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Effects of 5-thio-D-glucose on cellular adenosine triphosphate levels and deoxyribonucleic acid rejoining hy hypoxic and aerobic Chinese hamster cells.

Intracellular adenosine triphosphate (ATP) levels were measured in both hypoxic and aerobic cultures of V79 Chinese hamster cells treated with 5-thio-D-glucose (5-SH-D-Glc). This glucose analog, a known inhibitor of D-glucose transport and metabolism, reduced ATP in cell cultures allowed to become hypoxic by cell metabolism, but not in aerobic cultures treated similarly. Cells depleted of ATP were unable to rejoin x-ray-induced deoxyribonucleic acid (DNA) strand breaks as measured by the alkaline surcrose gradient sedimentation technique. Results show that 5-SH-D-Glc leads to reduced energy metabolism in cells dependent on glycolysis for ATP production. The inference for radiation therapy is that inhibition glucose metabolism selectively depletes energy reserves in hypoxic cells, rendering these cells more radiosensitive and leading to a more effective tumor treatment.

Adenosine Triphosphate↗

Evaluation of a simplified adenosine triphosphate release cytotoxicity test for the detection of sperm antibodies in human serum.

The adenosine triphosphate release cytotoxicity test (ARCT) is an objective method for the detection of cytotoxic sperm antibodies in serum providing measurements without the bias of microscopic estimation. The procedure has been simplified by testing only one serum dilution and calculating the "sperm toxicity index". The latter is closely correlated with the sperm cytotoxic titer. Immunoglobulin class determination of 32 sera with sperm cytotoxic activity was performed by means of the indirect mixed antiglobulin reaction (MAR test) and the indirect immunobead (IB) test, and revealed that all sera were positive for IgG, 17% for IgM and 20% for IgA. Of 32 sera without sperm cytotoxic activity, 19% contained sperm specific IgG, 6% had IgM class antibodies belong mainly to the IgG class since the results of the ARCT and the indirect MAR test for IgG are closely correlated. The ARCT appears to be useful as a simple and objective method for the detection and quantitation of cytotoxic antisperm antibodies.

Adenosine Triphosphate↗

Metabolic and functional effects of phosphoenolpyruvate and adenosine triphosphate on rat hearts subjected to global ischemia.

The effect of phosphoenolpyruvate (PEP) and adenosine triphosphate (ATP) administered during ischemia was investigated, using the paracorporeal rat heart model. During 15 min of global ischemia the hearts were perfused twice with PEP and ATP (supplemented) or with NaCl only (non-supplemented). In hearts that were freeze-clamped after the ischemic period (group A), the myocardial content of high-energy phosphates showed only minor differences between hearts with and without supplemention. In the supplemented hearts there was increased myocardial content of pyruvate and, to some extent, of lactate, indicating that PEP was metabolized to pyruvate and partly to lactate. In groups B and C the hearts were reperfused for 40 min before freeze-clamping. The non-supplemented hearts showed higher energy content and better left ventricular performance and, concomitantly, the creatine kinase isoenzyme MB (CK-MB) efflux was less than for the supplemented hearts. A clear inverse relationship between left ventricular performance and CK-MB efflux indicated that CK-MB served as a marker of cell integrity. These results contrasted with previus finding of an unequivocally positive effect from PEP and ATP administration. Possible explanations are discussed.

Adenosine Triphosphate↗

Protective effect of exogenous adenosine triphosphate on hypothermically preserved rat liver.

AIM: To clarify the protective effect of exogenous adenosine triphosphate (ATP) on hypothermically preserved rat livers. METHODS: Establishment of continuous hypothermic machine perfusion model, detection of nucleotides in hepatocytes with HPLC, measurement of activities of LDH and AST in the perfusate, observation of histopathological changes in different experiment groups, and autoradiography were carried out to reveal the underlying mechanism of the protective effect of ATP. RESULTS: The intracellular levels of ATP and EC decreased rapidly after hypothermic preservation in control group, while a higher ATP and EC level, and a slower decreasing rate were observed when ATP-MgCl(2) was added to the perfusate (P<0.01). As compared with the control group, the activities of LDH and AST in the ATP-MgCl(2) group were lower (P<0.05). Furthermore, more severe hepatocyte damage and neutrophil infiltration were observed in the control group. Radioactive [alpha-(32)P] ATP entered the hypothermically preserved rat hepatocytes. CONCLUSION: Exogenous ATP has a protective effect on rat livers during hypothermical preservation. However, Mg(2+) is indispensable, addition of ATP alone produces no protective effect. The underlying mechanism may be that exogenous ATP enters the hypothermically preserved rat liver cells.

Adenosine Triphosphate↗

Prognostic value of myocardial perfusion imaging with adenosine triphosphate.

BACKGROUND: Pharmacologic stress with scintigraphy can predict prognosis in patients with coronary disease. Adenosine triphosphate (ATP) has been used in stress testing, but its efficacy in assessing prognosis has not been studied. METHODS AND RESULTS: A total of 150 patients (95 men, aged 64 +/- 10 years) were studied with thallium 201 during intravenous infusion of ATP and at rest. Perfusion defects were classified as reversible or mixed. The lung-heart ratio was calculated. During a maximum follow-up of 4.5 years, the following final events were considered: death, nonfatal myocardial infarction, angina or heart failure requiring hospitalization, or clinical need for myocardial revascularization. The prognostic value of different variables was analyzed with Cox regression. Groups with significantly worse prognosis were as follows: men, smokers, those with previous myocardial infarction, those with total cholesterol/high-density lipoprotein greater than 5, and those with lung-heart ratio greater than 0.5. Multivariate Cox regression showed the presence of perfusion defects as the only variable predictive of prognosis. It was time-dependent, with the highest risk at the beginning of follow-up. Mixed defects had the highest risk, followed by moderate to severe reversible defects. CONCLUSIONS: ATP with Tl-201 gamma-tomography is useful in predicting prognosis of patients with coronary artery disease.

Adenosine Triphosphate↗

Electrophysiologic effects of intravenous adenosine triphosphate disodium on the paroxysmal supraventricular tachycardias.

We studied the electrophysiologic effects of intravenous adenosine triphosphate disodium (ATP-2Na) on 15 patients with paroxysmal supraventricular tachycardias (PSVTs). One patient had sinus node (SN) reentry and 2 patients had intraatrial (IA) reentry. Five patients had AV nodal reentry and 7 patients had atrioventricular reentrant tachycardias (AVRTs) with accessory pathways (APs). ATP-2Na was injected during ventricular pacing (VP) in patients with AVRTs with APs. A bolus injection of ATP-2Na terminated all the PSVTs within 40 sec except in one case of IA reentry. The sites of block at the termination were the atrium in SN reentry and IA reentry, between A and H (AH) block or between H and A (HA) block in AV nodal reentry and AH block in all the AVRTs with APs. ATP-2Na during VP in patients with AVRTs with APs produced the changes of atrial activation sequences in 3 patients, induction of PSVT in 2 patients and a Mobitz type II VA block in 2 patients. The former two phenomena suggested a retrograde AV nodal block and raised the possibility of a simple test for retrograde atrial fusion during VP in patients with WPW syndrome. Chest discomfort of short duration was most commonly noted after ATP-2Na. Inosine pretreatment potentiated the effects of ATP-2Na. This combination may further alleviate the side effects of ATP-2Na, while preserving the effective action of ATP-2Na for rapid termination of PSVTs.

Adenosine Triphosphate↗

Adenosine triphosphate pool levels and endogenous metabolism in Arthrobacter crystallopoietes during growth and starvation.

The adenosine triphosphate (ATP) content of Arthrobacter crystallopoietes was measured during growth, starvation and recovery from starvation. During exponential growth of the cells as spheres in a glucose slats medium, the level of ATP per cell remained constant at 8.0 x 10(-10) micrograms/cell. Morphogenesis to rodshaped cells and an increased growth rate following addition of casein hydrolysate was accompanied by an almost two-fold increase in the ATP level. As division of the rod-shaped cells proceeded, the level of ATP declined. After growing as rods for 12-14 h the cells underwent fragmentation to spheres during which time the ATP level again increased to the original value of 8.0 x 10(-10) micrograms/cell. As the spherical cells resumed growth on the residual glucose, their ATP content declined for a short period and then remained relatively constant. During starvation of sphere or rod-shaped cells for one week, the ATP level declined by approximately 70% during the first 40-50 h and then remained constant. The endogenous metabolism rate of spherical cells declined during the first 10-20 h of starvation and then remained constant at approximately 0.02% of the cell carbon being utilized per h. Addition of glucose to spherical cells which had been starved for one week increased both the ATP content per cell and their rate of endogenous metabolism. The ATP content fluctuated and then remained at a level higher than maintained during starvation while endogenous metabolism quickly declined.

Adenosine Triphosphate↗

Influence of adenosine triphosphate on the isolated perfused mesenteric artery of the rabbit.

The vascular effects of adenosine triphosphate (ATP) were examined in the isolated perfused mesenteric arteries of the rabbit. Bolus injections of ATP (1 X 10(-8) to 10(-6) mol) induced a dose-dependent vasoconstrictor response at resting perfusion pressure, while continuous perfusion with ATP briefly elicited a vasoconstrictor response which was not maintained. Perfusion with phentolamine (2.65 X 10(-6) M, an alpha-adrenergic receptor blocker), indomethacin (8.37 X 10(-6) M, an inhibitor of cyclooxygenase), atropine (1 X 10(-7) M, a muscarinic receptor blocker), and hydralazine (2 X 10(-4) M, a vascular smooth muscle inhibitor) for a period of 1 h had no effect on vasoconstrictor responses to ATP. However, pretreatment with reserpine (2 mg X kg-1 X day-1 for 2 days), an agent which depletes catecholamines, potentiated responses to ATP. On the other hand, when vascular tone was increased with an isoosmotic 60 mM K+ depolarizing Krebs bicarbonate solution, bolus injections of ATP elicited a prominent dose-dependent vasoconstriction followed by a prominent vasodilation. The degree of vasodilation but not of vasoconstriction elicited by ATP was greater in small terminal arteries with branches (less than 0.5 mm outside diameter (o.d.) ) than in the medium size arteries (less than or equal to 1 mm o.d.) without terminal branches. Both the vasoconstrictor and vasodilator responses were unaffected by a perfusion with atropine, indomethacin, or eicosatetraynoic acid (ETYA, 1 X 10(-4) M) for 1-2 h.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine↗

Effects of adenosine triphosphate on pulmonary circulation in chronic obstructive pulmonary disease. ATP: a pulmonary vasoregulator?

Extracellular adenosine triphosphate (ATP) has potent systemic vasodilator and endothelial-dependent relaxant effects on precontracted vessels. Pulmonary uptake and metabolism of ATP have been described, but experimental effects on pulmonary vessels remain controversial in animals. The effects of an intravenously administered infusion of ATP on pulmonary hemodynamic and gasometric data were assessed in 18 patients with stable chronic obstructive pulmonary disease (COPD). Low doses of ATP (successive rates, 1 and 2 mumol/kg body weight, each for 20 min) were infused in pulmonary hypertensive (H; n = 6) and nonhypertensive (N; n = 6) patients. They were compared with a control group (C; n = 6) that received only solvent, using ANOVA. During ATP infusion, a significant pulmonary vasodilation was demonstrated as simultaneous decreases reached, respectively, -14.2% (Group H; p less than 0.005) and -13.8% (Group N; p less than 0.001) for mean pulmonary artery pressure (Ppa), and -31.7% (H; p less than 0.05) and -20.7% (N; p less than 0.01) for pulmonary vascular resistances (PVR), associated with some worsening of hypoxemia: -6.9% (H; p less than 0.01) and -11.8% (n; p less than 0.005). After ATP withdrawal, significant rebound of these data (above baseline values) reached +10.9% (H; p less than 0.05) and +4.4% (N; p less than 0.05) for Ppa and +24.9% (H; p less than 0.05) and +10.2% (N; p = NS) for PVR. At the low infusion rate used, ATP appeared to be a well-tolerated, short-acting, selective pulmonary vasolidating compound in patients with COPD, but therapeutic use remains premature.

Adenosine Triphosphate↗

Effect of inflation on adenosine triphosphate catabolism and lactate production during normothermic lung ischemia.

Although few biochemical data comparing adenosine triphosphate (ATP) catabolism or lactate production in isolated deflated versus inflated lung tissue are available, most transplant centers preserve their donor lungs inflated. We measured ATP level (using high-performance liquid chromatography), energy charge, and lactate level during 2 hours of normothermic ischemia in deflated lung tissue (n = 6), in lung tissue inflated with room air (n = 6), and in lung tissue inflated with 100% oxygen (n = 6). To determine the onset of anaerobic metabolism in lung tissue inflated with 100% O2, ATP and lactate levels were measured in another group (n = 6) during 8 hours of normothermic ischemia. Rabbit lungs were flushed in situ with a modified Krebs-Henseleit solution (60 mL/kg). They were isolated and immersed in 0.9% NaCl at 37 degrees C. In deflated lung tissue, ATP level (control value, 9.4 +/- 0.58 mumol/g dry wt) decreased and lactate level (control value, 5.6 +/- 1.16 mumol/g dry wt) increased after 15 minutes of ischemia (ATP, 5.2 +/- 0.86 mumol/g dry wt; lactate, 13.3 +/- 1.58 mumol/g dry wt). When the lung was stored inflated with room air, ATP breakdown and increase of lactate concentration only occurred after 90 minutes of normothermic ischemia (at 60 minutes: ATP, 8.0 +/- 0.58 mumol/g dry wt; lactate, 6.3 +/- 1.1 mumol/g dry wt). In lungs stored inflated with 100% O2, ATP breakdown and lactate accumulation only occurred after 5 hours of normothermic ischemia (at 4 hours: ATP, 8.1 +/- 0.74 mumol/g dry wt; lactate, 5.9 +/- 1.28 mumol/g dry wt).(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate↗

Energy status of nonmatured and in vitro-matured domestic cat oocytes and of different stages of in vitro-produced embryos: enzymatic removal of the zona pellucida increases adenosine triphosphate content and total cell number of blastocysts.

In this study, we evaluated the adenosine triphosphate (ATP) content of individual domestic cat oocytes before and after in vitro maturation and of different stages of in vitro-produced embryos. To investigate the effects of assisted-hatching technique on the ATP content and total cell number, the zona pellucida of in vitro-produced blastocysts and expanded blastocysts (recovered 144 h postinsemination [hpi]) was completely removed by pronase treatment. The average (mean +/- SEM) ATP content of nonmatured oocytes (3.47 +/- 0.18 pmol) was significantly (P < 0.01) higher than that of in vitro-matured oocytes (2.17 +/- 0.10 pmol). After in vitro fertilization and culture, the ATP content of two-cell stages (24 hpi) was 1.17 +/- 0.08 pmol, which increased to 1.47 +/- 0.19 and 1.88 +/- 0.32 pmol at the four- (40 hpi) and eight-cell (48 hpi) stages, respectively. The ATP content then decreased to 1.48 +/- 0.10 pmol in 16-cell embryos (64 hpi), reaching a minimum of 0.49 +/- 0.04 pmol at the morula stage (120 hpi). Blastocysts, expanded blastocysts (both 144 hpi), and hatching blastocysts (192 hpi) revealed ATP levels of 1.05 +/- 0.09, 1.79 +/- 0.01, and 4.17 +/- 0.21 pmol, respectively. After enzymatic removal of the zona pellucida (ERZP) at 144 hpi, ATP content and total cell numbers of blastocysts (4.15 +/- 0.37 pmol of ATP, 328.3 +/- 48.5 cells) and expanded blastocysts (5.81 +/- 0.54 pmol of ATP, 430.1 +/- 29.7 cells) analyzed at 192 hpi were significantly (P < 0.001) higher than in their nontreated counterparts (blastocysts: 1.00 +/- 0.09 pmol of ATP, 65.3 +/- 4.6 cells; expanded blastocysts: 1.79 +/- 0.11 pmol of ATP, 121.4 +/- 6.5 cells). Our study describes, to our knowledge for the first time, changes in the energy status of domestic cat oocytes before and after maturation and during in vitro development after fertilization. The ERZP markedly increased the ATP content and total cell number of blastocyst stages, suggesting that this technique may improve the quality and viability of in vitro-produced domestic cat embryos.

Adenosine Triphosphate↗

Adenosine triphosphate induces activation of caspase-3 in apoptosis of human granulosa-luteal cells.

Adenosine triphosphate (ATP) has been shown to induce programmed cell death in various systems. However, little is known about the effect of ATP on human granulosa-luteal cells (hGLCs). The present study was designed to examine the effect of ATP on the activation of the caspase signaling pathway and its role in inducing programmed cell death. Human GLCs were collected from patients undergoing in vitro fertilization programs, and then were cultured in FBS-supplemented DMEM for 3 days prior to our studies. To examine the dose-response relationship, hGLCs were treated with increasing concentrations of ATP (10 microM, 100 microM, 1 mM or 10 mM) for 24 hours. For time-course experiments, hGLCs were treated with 10 mM ATP for 6, 12, or 24 hours. Western blot analysis was performed using antibodies against the pro- and active forms of caspase-3, -9, or PARP. To quantify the induction of apoptosis, DNA fragmentation was measured using the cell death detection enzyme-linked immunosorbent assay. To examine the effect of human chorionic gonadotropin (hCG) in protecting cells from apoptosis, hGLCs were treated with 10 IU hCG in the presence of 10 mM ATP for 12 hours. It was demonstrated that ATP was capable of inducing DNA fragmentation in a dose- and time-dependent manner. Furthermore, Western blot analysis, which detected the pro- and active forms of caspase-3, or PARP, demonstrated that ATP activated the caspase-signaling pathway, leading to the proteolytic conversion of pro-caspase-3 to active caspase-3, and the subsequent cleavage of the caspase substrate PARP. Based on our observation, caspase-9 was not triggered by ATP. Interestingly, hCG attenuated the effect of ATP in activating the caspase signaling pathway. To our knowledge, this is the first demonstration of the ATP-induced activation of the caspase signaling pathway in the human ovary. These results support the notion that the caspase-signaling pathway is involved in mediating ATP actions in the human ovary.

Adenosine Triphosphate↗

The kinetics of magnesium adenosine triphosphate cleavage in skinned muscle fibres of the rabbit.

The time course of magnesium adenosine triphosphate (Mg ATP) cleavage in chemically skinned muscle fibres of the rabbit was measured by a method in which Mg ATP cleavage was initiated by photolytic release of ATP from P3-1-(2-nitro)phenylethyladenosine 5'-triphosphate (caged ATP) and terminated by rapid freezing 50 ms to 8 s later. Up to 5 mM-ATP was released following a single 50 ns laser pulse at 347 nm. Mg ATP cleavage was measured at 19 degrees C in the presence and absence of calcium ions, for fibres near rest length and stretched beyond overlap of the myofilaments. At full overlap and in the absence of calcium (less than 10(-8) M) and nucleotide, the fibres developed rigor tension. Following the laser pulse the tension decreased to that of a relaxed fibre in two distinct phases. The first phase lasted about 40 ms and was followed by a second phase during which tension decreased to zero with an approximately exponential time course with a rate constant of 11 s-1. In the presence of 2 X 10(-5) M-free calcium ions, the initial phase following the laser flash lasted approximately 13 ms, and was followed by an exponential rise of tension with a rate constant of 28 s-1. The active tension reached by the muscle fibres was 54 kN/m2. For fibres stretched beyond overlap, no change in tension was observed following the release of Mg ATP. Under all conditions the time course of Mg ATP cleavage was biphasic, and consisted of a rapid initial burst of ADP formation, complete within 50 ms, followed by a slower steady-state rate of Mg ATP cleavage. The number of molecules of Mg ATP cleaved during the burst was approximately equal to the number of myosin subfragment 1 heads for fibres at full myofilament overlap, and equal to 0.7 molecules per myosin subfragment 1 head for fibres stretched beyond overlap. At full overlap in the presence of calcium ions, the steady-state rate equalled 1.8 mol Mg ATP cleaved per mole myosin subfragment 1 head per second. In all other cases the steady-state rate of Mg ATP cleavage was at least 10-fold less. When fibres at full overlap were pre-incubated with 2 mM-ADP, the initial phase of the tension response was somewhat prolonged, but the burst of ADP formation was also complete within 50 ms.(ABSTRACT TRUNCATED AT 400 WORDS)

Adenosine Diphosphate↗

A reassessment of the energy requirements for neutrophil migration: adenosine triphosphate depletion enhances chemotaxis.

In view of previous studies demonstrating a significant correlation between adenosine triphosphate (ATP) depletion and impairment of chemotaxis (CTX) during granulocyte (PMN) storage, we sought to quantitate the relationship between CTX and PMN energy metabolism. We incubated PMNs at 37 degrees C with 2-deoxyglucose (2-dg) in the presence of 5 mmol/L glucose. As expected, ATP inhibition by 2-dg was time-dependent (T 1/2, 18 minutes) and dose-dependent, with half-maximal inhibition of ATP (ID50) with 1.3 +/- .3 mmol/L 2-dg. Similar concentrations of 2-dg inhibited lactate generation, phagocytosis, superoxide anion generation, and degranulation. The random migration of PMNs was inhibited by somewhat higher concentrations of 2-dg (ID50, 12 mmol/L). In contrast, up to 40 mmol/L 2-dg did not inhibit CTX toward synthetic peptides or activated serum. In fact, 2-dg consistently increased the CTX of PMNs toward 10(-8) mol/L f-Met-Leu-Phe (fMLP), to a maximum of 450% of control CTX using 15 mmol/L 2-dg. Half-maximal stimulation (ED50) of CTX occurred at 6.3 +/- 1.0 mmol/L 2-dg. Although maximal CTX toward optimal concentrations of fMLP was consistently increased with 2-dg, the ED50 of CTX to fMLP was unchanged (ED50 with glucose, 2.0 +/- 0.6 nmol/L fMLP; ED50 with 2-dg 2.2 +/- 0.7 nmol/L fMLP), and 2-dg did not increase fMLP receptors. In the absence of glucose, 2-dg exerted similar effects on ATP and CTX, but at doses 30- to 50-fold lower than in the presence of glucose. Other glycolytic inhibitors (iodoacetamide and sodium fluoride) exerted similar effects. Additional studies indicated that CTX enhancement by 2-dg (a) required Mg++ but not Ca++, (b) occurred with PMNs from a patient with chronic granulomatous disease, (c) was unaltered in the presence of inhibitors of proteolysis, (d) was not due to generation of a soluble agent, (e) was not due to alterations in PMN adherence, and (f) was not due to inhibition of glycosylation. We conclude that the chemotaxis, but not the random migration, of PMNs is surprisingly resistant to inhibition of energy metabolism and depletion of ATP, since concentrations of 2-dg that decreased ATP and other cell functions by more than 50% not only did not inhibit, but actually stimulated, CTX. These studies also indicate that the previously reported correlation between ATP depletion and CTX impairment observed in stored PMNs are not causally related.

Adenosine Triphosphate↗

Ca2+ responses to acetylcholine and adenosine triphosphate in the otocyst of chick embryo.

The action of acetylcholine and adenosine triphosphate (ATP) on cytoplasmic Ca2+ concentration ([Ca2+]i) was studied in the otocyst epithelium of embryonic day 3 chicks with Ca(2+)-sensitive fluorescence measurements. Increases in [Ca2+]i were evoked by the bath application of acetylcholine (1 microM or higher). The rise in [Ca2+]i was due to the release of Ca2+ from intracellular Ca2+ stores, since the Ca2+ response occurred even in a Ca(2+)-free medium. The Ca2+ response to acetylcholine was mediated by muscarinic receptors. Atropine of 1 microM abolished the response to 10 microM acetylcholine; muscarine and carbamylcholine (100 microM each) evoked Ca2+ rises. Increases in [Ca2+]i were also evoked by the bath application of ATP (10 microM or higher). The Ca2+ rise by ATP was evoked even in a Ca(2+)-free medium. Adenosine (500 microM) did not cause any Ca2+ response. Suramin and reactive blue 2 (200 microM each) completely blocked the Ca2+ response to 500 microM ATP. Uridine triphosphate (500 microM) caused comparable Ca2+ responses with those to 500 microM ATP. These results suggested the involvement of P2U purinoceptors. The potentiation of Ca2+ rise was observed when acetylcholine and ATP were co-applied at submaximal concentrations (10 microM and 100 microM, respectively). We conclude that undifferentiated cells in the otocyst epithelium have Ca2+ mobilizing systems activated by acetylcholine and ATP.

Acetylcholine↗

The anesthetic interaction between adenosine triphosphate and N-methyl-D-aspartate receptor antagonists in the rat.

Modulation of synaptic neurotransmission through the ligand-gated ion channel is probably involved in the mechanisms of analgesic and anesthetic actions. In the central nervous system, adenosine triphosphate and glutamate are fast excitatory neurotransmitters through their effects on P2X and N-methyl-D-aspartate (NMDA) receptors respectively. To examine the anesthetic interaction between adenosine triphosphate and NMDA receptor antagonists, we studied the effect of intracerebroventricular administration of P2 and/or NMDA antagonists on the minimum alveolar concentration (MAC) of sevoflurane in rats. Intracerebro- ventricular administration of phosphonopentanoic acid azophenyl-2',4'-disulfonate and D (-)-2-anino-5-phophonopentanoic acid, P2 and NMDA antagonists, significantly reduced the MAC of sevoflurane. The reduction of the MAC by both phosphonopentanoic acid azophenyl-2',4'-disulfonate and D (-)-2-anino-5-phophonopentanoic acid was dose-dependent. The effect of coadministration of both antagonists was additive in the reduction of sevoflurane minimum alveolar concentration. These results suggest that P2 and NMDA receptors mediate nociceptive/anesthetic processing as inhibition of these receptors resulted in analgesic and anesthetic effects. However the pathway mediated through each receptor may be different postsynaptically and/or one of these presynaptic receptors may modulate the neurotransmitter release of the other.

2-Amino-5-phosphonovalerate↗

Adenosine triphosphate (ATP) and other nucleotides stimulate the hydrolysis of phosphatidylethanolamine in intact fibroblasts.

Addition of adenosine triphosphate (ATP) to [14C]ethanolamine-prelabeled NIH 3T3 fibroblasts resulted in rapid formation of [14C]ethanolamine from the prelabeled cellular phosphatidylethanolamine (PtdEtn) pool. After 2-min exposure, 10 microM ATP had near maximal effects on PtdEtn hydrolysis. Several other nucleotides, including UTP, ITP, and the stable ATP analog adenosine 5'-O-(3-thiotriphosphate) (ATP gamma S), also had stimulatory effects on PtdEtn hydrolysis with a potency comparable to that observed with ATP. The same nucleotides which acted on PtdEtn hydrolysis also had similar stimulatory effects on the hydrolysis of phosphatidylcholine (PtdCho) in [14C]choline-labeled cells. In isolated membranes, Mg2+ greatly enhanced the stimulatory effects of ATP and ATP gamma S, but not of other nucleotides, on the hydrolysis of PtdEtn and PtdCho. Results indicate that in isolated membranes, both ATP and ATP gamma S stimulate phospholipid hydrolysis by two different mechanisms, but in intact cells only one of these mechanisms appears to be responsive to externally added nucleotides.

Adenosine Diphosphate↗

Red cell metabolic alterations in postnatal life in term infants: glycolytic intermediates and adenosine triphosphate.

Red cell glycolytic intermediates and adenosinetriphosphate were evaluated in term infants from birth to on year of age and compared to values obtained from normal adults and subjects wit a population of a similar mean cell age. The concentration of glycolytic intermediates, with the exception of phosphoenolypyruvate were elevated at birth when compared to normal subjects, consistent with a young mean red cell population. The mean levels of red cell glucose-6-phosphate, fructose-6-phosphate, and "total triose phosphate" were elevated on days 1 and 4 of life when compared to both red cells from normal adults and subjects with a similar young mean red cell age. Glucose-6-phosphate steadily increased in concentration, peaked at 3 to 4 wk of age, and then progressively decreased in value. Total triose phosphate declined to a mildly elevated concentration by 3 to 4 wk of age. The mean concentrations of 2,3-diphosphoglycerate and adenosine triphosphate were normal on day 1, increased on day 4, and then declined by 3 to 4 wk to normal values, until 5 to 6 months when both increased. The mean phosphoenolpyruvate concentration was decreased on day 1 of age when compared to red cells of a similar mean age, but this decrease was not significant (P greater than 0.05). The mean concentrations of 3-phosphoglycerate increased at 3 to 4 wk of age and remained elevated for cell age at 11 to 12 months but this increase was no statistically significant (P greater than 0.05). 3-Phosphoglycerate levels did not change significantly throughout the first year of life. At one year of age, all red glycolytic intermediates and adenosine triphosphate were elevated when compared to red cells from normal adults, but were comparable to those observed in subjects with a red cell population of a similar mean cell age, consistent with the persistence of a young red cell population throughout the first year of life.

Adenosine Triphosphate↗