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Biomedical subjects

J Pincemail

Publications and source records attributed to J Pincemail.

At least 55 records · Page 3Linked to original sources

Activation of human immunodeficiency virus type 1 by oxidative stress.

An important aspect of the infection by the human immunodeficiency virus (HIV-1) type 1 is its clinical latency, suggesting that the virus itself or the provirus may remain latent for extended periods of time after primary infection. Certain heterologous viral proteins or chemical and physical agents are able to reactivate latent virus. Since a common denominator shared by these agents is the ability to cause stress response in cells, we have examined the effects of oxidative stress mediated by hydrogen peroxide (H2O2) on HIV-1 latently infected promonocytic cell line termed U1. After exposure to H2O2 in concentrations ranging from 0.1 to 2 mM, the viability of the U1 cells decreased during 24 h before recovery. At 24 h post stress, the U1 cells began to express virus as assessed by elevated reverse transcriptase activities in culture supernatants. Immunofluorescence carried out on stressed U1 cells using anti-HIV-1 polyclonal antibodies showed that H2O2 leads to HIV-1 gene expression activation, but not to a release of viral particles from damaged cells. Additionally, using a HeLa cell line containing integrated the bacterial chloramphenicol acetyl transferase (CAT) gene under the control of the HIV-1 long terminal repeat (LTR), we have shown that oxidative stress mediated by H2O2 allows transactivation of the viral LTR revealed by intracellular CAT activity. A stimulation factor of around 4 of CAT activity can be reached when these cells are treated with 0.5 mM H2O2.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Division↗

Evidence of in vivo free radical generation by spin trapping with alpha-phenyl N-tert-butyl nitrone during ischemia/reperfusion in rabbit kidneys.

By using alpha-phenyl N-tert-butyl nitrone (PBN) as spin trap molecule and the electron paramagnetic resonance (EPR) technique, we obtained the first direct evidence of in vivo intervention of free radicals during an ischemia (50 minutes) reperfusion phenomenon in kidney of an intact rabbit. An EPR signal (triplet of doublets) characterized by coupling constants aN = 14.75-15 G and aH beta = 2.5-3 G was detected in blood samples. The signal was consistent with a nitroxyl-radical adduct resulting from the spin trapping by PBN of either oxygen-or carbon-centered radicals. Control experiments indicated that the EPR signal was not due to a toxic effect of the spin trap molecule.

Animals↗

Tocopherol mobilization during dynamic exercise after beta-adrenergic blockade.

This study addresses the question of whether tocopherol mobilization during exercise could be explained by a lipolysis effect. Nine healthy male subjects were submitted to dynamic exercise of graded intensity (45, 60, 75% VO2max) on a cycle ergometer after ingestion of either a placebo or 40 mg propranolol as beta-blocker. Plasma tocopherol concentration increased toward a peak value reached during or at the end of exercise. The magnitude of this increase did not differ in the two experimental conditions while plasma free fatty acids concentration was lowered under beta-adrenergic blockade by propranolol. From these results, we conclude that tocopherol mobilization during dynamic exercise does not depend on lipolysis.

Adult↗

Equine postanaesthetic myositis: a possible role for free radical generation and membrane lipoperoxidation.

A method for the evaluation of total plasma antihydroxyl and antiperferryl activity is described. This method was applied to horse plasma obtained during halothane anaesthesia. In horses suffering from postanaesthetic myositis, a significant decrease in the antiperferryl activity was observed during anaesthesia particularly when the muscular compression produced by the weight of the horse was released. In the affected muscles, strong oxidants could therefore be generated during the reperfusion of the ischaemic muscles and might initiate membrane lipid peroxidation. This phenomenon could possibly explain the muscular damage observed in equine postanaesthetic myositis.

Anesthesia, General↗

Superoxide anion scavenging effect and superoxide dismutase activity of Ginkgo biloba extract.

Ginkgo biloba extract is known to be efficient in diseases associated with free radical generation. The purpose of this work was to study, under in vitro conditions, the action of Ginkgo biloba extract (Gbe) against superoxide anion (O2-.), which is directly or indirectly implicated in cell damage. Gbe appears to have both an O2-. scavenging effect and also a superoxide dismutase activity. Its antiradical effect was demonstrated by low temperature electron spin resonance and in a non-enzymatic system (phenazine methosulfate-NADH), and its enzymatic activity was shown by polarographic determination.

Animals↗

Prospective evaluation of thoracic-duct drainage in the treatment of respiratory failure complicating severe acute pancreatitis.

Thoracic duct drainage (TDD) may be of value for removing toxic substances released by the inflamed pancreas and which are responsible for lung damage. We have prospectively assessed the efficacy of TDD in improving pulmonary gas exchange in 12 patients with severe acute pancreatitis (SAP) complicated by persistent respiratory failure despite standard conservative treatment including peritoneal dialysis in 8 patients. In group A were 6 patients (mean Ranson score = 7.3) with adult respiratory distress syndrome (ARDS) and in group B were 6 hypoxemic patients (mean Ranson score = 6.6) judged to be at risk of developing ARDS. The duration of TDD ranged from 3 to 10 days and the total amount of drained lymph (L) varied from 770 to 15,600 ml. Immunoreactive trypsin levels were significantly higher in L when compared to blood in both groups. Leukocyte myeloperoxidases in L (normal value less than than 332 +/- 82 ng/ml in plasma) were increased in 5 of 5 group A patients (830 +/- 317 ng/ml) and in 3 of 6 patients in group B (671 +/- 467 ng/ml). After TDD pulmonary gas exchange as measured by median PaO2/FiO2 (mmHg) improved from 148 +/- 60 to 285 +/- 42 in group A and from 192 +/- 37 to 330 +/- 42 in group B (p less than 0.05). All patients were weaned after ventilation for a mean of 8 days in group A and 4 days in group B. All patients survived apart from 1 group B patient who died of sepsis on day 34.(ABSTRACT TRUNCATED AT 250 WORDS)

Acute Disease↗

Differences in tocopherol-lipid ratios in ARDS and non-ARDS patients.

Plasma tocopherol, plasma total lipid levels and tocopherol-lipid ratio were measured every 6 h during 48 h in 12 critically ill patients and compared with those of a control group. The patients were divided into two groups. Group I comprised 6 critically ill patients with ARDS and group II comprised 6 severely ill patients without ARDS. The means for all observations of plasma tocopherol, total lipid levels and tocopherol-lipid ratio in groups I and II were significantly depressed relative to a control group (p less than 0.0001). The difference in the average tocopherol-lipid ratio between the three groups (p less than 0.0001) and between the groups I and II was statistically significant (p less than 0.0001). Our results indicated: (1) a decrease of vitamin E concentrations in the critically ill patients, particularly in ARDS patients; (2) the importance of the relationship between plasma tocopherol and plasma lipids levels in evaluating the deficiency in vitamin E which was evident in ARDS patients.

Adult↗

Human myeloperoxidase activity is inhibited in vitro by quercetin. Comparison with three related compounds.

Quercetin is an effective inhibitor of human myeloperoxidase (MPO) activity, both with purified enzyme (IC50 = 3.5 microM) and in a system using stimulated human neutrophils. Quercetin is significantly more potent than three other related compounds (rutin, rutin sulfate and troxerutin) and than methimazole, a previously-known myeloperoxidase inhibitor. The inhibitory activity of quercetin is of the competitive type. Moreover, quercetin is directly able to scavenge hypochlorous acid (HOCl), a chlorinated species generated by the MPO/H2O2/Cl- system.

Chemical Phenomena↗

Equine postanaesthetic myositis: thromboxanes, prostacyclin and prostaglandin E2 production.

Arachidonic acid cyclooxygenase metabolites, thromboxane B2 (TXB2), prostaglandin E2 (PGE2) and 6-keto-prostaglandin F1 (6-keto-PGF1) were measured in horses where anaesthesia was maintained with halothane. Two horses suffering from postanaesthetic myositis were compared with four normal horses. TXB2 and PGE2 levels were higher in mixed venous blood drawn from the myopathic horses. An increase of TXB2 and PGE2 levels appeared when myopathic horses were rolled into dorsal recumbency after a prolonged period of lateral recumbency. One hour after the end of anaesthesia, TXB2 had continued to increase whereas PGE2 decreased. By measurements on blood samples drawn from the brachial vein, we have shown that the rising level of TXB2 in mixed venous blood is mainly due to the increase of TXB2 in blood draining the dependent leg. The origin of the rise in PGE2 is not demonstrated in this study. 6-keto-PGF1 did not change during anaesthesia. An explanation of this imbalance between TXB2 and 6-keto-PGF1 production is considered.

6-Ketoprostaglandin F1 alpha↗

Tocopherol mobilization during intensive exercise.

This work shows that the level of plasma tocopherol (vitamin E) which has free radical scavenging properties rises significantly during intensive exercise. It is proposed that mobilization of tocopherol could help to prevent lipoperoxidation phenomena occurring in exercising skeletal muscle. A hypothetical mechanism relating to a lipolysis effect is discussed to explain this mobilization.

Adult↗

Modulation of in vivo generation of prostanoids by drugs affecting membrane ion transport.

An in vivo animal model was developed in the rabbit for the study of the mechanisms involved in the generation and release of prostanoids. Following heparinization and, if required, further sensitization of the animals by intravenous administration of haemolysed blood, injection of doses of arachidonic acid not exceeding 180 micrograms/kg induced a marked fall in arterial blood pressure on condition that the plasma anti-inflammatory protein levels were within the normal range. Cicletanine, certain diuretics (furosemide and bumetanide), as well as calcium-entry blockers such as verapamil and the association of insulin and potassium ions, all markedly decreased the AA50 value and were accompanied by a significant increase in the plasma levels of 6-oxo-PGF1 alpha, enhancing as such the ratio of 6-oxo-PGF1 alpha versus TXB2 in plasma. The infusion of insulin in association with potassium ions induced a similar but less sustained effect. Drugs which affect membrane ion transport were investigated in relation to an enhancing effect on the generation and release of prostanoids following the administration of arachidonic acid.

6-Ketoprostaglandin F1 alpha↗

[Increase of the prostacyclin/thromboxane A2 ratio in the plasma of rabbits treated with cicletanine, a new antihypertensive agent].

An animal model was developed, permitting the study of thromboxane A2 and prostacyclin neoformation, after arachidonic acid (AA) injection. Two types of physiopathological responses were observed, according to the rabbit strains. In the first type, prostacyclin neoformation was predominant, AA injection inducing only reversible hypotension. In the second type, thromboxane A2 neoformation was prevalent, AA injection inducing irreversible hypotension, marked myocardial troubles, shock, and death. In both types, injection of cicletanine (5 x 10(-5) mole/kg) significantly enhanced prostacyclin neoformation. After cicletanine, a new hypertensive drug, rabbits of the second type responded like those of the first type, without severe physiopathological responses to AA injections.

6-Ketoprostaglandin F1 alpha↗

Ginkgo biloba extract inhibits oxygen species production generated by phorbol myristate acetate stimulated human leukocytes.

A Ginkgo biloba extract (Gbe) containing flavonoids, among other compounds, was tested for the release of activated oxygen species (O-2, H2O2, OH.) during the stimulation of human neutrophils (PMNs) by a soluble agonist. The extract slows down O2 consumption (respiratory burst) of stimulated cells by its inhibitory action on NADPH-oxidase, the enzyme responsible for the reduction of O2 to O-2. Consequently, superoxide anion (O-.2) and hydrogen peroxide (H2O2) production is significantly decreased when the PMNs stimulation is done in the presence of the extract at concentrations of 500, 250 and 125 micrograms/ml. Moreover, the hydroxyl radical generation (OH.) is very much decreased at concentrations as low as 15.6 micrograms Gbe/ml, which indicates that the extract also has free radical scavenging activity. Gbe is able at least to reduce very severely the activity of myeloperoxidase contained in neutrophils. This enzyme, secreted into the intra and extracellular medium, catalyzes the oxidation of chloride (Cl-) by H2O2 to yield strong oxidants (HOCl, chloramines) which are implicated in inflammatory processes.

Free Radicals↗

Thromboxane and prostacyclin release in adult respiratory distress syndrome.

Plasma thromboxane B2 (TXB2) and 6-keto-prostaglandin F1 alpha (6-keto-PGF1 alpha) were measured in 84 patients at risk of developing adult respiratory distress syndrome (ARDS) (44 patients following multiple trauma, 29 patients following abdominal surgery and 11 patients with acute pancreatitis). Forty-nine of these 84 patients developed an ARDS. High (greater than 140 pg/ml plasma) TXB2 values were found in 52/84 patients. The median values of TXB2 were: 360 pg/ml in multiple injured, 250 pg/ml in abdominal surgery and 410 pg/ml in acute pancreatitis patients. The median TXB2 value was 575 pg/ml in patients developing ARDS and 140 pg/ml in those without this complication: this difference was statistically significant (p less than 0.05). The median values of 6-keto-PGF1 alpha were 55 pg/ml in multiple injured, 25 pg/ml in abdominal surgery and 120 pg/ml in acute pancreatitis patients. The median 6-keto-PGF1 alpha value was 122 pg/ml in ARDS patients and 25 pg/ml in non-ARDS patients (statistically significant: p less than 0.05). High TXB2 and 6-keto-PGF1 alpha values were particularly related to sepsis in abdominal surgery patients (p less than 0.05) and in multiple injured patients (p less than 0.01). No relation could be established between abnormal TXB2 or 6-keto-PGF1 alpha values and death. High TXB2 values often persisted for several days and were observed particularly at the time ARDS diagnostic criteria were fulfilled.(ABSTRACT TRUNCATED AT 250 WORDS)

6-Ketoprostaglandin F1 alpha↗

[Antiradical properties of Ginkgo biloba extract].

The anti-radical properties of Ginkgo biloba extract have been determined on several in vitro models. The products is as effective as uric acid, an anti-radical agent known to entrap the hydroxyl and diphenylpicrylhydrazyl radicals. In addition, it inactivates the formation of radicals, such as adriamycyl, which escape uric acid activity. It also inhibits membrane lipid peroxidation and owes to its anti-radical activity exerts a stimulant effect on the biosynthesis of prostanoids.

Animals↗

[Toxicity of oxygen, free radicals and defense mechanisms].

Oxygen is essential for the life of aerobic organisms as the terminal acceptor of electrons. Due to its high affinity for lone electrons it fosters radicular reactions and opposes recombinations of radicals after rupture of covalent linkages. Lipoperoxidation processes then occur, attacking the cellular membranes. These radicular reactions are at the origin of many pathological phenomena. A complex arsenal of endogenous protective agents is normally present in all cells to face up to the danger of lone electron structures in oxygenated media. Food and natural or synthetic pharmacological agents compensate for the deficiencies.

Aerobiosis↗

Stimulation of cyclooxygenase by activated human neutrophils is enhanced by uric acid.

Activated human neutrophils supernatant enhances prostanoids production by bull seminal cyclooxygenase (455% of control). Superoxide anion and hydrogen peroxide are not involved in this stimulation, in these experimental conditions. Myeloperoxidase (by its hemic nature) and HPETEs (by their -OOH function) could trigger cyclooxygenase. In the presence of uric acid (10(-3) M), a potent hydroxyl radical scavenger, the cyclooxygenase stimulation by supernatant is increased until 709% of the control.

Animals↗