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Biomedical subjects

E Anggård

Publications and source records attributed to E Anggård.

At least 19 recordsLinked to original sources

Nitric oxide synthesis and isoprostane production in subjects with type 1 diabetes and normal urinary albumin excretion.

The role of nitric oxide (NO) and free radicals in the development of microvascular disease in type 1 diabetes remains unclear. We have measured NO and isoprostane (a stable marker of in vivo lipid peroxidation) production in 13 type 1 diabetic subjects with normal urinary albumin excretion and 13 healthy volunteers. Whole-body NO synthesis was quantified by measuring the urinary excretion of 15N-nitrate after the intravenous administration of L-[15N]2-arginine. The urinary excretion of the major urinary metabolite of 15-F2t-isoprostane (8-iso-prostaglandin-F2alpha), 2,3-dinor-5,6-dihydro-F2t-IsoP, was quantified as a marker of in vivo lipid peroxidation. Whole-body NO synthesis was significantly higher in diabetic subjects compared with control subjects (342 vs. 216 nmol 15N-nitrate/mmol creatinine [95% CI of the difference 45-207], P = 0.005). This increase was not explained by a difference in renal function between the 2 groups. There was no difference in 2,3-dinor-5,6-dihydro-F2t-IsoP excretion between diabetic subjects and control subjects (44.8+/-7.8 vs. 41.4+/-10.0 ng/mmol creatinine, mean +/- 95% CI). However, there was an inverse correlation between NO synthesis and free radical activity in subjects with diabetes (r = -0.62, P = 0.012) that was not observed in control subjects (r = 0.37, P = 0.107). We conclude that whole-body NO synthesis is higher in type 1 diabetic subjects with normal urinary albumin excretion than in control subjects. The inverse correlation between isoprostane production and NO synthesis in diabetic subjects is consistent with the hypothesis that NO is being inactivated by reactive oxygen species.

Adult↗

F4-isoprostanes: a novel class of prostanoids formed during peroxidation of docosahexaenoic acid (DHA).

Isoprostanes are prostaglandin (PG)-like compounds derived from free radical-catalyzed peroxidation of polyunsaturated fatty acids. F2-isoprostanes are produced in vivo by a non-cyclooxygenase mechanism involving free radical peroxidation of arachidonic acid. Peroxidation of eicosapentaenoic acid produces F3-isoprostanes. In this study, we explore the possibility of formation of F4-isoprostanes during peroxidation of docosahexaenoic acid (DHA) in vitro. DHA-liposomes were exposed at 37 degrees C to either 2,2'-azobis-(2-amidinopropane) hydrochloride (AAPH) or copper ions at final concentrations of 10 mM and 50 microM, respectively. Sample processing involved solid-phase extraction on a C18 and an NH2- cartridge. After conversion to pentafluorobenzyl ester and trimethylsilyl derivatives, F4-isoprostanes were analysed by negative ion-chemical ionisation mass spectrometry using tetradeuterated PGF2 alpha (PGF2-d4) as the internal standard. Quantitative analysis was carried out by selected ion monitoring (SIM) of the carboxylated anion [M-180]- at m/z 593 and 573 for the F4-isoprostanes and PGF2-d4, respectively. DHA oxidised by AAPH or by copper ions gave rise to a similar family of F4-isoprostanes. Formation of F4-isoprostanes increased throughout the oxidation period and was correlated with other indices of lipid peroxidation (hydroperoxides and thiobarbituric acid reactive substances). The possibility of analyzing F4-isoprostanes should provide new opportunities for studying the role of lipid peroxidation in nutritional studies and in the pathogenesis of neurodegenerative diseases.

Amidines↗

Substantial inhibition of neo-intimal response to balloon injury in the rat carotid artery using a combination of antibodies to platelet-derived growth factor-BB and basic fibroblast growth factor.

Thirty percent of patients undergoing percutaneous transluminal coronary angioplasty develop recurrent disease within a year. This is usually due to the rapid accumulation of intimal smooth muscle cells and extracellular matrix, which causes luminal narrowing, and is probably orchestrated by several mitogenic and chemotactic factors, of which platelet-derived growth factor (PDGF) and basic fibroblast growth factor (bFGF) appear to be particularly important. We have investigated the effects of administering a combination of neutralizing antibodies directed against PDGF-BB and bFGF on neo-intima development following balloon catheter injury in the rat carotid artery. Purified sheep anti-PDGF-BB and anti-bFGF immunoglobulins (IgGs) were administered singly and in combination prior to mechanical injury and daily until sacrifice, 8 days later. Plasma titres of exogenous anti-PDGF-BB and anti-bFGF were maintained at levels 10-20-fold higher than those required to neutralise the mitogenic and chemotactic effects of 20 ng/ml of PDGF-BB, or 10 ng/ml bFGF in vitro. Used singly, anti-PDGF IgG treatment was associated with a 47% reduction in intimal thickness and a 59% reduction in intimal:medial area ratio; anti-bFGF IgG administration caused a 53% reduction in intimal thickness, and a 50% reduction in intimal:medial area ratio. Treatment with a combination of these antibodies resulted in a 83.8% reduction in intimal thickness (P < 0.05), and a 91% reduction in intimal:medial area ratio (P < 0.01). The latter treatment was also associated with a significantly higher intimal cell density (14.2 +/- 1.6 x 10(3) nuclei/mm2) compared to animals receiving non-immune IgG (7.8 +/- 0.8 x 10(3) nuclei/mm2; P < 0.025), although intimal and medial cell proliferation indices were not significantly different between the groups (P > 0.05). Our results suggest that in this particular model, PDGF-BB and bFGF are the major factors controlling neointimal hyperplasia, and that these growth factors are operating principally via an effect on smooth muscle cell migration and extracellular matrix protein accumulation.

Animals↗

Nitric oxide: mediator, murderer, and medicine.

In the past ten years several research fields have converged to show that the tiny molecule nitric oxide (NO), a reactive gas, functions both as a signalling molecule in endothelial and nerve cells and as a killer molecule by activated immune cells--and it can be used as a new medicine by inhalation. This article reviews the biology of this remarkable molecule and discusses the implications for clinical medicine.

Cardiovascular Physiological Phenomena↗

The effects of LPS and probucol on interleukin 1 (IL-1) and platelet-derived growth factor (PDGF) gene expression in the human monocytic cell line U-937.

We have investigated the effects of lipopolysaccharide (LPS) and probucol (a lipid soluble antioxidant) on the gene expression of interleukin 1 alpha and beta (IL-1 alpha and IL-1 beta), and platelet-derived growth factor A chain and B chain (PDGF-A and PDGF-B) in the human monocytic cell line U-937. Steady-state mRNA levels were measured quantitatively by the reverse transcription-polymerase chain reaction (RT-PCR) using a non-radioactive label. Cells were incubated with LPS, in the presence or absence of probucol for 20 h. The cells were harvested and RNA was then prepared, reverse-transcribed in the presence of an internal standard and subsequently amplified and labelled with digoxigenin-11-dUTP by the PCR reaction. The PCR products were subjected to agarose gel electrophoresis, blotted onto nylon membranes and visualised by immunological detection of digoxigenin followed by a chemiluminescent reaction. We found that: (1) LPS treatment of U-937 cells caused an up-regulation of gene expression of IL-1 beta and PDGF-A chain by approximately 250% and 100% respectively, although it did not stimulate the expression of IL-1 alpha nor PDGF-B chain mRNA. (2) Probucol treatment in vitro had no effect on the basal or LPS-stimulated mRNA levels of IL-1 alpha, IL-1 beta, PDGF-A and PDGF-B despite its reported activity in vivo. (3) PDGF-A and PDGF-B were expressed at a similar level in unstimulated U-937 cells approximately 10-50 copies/ng total RNA, whereas the expression of IL-1 beta mRNA was approximately 2-4 times higher than IL-1 alpha mRNA. (4) Finally, in U-937 monocytic cells the expression of IL-1 alpha and IL-1 beta, and PDGF-A and PDGF-B appear to be independently regulated.

Base Sequence↗

The metabolism of glyceryl trinitrate to nitric oxide in the macrophage cell line J774 and its induction by Escherichia coli lipopolysaccharide.

The metabolism of glyceryl trinitrate (GTN) to nitric oxide (NO) was studied in the mouse macrophage cell line J774 and in the human monocytic cell line U937 in the absence or presence of Escherichia coli lipopolysaccharide (LPS). Two bioassay systems were used: inhibition of platelet aggregation and measurement of cGMP after stimulation by NO of guanylate cyclase in J774 cells. In addition, NO produced from GTN by cells or by cellular fractions was measured as nitrite (NO2-) one of its breakdown products. J774 cells (1.25 x 10(5) cells) treated with indomethacin (10 microM) enhanced the platelet inhibitory activity of GTN (22-352 microM) but not that of sodium nitroprusside (4 microM). This effect was abrogated by co-incubation with oxyhaemoglobin (oxyHb, 10 microM) indicating release of NO from GTN. U937 cells (up to 60 x 10(5)) did not metabolize GTN to NO. LPS (0.5 micrograms/mL for 18 hr) enhanced at least 2-fold the capacity of J774 cells but not that of U937 cells to form NO from GTN and this enhancement was attenuated when cycloheximide (10 micrograms/mL) was incubated together with LPS. In the absence of LPS stimulation, cycloheximide had no effect. Furthermore, when incubated with GTN (200 microM), J774 cells treated with LPS released more NO from GTN as indicated by a 3-fold greater increase in their level of cGMP which was prevented by oxyHb (10 microM). Incubation of J774 cells with GTN (75-600 microM) for 30 min led to a concentration-dependent increase in NO2- which was substantially reduced when the cells were boiled. The microsomal fraction was more potent than the cytosol in producing NO2- from GTN (1.2-2.4 mM). Release of NO2- from GTN by J774 cells was not affected by treating the cells with the NO synthase inhibitor, NG-monomethyl-L-arginine (MeArg, 300 microM). In J774 cells made tolerant to GTN, potentiation of the anti-platelet effects of GTN (11-352 microM) and release of NO2- from GTN was reduced. Thus, J774 cells but not U937 cells convert GTN to NO. This enzymic pathway (present mainly in the microsomal fraction of the J774 cells) is induced by LPS and is not regulated by endogenous NO released from L-Arg by the enzyme NO synthase. Furthermore, when compared to normal cells, tolerant J774 cells metabolize GTN to NO less effectively as assessed by a reduced capacity to potentiate the anti-platelet effect of GTN and to release NO2-.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Oxidoreductases↗

Cultured astrocytoma cells generate a nitric oxide-like factor from endogenous L-arginine and glyceryl trinitrate: effect of E. coli lipopolysaccharide.

1. The inhibitory activity of astrocytoma cells (0.25-3 x 10(5)) treated with indomethacin (10 microM) on platelet aggregation was enhanced by incubating the cells with E. coli lipopolysaccharide (LPS, 0.5 micrograms ml-1) for 18 h. This effect was attenuated when cycloheximide (10 micrograms ml-1) was incubated together with LPS. The inhibition of platelet aggregation by cells treated with LPS was potentiated by superoxide dismutase (60 u ml-1) and ablated by oxyhaemoglobin (oxyHb, 10 microM) or NG-monomethyl-L-arginine (L-NMMA, 30-300 microM). The effects of L-NMMA were reversed by co-incubation with L-arginine (L-Arg, 100 microM) but not D-arginine (D-Arg, 100 microM). LPS also increased the levels of nitrite in the culture media and this increase was ablated by co-incubation with L-NMMA (300 microM) or cycloheximide (10 micrograms ml-1). 2. Astrocytoma cells (0.5 x 10(5)) treated with indomethacin (10 microM) enhanced the platelet inhibitory activity of glyceryl trinitrate (GTN, 11-352 microM) but not that of sodium nitroprusside (4 microM). Furthermore, when incubated with GTN (200 microM) a 4 fold increase in the levels of guanosine 3':5'-cyclic monophosphate (cyclic GMP) was observed. These effects were abrogated by co-incubation with oxyHb (10 microM) but not with L-NMMA (300 microM). Treatment of the cells with LPS (0.5 micrograms ml-1) for 18 h did not enhance their capacity to form NO from GTN. 3. Thus, in cultured astrocytoma cells, LPS enhances the formation of nitric oxide from endogenous L-arginine.In addition, these cells can metabolize GTN to nitric oxide but this process is not enhanced by LPS stimulation.

Arginine↗

Human polymorphonuclear leukocytes generate and degrade endothelin-1 by two distinct neutral proteases.

Human polymorphonuclear leukocytes (PMNs, 4 x 10(6)/ml) converted human big endothelin (bET) to an endothelin-1 (ET-1)-like contractile factor, as assessed by bioassay. The formation of this ET-1-like activity from bET was partially inhibited by phosphoramidon (54 micrograms/ml), but not by pepstatin-A (1 microgram/ml), epoxysuccinyl-L-leucylamido(guanidino)butane (E-64, 10 micrograms/ml) or phenylmethylsulfonyl fluoride (PMSF, 25 micrograms/ml). In addition, nonactivated PMNs converted [125I]bET to [125I]ET-1, thus confirming the bioassay results. Incubation of ET-1 with fMLP-activated PMNs or cell-free supernatants from activated PMNs resulted in the loss of its contractile activity, and this loss of activity was paralleled by the metabolism of [125I]ET-1. The metabolism of [125I]ET-1 by PMNs or leukocyte cathepsin G (5 micrograms/ml) was prevented by PMSF (25 micrograms/ml), but not by phosphoramidon (54 micrograms/ml) or pepstatin-A (1 microgram/ml). Thus, PMNs can form ET-1 from bET via a neutral protease and degrade ET-1 via a serine protease, an observation that may have important pathophysiologic implications in disease states associated with PMN infiltration.

Animals↗

Cultured astrocytoma cells inhibit platelet aggregation by releasing a nitric oxide-like factor.

Cultured astrocytoma cells were tested for their ability to generate a nitric-oxide like factor using platelet aggregation as a bioassay. Incubation of astrocytoma cells with human washed platelets resulted in an inhibition of thrombin-induced platelet aggregation which was proportional to the number of astrocytoma cells added. The inhibition was potentiated by superoxide dismutase (SOD) and prevented by oxyhaemoglobin (oxyHb). The inhibitory activity of astrocytoma cells was also prevented by the NO biosynthesis inhibitor NG-monomethyl-L-arginine (MeArg), an effect reversed by co-incubation with L-arginine (L-Arg) but not D-arginine (D-Arg). These results demonstrate that astrocytoma cells release, independent of added agonist, a factor with the same pharmacological profile as NO, which is likely to be derived from L-arginine.

Astrocytoma↗

Immediate release of a nitric oxide-like factor from bovine aortic endothelial cells by Escherichia coli lipopolysaccharide.

Incubation of human washed platelets with bovine aortic endothelial cells (ECs) treated with indomethacin resulted in an inhibition of thrombin-induced platelet aggregation that was dependent on the number of ECs added. Preincubation of ECs with Escherichia coli lipopolysaccharide (LPS; 0.5-2.0 micrograms/ml) for 1 min significantly enhanced their inhibitory activity. This effect was potentiated by superoxide dismutase (60 units/ml) and reversed by oxyhemoglobin (5-10 microM), indicating that the inhibition was due to the release of endothelium-derived relaxing factor (nitric oxide). When the ECs were pretreated with NG-monomethyl-L-arginine (30-300 microM) before LPS, the antiaggregatory activity was strongly reduced. The reduction of activity by NG-monomethyl-L-arginine was reversed by L-arginine (100 microM) but not by D-arginine (100 microM). Under similar conditions, LPS also enhanced the antiaggregatory activity of ECs grown on beads. The immediate enhancement by LPS of the release of endothelium-derived relaxing factor from endothelial cells may contribute to the rapid fall in blood pressure associated with endotoxin shock in vivo.

Animals↗

The fate of radioiodinated endothelin-1 and endothelin-3 in the rat.

Endothelin-1 (ET-1) has been isolated from cultured endothelial cells and might have a role in cardiovascular regulation. To study the fate of labeled ET-1, we prepared [125I]-labeled ET-1 (formerly porcine and human ET) and ET-3 (formerly rat ET). Approximately 0.2 microCi (0.2 pmol) was injected into the left ventricle of anesthetized rats and blood samples analyzed for radioactivity for up to 40 min. The animals were then killed and the distribution of radioactivity determined in various organs. Both ET-1 and ET-3 were rapidly removed from the circulation, with more than 60% of the removal occurring in the first minute. Removal of ET-1 was somewhat faster than that of ET-3. The highest uptake of radioactivity was seen in lung, kidney, and liver. When ET-1 was infused into the isolated perfused lung of the guinea pig, 64 +/- 1.9% of the label was retained. Subcellular fractionation of the lung homogenate following infusion of labeled ET-1 showed that 93% of the label was associated with membranes and intracellular organelles, suggesting internalization of the bound ET-1. Together, the results indicate a high density of ET-1 binding sites in the lung, liver, and kidney and that these organs may be important in removing circulating ET-1.

Animals↗