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Biomedical subjects

R Gryglewski

Publications and source records attributed to R Gryglewski.

At least 19 recordsLinked to original sources

A neutrophil-derived NO-synthase (NOS) inhibitor.

In the present work we have demonstrated that the low NOS activity of circulating blood neutrophils is related to an endogenous inhibitory factor. This factor inhibits constitutive NOS (cNOS) of cerebellum and inducible NOS (iNOS) of macrophages in a concentration-dependent manner. Boiling only partially diminished its activity. The inhibition of cNOS was specific, since to some degree NADPH (0.5-4 mM) and more effectively L-arginine (0.1-1 mM), but not D-arginine, reversed the inhibition.

Amino Acid Oxidoreductases↗

Nitric oxide donors induce extrusion of cyclic GMP from isolated human blood platelets by a mechanism which may be modulated by prostaglandins.

In the presence of 3-isobutyl-methylxanthine (IBMX), induction of cyclic 3',5'-guanosine monophosphate (GMP) production in human washed platelets (HWP) by nitric oxide donors (NOD) is followed by its accumulation in the surrounding medium in a time- and concentration-dependent manner. Thirty minutes incubation of HWP with 3-morpholino-sydonimine (SIN-1, 10 microM) at 37 degrees C resulted in a 4.6-fold increase of cyclic GMP in platelets, whereas in the extracellular medium the increase was 17.6-fold. Similar results were obtained when other NOD such as S-nitroso-N-acetylpenicyllamine (SNAP) and 3-(2-methoxy-5-chlorophenyl)oxatriazol-5-imine (GEA 3184) and the selective phosphodiesterase inhibitor, zaprinast (M&B 22948, 10 microM), were used. Probenecid (1-300 microM), an inhibitor of organic anion transport, or ouabain (1-300 microM), an inhibitor of Na+/K+ adenine triphosphate (ATP)-ase had no effect on cyclic GMP production or extrusion after stimulation with SIN-1. Significantly prostaglandin A1 (PGA1) and prostaglandin D2 (PGD2) inhibited the efflux of cyclic GMP from platelets induced by SNAP (10 microM) in a concentration-dependent fashion, with an IC50 of 63 +/- 16 and 143 +/- 17 microM, respectively. These studies suggest that the extrusion of cyclic GMP from human platelets after activation of soluble guanylate cyclase by NOD may contribute to the control of cyclic GMP levels in platelets with potential physiological and therapeutic consequences.

1-Methyl-3-isobutylxanthine↗

Influence of SIN-1 and sodium nitroprusside (NANP) on ox-LDL metabolism in macrophages.

Effects of NO-donors (3-morpholinosydnonimine-SIN-1 and sodium nitroprusside NaNP) on the accumulation and degradation of oxidized LDL (ox-LDL) by macrophages were studied. Ox-LDL, but not native-LDL (n-LDL) suppressed the LPS-stimulated biosynthesis of NO by macrophages. SIN-1 at low concentrations < 100 microM was without any effect while SIN-1 at high concentration (300 microM) and NaNP (30-300 microM) stimulated the accumulation and degradation of ox-LDL by macrophages. The pretreatment of macrophages with NG-monomethyl-L-arginine (L-NMMA, 3 microM) for 24 hours had the same stimulatory effect. The inhibition of endogenous formation of NO, by L-NMMA profoundly changed the pattern of action of NO-donors on ox-LDL catabolism by macrophages; the stimulatory action of SIN-1 was transformed to the inhibitory action on the accumulation and degradation of ox-LDL whereas NaNP lost its stimulatory action entirely. Our interpretation of this unexpected interactions between SIN-1, NaNP and L-NMMA is as follows. Endogenous NO in macrophages inhibits the accumulation of ox-LDL and therefore, the stimulatory effect of L-NMMA has been overcome by exogenous NO from SIN-1. However, NO at high concentrations promotes lipid accumulation in macrophages and thereby, in the absence of L-NMMA, SIN-1 at high concentrations and NaNP produced a paradoxical stimulatory effect in macrophages. NaNP is not a proper NO-donor and its mode of action differed from that of SIN-1. In conclusion, NO at low physiological concentrations keeps scavenger receptors of macrophages downregulated and hence endogenous NO may show anti-atherogenic properties.

Animals↗

Fibrinolytic activity and the effects of beta-pyridylcarbinol (Ronicol) in patients with arteriosclerosis obliterans.

Twenty-one patients with arteriosclerosis obliterans of lower extremities were treated with beta-pyridylcarbinol (Ronicol) for five weeks. The long-term therapy with beta-pyridylcarbinol did not influence platelet aggregability. Activation of the fibrinolytic system was observed. This fibrinolytic effect of Ronicol was abolished in patients treated with aspirin. In most cases a slight clinical improvement was seen, manifested by elongation of pain-free walking distance and increased blood flow in affected limbs. It is concluded that the therapeutic effect of Ronicol in humans may be partly mediated by the release of endogenous prostacyclin.

Arteriosclerosis Obliterans↗

Prostaglandin E2 in gastric mucosa and its role in the prevention of ulcers induced by acetyl salicylic acid in cats.

Gastric mucosa of the cat generates PGE2 activity at a significantly higher concentration in the antral 59.25 +/- 7.42 ng/g) than in the oxyntic (28.06 +/- 4.50 ng/ml) gland area. Intravenous (i.v.) infusion of histamine 80 micrograms/kg/h) or intragastric (i.g.) instillation of 0.1 N HCl (4 mEq/h) for 3 h significantly decreased the generation of PGE2 in antral and fundic mucosa, but did not result in the formation of gastric lesions. Aspirin (ASA) given i.v. or i.g. for 3 h caused a further fall in the generation of PGE2 in the mucosa and when combined with i.v. histamine or i.g. HCl, it caused almost complete disappearance of PGE2 activity and the formation of antral ulcers in all tested cats. Exogenous PGE2, given i.v. in a dose (30 micrograms/kg/h) reducing histamine-stimulated (80 micrograms/kg/h) acid secretion by about 50%, prevented almost completely the formation of gastric ulcers induced by a combination of ASA plus i.v. histamine or i.g. HCl. This study indicates that the gastric mucosa generates PGE2 which is capable of preventing gastric ulcers induced by ASA combined with histamine or mucosal acidification.

Animals↗

Role of prostaglandins in the formation of aspirin-induced gastric ulcers.

Gastric mucosa of the rat generates both PGE2 and PGI2 activity in significantly higher concentrations in the antrum than in the fundus. Aspirin, given intravenously or intragastrically in doses producing gastric mucosal lesions, causes a dose-dependent decrease in the generation of mucosal PGE2 and PGI2, which is further enhanced by gastric perfusion of HCl. Exogenous PGE2 and PGI2 administered intravenously in doses not affecting gastric secretion almost completely prevented the formation of aspirin-induced ulcers. This study indicates that gastric mucosa is capable of generating PGE2 and PGI2 which may be responsible for its protection against chemical injury.

Animals↗