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Effect of botulinum toxin on detrusor overactivity induced by intravesical adenosine triphosphate and capsaicin in a rat model.

OBJECTIVES: To assess the effects of intravesical injection of botulinum toxin type A (BTX) on a model of detrusor overactivity induced by intravesical infusions of adenosine triphosphate (ATP) and capsaicin. BTX has recently been used clinically to treat overactive bladder syndromes without a precise knowledge of the mechanism of action. METHODS: Twelve Sprague-Dawley rats underwent BTX injections. Six received 1.0 U and 6 received 0.5 U. BTX injections were done at bladder tube placement. Ten rats received saline injections as controls. After 48 hours of recovery, all 22 animals underwent awake, conscious cystometrography (CMG), performed using both saline and ATP (20 mM) intravesical infusion at 0.074 mL/min. In another 4 rats, capsaicin (100 microM) was infused intravesically before and after the BTX injections. The CMG parameters calculated included bladder contraction pressures and contraction frequencies (contractions per minute or Herz). RESULTS: Intravesical saline CMG produced a contraction frequency of 0.78 +/- 0.10 Hz. Intravesical ATP doubled this voiding frequency to 1.45 +/- 0.18 Hz (P = 0.003). BTX treatment at 1.0 U reduced the frequency to 0.91 +/- 0.13 Hz (P = 0.02). BTX injection significantly decreased the bladder contraction pressure during saline and ATP CMG. However, 0.5 U BTX did not decrease ATP-induced overactivity; therefore, in the capsaicin experiments, 1.0 U BTX was used. Although BTX tended to reverse detrusor overactivity secondary to intravesical capsaicin, this difference was not statistically significant. CONCLUSIONS: Intravesical infusion of either ATP or capsaicin can induce detrusor overactivity. BTX was more effective in blocking the effect of ATP than of capsaicin, although BTX injection did show a trend in reducing the contraction frequencies and amplitudes induced by capsaicin. The clinical utility of using BTX to treat overactive bladder syndromes and bladder hypersensory states, especially those that may be caused by an augmentation of the purinergic pathway, should be studied further.

Adenosine Triphosphate↗

Simultaneous high-resolution measurement of adenosine triphosphate levels and blood flow in the hamster amelanotic melanoma A-Mel-3.

BACKGROUND: Some studies suggest that nutritional blood flow and intratumor levels of high-energy phosphates such as adenosine triphosphate (ATP) affect tumor response to treatment. Reports of intratumor variabilities have shown that distribution of high-energy phosphates within experimental and human tumors is not uniform, and this variability may be related to differences in blood flow in different regions of the tumor. However, previous studies provide no insight into the intratumor relationship of these parameters. PURPOSE: To study the intratumor relationship between blood flow and ATP concentration, we have developed a method that allows simultaneous quantitation of the two variables almost at a cellular level at adjacent sites. In addition, this technique, which uses digital image processing and analysis, facilitates regional high-resolution measurements of blood flow and ATP concentrations in relation to histology. METHODS: We examined tissue samples cut in consecutive order from one representative hamster A-Mel-3 amelanotic melanoma. Specimens from the same tumor were analyzed for histological features, blood flow (measured autoradiographically by the use of [4-N-methyl-14C]iodoantipyrine), and ATP content (measured by a quantitative substrate-induced bioluminescence reaction, using single-photon imaging). The data on the three parameters were stored as digitized images, which were later transformed to reach geometric congruency. The relationship between blood flow and ATP was examined by nonlinear regression and correlation analyses. RESULTS: Regional distribution of blood flow was highly correlated with distribution of ATP within the A-Mel-3 tumor. For images of the tumor using measuring fields of approximately 20 tumor cells, the coefficient of correlation was .92 (P < .001). The relationship between the two parameters was described by a second-order function. At low blood flow values, small differences in blood flow were associated with large changes in levels of ATP, whereas at high blood flow values, differences in blood flow were associated with much smaller changes in ATP levels. CONCLUSION: This high-resolution technique may have applications in future studies investigating the relationship between tumor cell metabolism and regional blood flow and in studies aimed at identifying the locoregional target of various cancer therapies.

Adenosine Triphosphate↗

A quantitative analysis of the effects of 2,3-diphosphoglycerate, adenosine triphosphate and inositol hexaphosphate on the oxygen dissociation curve of human haemoglobin.

1. Oxygen dissociation curves have been measured for human haemoglobin solutions with different concentrations of the allosteric effectors 2,3-diphosphoglycerate, adenosine triphosphate and inositol hexaphosphate. 2. Each effector produces a concentration dependent right shift of the oxygen dissociation curve, but a point is reached where the shift is maximal and increasing the effector concentration has no further effect. 3. Mathematical models based on the Monod, Wyman & Changeux (1965) treatment of allosteric proteins have been fitted to the data. For each compound the simple two-state model and its extension to take account of subunit inequivalence were shown to be inadequate, and a better fit was obtained by allowing the effector to lower the oxygen affinity of the deoxy conformational state as well as binding preferentially to this conformation.

Adenosine Triphosphate↗

Adenosine triphosphate is released during injurious mechanical ventilation and contributes to lung edema.

BACKGROUND: Extracellular nucleotides mediate many cellular functions and are released in response to mechanical stress in vitro. It is unknown whether adenosine triphosphate (ATP) is released in vivo during mechanical ventilation (MV). We hypothesized that stress from high-pressure MV would increase airway ATP, contributing to MV-associated lung edema. METHODS: Rats were randomized to nonventilated control (n = 6) or 30 minutes of MV with low (15 cm H(2)0, n = 7) or high (40 cm H(2)0, n = 6) pressure. Additional groups received intratracheal ATP (n = 7) or saline (n = 7) before low-pressure MV. RESULTS: Low-pressure MV did not affect lung edema or bronchoalveolar lavage (BAL) ATP levels. In contrast, high-pressure MV significantly increased BAL ATP and produced alveolar edema; lactate dehydrogenase was unchanged. Intratracheal ATP administration significantly increased lung water during low-pressure MV. CONCLUSION: High-pressure MV increases BAL ATP concentration without altering lactate dehydrogenase, suggesting that release is not from cell lysis. Intratracheal ATP increases lung water, implicating nucleotides in MV-associated lung edema.

Adenosine Triphosphate↗

Delay of adenosine triphosphate depletion and hypoxanthine formation in rabbit lung after death.

BACKGROUND: If lungs could be retrieved for transplantation from non-heart-beating cadavers, the shortage of donors might be significantly alleviated. METHODS: Adenosine triphosphate (ATP) and hypoxanthine levels were measured postmortem in rabbit lungs comparing deflation (group 1), ventilation with room air (group 2), inflation with room air (group 3), ventilation with oxygen (group 4), ventilation with cooled air (group 5), deflation plus cadaver cooling (group 6), and cooling by pulmonary arterial flush (group 7). RESULTS: The level of ATP dropped to 25.9% and HYP increased elevenfold at 30 minutes in group 1 but remained constant during 24 hours in group 7. The ATP catabolism beyond 2 hours postmortem appeared less in group 2 compared with group 3 (3.58 +/- 1.24 versus 0.39 +/- 0.08 mumol/g dry weight for ATP and 3.03 +/- 0.49 versus 7.64 +/- 0.94 mumol/g dry weight for hypoxanthine at 24 hours, respectively; p < 0.05). Cadaver cooling significantly slowed ATP catabolism. Changes in ATP level were similar in groups 2, 4, and 5. CONCLUSIONS: These data suggest that in the non-heart-beating cadaver (1) cooling, ventilation, and inflation can delay ATP catabolism; (2) postmortem ventilation but not inflation for more than 2 hours will inhibit further ATP breakdown; (3) ventilation with either oxygen or cooled air is not more beneficial than room air ventilation; and (4) cold flush more than cadaver cooling will prevent ATP depletion.

Adenosine Diphosphate↗

[Comparison of succinic dehydrogenase inhibition test with adenosine triphosphate inhibition assay for human solid tumors as in vitro chemosensitivity tests].

In order to determine the most effective anticancer agents for individual human tumor, succinic dehydrogenase inhibition test (SDI-T) and adenosine triphosphate inhibition assay (ATP-A) as in vitro chemosensitivity tests were performed. Fifty tumors and 57 tumors derived from cancer patients surgically methods were examined by SDI-T and ATP-A respectively. As the results, the evaluable rate was 70% by SDI-T and 94.7% by ATP-A, respectively. With SDI-T, the positive rate against all tumors was 51.4% in mitomycin-C (MMC), 42.9% in adriamycin (ADM), 20.0% in 5-fluorouracil (5-FU), 54.3% in cis-diamminedichloroplatinum (CDDP). On the other hand, with ATP-A, that was 20.4% in MMC, 29.5% in ADM, 20.6% in 5-FU, 20.4% in CDDP, respectively. Retrospective and prospective clinical trials were also carried out to determine the usefulness of both assays. With SDI-T, overall predictive accuracy rate was 57.1% while with ATP-A that was 88.9%. Furthermore, the rates of sensitivity for the same tumors using SDI-T and ATP-A were compared. The rate of the same sensitive cases in both assays were 30% with MMC, 70% with 5-FU, 42.1% with ADM, 36.8% with CDDP, respectively. In conclusion, it is suggested that ATP-A was more useful than SDI-T as in vitro chemosensitivity test to determine the most adequate drug for cancer patients.

Adenosine Triphosphate↗

Evaluation of (99m)Tc-MIBI myocardial perfusion imaging with intravenous infusion of adenosine triphosphate in diagnosis of coronary artery disease.

OBJECTIVE: To evaluate the feasibility, safety and diagnostic accuracy of pharmacologic stress of (99m)Technetium-MIBI single-photon emission computed tomography (SPECT) with intravenous adenosine triphosphate (ATP) in patients with suspected coronary artery disease. METHODS: The study group included 263 patients who were suspected of having coronary artery disease. All patients underwent (99m)Tc-MIBI myocardial perfusion imaging with ATP infusion (0.16 mg/kg body weight per min for 5 min). 20 mCi of (99m)Tc-MIBI were injected 3 minutes after the start of ATP infusion. Myocardial SPECT images were obtained 60 minutes later. Then, two days later, 20 mCi of (99m)Tc-MIBI were administered at rest and myocardial SPECT was repeated. 51 patients also underwent coronary angiography within two weeks for evaluation of sensitivity and specificity of ATP-myocardial perfusion imaging in detection of coronary artery disease. The occurrence of cardiac and non-cardiac adverse effects was carefully monitored during and after intravenous ATP infusion. RESULTS: The ATP infusion protocol was completed in all patients. Although 59% of the patients had various kinds of adverse effects, most of them were mild. No patient required aminophyline. The most severe adverse effect was second degree type II atria-ventricular block (4/263), but all events were transient. The sensitivity and specificity of ATP-myocardial perfusion imaging were 97% and 82%, respectively. CONCLUSIONS: It is shown that (99m)Technetium-MIBI SPECT with intravenous ATP is a safe and feasible technique for detecting coronary artery disease in patients unable to perform the exercise test.

Adenosine Triphosphate↗

Adenosine triphosphate compartmentation in living hearts: a phosphorus nuclear magnetic resonance saturation transfer study.

31P nuclear magnetic resonance (NMR) studies of creatine phosphokinase (CPK) kinetics using saturation transfer techniques are reported. The phosphocreatine (PCr) and adenosine triphosphate (ATP) levels in perfused hearts can be altered experimentally by stopping the flow of perusate (ischemia) to the heart for 35-min periods, followed by reperfusion to produce stable levels of performance. Utilization of energy by the heart was altered by administration of 25 mM potassium chloride (KCl) in the perfusate, which arrests contraction of the myocardium. Compared with control heart studies, the unidirectional rates measured during ischemia and KCl arrest are altered. The rates observed in the control experiments indicate that the CPK system is not in a steady state. This apparent deviation from steady-state conditions is ascribed to the existence of intracellular compartmentation of ATP.

Adenosine Triphosphate↗

Differential effects of hyperoxia and hydrogen peroxide on DNA damage, polyadenosine diphosphate-ribose polymerase activity, and nicotinamide adenine dinucleotide and adenosine triphosphate contents in cultured endothelial cells and fibroblasts.

The effects of oxidative stress on DNA damage and associated reactions, increased polyadenosine diphosphate-ribose polymerase (PARP) activity and decreased nicotinamide adenine dinucleotide (NAD) and adenosine triphosphate (ATP) contents, have been tested in primary cultures of porcine aortic endothelial cells. The cells were treated with 50-500 microM H2O2 for 20 min or 100 microM paraquat for 3 days or were exposed to 95% O2 for 2 and 5 days. The administration of 250-500 microM H2O2 resulted in a marked increase in PARP activity and a profound depletion of ATP and NAD. Although hyperoxia had no effect on PARP activity and reduced only slightly the ATP and NAD stores, it markedly reduced the ability of endothelial cells to increase PARP activity upon exposure to DNase. Paraquat had a similar effect. Human dermal fibroblasts were also exposed to 50-500 microM H2O2 for 20 min or 95% O2 for 5 days. Their response to H2O2 differed from that of endothelial cells by their ability to maintain the ATP content at a normal level. Fibroblasts were also insensitive to the effect of hyperoxia. These results suggest that the oxidant-related DNA damage is a function of the type of oxidative stress used and may be cell-specific.

Adenosine Triphosphate↗

Effects of rejuvenation of blood on 2,3-diphosphoglycerate and adenosine triphosphate and mechanical resistance of red blood cells.

Blood collected in ACD was supplemented with PIGP solution or PIGPA solution. The presence of adenine enhanced the mechanical resistance to trauma of erythrocytes. The levels of 2,3-diphosphoglycerate and adenosine triphosphate were restored to a normal to subnormal level. The PIGPA media seemed satisfactory for rejuvenation of stored blood for freezing purposes.

Adenine↗

Inhibition by sulfobromophthalein of mitochondrial translocation of anions and adenine nucleotides: effects upon liver adenosine triphosphate and possible correlation with inhibition of bile flow in the rat.

Unconjugated sulfobromophthalein (BSP) inhibits state III respiration of rat liver mitochondria. It competitively inhibits the translocation into mitochondria of citrate, malate, phosphate and adenosine diphosphate, as studied by the inhibitor stop method. A double-beam spectrophotometric study strongly suggests that glutamate translocation is similarly inhibited. After perfusion of 65 mumol/hr/100 g for 90 minutes, bile flow is inhibited by 82% and liver adenosine triphosphate (ATP) falls by 60%. The amount of mitochondrial BSP can be computed form the amount of [35S] BSP still bound to mitochondria that are prepared at the end of such experiments; the amount of BSP lost during the isolation procedure is estimated from parallel experiments following binding of BSP in vitro. Comparison of the kinetic constants of mitochondrial transport and of their inhibition by BSP on the one hand and of liver concentration of substrates and BSP on the other gives rise to the conclusion that a strong inhibition of transports, mainly of phosphate, occurs in vivo and is responsible for the concomitant decrease in bile flow.

Adenine Nucleotides↗

Renal cortical levels of adenosine triphosphate: restoration after prolonged ischemia by in situ perfusion of ATP-MgCl2.

The metabolic consequences of low-temperature kidney preservation by pulsatile perfusion and cold storage were evaluated in canine kidneys by serial adenosine triphosphate (ATP) determinations. Serial cortical ATP levels were determined (1) after optimal harvest, (2) after 60 minutes of warm ischemia, and (3) after 60 minutes of warm ischemia followed by an intra-aortic infusion of ATP-MgCl2. After 24 hours of preservation, cortical ATP levels were significantly greater when pulsatile perfusion was used-both after optimal harvest and after 60 minutes of warm ischemia. Cortical ATP levels were significantly greater at 24 hours in both perfused and cold-storage kidneys when an intra-aortic infusion of ATP-MgCl2 was used following ischemia. These results may explain the 24-hour limitation of cold storage as well as its inferior results following ischemia injury. Furthermore, since ATP is critical in cellular metabolism, the technique of intra-aortic ATP-MgCl2 infusion warrants further investigation in the field of organ preservation.

Adenosine Triphosphate↗

Adenosine triphosphate inhibits cytokine release from lipopolysaccharide-activated microglia via P2y receptors.

Microglial proliferation and activation have been reported to occur after several central nervous system injuries. In this study, we tested the effects of adenosine triphosphate (ATP) on cultured microglia obtained from the spinal cord of rat embryos. The amounts of tumor necrosis factor alpha (TNF-alpha), interleukin 1beta and interleukin 6 released from the microglia, which were stimulated by lipopolysaccharide (LPS; 100 ng/ml), were inhibited by the simultaneous addition of ATP in a dose dependent manner (10-300 microM). We examined the effect of several endogenous purines (ATP, ADP, CTP, UDP, UTP) and P(2)y receptor agonists (ADPbetaS and 2-methylthio-ATP) on LPS-induced TNF-alpha release. The rank order of inhibitory potency of endogenous purines on TNF-alpha release was: ATP>ADP>>UTP>UDP>CTP. The latter three were much less potent than the former two. The addition of 10 microM 2-methylthio-ATP showed a potency similar to 100 microM ATP. The addition of ADPbetaS, however, showed less effect. These endogenous purines and selective ATP receptor agonists showed a similar inhibitory effect in their rank order on LPS-induced interleukin 6 release. We demonstrate that ATP inhibits cytokine release from LPS-activated microglia via metabotropic receptors. The application of P(2)y receptor agonists might be considered as a pharmacological treatment of several pathological conditions of the spinal cord, including toxic immunoreactions.

Adenosine Diphosphate↗

Interaction between adenosine triphosphate and mechanically induced modulation of electrically evoked otoacoustic emissions.

It was shown previously that electrically evoked otoacoustic emissions (EEOAEs) can be amplitude modulated by low-frequency bias tones and enhanced by application of adenosine triphosphate (ATP) to scala media. These effects were attributed, respectively, to the mechano-electrical transduction (MET) channels and ATP-gated ion channels on outer hair cell (OHC) stereocilia, two conductance pathways that appear to be functionally independent and additive in their effects on ionic current through the OHC. In the experiments described here, the separate influences of ATP and MET channel bias on EEOAEs did not combine linearly. Modulated EEOAEs increased in amplitude, but lost modulation at the phase and frequency of the bias tone (except at very high sound levels) after application of ATP to scala media, even though spectral components at the modulation sideband frequencies were still present. Some sidebands underwent phase shifts after ATP. In EEOAEs modulated by tones at lower sound levels, substitution of the original phase values restored modulation to the waveform, which then resembled a linear summation of the separate effects of ATP and low-frequency bias. While the physiological meaning of this procedure is not clear, the result raises the possibility that a secondary effect of ATP on one or more nonlinear stages in the transduction process, which may have caused the phase shifts, obscured linear summation at lower sound levels. In addition, "acoustic enhancement" of the EEOAE may have introduced nonlinear interaction at higher levels of the bias tones.

Adenosine Triphosphate↗

Mechanism of activation of bicarbonate ion by mitochondrial carbamoyl-phosphate synthetase: formation of enzyme-bound adenosine diphosphate from the adenosine triphosphate that yields inorganic phosphate.

The mechanism of the reaction catalyzed by rat liver mitochondrial carbamoyl-phosphate synthetase has been studied by using [beta-18O2]ATP and HC18O-3, monitoring the isotopic composition of adenosine triphosphate (ATP) and inorganic phosphate (Pi) by high-resolution 31P NMR spectroscopy. In the presence of both HCO3- and acetylglutamate, the enzyme catalyzes the exchange of oxygen atoms between the beta, gamma bridging and the beta nonbridging positions of ATP. Addition of NH3 stops the exchange, Pi released by the ATPase activity of the enzyme in the absence of NH3 contains one oxygen atom from HC18O3- but there is no incorporation of 18O into ATP. There is no significant incorporation of [14C]ADP or 32Pi into ATP. It is concluded that in the enzyme-ATPA.HCO30.ATPB complex formed in the presence of ATP and HCO3- there is reversible transfer of the gamma-PO3 group of ATPA (the molecule that yields Pi) to HCO3- without dissociation of products. The beta-PO3 of the enzyme-bound ADP that is formed can rotate. Virtually all of the complex appears to be in the form in which ATPA is cleaved, but in the absence of NH3, ATP is reconstituted and dissociates from the complex on at least 75% of the occasions. On the remainder, the carbonyl phosphate is cleaved in an irreversible process that yields Pi and a low-energy form of carbonic acid (probably HCO3-). NH3 reacts rapidly and irreversibly with the complex, and at saturation the rate (greater than 10 times the rate of Pi release in the absence of NH3) is sufficient to prevent dissociation of ATPA. In the absence of HCO3- an enzyme-ATPA.ATPB complex is formed, but cleavage of the bond between beta, gamma bridging oxygen and P gamma of ATPA does not occur.

Adenosine Diphosphate↗

[Application of adenosine triphosphate tumor chemosensitive assay system to individual chemotherapy for hepatocellular carcinoma].

BACKGROUND & OBJECTIVE: Present chemotherapy for hepatocellular carcinoma (HCC) is not effective. To improve the effect of chemotherapy, in vitro chemo-drug sensitive testing system, adenosine triphosphate tumor chemosensitive assay (ATP-TCA) system, was used to evaluate efficacies of chemotherapeutic drugs, and to guide clinical individual chemotherapy for HCC patients. METHODS: ATP-TCA system was applied to test efficacies of 5-fluorouracil (5-FU), mitomycin (MMC), cisplatin (DDP), oxaliplatin (OXA), epirubicin (EPI), gemcitabine (GEM), irinotecan (CPT-11), etoposide (VP-16), and paclitaxel (PTX) on 50 HCC samples. Twenty-three HCC patients received ATP-TCA-directed chemotherapy (ATP-TCA group)û 20 HCC patients received surgery and routine treatments (control group). Clinical outcomes of these patients were observed for 162 weeks. RESULTS: The assessable rate of ATP-TCA result is 90.8%. In the 50 samples, the sensitive (moderate to high degree) rates were 46% to PTX, 44% to CPT-11, 36% to GEM, 14% to MMC, 12% to EPI, 8% to DDP, 6% to VP-16, 6% to OXA, and 4% to 5-FU, respectively. In clinical trial, at the research end-point, no significant differences were found in partial remission (PR), complete remission (CR), stable disease (SD), and mortality between ATP-TCA group and control group (P > 0.05), but progression disease (PD) rate was significantly higher in control group than in ATP-TCA group (60.00% vs.13.04%, P=0.003); significant differences were found in overall response rate (ORR) (60.86% vs. 30.00%, P =0.043), overall survival (OS) (78.91 weeks vs. 27.21 weeks, P=0.006), and progress-free survival (PFS) (30.52 weeks vs. 4.78 weeks, P=0.005) between ATP-TCA group and control group. CONCLUSIONS: ATP-TCA system might be useful in evaluating the efficacy of chemotherapeutic drugs on HCC samples, and in planning individualized chemotherapy regimen for HCC patients. PTX, CPT-11 and GEM might be potential drugs for the treatment of HCC. ATP-TCA-guided chemotherapy might prolong survival time of HCC patients.

Adenosine Triphosphate↗

Studies on the inhibition of hepatic microsomal glucuronidation by uridine nucleotides or adenosine triphosphate.

The ability of five nucleotides in the presence of excess divalent cations to inhibit UDPglucuronosyltransferase in sealed or leaky liver microsomal vesicles was studied. Two nucleotides inhibited potently while three others were weak inhibitors. At low concentration, both of the potent inhibitors, uridine tri- and diphosphates tended to inhibit more in sealed microsomal vesicles than in leaky microsomes, while the weak inhibitors, uridine diphosphate glucose and adenosine triphosphate behaved in the opposite manner and inhibited less in sealed than in leaky microsomes. At physiological concentrations of UDPglucuronic acid (0.4 mM) quite extensive inhibition of oestradiol glucuronidation could be achieved with physiological concentrations of uridine tri- or diphosphates (0.2 or 0.4 mM). In sealed or leaky microsomes, beta, gamma-methylene-interrupted uridine triphosphate, which is resistant to hydrolysis by nucleoside triphosphatase, inhibited much less than did uridine triphosphate.

Adenosine Triphosphate↗