. Chronic ethanol consumption may not be responsible for the apoptosis of hepatocytes.

Adenosine Triphosphate↗

Comparative clinical and electrophysiologic effects of adenosine triphosphate and verapamil on paroxysmal reciprocating junctional tachycardia.

The efficacy, electrophysiologic effects, and side effects of adenosine triphosphate (ATP) and verapamil in the short-term management of paroxysmal reciprocating junctional tachycardia (PRJT) were compared in 20 patients. All patients had inducible sustained PRJT during control electrophysiologic study. Fourteen patients had PRJT involving a retrograde accessory pathway, and six patients had atrioventricular (AV) nodal reentrant tachycardia ("slow-fast" type). ATP, which has a very short half-life, was first administered (10 mg iv over 1 sec) during sustained PRJT. If PRJT did not terminate within 2 min, a bolus of 20 mg ATP was given. Verapamil (5 mg iv over 15 sec) was subsequently administered during sustained PRJT, and if the latter did not terminate within 3 min another bolus of 5 mg verapamil was given. The cycle lengths of PRJT before administration of 10 or 20 mg ATP and 5 mg verapamil were similar. The 10 mg dose of ATP terminated PRJT in 17 of the 20 patients, and 20 mg ATP was required to terminate PRJT in the three remaining patients. The 5 mg dose of verapamil terminated PRJT in 15 patients, whereas an additional bolus of 5 mg terminated PRJT in one of the remaining five patients. The overall efficacy of ATP (20/20, 100%) was significantly greater than that of verapamil (16/20, 80%) (p less than .05); however, there was no significant difference between the conversion rate of PRJT after administration of 10 mg ATP (17/20) and 5 mg verapamil (15/20). ATP terminated PRJT more quickly than verapamil (mean 24 sec vs mean 51 sec; p less than .01). Termination of PRJT by either ATP or verapamil was mainly related to a block in the AV node in patients with accessory pathways and to a block in the antegrade slow pathway in patients with AV nodal reentry. Cycle length alternans before termination of tachycardia was observed more frequently after verapamil than after ATP (7/16 vs 1/20; p less than .01). The total incidence of transient second-degree AV nodal block and various cardiac supraventricular and ventricular arrhythmias was higher after termination of PRJT by ATP than after verapamil (17/20 vs 5/16; p less than .001). A higher incidence of transient but frequently uncomfortable noncardiac side effects was observed after ATP. We conclude that ATP (10 to 20 mg) is more effective and more rapid than verapamil (5 or 5 + 5 mg) in terminating PRJT but results in a higher incidence of cardiac and noncardiac side effects.(ABSTRACT TRUNCATED AT 400 WORDS)

Adenosine Triphosphate↗

Effects of adenosine, adenosine triphosphate and structural analogues on glucagon secretion from the perfused pancreas of rat in vitro.

The effects of adenosine, adenosine triphosphate (ATP) and structural analogues have been studied on glucagon secretion from the isolated perfused pancreas of the rat in the presence of glucose (2.8 mM). Adenosine induced a transient increase of glucagon secretion. This effect was concentration-dependent in the range of 0.165 to 165 microM. ATP also induced an increase, but the effect was no greater at 165 microM than at 16.5 microM. 2-Chloroadenosine, an analogue more resistant to metabolism or uptake systems than adenosine, was more effective. Among the three structural analogues of ATP or ADP studied, beta, gamma-methylene ATP which can be hydrolyzed into AMP and adenosine had an effect similar to adenosine or ATP at the same concentrations (1.65 and 16.5 microM); in contrast alpha, beta-methylene ATP and alpha, beta-methylene ADP (resistant to hydrolysis into AMP and adenosine) were ineffective. Theophylline (50 microM) a specific blocker of the adenosine receptor, suppressed the glucagon peak induced by adenosine, 2-chloroadenosine, ATP and beta, gamma-methylene ATP (1.65 microM). An inhibitor of 5' nucleotidase, alpha, beta-methylene ADP (16.5 microM), reduced the glucagon increase induced by ATP and did not affect the response to adenosine (1.65 microM). These results support the hypothesis of adenosine receptors (P1-purinoceptors) on the pancreatic glucagon secretory cells and indicate that ATP acts after hydrolysis to adenosine.

2-Chloroadenosine↗

PROCAINE ACTION: ANTAGONISM BY ADENOSINE TRIPHOSPHATE AND OTHER NUCLEOTIDES.

Appropriate concentrations of adenosine tri-, di-, and monophosphate antagonize the depressant action of procaine on isolated nerve. Some calcium ion is required in the external solution in order for these nucleotides to produce their maximum effects. When applied either to normal or sodium deficient nerves, the nucleotides do not increase action-potential amplitude.

Action Potentials↗

Sulfur availability and the SAC1 gene control adenosine triphosphate sulfurylase gene expression in Chlamydomonas reinhardtii.

A Chlamydomonas reinhardtii adenosine triphosphate (ATP) sulfurylase cDNA clone (pATS1) was selected by complementing a mutation in the ATP sulfurylase gene (cysD) of Escherichia coli. E. coli cysD strains harboring pATS1 grow on medium containing sulfate as the sole sulfur source and exhibit ATP sulfurylase activity. The amino acid sequence of the C. reinhardtii ATP sulfurylase, derived from the nucleotide sequence of the complementing gene (ATS1), is 25 to 40% identical to that of ATP sulfurylases in other eukaryotic organisms and has a putative transit peptide at its amino terminus. ATP sulfurylase mRNA was present when cells were grown in sulfur-replete medium, but accumulated to higher levels when the cells were exposed to sulfur-limiting conditions. Furthermore, sulfur-stress-induced accumulation of the ATS1 transcript was reduced in a strain defective in SAC1, a gene that is critical for acclimation to sulfur-limited growth.

Acclimatization↗

Evaluation of adenosine triphosphate and 2,3-diphosphoglycerate after twenty-four hours in red cells washed for neonatal transfusion.

Adenosine triphosphate and 2,3-diphosphoglycerate concentrations in 14 U of CPDA-1 stored red cells (PRBC) and washed red cells (WRBC) were measured to assess indirectly the quality of WRBC for neonatal transfusion after 24 h. The results indicate that there is no difference in red cell ATP and 2,3-DPG concentrations between PRBC and WRBC after a 24-hour period.

2,3-Diphosphoglycerate↗

Catecholamine, adenosine triphosphate, and P-creatine levels in decapitated whole mouse brain.

The levels of norepinephrine, epinephrine, dopamine, adenosine triphosphate, and P-creatine were measured in whole mouse brain collected under two conditions: 1) the decapitated head was immediately plunged into liquid nitrogen (nonanoxic tissue); or 2) the tissue was allowed to remain anoxic before the quick-freezing procedure. The substrate levels were significantly decreased in brain anoxic for only 30 sec. The catecholamine levels in nonanoxic mouse brain appear to be higher than levels previously reported in brains collected with microwave irradiation or by decapitation with rapid dissection of tissue before it was frozen.

Adenosine Triphosphate↗

Utilization of adenosine triphosphate in rat mast cells during and after secretion of histamine in response to compound 48/80.

The adenosine triphosphate (ATP) content of rat mast cells and their lactate production were measured during and after secretion of histamine induced by compound 48/80. Antimycin A and oligomycin were used to block oxidative ATP synthesis, and 2-deoxyglucose (2-DG) was used to block glycolytic ATP synthesis. Histamine secretion was completed after 10 sec. exposure of the cells to compound 48/80. During that time period there was an increased ATP-utilization of 0.15 pmol/10(3) cells. After completion of the secretory process there seemed to be an enhanced utilization of ATP of 0.40 pmol/10(3) cells/min., which may be associated with recovery of the cells.

Adenosine Triphosphate↗

Action of adenosine triphosphate on human skin and gingival fibroblasts. Protective action of fibronectin.

If cultured in media supplemented with adenosine triphosphate (ATP), EDTA, trypsin, thrombin, or incubated at 0-15 degrees C, human skin fibroblasts (HSF) and human gingival fibroblasts (HGF) change from long attached elliptical to round floating cell cultures. Also, if treated with ATP, EDTA, trypsin, thrombin, or incubated at 0-15 degrees C, the attached HFS or HGF monolayers detach from plastic substratum and form floating round cells that progressively aggregate together and die. The described experiments examined the role of cellular and extracellular ATP on HSF and HGF attachment. These two types of fibroblasts differed in their cellular ATP levels and their response to metabolic inhibitors. ATP causes destruction of microtubules as monitored by colcemid uptake and cellular detachment. Fibronectin protects both HSF and HGF from the effects of extracellular ATP.

Adenosine Triphosphate↗

A rapid semiautomated bioassay of gentamicin based on luciferase assay of bacterial adenosine triphosphate.

A rapid semiautomated bioassay of gentamicin in serum based on the effect of gentamicin on intracellular adenosine triphosphate (ATP) levels in bacterial cultures is presented. The ATP assay was performed with the firefly luciferin/luciferase system and results were compared with an agar diffusion technique. The lower limit of detection was set at 1 microgram/ml. The accuracy of the ATP assay expressed as a recovery of gentamicin over the range 1--8 microgram/ml was 98--103% and S.D. varied between 11-15%. The reproducibility was approximately within the same limits. Other antibiotics tested did not interfere with the determination of gentamicin. 112 clinical serum specimens containing gentamicin alone (N = 55) or in combination with other antibiotics (N = 57) were assayed and results with the two methods compared (r = 0.94). Volumes required were 0.1 ml serum and results were available within 3 h.

Adenosine Triphosphate↗

Interaction between adenosine triphosphate and noradrenaline in the isolated vas deferens of the guinea-pig.

1 An interaction between adenosine triphosphate (ATP) and noradrenaline (NA) was investigated in the isolated vas deferens of the guinea-pig. 2 ATP (1.7 to 50 microM) enhanced contractions due to transmural electrical stimulation (ES; parameters: 30 Hz, 0.2 to 0.3 ms, 10 to 30 V; 1 s train duration). Responses to exogenous NA (12 microM) were also potentiated by ATP while contractions to acetylcholine (6 microM) were inhibited. 3 NA (1.2 microM) potentiated ATP-induced contractions and prevented the development of tachyphylaxis to ATP (510 microM). 4 Phentolamine (12.5 microM) prevented the potentiation by NA of ATP-induced contractions; these contractions were insensitive to phentolamine (up to 25 microM). 5 Removal of potassium chloride from the Tyrode solution for 10 min abolished the potentiating actions of both ATP and NA. 6 The present results suggest that the effect of ATP may be functionally closely related to that of NA at alpha-adrenoceptors in the vas deferens of the guinea-pig.

Adenosine Triphosphate↗