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Delayed phytohemagglutinin-stimulated production of adenosine triphosphate by aged human lymphocytes: possible relation to mitochondrial dysfunction.

The decreased immune response associated with aging may, in part, reflect intrinsic age-related biochemical alterations in lymphocytes from older animals. We measured levels of lymphocyte adenosine triphosphate (ATP) and continuous [3H]thymidine incorporation in phytohemagglutinin-stimulated lymphocytes from young and old humans, and the effects thereon of inhibitors of mitochondrial oxidative phosphorylation and protein synthesis. No difference was found in adenine nucleotide content between young and old subjects. After 24 hours of culture there was a decrease in ATP, with recovery and 2--3-fold increase at 48 hours in young cells after phytohemagglutinin stimulation. We observed a clearcut delay in older lymphocytes of the increase in ATP and [3H]thymidine incorporation following phytohemagglutinin stimulation. We found no evidence for decreased viability or diminished number of responding units in aged cultures. The evidence suggests that mitochondrial dysfunction may play a role in the immunodeficiency of aging.

Adenine Nucleotides↗

Adenosine triphosphate--magnesium chloride ameliorates reperfusion injury following ischemia as determined by phosphorus nuclear magnetic resonance.

We used high-resolution phosphate 31(31P)--nuclear magnetic resonance spectroscopy to study the effects of ischemia and reperfusion on intracellular adenosine triphosphate (ATP) and pH changes in isolated perfused rat kidneys. With renal ischemia, ATP levels fell rapidly and the inorganic phosphate (Pi) peak shifted, indicating acidosis. On reperfusion after 45 minutes of warm ischemia, there was a 56% rise in tissue ATP levels within ten minutes that then slowly declined; by 75 minutes the levels were only 33% of normal. Perfusate flow decreased from 21.2 +/- 0.9 mL/min (mean +/- SE) to 16.5 +/- 1.1 mL/min and the Pi peak did not shift during reperfusion. When 0.3mM ATP complexed to magnesium chloride (ATP-MgCl2) was added to the perfusate after ischemia, renal ATP levels increased to 69% of normal within ten minutes of reperfusion and by 75 minutes they were normal. Perfusate flow was also normal during reperfusion. The Pi peak shifted back to the normal frequency, indicating correction of the intracellular acidosis. Thus, intracellular acidosis, ATP depletion, and decreased flow during reperfusion injury were rapidly reversed and sustained by the postischemic administration of ATP-MgCl2.

Adenosine Triphosphate↗

[Effect of adenosine triphosphate on the cleavage of H1 histones in nuclei of rat spleen and liver].

Proteolysis of histones H1b and H1(0) is observed after the incubation of rat spleen nuclei at 37 degrees C during 1 hour. Adenosine triphosphate, inorganic pyrophosphate and nicotinamide adenine dinucleotide decrease the digestion of histone H1b. ATP, PP1 and NAD+, in the case of 3 hours incubation, do not affect proteolysis of H1 histones in rat spleen nuclei. The incubation of rat liver nuclei at 37 degrees C during 1 hour leads to a decrease of the amount of histone H1b and, to much more extent, H1a. In this case ATP, PP1 and NAD+ increase proteolysis of histone H1a but practically do not affect proteolysis of H1b. After 2-hours incubations histone H1a is completely digested but histone H1b is partially preserved: ATP in this case, as well as in spleen nuclei, decreases proteolysis of histone H1b. During the 3 hours incubation, when histones H H1a and H1b are completely digested, partial digestion of histone H3 being observed, ATP does not prevent from proteolysis of histone H1b. A protein appears between the H2A and H4 histones after heating at 37 degrees C in both spleen and liver rat nuclei. Neither ATP nor PP1 and NAD+ affect the amount of this protein. It is suggested that the location of histones H1a and H1b in different chromatin domains determines the digestion of these histones by ATP-dependent proteinases.

Adenosine Triphosphate↗

Iron release from transferrin: synergistic interaction between adenosine triphosphate and an ammonium sulfate fraction of hemolysate.

In previous work we have shown that red cell hemolysates, at neutral pH, will release iron from transferrin; with molecular sieve chromatography, that activity separated into low molecular weight and high molecular weight components, both susceptible to destruction by phosphatases. Thus the possibility that nucleotides might be involved was suggested. We have studied the interaction of adenosine triphosphate (ATP) and an ammonium sulfate fraction of hemolysate with transferrin. ATP, as well as adenosine diphosphate and 2,3-diphosphoglyceric acid, interacts synergistically with the ammonium sulfate hemolysate fraction to promote iron release from transferrin. This activity is not limited to phosphorylated compounds, because citrate shows a similar effect. This activity is not a nonspecific chelating effect, because deferoxamine is without activity. All the synergistic anions labilize transferrin's HCO3. We therefore suggest that they form a non-HCO3 ternary complex with transferrin and iron, and that release of iron from this complex is promoted by a high molecular weight constituent of the hemolysate.

2,3-Diphosphoglycerate↗

Myocardial perfusion imaging using adenosine triphosphate stress multi-slice spiral computed tomography: alternative to stress myocardial perfusion scintigraphy.

BACKGROUND: The present study was designed to: (i) detect myocardial ischemia in contrast enhanced multi-slice spiral computed tomography (CE-MSCT) using adenosine triphosphate (ATP) pharmacological stress test; and (ii) evaluate the potential of ATP stress CE-MSCT in a clinical setting. METHODS AND RESULTS: Twelve patients underwent ATP stress CE-MSCT and stress thallium-201 myocardial perfusion scintigraphy (MPS) and 9 of the patients received conventional coronary angiography (CAG). Dual CE-MSCT scans were performed for stress and rest images, with and without intravenous infusion of ATP (0.16 mg.kg-1.min-1) at intervals of 20 min. Myocardial perfusion and coronary artery were visually evaluated using MSCT and compared the results obtained from MPS and CAG. Of 36 territories, stress images of CE-MSCT described 26 hypo-perfusion areas and MPS described 22 redistributions. The agreement between MSCT and MPS was 83% (30/36, p<0.05). In 141 coronary artery segments of 9 patients undergoing CAG, rest images of CE-MSCT, which had significantly higher assessability than stress images (89% vs 48%, p<0.05), described 76% (13/17) of culprit coronary stenoses. CONCLUSIONS: Although CT-angiography should be currently assessed using rest images, ATP stress CE-MSCT can describe both ATP-induced myocardial ischemia and coronary artery stenoses in patients with coronary artery disease.

Adenosine Triphosphate↗

Reassessment of the accuracy of traditional sperm characteristics and adenosine triphosphate (ATP) in estimating the fertilizing potential of human semen in vivo.

Receiver operating characteristic curves and accuracy parameters were computed for traditional sperm characteristics (concentration, motility, morphology) and the number of peroxidase negative cells, and the concentration of adenosine triphosphate (ATP) in semen from populations of fertile and infertile men, and men who achieved a pregnancy after varicocele treatment. The percentage and concentration per millilitre of spermatozoa with rapid linear progressive motility, and the ATP concentration, provided the best discrimination between fertile and treated fertile from infertile men. The misclassification rate was higher for sperm morphology, total progressive motility and viability, whereas sperm concentration and the total sperm count per ejaculate had the worst discriminating power. The number of peroxidase negative cells per 100 spermatozoa was highly specific in identifying men who achieved pregnancy after varicocele treatment. The lower limit of normality of sperm characteristics was remarkably different between fertile men and men achieving pregnancy after treatment or during infertility work-up.

Adenosine Triphosphate↗

Interactions of morphine, adenosine, adenosine triphosphate and phosphodiesterase inhibitors on the field-stimulated guinea-pig ileum.

Inhibition of the electrically induced contractions of the guinea-pig ileum has been shown to be a reliable index to the relative potency of various narcotic analgesics. This property suggests that this preparation might be used as a model in attempts to elucidate the mechanism(s) by which morphine induces analgesia in the central nervous system. Since it has been demonstrated that some adenosine derivative may function as an endogenous inhibitory transmitter in the gut, the effects of adenosine, adenosine triphosphate (ATP) and morphine on the ileum were further characterized and compared. Morphine, adenosine and ATP produce a substantial inhibition of the isometric contractions induced by transmural field stimulation. The inhibition produced by each is antagonized by 2.5 times 10(-7) M tolazoline whereas that produced by ATP is potentiated by 4 times 10(-7) M 5-hydroxytryptamine. The inhibitory effects of morphine and ATP can also be markedly potentiated by two of the several phosphodiesterase inhibitors tested, Ro 20-1724 and dipyridamole. In addition, pretreatment of the ileum with either adenosine, ATP or morphine can produce a significant potentiation of the inhibitory effects of norepinephrine. The above suggests that cyclic adenosine 3',5'-monophosphate may play a role in mediating some of the inhibitory effects produced by exogenous adenosine, ATP and morphine. In addition, the similarities between the effects produced by these substances indicates that the biochemical pathways responsible for mediating the effects of each may share some common elements.

Adenosine↗

Role of adenosine-triphosphate-sensitive potassium channels in the mechanical responses of agonist-stimulated isolated porcine coronary arteries.

The aim of this study was to provide evidence supporting the hypothesis that the reactivity of the vascular smooth muscle (VSM) cell is controlled at the cell membrane level by adenosine triphosphate (ATP)-sensitive (KATP) K channels, acting as signal amplifying modulators of the function of L-type voltage operated Ca channels. KATP channels, detected in numerous parts of the vascular tree, are targets for extracellular ATP or adenosine, which stimulate A2 receptors mediating relaxation. To test the hypothesis of a putative role for KATP channels switching between vasoconstricting and vasodilating mechanisms, changes in contractile reactivity were measured in helical strips of epicardial porcine coronary artery preparations in response to various vasoconstrictor and vasodilator substances or combination of these. The data show that the tonic component of the biphasic contractions induced by several agonists (acetylcholine, histamine, serotonin), as well as the contractions induced by F- ions (2 mmol/l), which activate G proteins downstream of the receptors could be inhibited by both adenine nucleotides and by cromakalim, known as openers of KATP channels. The EC50 values for the dose-response curves established for the inhibition of histamine-induced contractions by adenosine were nearly identical to those obtained for the relaxations of fluoride-induced contractions by cromakalim: resp. 0.556 +/- 0.081 and 0.590 +/- 0.052 mumol/l (n = 6). Contractions induced by BAY k 8644 (20 nmol/l), by tetraethylammonium (5 mmol/l) or by beta-methyldigoxin (1 mumol/l) were also strongly inhibited by 1 mumol/l cromakalim. From the results obtained in this study, it may be concluded that KATP channels could possibly play an integrative role in the signal transduction mechanism in VSM in that they act as common effectors for both vasoconstrictor and vasodilator agonists.

Adenosine↗

Effect of prostaglandins on human sperm function in vitro and seminal adenosine triphosphate content.

The aim of the present study was to evaluate the effect of addition of physiologic amounts of different prostaglandins normally present in semen, on sperm motility, on sperm penetration capacity in cervical mucus in vitro, and on the adenosine triphosphate (ATP) concentration in semen. Semen samples were obtained from volunteers who were attending the fertility outpatient clinic. Sperm motility was measured on a video recorder with a built-in timer, sperm penetration by the Kremer test, and ATP by bioluminescence assay. The addition of 19-hydroxy prostaglandin (PG) E to ejaculates positively stimulated sperm motility and sperm penetration capacity. The opposite effect was observed with 19-hydroxy PGF. PGE1, PGE2, and PGF2 alpha had no effect on either parameter, while PGF1 alpha reduced the sperm motility. The addition of 19-hydroxy PGE to ejaculates increased and the addition of 19-hydroxy PGF reduced semen concentrations of ATP. However, only the last-mentioned effect was statistically significant (P less than 0.05). It is suggested that, in particular, 19-hydroxy PGE and 19-hydroxy PGF are important regulators of sperm motility and that the effect may be mediated via effects on the ATP content in the spermatozoa.

Adenosine Triphosphate↗

Relation between QT dispersion and adenosine triphosphate stress thallium-201 single-photon emission computed tomographic imaging for detecting myocardial ischemia and scar.

It is not known if QT dispersion is useful for detecting coronary artery disease. We investigated whether QT dispersion at baseline and during adenosine triphosphate (ATP) infusion correlate with the imaging patterns obtained from ATP stress thallium-201 single-photon emission computed tomography (ATP-SPECT). QT dispersion was determined in 169 patients who underwent ATP-SPECT from 12-lead electrocardiograms obtained at baseline and 3 minutes after the beginning of ATP infusion. Based on the results of ATP-SPECT, patients were divided into 4 groups: normal (n = 55), ischemia (n = 38), ischemia and scar (n = 42), and scar (n = 34). Baseline QT dispersions (mean +/- SD) in the normal, ischemia, ischemia and scar, and scar groups were 48 +/- 15, 50 +/- 17, 69 +/- 25, and 70 +/- 24 ms, respectively. Baseline QT dispersion was significantly greater in the groups with myocardial scar. QT dispersions during ATP infusion were 43 +/- 16, 63 +/- 20, 76 +/- 20, and 62 +/- 25 ms in the normal, ischemia, ischemia and scar, and scar groups, respectively. QT dispersion increased with ATP infusion in patients with myocardial ischemia. QT dispersion at baseline and during ATP infusion correlated with the ATP-SPECT imaging pattern. These findings suggest that baseline QT dispersion and ATP-induced changes in QT dispersion may help detect the presence of myocardial ischemia and scar.

Adenosine Triphosphate↗

[Determination of the adenosine triphosphate in myocardial tissue by ion-pair reversed-phase high performance liquid chromatography].

ATP depletion is an important factor contributing to the incomplete recovery of ventricular function following ischemia and reperfusion. A simple and rapid method for determination of adenosine triphosphate(ATP) in myocardial tissue by RP-HPLC was developed. The chromatographic conditions were as follows: Spherisorb ODS2 column, V(40 mmol/L KH2PO4 and 5 mmol/L TBAP):V(methanol) = 74:26 (pH 6.2) mobile phase and UV detector at 259 nm. The ATP in myocardium was extracted with 0.4 mol/L HClO4. The calibration curve showed a good linearity in 5 mg/L-100 mg/L(r = 0.9998). The recovery ranged from 97.8% to 104.1%. The limit of detection was 2 mg/L. The verified results demonstrated that this method is precise, accurate and can be used for determination of ATP in myocardial tissue.

Adenosine Triphosphate↗

Changes in adenosine triphosphate, 2,3 diphosphoglycerate, and P50 of dog blood following transfusion of autologous red cells pretreated with phosphoenolpyruvate in vitro.

Red cells treated with phosphoenolpyruvate (PEP) in vitro were reinfused into the donor dogs and were monitored for changes in adenosine triphosphate (ATP), 2, 3 diphosphoglycerate (2,3 DPG), and P50. ATP and 2,3 DPG concentrations increased to 116 and 143 percent of control, respectively, when these cells were incubated with 60 mM PEP for 90 minutes at 37 degrees C. The oxygen dissociation curve shifted to the right, and P50 increased from 24.5 to 30.6 torr as a result of the PEP treatment. When one-half of the circulating red cell volume was treated with PEP and reinfused into the animal, the red cell 2,3 DPG increased to 120 percent of pretransfusion values. The 2,3 DPG level remained elevated during the following day and returned to near pretransfusion levels on the third day. The P50 of the circulating blood paralleled the variations in the red cell 2,3 DPG level, and the capacity for oxygen delivery was calculated to be raised by 13 to 38 percent for a period of 24 hours. In contrast, elevated red cell ATP returned to control values immediately after transfusion. In vivo viability, i.e., 24-hour survival and one-half disappearance time, of the cells pretreated with PEP were determined by a single-isotope technique using 51Cr. The results showed that PEP treatment did not injure the red cells. In addition, there was neither acute toxicity nor a deleterious hemodynamic effect when large amounts of PEP were administered intravenously. These results suggest that PEP could be used clinically to improve the capacity of the circulating red cells to deliver oxygen to the tissues.

Adenosine Triphosphate↗

Cooperative interaction between Ca2+ and beta,gamma-methylene adenosine triphosphate in their binding to fragmented sarcoplasmic reticulum from bullfrog skeletal muscle.

In order to obtain a better understanding of the mechanism of the function of fragmented sarcoplasmic reticulum (FSR), we examined the binding of beta,gamma-methylene [3H]adenosine triphosphate (AMPOPCP), an unhydrolyzable ATP analogue, and 45Ca to FSR from bullfrog skeletal muscle. In medium containing 100 mM KCl and 20 mM Tris-maleate (pH 6.80) on ice, FSR has a single class of [3H]AMPOPCP-binding sites which amount to 4.4-8.6 nmol/mg protein (usually about 7 nmol/mg protein). The affinity was in the range of 6.2-12.3 X 10(3) M-1 in the absence of Ca2+. Ca2+ increased the affinity for AMPOPCP without changing the total number of binding sites, whereas Mg2+ decreased it. The change of the affinity is due to the direct effect of Ca2+ and Mg2+ on FSR. The possibility that Mg-AMPOPCP, Ca-AMPOPCP, and free AMPOPCP might have different affinities to FSR is excluded. The extent of Ca2+-induced enhancement in AMPOPCP binding is dependent not only on Ca2+ concentration but also on the concentration of AMPOPCP. The binding sites for AMPOPCP are likely to be the ATP-binding sites on Ca2+-ATPase protein on the basis of several lines of evidence, including competition between ATP, ADP, or AMP. FSR also binds 7-13 nmol Ca/mg protein (usually about 8 nmol/mg protein) with the affinity of 4-14 X 10(4) M-1 in the absence of the nucleotide in a similar medium containing 4 mM MgCl2. The ratio of Ca-binding sites to AMPOPCP-binding sites is mostly 1, but occasionally 2, corresponding to the ratio of Ca accumulated to ATP hydrolyzed by frog FSR. In the presence of a sufficient amount of the nucleotide, the affinity for Ca2+ was also increased. These findings are well explained by the random sequence binding model of Ca2+ and AMPOPCP, which bind to FSR with positive cooperative interaction between them. However, high concentrations of the nucleotide result in a negative cooperative interaction in the nucleotide binding in the presence of Ca2+, whereas no cooperativity is observed in the absence of Ca2+. Stimulation of Ca binding by AMPOPCP is also correspondingly affected. Comparative studies show that rabbit skeletal muscle FSR, in contrast to the frog one, shows negative cooperativity in its interactions with Ca2+ and AMPOPCP under some conditions and that the ratio of Ca-binding sites to AMPOPCP-binding sites is 2, corresponding to the well-known stoichiometry with ATP.

Adenine Nucleotides↗

Duchenne muscular dystrophy: adenosine triphosphate and creatine phosphate content in muscle.

In carrying out a new study of nucleotide concentrations in dystrophic muscle, we utilized myosin as a reference base. In nine control vastus lateralis muscle samples, nucleotide concentrations were 105 +/- 11 (SEM) moles of adenosine triphosphate (ATP) and 446 +/- 57 (SEM) nmoles of creatine phosphate (CP) per milligram of myosin. In seven Duchenne dystrophic vastus lateralis muscle samples, nucleotide concentrations were 127 +/- 25 (SEM) nmoles of ATP and 462 +/- 119 (SEM) moles of CP per milligram of myosin. The CP:ATP ratio of 3.6 +/- 0.367 from Duchenne muscle was not significantly different from normal, 4.32 +/- 0.243 ((p less than 0.20). In addition, myokinase activity, which is automatically assayed in these assays, was significantly increased in the Duchenne samples (p less than 0.10). The percent of myosin per total protein in the Duchenne biopsies was also diminished by 29% (p less than 0.01). These studies suggest that ATP and CP concentrations are not decreased in Duchenne dystrophic muscle when expressed in relation to the amount of contractile protein.

Adenosine Triphosphate↗

[Adenosine triphosphate in the treatment of supraventricular paroxysmal tachycardia: a comparison with verapamil].

AIMS: There are multiple drugs options in the treatment of Paroxysmal Supraventricular Tachycardia (PST) after inefficacious vagal stimulus. In this study we compare two of these treatments: verapamil versus adenosin triphosphate (ATP). METHODS: Fifty patients with PST were randomly treated with either Verapamil (5 to 10 mg) or ATP (5 to 20 mg). The basal features of each group, and the efficacy and safety of the two drugs were compared. Verapamil failures were treated with ATP and vice versa. RESULTS: The characteristics of both groups of treatment were similar. 86% of PST episodes were resolved with Verapamil use, versus 83% after ATP administration. Finally all patients were successfully treated with these drugs. No adverse effects were observed with Verapamil, whereas these effects were frequent with ATP use, but in any case requiring specific intervention. CONCLUSIONS: Both Verapamil and aTP are an equally safe and effective treatment of PST, but transient and minor side effects are frequent after ATP administration.

Adenosine Triphosphate↗

Cyclization of the phosphate side chain of adenosine triphosphate: formation of monoadenosine 5'-trimetaphosphate.

Monoadenosine 5'-trimetaphosphate has been prepared from adeno-sine 5'-triphosphate by a carbodiimide-mediated condensation. The molecule was characterized by (3l)P nuclear magnetic resonance, and its (31)P spectrum was simulated through the assumption of a three-phosphorus spin system. The molecule is highly reactive and is rapidly converted to adenosine triphosphate upon contact with water.

Adenosine Triphosphate↗

[Anomalies of the T wave following treatment of complete chronic left branch block by massage of the carotid sinus or injection of adenosine triphosphate].

We studied the T wave during normal conduction in 25 patients aged 42 to 81 years (average 62 +/- 5) during sinus rhythm and complete left bundle branch block which regressed transiently after carotid sinus massage (22 cases) or injection of adenosine triphosphate (5 cases). Six patients had angina pectoris; coronary arteriography in 3 of the other 19 patients was normal. The reversion to normal intraventricular conduction was obtained with a lengthening of the ventricular cycle in all patients. The T wave axis with narrow QRS complexes was between + 70 degrees and -140 degrees (normal T axis in 11/25 patients); in the horizontal plane, the T wave was negative in V2 in 4 patients, in V2-V4 in 12 patients, in V2-V6 in 7 patients and in V4 in 1 patient. The amplitude of inversion in V2 varied from 0.1 to 1.5 mV; there was no significant difference between the patients with angina (0.50 +/- 0.31) and the remainder (0.43 +/- 0.16). In normal conduction, the T wave changes were more common in the horizontal plane (24/25 patients: 96%) than in the frontal plane (14/25 patients, 56%). The high incidence of abnormalities of ventricular repolarisation after regression of complete left bundle branch block does not appear to be related to coronary artery disease. Another explanation is proposed because of the analogy with the changes observed after terminating right ventricular pacing and after regression of a Wolff-Parkinson-White syndrome. An abnormality of initial ventricular depolarisation--common to left bundle branch block, the Wolff syndrome and right ventricular pacing--could be responsible for these T wave changes during normal conduction.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate↗