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A Sollevi

Publications and source records attributed to A Sollevi.

At least 19 recordsLinked to original sources

Effects of intrathecal morphine, baclofen, clonidine and R-PIA on the acute allodynia-like behaviours after spinal cord ischaemia in rats.

The present study assessed the efficacy and potency of intrathecal (i.t.) administration of the opiate morphine, the gamma-aminobutyric acid-B (GABA(B)) receptor agonist baclofen, the alpha2-adrenoceptor agonist clonidine and the adenosine A1-receptor agonist R-phenylisopropyl-adenosine (R-PIA) on the acute allodynia-like behaviour after photochemically induced spinal cord injury (SCI) in rats. Rats displaying allodynia-like behaviours to brushing, von Frey hairs and cold stimulation 1-2 days after photochemically induced SCI were studied. In a cumulative dose regime, morphine (0.1-10 micrcog), baclofen (0.1-1 microg), clonidine (0.1-10 microg) and R-PIA (0.01-10 nmol) were administered i.t. through an implanted catheter at the lumbar spinal cord. All tested drugs dose-dependently reduced the brushing, von Frey hairs and cold stimulation-induced allodynia-like behaviour. No increase in adverse effects such as motor deficits was found for morphine, clonidine and R-PIA. There was a slight increase in motor impairments at the highest dose of baclofen. For the mechanical allodynia, morphine appeared to be most effective, whereas baclofen, clonidine and R-PIA only provided a partial alleviation. For the cold allodynia, morphine and baclofen were more effective than clonidine and R-PIA. In relieving acute mechanical and cold allodynia-like behaviours in rats 1-2 days after SCI, i.t. morphine and baclofen were superior to clonidine and R-PIA.

Adenosine↗

Marked enhancement of anti-allodynic effect by combined intrathecal administration of the adenosine A1-receptor agonist R-phenylisopropyladenosine and morphine in a rat model of central pain.

BACKGROUND: There is often no satisfactory treatment for chronic pain after spinal cord injury. We have previously reported that intrathecal (i.t.) administration of the adenosine A1-receptor agonist R-phenylisopropyl-adenosine (R-PIA) or the opioid morphine has anti-allodynic effects in a model of presumed chronic central pain after photochemically induced spinal cord injury in rats. In the present study, we set out to investigate the possible interaction between i.t. R-PIA and morphine in spinally injured rats. METHODS: Sprague-Dawley rats displaying allodynia-like behaviors to mechanical and cold stimuli after photochemically induced spinal cord injury with minor motor deficits were used. R-PIA and morphine, either alone or in combination, were administered i.t. through an implanted catheter to lumbar spinal cord. RESULTS: Cumulative doses of R-PIA or morphine dose-dependently reduced the mechanical allodynia-like behavior, with a threshold of 1 nmol and 1.5 nmol, respectively. When co-administrated, R-PIA and morphine produced marked suppression of mechanical allodynia at doses of 5 pmol and 7.5 pmol, respectively. The effect of i.t. co-administration of R-PIA and morphine on cold allodynia was comparable to i.t. R-PIA alone. The combination of R-PIA and morphine did not increase adverse effects such as motor deficits in comparison to either drug alone. CONCLUSION: These results demonstrate a supra-additive interaction between the adenosine A1-receptor agonist R-PIA and morphine to reduce mechanical allodynia-like behavior in rats with chronic spinal cord injury. The combination of R-PIA and morphine administered spinally may be superior to R-PIA or morphine alone for treating such pain.

Analgesics, Opioid↗

Intrathecal adenosine administration in abdominal hysterectomy lacks analgesic effect.

BACKGROUND: Adenosine (Ado) is known, from studies in both animals and humans, to produce antinociception when administered systemically or intrathecally (IT). The current aim was to evaluate, in a placebo-controlled, randomised, double-blind study, whether IT adenosine given before surgery could reduce anaesthetic requirement and the need of opioids during 48 h after visceral surgery. METHOD: Forty women (37-66 years, ASA I and II) scheduled for elective hysterectomy were included. Before inducing the standardised O2/N2O/isoflurane/fentanyl anaesthesia, the patients received an IT injection of either adenosine (500 microg in 1 ml volume) or placebo 1 ml (saline). Intraoperative anaesthetic drug doses and haemodynamics were recorded. Postoperative pain was assessed by visual analogue scale. For postoperative analgesia, cetobemidone was provided via intravenous patient-controlled analgesia (PCA). RESULTS: During surgery, there were no differences between groups in anaesthetic requirement or haemodynamic parameters. Postoperative cetobemidone requirements were similar in both groups (median 48 mg for adenosine/50 mg for saline) during the first 48 postoperative hours. CONCLUSION: IT adenosine did not influence the requirement of anaesthetic drug or postoperative analgesics after hysterectomy.

Adenosine↗

The N-methyl-D-aspartate-receptor antagonist dextromethorphan lacks analgesic effect in a human experimental ischemic pain model.

BACKGROUND: N-methyl-D-aspartate-receptor antagonists may be useful in pain management. The aim of this study was to evaluate dextromethorphan (DEX), a commonly used oral antitussive drug with NMDA-receptor antagonistic properties, in respect of its analgesic properties as single drug and co-administered with morphine (MO) on experimental ischemic pain. In addition, the analgesic effects of another clinically available NMDA-receptor antagonist, ketamine (KET) as well as of morphine (MO) were tested as active controls. METHODS: Nineteen healthy volunteers were included in the study. Experimental ischemic pain was induced using the forearm tourniquet test. Placebo (PLAC), oral DEX (30 and 90 mg, respectively), KET (9 microg kg(-1) min(-1) i.v.), MO (0.1 mg kg(-1), i.v.) and the DEX+MO and KET+MO combinations were evaluated during eight separate experiments. Development of ischemic pain was rated by visual analog scale (VAS) every minute over 30 min and ratings were summed as sum of pain scores (SPS). RESULTS: DEX by itself did not influence SPS compared to PLAC. The DEX+MO co-administration did not enhance MO-induced analgesia. MO and KET reduced pain ratings by 27% and 39%, respectively. The KET+MO combination showed no enhancement of the analgesic effect in comparison with the respective drugs in monotherapy. CONCLUSION: DEX in clinical doses has no effect on the present acute ischemic pain model and does not influence MO-induced analgesia. Further studies on other pain modalities are needed in order to evaluate the potential use of DEX in pain treatment.

Adult↗

Multi-cellular activation in vivo by endotoxin in humans--limited protection by adenosine infusion.

The influence of adenosine infusion (40 microg/kg/min for 4 h) on inflammatory and hemostatic parameters was investigated in healthy males without (n = 10) or with (n = 11) intravenous endotoxin injection (4 ng/kg). Without endotoxin, adenosine elevated circulating leukocytes and circulating platelet-leukocyte aggregates. Endotoxin activated platelets and leukocytes in vivo. Platelet activation was seen as slightly increased platelet P-selectin expression, decreased platelet counts, and elevated plasma soluble P-selectin (from 39.6 +/- 3.4 to 68.9 +/- 6.6 ng/ml, P<0.01). Leukocyte activation was evidenced by increased CD1 lb expression (from MFI of 0.54 +/- 0.02 to 2.21 +/- 0.17; P<0.01) and plasma elastase levels (from 25.3 +/- 2.5 to 169.3 +/- 22.5 ng/ml: P <0.01). Endotoxin also enhanced platelet and leukocyte responsiveness to in vitro stimulation. Endotoxin induced von Willebrand factor secretion (from 92 +/- 8 units to 265 +/- 19 units at 4 h; P <0.001) and enhanced thrombin generation in vivo. Endotoxin induced leukocytosis and thus increased circulating platelet-leukocyte, mainly platelet-neutrophil, aggregates. Adenosine caused slight attenuation of platelet reactivity to agonist stimulation, enhanced the endotoxin-induced leukocytosis, and detained more platelet-leukocyte aggregates in circulation, but did not attenuate endotoxin-induced neutrophil elastase secretion, von Willebrand factor secretion, or thrombin generation. Thus, endotoxemia induces multi-cellular activation in vivo. Adenosine inhibits leukocyte adhesion and extravasation, and mildly attenuates platelet responsiveness and soluble P-selectin release. Adenosine has the potential of becoming a therapeutic antiinflammatory drug, but an optimal treatment strategy needs to be developed.

Adenosine↗

Intrathecal adenosine does not relieve allodynia-like behavior in spinally injured rats.

The intrathecal (i.t.) administration of the adenosine A1-receptor agonist R-phenylisopropyl-adenosine (R-PIA) reduced pain-related behaviors after peripheral nerve or spinal cord injury in rats. The endogenous ligand adenosine is clinically available and has been tested i.t. as an analgesic. Thus, we set out to investigate whether i.t. adenosine could reduce allodynia in a model of central pain in spinally injured rats. I.t. adenosine did not reduce mechanical and cold allodynia-like behaviors at doses of 10, 100 and 187 nmol, whereas i.t. R-PIA at 10 nmol markedly alleviated allodynia in the same animals. The lack of effect by exogenous adenosine may be due to pharmacokinetic or pharmacodynamic reasons. Alternatively, adenosine may have reduced affinity and selectivity towards the A1-receptors which may be important for the antiallodynic effect.

Adenosine↗

Effects of adenosine infusion on gastric emptying in healthy volunteers.

BACKGROUND: A low dose of systemic adenosine infusion has been shown to induce antinociception in clinical experimental studies as well as in patients. There is no clinical information about the effect of adenosine on the motility of the gastrointestinal tract. The aim of this study was therefore to evaluate the effect of exogenous adenosine administration on gastric emptying in man. METHOD: Ten healthy male volunteers (22-45 yrs) were included in a placebo-controlled, double-blind, randomised, cross-over study, where the experiments were separated by at least one week. During one session the volunteers received a continuous intravenous infusion of adenosine (50 micrograms.kg-1.min-1) initiated 15 min prior to the test of gastric emptying (a standard test meal, followed by oral acetaminophen, 2 g) and lasting throughout the experiment (2 h). During the other experimental session an infusion of saline was given. Acetaminophen absorption test was used as an indirect measure of the rate of gastric emptying. Venous acetaminophen concentration curves were produced and the maximum acetaminophen concentration (Cmax), the time to reach the maximum concentration (Tmax), and the area under the serum acetaminophen concentration time curve from 0 to 60 min (AUC60) were calculated. RESULTS: There was no difference between placebo and adenosine in Cmax (197 vs. 199 mumol.L-1, P = 0.80), Tmax (23 vs. 45 min, P = 0.14), AUC60 (9633 vs. 9111 min.mumol.L-1, P = 0.28). CONCLUSION: The results demonstrate that adenosine in a clinically antinociceptive dose of 50 micrograms.kg-1.min-1 does not affect the rate of gastric emptying in healthy volunteers.

Absorption↗

Pneumoperitoneum in healthy humans does not affect central blood volume or cardiac output.

BACKGROUND: This study addresses the question of whether the elevation of the mean arterial pressure and central venous pressure in response to pneumoperitoneum for laparoscopic surgery is caused by increases in central blood volume and/or cardiac output. METHODS: Eleven patients in good cardiopulmonary health and scheduled for laparoscopic cholecystectomy, with a mean age of 42 years, were included. After induction of anaesthesia with fentanyl and propofol, radial arterial and central venous lines were introduced. The central blood volume and cardiac output were determined by the indicator-dilution technique, using inline densitometric measurements of indocyanine green (ICG). The measurements were made before and after the establishment of pneumoperitoneum by insufflation of carbon dioxide to an intra-abdominal pressure level of 11-13 mmHg. RESULTS: The mean arterial pressure (62+/-6 mmHg) increased after induction of pneumoperitoneum by 40+/-26% (P<0.05) and the central venous pressure increased from 6+/-4 mmHg to 8+/-6 mmHg (P<0.05). The cardiac output (4.3+/-0.9 L/min) and central blood volume (1.5+/-0.5 L) were not affected by the induction of pneumoperitoneum. CONCLUSIONS: In healthy anaesthetized subjects, the elevation of mean arterial pressure and central venous pressure in response to pneumoperitoneum was not caused by enhancement in cardiac output or central blood volume.

Adult↗

Spinal cord morphology after chronic intrathecal administration of adenosine in the rat.

BACKGROUND: The endogenous compound adenosine is known to have various modulatory effects both in the peripheral and central nervous system. Adenosine and its analogues induce antinociception in animal models when administrated systemically and intrathecally (IT), both in acute and chronic models of pain. Before a new drug is introduced for spinal pain treatment in humans, experimental studies of neurotoxicity must be undertaken. METHODS: This study was performed in rats in order to reveal morphological or morphometric signs of spinal cord damage after chronic (two weeks) administration of adenosine. After insertion of IT catheters, the animals were injected twice a day during two weeks with adenosine (100 microg) or saline (controls). Potential spinal neurotoxicity was evaluated morphologically by light and electron microscopy supplemented by a morphometric analysis. RESULTS: There were no signs of histologic changes indicating neurotoxic effects by any of the methods of analysis. The morphological findings in the adenosine treated rats did not differ in any case from those of the saline treated animals. CONCLUSION: The results suggest that chronic IT administration of a high dose of adenosine is not associated with neurotoxicity in the rat spinal cord.

Adenosine↗

Differentiated effects on splanchnic homeostasis by selective and non-selective endothelin receptor antagonism in porcine endotoxaemia.

1. The non-selective endothelin (ET) receptor antagonist bosentan has been shown to restore systemic and gut oxygen delivery and reverse intestinal mucosal acidosis in porcine endotoxin shock. 2. To further elucidate the specific role of the ETA as opposed to the ETB receptor and their effects in the splanchnic region a non-selective (ET(MIX)ra) A-182086 and selective ETA (ET(A)ra) PD155080 and ETB (ET(B)ra) A-192621 receptor antagonists were administered, separately or simultaneously (ET(A+B)ra) 2 h after onset of endotoxin shock. These four groups were compared to a control group receiving only endotoxin and vehicle. 3. Thirty-nine pigs were anaesthetized and catheterized for measurement of central and regional haemodynamics. A tonometer in the distal ileum was used for measurement of mucosal PCO2. Blood gases and plasma ET-1-LI levels as well as histological samples from the gut were assessed. Intervention was started 2 h after onset of endotoxemia and the experiments were terminated after 5 h. 4. Endotoxin-induced changes in systemic, gut oxygen delivery and portal hepatic vascular resistance and systemic acidosis were effectively counteracted by both ET(A+B)ra an ET(MIX)ra. ET(A)ra administration was not effective while ET(B)ra proved to be fatal as all animals in this group died prior to full time of the experiment. While both ET(A+B)ra and ET(MIX)ra improved gut oxygen delivery only the latter attenuated the profound endotoxin-induced ileal mucosal acidosis. 5. The lethal effect seen from selective ETB receptor antagonism in the current study may be due to increased ETA receptor activity as plasma levels of ET-1 is increased several fold by blocking the ETB receptor and thereby the plasma-ET-1-clearing function. Furthermore, a loss of endothelial ETB receptor vasodilating properties may also have contributed to the lethal course in the ET(B)ra group. 6. The findings in this study suggest that ET is involved in the profound endotoxin-induced disturbances in splanchnic homeostasis in porcine endotoxaemia. Furthermore, antagonism of both ETA and ETB receptors is necessary to effectively counteract these changes.

Animals↗

Adenosine reduces secondary hyperalgesia in two human models of cutaneous inflammatory pain.

UNLABELLED: Secondary hyperalgesia is characterized by increased sensitivity to noxious mechanical stimuli in the area surrounding injured skin. The pathophysiological mechanisms involve increased excitability of second-order neurons located in the spinal cord, i.e., central sensitization. The mechanisms behind this phenomenon may be of importance in clinical pain, including neuropathic pain. To study the effects of systemic infusion of the endogenous compound adenosine (ADO) on sensory function, a superficial cutaneous burn injury was induced by the 4-min topical application of mustard oil or by heat (47 degrees C for 7 min) during i.v. ADO infusion (60 microg x kg(-1) x min(-1)). Healthy human subjects (n = 10 for each model) were tested, using a blinded, placebo-controlled procedure. The area of secondary hyperalgesia, as well as tactile and thermal sensory function, was tested using psychophysical methods during and after treatments. ADO significantly reduced the area of secondary hyperalgesia in both models. The maximal reduction compared with placebo was 58% +/- 20% (heat burn) and 39% +/- 13% (mustard oil burn). No other differences in sensory function were observed. The results are interpreted as an ADO-induced modulatory effect on the mechanisms of central sensitization. IMPLICATIONS: We tested the effects of adenosine on the development of increased sensitivity in the skin surrounding a superficial skin injury in humans. A superficial skin bum was induced with a chemical irritant or heat. The results show that adenosine reduces the skin area with increased sensitivity surrounding the injury.

Adenosine↗

The safety and efficacy of intrathecal adenosine in patients with chronic neuropathic pain.

UNLABELLED: Adenosine and adenosine analogs decrease pain-like behavior in animal models of both acute nociceptive and neuropathic pain via adenosine receptor activation at spinal and/or supraspinal levels. This open study is the first in a series of intrathecal (IT) adenosine administration studied for the evaluation of efficacy and side effects in 14 patients. All had chronic neuropathic pain with tactile hyperalgesia and/or allodynia primarily of traumatic origin. The effects of IT adenosine (500 microg [n = 9] or 1000 microg [n = 5]) were evaluated. Approximate areas of tactile pain were mapped. Spontaneous and evoked pain (visual analog scale score 0-100) and tactile pain thresholds were assessed before and 60 min after injection. The injection caused transient pain (<60 min) in the lumbar region in five patients. There were no other side effects. Spontaneous and evoked pain was reduced (median score from 65 to 24 [P<0.01] and from 71 to 12 [P<0.01], respectively) in parallel with increased tactile pain thresholds in allodynic areas. Areas of tactile hyperalgesia/allodynia were reduced (median reduction 90%; P<0.001). Twelve patients experienced pain relief (median 24 h). We conclude that IT adenosine transiently causes lumbar pain in a subgroup of patients and may reduce various aspects of chronic neuropathic pain. IMPLICATIONS: This is the first series of patients with chronic neuropathic pain in which tolerability to spinal adenosine administration has been evaluated. A subset of patients reported transient low back pain as the only side effect. Spontaneous and evoked pain intensity decreased in most patients, an effect lasting for a median of 24 h.

Adenosine↗

Ventilatory responses to acute and sustained hypoxia during sevoflurane anesthesia in women.

UNLABELLED: We investigated the isocapnic hypoxic (i.e., pulse oximetry monitored arterial saturations 70%-75%) ventilatory response (HVR) for 20 min in the awake state and during sevoflurane anesthesia at an end-tidal concentration of 1.6% in eight healthy (ASA physical status I) women. Our aims were to determine if a prolonged isocapnic hypoxic period during sevoflurane anesthesia showed a biphasic response pattern (i.e., an initial acute HVR followed by a decline to a lowered sustained HVR) and, if so, to quantify to what extent the acute and sustained HVRs were depressed by anesthesia. The study was conducted before laparoscopic gynecological surgery. Pneumotachography and in-line infrared capnography were used. The pattern of awake biphasic HVR was maintained during anesthesia but was depressed during both the acute and the sustained phases by 60% and 70%, respectively. Further, HVR during anesthesia was accomplished by an increase in respiratory rate, in contrast to an increase in tidal volume in the awake state. In conclusion, sevoflurane anesthesia at 1.6% depresses HVR in women, but the biphasic response is maintained. IMPLICATIONS: Acute and sustained hypoxic ventilatory responses were investigated in eight women before and during sevoflurane anesthesia. A biphasic ventilatory response was persistent but blunted during anesthesia.

Adult↗

Tissue hypoxanthine reflects gut vulnerability in porcine endotoxin shock.

OBJECTIVE: To study differences in organ sensitivity during progressive endotoxin shock tissue levels of hypoxanthine, used as an indicator of adenosine triphosphate depletion and cellular energy failure, were monitored simultaneously in several organs by in vivo microdialysis. DESIGN: Prospective, controlled animal study. SETTING: University research laboratory. SUBJECTS: Seventeen landrace pigs. MEASUREMENTS AND MAIN RESULTS: Tissue levels of hypoxanthine, assessed by in vivo microdialysis, were monitored (in the ileum, liver, lung, skeletal muscle, subcutaneous fat, and arterial blood) simultaneously in addition to central hemodynamics during endotoxin shock in ten pigs. Seven sham animals not receiving endotoxin served as controls. Marked changes were seen in central hemodynamic parameters in response to endotoxemia. Very prominent increases were seen in the ileum and liver, followed by the lung, whereas only limited changes were observed in subcutaneous fat. These results indicate a differentiated development of cellular energy failure in response to endotoxemia in different organs. By considering the high amounts of xanthine oxidase seen in the gut, the increases in hypoxanthine may provide an important substrate for reactive oxygen species formation in this organ. The limited changes seen in subcutaneous fat suggest that this tissue may provide limited sensitivity when monitoring the septic patient. CONCLUSIONS: These findings support the concept of specific vulnerability of the gut during endotoxemia.

Adipose Tissue↗

Endothelin(A)-receptor antagonism attenuates pulmonary hypertension in porcine endotoxin shock.

Porcine endotoxin shock is characterized by pulmonary hypertension, decreased mean arterial pressure and deteriorated cardiac performance. These pathophysiological findings are accompanied by increased plasma endothelin-1 levels. Previous studies have shown that both the pulmonary and systemic circulation are improved by combined endothelinA- and endothelinB-receptor antagonism. This study was designed to evaluate further the specific involvement of the endothelinA-receptor in cardiopulmonary pathophysiology during endotoxin shock. In a porcine endotoxin shock model, the endothelinA-receptor antagonist PD 155080 was administered after the onset of endotoxaemia. Cardiopulmonary vascular changes, dynamic lung compliance, oxygen-related variables and plasma levels of endothelin-1-like immunoreactivity were compared with a control group receiving only endotoxin. PD 155080 counteracted the increase in pulmonary artery pressure seen in control animals. In contrast, cardiac performance was not improved. Dynamic lung compliance was not affected by PD 155080. Plasma levels of endothelin-1-like immunoreactivity increased to a similar degree in both groups. These findings indicate that the endothelin system is involved in the pathophysiology of endotoxin shock. Furthermore, the change in pulmonary circulation seen in the present shock model is to a large extent mediated by the endothelinA-receptor mechanism. In view of previous findings, the deterioration of cardiac performance may involve the endothelinB-receptor, either alone or in combination with the endothelinA-receptor.

Animals↗

Effect of spinal cord stimulation on tactile hypersensitivity in mononeuropathic rats is potentiated by simultaneous GABA(B) and adenosine receptor activation.

In rats with abnormally low withdrawal thresholds ('allodynia') in one hindpaw induced by a photochemical sciatic lesion, an intrathecal catheter was inserted to the lumber enlargement and an epidural electrode was implanted at T11. I.t. administration of GABA(B) or adenosine A1 receptor agonists (baclofen, R(-)-N6-(2-phenylisopropyl)adenosine (R-PIA)) suppressed allodynia in a dose-dependent fashion. When the two agonists were given together, each in an ineffective dose, there was a normalization of the thresholds. Rats, in which spinal cord stimulation (SCS) could not suppress the allodynia (non-responders), were transformed into SCS-responders by injection of baclofen and R-PIA in low, ineffective doses, combined with SCS. In SCS responding rats, combination of a selective GABA(B) and an adenosine A1 receptor antagonist (CGP 55845, CPT) in low, ineffective doses abolished the SCS-induced threshold normalization. These results indicate that GABAergic and adenosine-dependent mechanisms are involved in the SCS effect and further suggest a strategy for enhancing the therapeutic efficacy of SCS.

Adenosine↗

Intrathecal administration of the adenosine A1 receptor agonist R-phenylisopropyl adenosine reduces presumed pain behaviour in a rat model of central pain.

Effects of intrathecally (i.t.) administered R-phenylisopropyl adenosine (R-PIA), an adenosine A1 receptor agonist, on presumed pain behaviour were assessed in a rat model of chronic central pain. Spinal cord injury was induced photochemically via laser irradiation of the spinal cord after intravenous injection of erythrosin B in rats. The chronic allodynia-like behaviour that developed in some animals was studied. R-PIA (3 and 10 nmol), injected i.t. reduced the mechanical and cold allodynia-like symptoms as tested with von Frey filaments and ethyl-chloride spray, respectively. No side effects were observed. The effect of R-PIA was significant for up to 5 h and was reversed by theophylline, an adenosine receptor antagonist.

Adenosine↗