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Biomedical subjects

K P Moore

Publications and source records attributed to K P Moore.

At least 19 recordsLinked to original sources

Naltrexone, an opioid receptor antagonist, attenuates liver fibrosis in bile duct ligated rats.

AIM: The aim of this study was to investigate the hypothesis that the opioid system is involved in the development of hepatic fibrosis. METHODS: The effect of naltrexone (an opioid receptor antagonist) on hepatic fibrosis in bile duct ligated (BDL) or sham rats was assessed by histology and hepatic hydroxyproline levels. Liver matrix metalloproteinase 2 (MMP-2) was measured by zymography, and alpha smooth muscle actin (alpha-SMA) and CD45 (leucocyte common antigen) by immunohistochemistry. The redox state of the liver was assessed by hepatic glutathione (GSH)/oxidised glutathione (GSSG) and S-nitrosothiol levels. Subtypes of opioid receptors in cultured hepatic stellate cells (HSCs) were characterised by reverse transcriptase-polymerase chain reaction, and the effects of selective delta opioid receptor agonists on cellular proliferation, tissue inhibitor of metalloproteinase 1 (TIMP-1), and procollagen I expression in HSCs determined. RESULTS: Naltrexone markedly attenuated the development of hepatic fibrosis as well as MMP-2 activity (p<0.01), and decreased the number of activated HSCs in BDL rats (p<0.05). The development of biliary cirrhosis altered the redox state with a decreased hepatic GSH/GSSG ratio and increased concentrations of hepatic S-nitrosothiols, which were partially or completely normalised by treatment with naltrexone, respectively. Activated rat HSCs exhibited expression of delta1 receptors, with increased procollagen I expression, and increased TIMP-1 expression in response to delta(1) and delta(2) agonists, respectively. CONCLUSIONS: This is the first study to demonstrate that administration of an opioid antagonist prevents the development of hepatic fibrosis in cirrhosis. Opioids can influence liver fibrogenesis directly via the effect on HSCs and regulation of the redox sensitive mechanisms in the liver.

Animals↗

Low plasma protein nitrotyrosine levels distinguish primary Raynaud's phenomenon from scleroderma.

OBJECTIVE: To investigate the hypothesis that increased formation of reactive nitrogen species may contribute to the vascular pathology that develops in patients with connective tissue disease such as scleroderma. PATIENTS AND METHODS: The level of protein-bound nitrotyrosine in plasma was measured by stable isotope dilution gas chromatography/negative ion chemical ionisation mass spectrometry in 11 patients with primary Raynaud's phenomenon, 37 with scleroderma, 13 with chronic renal impairment, and in 23 healthy controls. RESULTS: Plasma protein-bound nitrotyrosine was markedly decreased in patients with primary Raynaud's phenomenon (mean (SEM) 0.60 (0.06) ng/mg dry protein) compared with patients with scleroderma (1.78 (0.21) ng/mg protein), chronic renal impairment (1.42 (0.17) ng/mg protein) or healthy controls (1.63+/-0.15 ng/mg protein, ANOVA p<0.001). CONCLUSION: These data suggest that there is decreased nitration of plasma proteins, or increased degradation of nitrated proteins from the circulation of patients with primary but not secondary Raynaud's phenomenon.

Adult↗

Pathogenesis and treatment of renal dysfunction in rhabdomyolysis.

Rhabdomyolysis is a major cause of acute renal failure, and recent experimental data have provided a better understanding of the pathophysiology of the renal dysfunction. Renal failure is due to renal vasoconstriction, tubular damage caused by oxidant injury, and possibly tubular obstruction. Recent studies have provided greater insight into the rationale behind current therapy and potential treatment strategies. This review thus aims to summarise current understanding of the causes, pathogenesis and treatment of renal failure caused by rhabdomyolysis.

Acute Kidney Injury↗

Endothelial transcytosis of myeloperoxidase confers specificity to vascular ECM proteins as targets of tyrosine nitration.

Nitrotyrosine formation is a hallmark of vascular inflammation, with polymorphonuclear neutrophil-derived (PMN-derived) and monocyte-derived myeloperoxidase (MPO) being shown to catalyze this posttranslational protein modification via oxidation of nitrite (NO(2)(-)) to nitrogen dioxide (NO(2)(*)). Herein, we show that MPO concentrates in the subendothelial matrix of vascular tissues by a transcytotic mechanism and serves as a catalyst of ECM protein tyrosine nitration. Purified MPO and MPO released by intraluminal degranulation of activated human PMNs avidly bound to aortic endothelial cell glycosaminoglycans in both cell monolayer and isolated vessel models. Cell-bound MPO rapidly transcytosed intact endothelium and colocalized abluminally with the ECM protein fibronectin. In the presence of the substrates hydrogen peroxide (H(2)O(2)) and NO(2)(-), cell and vessel wall-associated MPO catalyzed nitration of ECM protein tyrosine residues, with fibronectin identified as a major target protein. Both heparin and the low-molecular weight heparin enoxaparin significantly inhibited MPO binding and protein nitrotyrosine (NO(2)Tyr) formation in both cultured endothelial cells and rat aortic tissues. MPO(-/-) mice treated with intraperitoneal zymosan had lower hepatic NO(2)Tyr/tyrosine ratios than did zymosan-treated wild-type mice. These data indicate that MPO significantly contributes to NO(2)Tyr formation in vivo. Moreover, transcytosis of MPO, occurring independently of leukocyte emigration, confers specificity to nitration of vascular matrix proteins.

Animals↗

Analysis of free and protein-bound nitrotyrosine in human plasma by a gas chromatography/mass spectrometry method that avoids nitration artifacts.

Measurement of nitrotyrosine in biological fluids and tissues is increasingly being used to monitor the production of reactive nitrogen species in vivo. The detection of nitrotyrosine in vivo has been reported with the use of a variety of methods including immunoassay, HPLC and GLC/MS. The validity of HPLC and immunoassays have been questioned with regard to their selectivity and sensitivity limits. In principle, the measurement of nitrotyrosine by GLC/MS permits a highly specific, highly sensitive and fully quantitative assay. The nitration of tyrosine under acidic conditions in the presence of nitrite is well documented. Derivatization for the full quantification of nitrotyrosine by using GLC/MS can lead to the artifactual nitration of tyrosine if performed under acidic conditions in the presence of nitrite. We describe a novel alkaline method for the hydrolysis and derivatization of nitrotyrosine and tyrosine, and demonstrate its applicability to the measurement of plasma concentrations of both free and protein-bound nitrotyrosine and tyrosine. A detection limit of 1 pg for nitrotyrosine and 100 pg for tyrosine has been achieved. Our method allows, for the first time, the analysis of free and protein-bound nitrotyrosine and tyrosine in biological samples. The plasma concentrations (means+/-S.E.M.) of free tyrosine and nitrotyrosine in eight normal subjects were 12+/-0.6 microg/ml and 14+/-0.7 ng/ml respectively. Plasma proteins contained tyrosine and nitrotyrosine at 60.7+/-1.7 microg/mg and 2.7+/-0.4 ng/mg respectively.

Adult↗

A causative role for redox cycling of myoglobin and its inhibition by alkalinization in the pathogenesis and treatment of rhabdomyolysis-induced renal failure.

Muscle injury (rhabdomyolysis) and subsequent deposition of myoglobin in the kidney causes renal vasoconstriction and renal failure. We tested the hypothesis that myoglobin induces oxidant injury to the kidney and the formation of F2-isoprostanes, potent renal vasoconstrictors formed during lipid peroxidation. In low density lipoprotein (LDL), myoglobin induced a 30-fold increase in the formation of F2-isoprostanes by a mechanism involving redox cycling between ferric and ferryl forms of myoglobin. In an animal model of rhabdomyolysis, urinary excretion of F2-isoprostanes increased by 7.3-fold compared with controls. Administration of alkali, a treatment for rhabdomyolysis, improved renal function and significantly reduced the urinary excretion of F2-isoprostanes by approximately 80%. EPR and UV spectroscopy demonstrated that myoglobin was deposited in the kidneys as the redox competent ferric myoglobin and that it's concentration was not decreased by alkalinization. Kinetic studies demonstrated that the reactivity of ferryl myoglobin, which is responsible for inducing lipid peroxidation, is markedly attenuated at alkaline pH. This was further supported by demonstrating that myoglobin-induced oxidation of LDL was inhibited at alkaline pH. These data strongly support a causative role for oxidative injury in the renal failure of rhabdomyolysis and suggest that the protective effect of alkalinization may be attributed to inhibition of myoglobin-induced lipid peroxidation.

Animals↗

Early closure of a randomized trial: surgery and postoperative radiotherapy versus radiotherapy in the management of intra-oral tumours.

Tumours of the oral cavity/oropharynx occur relatively infrequently in the UK. The management of such lesions, especially the squamous cell carcinomas, is still a little controversial. Some centres advocate radiotherapy while others adopt surgery and radiotherapy. In an attempt to resolve the question of which approach gives the better results, a multicentre randomized trial was established to compare surgery plus postoperative radiotherapy with radical radiotherapy alone. It was anticipated that 350 patients would be required to give a statistically significant result, but, after 35 patients had been entered, the trial was closed prematurely with a marked difference in overall survival in favour of the combination arm (P = 0.0006). At this analysis, carried out 23 months after trial closure, the survival difference between the two arms remains statistically significant for all causes of mortality (P = 0.001; relative death rate = 0.24; 95% CI 0.10-0.59).

Adult↗

Effect of the isoprostanes, 8-iso prostaglandin E2 and 8-iso prostaglandin F2 alpha on the rabbit lung in vivo.

8-Iso-prostaglandin (PG)E2 and 8-iso-PGF2 alpha are members of the isoprostane class of prostanoids which are formed by free radical mediated oxidation of arachidonic acid. Both E2- and F2-isoprostanes are potent vasoconstrictors and are believed to act through the prostanoid TP-receptors or a closely related receptor. In lightly anaesthetised, spontaneously breathing rabbits, aerosolised administration of histamine (1.25-40 mg ml-1, n = 8) caused a modest dose-dependent increase in total lung resistance (RL) and a concomitant fall in dynamic lung compliance (CL dyn). Aerosolised methacholine (0.625-20 mg ml-1, n = 6) caused considerable bronchoconstriction, with a dose-dependent increase in RL, and a corresponding fall in CL dyn. In contrast, intratracheal administration of either 8-iso PGE2 or 8-iso-PGF2 alpha (1 ng ml(-1)-100 micrograms ml-1, n = 8) had no significant effect on lung function. The TP-receptor agonist, U-46619, was similarly inactive in this model when given by aerosol. Intravenous administration of histamine or 8-iso PGF2 omega had no significant effect on the lung indices, RL and CL dyn, or on the pulmonary and systemic vasculature (n = 4 per drug group). 8-Iso-PGE2 caused a concentration-dependent decrease in the right ventricular systolic pressure from 3 nmol kg-1 to 100 nmol kg-1 (n = 43, p < 0.05), but showed no other activity. In contrast, U-46619 given intravenously caused an increase in transpulmonary pressure (n = 4, p < 0.05), but had no effect on airflow. At higher doses, it did cause a significant drop in both systemic and right ventricular systolic pressures (n = 4, p < 0.05), which were probably due to an interaction with platelets. The isoprostanes had no effect on the rabbit airway up to a concentration of 3 microM. In contrast, 3 microM U-46619 caused a modest contraction of tracheal smooth muscle, whilst 3 microM methacholine was at least five-fold more potent in contracting the same tissues. We conclude that the aerosolised isoprostanes are not broncho-constricting agents in the rabbit in vivo.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Identification of the major urinary metabolite of the F2-isoprostane 8-iso-prostaglandin F2alpha in humans.

F2-isoprostanes are prostaglandin-like products of nonenzymatic lipid peroxidation. Measurement of levels of endogenous unmetabolized F2-isoprostanes has proven to be a valuable approach to assess oxidative stress in vivo. However, measurement of levels of urinary metabolites of F2-isoprostanes in timed urine collections offers an advantage over measuring unmetabolized F2-isoprostanes, e. g. in a plasma sample, in that it can provide an integrated index of isoprostane production over time. Therefore, we sought to identify the major urinary metabolite in humans of one of the more abundant F2-isoprostanes produced, 8-iso-prostaglandin F2alpha (8-iso-PGF2alpha). 20 microCi of tritiated 8-iso-PGF2alpha was infused over 1 h into a male volunteer. 75% of the infused radioactivity was excreted into the urine during the following 4.5 h and was combined with urine collected for 4 h from a rhesus monkey following infusion of 500 microg of unlabeled 8-iso-PGF2alpha. Urinary metabolites were isolated and purified by adsorption chromatography and high pressure liquid chromatography. The major urinary metabolite, representing 29% of the total extractable recovered radioactivity in the urine, was structurally identified by gas chromatography and mass spectrometry as 2,3-dinor-5, 6-dihydro-8-iso-prostaglandin F2alpha. The identification of 2, 3-dinor-5,6-dihydro-prostaglandin F2alpha as the major urinary metabolite of 8-iso-prostaglandin F2alpha provides the basis for the development of methods of assay for its quantification as a means to obtain an integrated assessment of oxidative stress status in humans.

Animals↗

Mesenteric vasodilator responses in cirrhotic rats: a role for nitric oxide?

The contribution of nitric oxide to mesenteric arterial vasodilator responses was investigated in the isolated perfused mesenteric arterial bed of cirrhotic rats (carbon tetrachloride/phenobarbitone; n = 6). Age-matched (n = 9) and phenobarbitone-treated rats (n = 9) served as controls. Responses to the endothelium-dependent dilators acetylcholine and adenosine 5'-triphosphate (ATP) and the smooth muscle dilator (NO donor) sodium nitroprusside were investigated after tone was raised by continuous infusion of methoxamine, before and during infusion of the NO synthesis inhibitor NG-nitro-L-arginine methyl ester (L-NAME; 30 mumol/L) +/- L-arginine (1 mmol/L). A significant hyporesponsiveness to methoxamine infusion in cirrhotic preparations (P < .05) was not fully corrected by L-NAME. There was no difference in the percentage vasodilator response to acetylcholine in the cirrhotic group compared with controls; L-NAME significantly and reversibly inhibited the dilator response in all groups. ATP elicited dose-dependent vasodilation that, in the absence of L-NAME, did not differ between the groups. By contrast, in the presence of L-NAME, ATP (5 x 10(-8) mol) produced pronounced, reversible vasoconstriction only in cirrhotic animals (P < .02). Vasodilatation attributable to sodium nitroprusside (5 x 10(-8) mol) was significantly attenuated in cirrhotic rats. The methoxamine data support the concept of mesenteric hyposensitivity to vasoconstrictor agents in cirrhosis that may be at least partly NO mediated. Increased NO activity in smooth muscle leading to decreased guanylate cyclase availability may account for the diminished vasodilator responses to sodium nitroprusside in cirrhotic preparations. The unchanged responsiveness to vasodilatation by acetylcholine (ACh) and the vasoconstriction to ATP observed during NO blockade in cirrhotic animals indicate that mesenteric endothelial NO is unchanged or possibly diminished.

Acetylcholine↗

Pain relief with low-dose intravenous clonidine in a child with severe burns.

The case of an 11-year-old boy who suffered second and third degree burns to 78% of his body is reported. The large doses of morphine used as analgesia resulted in severe side effects: ventilatory dependence, impairment of gastrointestinal function and psychological disturbance. Intravenous lignocaine was added without benefit. The addition of low-dose intravenous clonidine, however, precipitated a dramatic reduction in morphine consumption with an attendant improvement in ventilatory, gastrointestinal and psychological functions.

Adrenergic alpha-Agonists↗

Vasoconstrictor responsiveness of the rat mesenteric arterial bed in cirrhosis.

1. The effects of cirrhosis on mesenteric vascular reactivity were assessed in constantly perfused mesenteric arterial beds isolated from cirrhotic rats (carbon tetrachloride with phenobarbitone, n = 6), and from phenobarbitone-treated and untreated age-matched controls (n = 4,5). 2. At a constant flow rate of 5 ml min-1 there was no difference in basal perfusion pressure between the groups. Electrical field stimulation (EFS; 4-32 Hz, 90V, 1 ms, 30 s) of perivascular nerves caused frequency-dependent increases in perfusion pressure which were not different between the groups. Dose-dependent vasoconstrictor responses to exogenous noradrenaline (NA), methoxamine (an alpha 1-adrenoceptor agonist), adenosine 5'-triphosphate (ATP) and vasopressin were also similar between the groups. 3. The nitric oxide (NO) synthesis inhibitor NG-nitro-L-arginine methyl ester (L-NAME; 30 microM) augmented constrictor responses to NA, EFS, methoxamine and vasopressin in all groups, and as shown for EFS and NA, this was reversed by L-arginine (300 microM). However, the maximum constrictor responses of cirrhotic preparations in the presence of L-NAME were significantly lower than those of both groups of control animals at the highest frequency of EFS (32 Hz) and highest doses of NA (0.15 and 0.5 mumol) and, compared to phenobarbitone-treated controls, methoxamine (5 mumol). Responses to ATP were significantly augmented by L-NAME only in the cirrhotic group. 4. A step-wise increase in perfusate flow to 10, 15 and 20 ml min-1 produced a broadly similar increase in perfusion pressure within each group. At increased flow rates, cirrhotic preparations were hyporesponsive to NA (15 nmol) compared to the phenobarbitone-treated animals but not the untreated controls. Glibenclamide (5 microM) or L-NAME (30 microM) had no significant effect on the relationship between flow and perfusion pressure or on responses to NA at the different flow rates. 5. We conclude that sympathetic neurotransmission is unchanged in cirrhosis. Endogenous NO is important in modulation of constriction in both normal and cirrhotic states. Changes in NO may occur in cirrhosis, although the role of this in hyporesponsiveness of cirrhotic preparations to NA at higher flow rates and to the greater potentiation of ATP-mediated constriction in the presence of L-NAME, together with the impact of factors such as changes in calcium and potassium channels, is not entirely clear.

Adenosine Triphosphate↗

Premedication for ambulatory surgery in preschool children: a comparison of oral midazolam and rectal thiopentone.

Seventy five ASA 1 and 2 children, aged between six months and five years were randomized to receive oral midazolam 0.5 mg.kg-1, rectal thiopentone 35 mg.kg-1 or no premedication to compare the safety and efficacy of, and parental attitudes to, both premedicants. Cardio-respiratory variables were from the time of premedication to awakening from anaesthesia. In addition, anxiety and sedation scores and patients' acceptance of both premedicant and mask at induction, were all recorded using four-point rating scales. Times to recovery and discharge, and parental satisfaction with the premedication their child had received were also recorded. Children receiving rectal thiopentone had higher sedation scores and were more accepting of the mask than were the other two groups (P < 0.001). Their acceptance of the premedication was similar to that of the midazolam group. Times to spontaneous eye opening and discharge were longer in the thiopentone group (P < 0.005). Parental preoperative satisfaction rating was higher for thiopentone, but not midazolam, than no premedication (P < 0.05). When asked their premedication preferences for subsequent general anaesthetics, a higher proportion of parents whose children were not premedicated requested an alternative regimen (P < 0.01). In conclusion the study found that premedication with rectal thiopentone provided superior induction characteristics to oral midazolam, but with a longer recovery period.

Administration, Oral↗

Formation of F2-isoprostanes during oxidation of human low-density lipoprotein and plasma by peroxynitrite.

F2-Isoprostanes are novel bioactive prostaglandin F2-like compounds produced by nonenzymatic free radical-catalyzed peroxidation of arachidonic acid. F2-Isoprostanes are initially formed in situ on phospholipids and subsequently released. Quantification of the F2-isoprostanes has been found to represent a valuable and reliable marker of lipid peroxidation. Oxidative modification of low-density lipoprotein (LDL) is a key process for the recognition of LDL by the scavenger receptors on macrophages. The oxidative mechanism responsible for the modification of LDL in vivo remains unclear, but an attractive candidate is the powerful oxidant peroxynitrite, which can be formed by reaction of nitric oxide and superoxide in the vessel wall. To further explore the potential role of peroxynitrite in the oxidative modification of plasma lipids, we investigated whether incubation of LDL and plasma with peroxynitrite or SIN-1, which decomposes to form nitric oxide and superoxide, catalyzes the formation of F2-isoprostanes. Incubation of LDL with peroxynitrite (0.125 to 1 mmol/L) or SIN-1 (0.5 and 1 mmol/L) induced a concentration-dependent increase in the formation of F2-isoprostanes, reaching a maximum of 5.5 +/- 2.05-fold (SEM) and 18.2 +/- 4.0-fold above control values, respectively. The increase of F2-isoprostanes induced by SIN-1 was essentially completely inhibited by superoxide dismutase. Incubation of plasma with peroxynitrite or SIN-1 yielded similar results. These results indicate that peroxynitrite can induce the formation of F2-isoprostanes in lipoproteins. Since F2-isoprostanes can exert potent biological activity such as vasoconstriction, they may contribute to the vascular pathobiology associated with atherosclerosis.

Antihypertensive Agents↗