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A Gharib

Publications and source records attributed to A Gharib.

At least 19 recordsLinked to original sources

Modulation of norepinephrine-stimulated cyclic AMP accumulation in rat pinealocytes by n-3 fatty acids.

This work showed that docosahexaenoic (22:6n-3) and eicosapentaenoic (20:5n-3) acid supplementation for 48 h have opposite effects on the norepinephrine-stimulated cyclic AMP accumulation in rat pinealocytes. We found that 22:6n-3 supplementation of pineal cells, done by increasing specifically 22:6n-3 in phospholipid and triacylglycerol pools, led to inhibition of norepinephrine-stimulated cyclic AMP production whereas 20:5n-3 supplementation, by increasing 20:5n-3, and 22:5n-3 and 22:6n-3 in the same pools, stimulated it. In contrast, direct treatment of pinealocytes with each fatty acid (50 microM) did not affect cyclic AMP production in the presence of (0.1-10 microM) norepinephrine. The results indicate that, using pharmacological agents such as forskolin or prazosin: (a) neither basal nor forskolin-stimulated cyclic AMP levels were modified in fatty acid-supplemented cells compared to control cells; (b) in the presence of 1 microM prazosin, the activation by 20:5n-3 was still effective whereas no additional inhibition of norepinephrine stimulation was observed in 22:6n-3-supplemented cells. Taken together our results suggest that 22:6n-3 or 20:5n-3 supplementation modulates specifically the alpha 1- or beta-adrenoceptors in the rat pineal gland.

Adrenergic alpha-Antagonists

Stimulation of human sperm during capacitation in vitro by an adenosine agonist with specificity for A2 receptors.

The effects of an adenosine agonist with specificity for A2 receptors, on human sperm prepared for in vitro fertilization (IVF), were examined to verify physiological effects and possible pharmacological use. 5' -N-ethyl-carboxamidoadenosine (NECA), when added at 100 microM over 30 min in B2 medium, did not induce a spontaneous acrosome reaction after 0, 3, and 6 h capacitation in B2, nor did it modify sperm motility. However, NECA increased the number of capacitated spermatozoa able to respond (p < 0.05) to A23187 (10 microM) after 6 h preincubation in B2 medium. This effect was associated with an increase in cAMP production, which was measured by RIA after 10 and 20 min incubation with NECA in uncapacitated sperm, and with changes in the kinetics of protein tyrosine phosphorylation as revealed by Western blot. Phosphorylation of a 95-kDa protein was enhanced by NECA in uncapacitated sperm and inhibited in capacitating sperm (incubated 1 h in B2), whereas phosphorylation of a 50-kDa protein was systematically enhanced whatever the preincubation time. NECA can stimulate uncapacitated human sperm via cAMP production and protein phosphorylation/dephosphorylation without inducing an acrosome reaction or influencing motility. Cyclic AMP-dependent protein kinase A seems to positively control protein phosphorylation involved in human capacitation. Adenosine present in the tubal fluid or produced by the spermatozoon itself may influence capacitation in vivo through sperm A2 receptors. In cases of male infertility, use of NECA in sperm handling for IVF should be evaluated as a means to improve capacitation without increasing the possibility of a premature spontaneous acrosome reaction.

Acrosome

[Myocardial infarction with normal coronary angiography. Apropos of 9 cases. A retrospective and comparative study].

This retrospective study was designed to determine the characteristics of myocardial infarction with normal coronary arteries. The files of consecutive patients admitted to hospital for a first infarction in 1992 and 1993 were analysed. Patients younger than 70 years of age, who had undergone coronary angiography during their admission to hospital were selected. A total of 109 infarctions complied with these criteria and 9 of them were associated with angiographically normal coronary arteries. In this series, patients with angiographically normal coronaries tended to be younger than those with at least one stenotic coronary artery (47 +/- 13 years vs 55 +/- 11 years, p = 0.07). The sex ratio did not differ between the two groups. The body mass index of patients with normal coronary arteries was significantly lower (22.9 +/- 3.9 kg/m2 vs 26.3 +/- 3 kg/m2; p = 0.02). These patients more frequently reported a history of phlebitis (3/9 kg/cm2 vs 26.3 +/- 3 kg/cm2; p = 0.02). These patients more frequently reported a history of phlebitis (3/9 vs 2/100). The frequency of anterior and posterior infarctions was virtually the same. Myocardial infarction with normal coronary arteries appears to be less severe, as reflected by the creatine phosphokinase peak (867 +/- 268 IU/l vs 1921 +/- 1389 IU/l), the maximal sum of ST elevation (5 mm vs 16 +/- 12 mm; p = 0.05), the percentage of left ventricular akinesia on angiography (25.5 +/- 4 vs 38.7 +/- 11.8; p = 0.01), and the lower ventricular end-diastolic pressure (11.5 +/- 3.5 mmHg vs 38.7 +/- 11.8 mmHg; p = 0.02). Fewer complications were observed during the acute phase, with no deaths. During the subsequent follow-up, with a median of 2 years, no recurrent infarctions, no cardiac decompensation and no deaths were observed in the group with normal coronary arteries. Two patients presented an episode of angina and one developed a recurrent episode of phlebitis. In the other group of 100 patients, 12 deaths were observed during the acute period, followed subsequently by 2 other deaths, 10 episodes of recurrent angina, 2 recurrent infarctions and 12% of patients developed heart failure. In this series, infarction with normal coronary arteries therefore appears to have a good prognosis, possibly because of more limited myocardial necrosis. No abnormalities of haemostasis or coagulation were observed in these patients.

Adult

Distribution and metabolism of arachidonic and docosahexaenoic acids in rat pineal cells. Effect of norepinephrine.

The time-course incorporation of 10 microM [14C]arachidonic (AA) and docosahexaenoic (DHA) acids into glycerolipids was studied in rat pineal cells. The incorporation of both labeled fatty acids into total lipids was approximately equal, but their distribution profiles among the various cell lipids showed marked differences. The esterification of [14C]DHA in the neutral lipids, triacylglycerols (TAG) and cholesterol esters (CE), was 2-fold higher than that of [14C]AA whereas the opposite could be observed in total phospholipids (PL). The order of incorporation into PL was phosphatidylcholine (PC) > phosphatidylinositol (PI) = phosphatidylethanolamine (PE) for [14C]AA and PC = PE for [14C]DHA, the incorporation of both fatty acids being not detected in phosphatidylserine (PS) and that of DHA not in PI. When using 0.5 microM [3H] fatty acids, the respective distribution patterns resembled that of fatty acids at 10 microM, except for a lower proportion in TAG. The stimulation of 3H-labeled cells by 100 microM norepinephrine induced a 170% increase of basal release of [3H]AA into the medium, while [3H]DHA was virtually not released. However, the analysis of cell labeling revealed that both [3H] fatty acid levels were decreased in PL and increased in TAG. These findings suggest different involvement for AA and DHA in the pineal function. The preferential incorporation of DHA in TAG suggests that TAG might play an important role in the pineal enrichment with DHA. The absence of DHA release after NE stimulation, which however cannot be ascertained, may raise the question of the role of DHA in NE transduction.

Animals

Decrease of brain phospholipid synthesis in free-moving n-3 fatty acid deficient rats.

The autoradiographic method with [14C]-docosahexaenoic acid ([14C]22:6 n-3) was used to determine whether a diet deficient in n-3 fatty acids, inducing a decrease in 22:6 n-3 circulating level, was associated with changes in local rates of phospholipid synthesis in the rat brain. As compared with rats fed a normal diet (peanut plus rapeseed oil), a n-3 fatty acid deficiency [peanut oil group (P group)] induced a generalized decrease (-35 to -76%) of 22:6 n-3 incorporation rates into phospholipids in all the regions examined. This effect was confirmed by using [3H]22:6 n-3 infusion by biochemical analysis and quantifications corrected for the contribution of docosahexaenoate derived from lipid store recycling to the unesterified pool, taken as the precursor pool for phospholipid synthesis in the whole brain. In normal or n-3 fatty acid-deficient rats, the values of the brain-to-plasma 22:6 n-3 specific activity ratio (psi) were similar (0.03), indicating that a considerable endogenous source of 22:6 n-3 (97%), likely derived from phospholipid degradation, dilutes the specific activity of the tracer coming from plasma. Using the specific activity of 22:6 n-3 in plasma instead of brain would thus lead to a gross underestimation of the rate of phospholipid synthesis. The results also demonstrate that the pattern of 14C or 3H distribution in brain lipids was not modified by the n-3 fatty acid-deficient diet. The major lipids labeled were phospholipids, particularly phosphatidylethanolamine. Nevertheless, the unesterified 22:6 n-3 concentrations in plasma and brain were significantly reduced (eight-and threefold, respectively) in the P group. In addition, the proportion of 22:6 n-3 in the brain total lipid fraction, total phospholipids, and phosphatidylcholine, -ethanolamine, and -serine was significantly decreased in n-3 fatty acid-deficient rats. This was partially compensated for by an increase in the 22:5 n-6 level. These results are discussed in relation to the limitation of 22:6 n-3 use to quantify, by the quantitative autoradiographic method, changes in local rates of phospholipid synthesis in rat brain.

Animals

Evidence for brain docosahexaenoate recycling in the free-moving adult rat: implications for measurement of phospholipid synthesis.

The specific activity (SA) of unesterified docosahexaenoic acid (22:6 n-3) in the brain and arterial plasma was measured after constant intravenous infusion of [3H] 22:6 n-3 in the free-moving rat. Within 40-105 min, an apparent steady state of labeled unesterified 22:6 n-3 in plasma and in brain was reached. However, the values of the brain to plasma 22:6 n-3 SA ratios ranged from 0.03 to 0.05, indicating that an isotopic equilibrium between brain and plasma was not attained. This suggests that a considerable endogenous source of unesterified 22:6 n-3 (95-97%) (likely derived from lipid metabolism) dilutes the SA of the tracer coming from plasma. Using the SA of 22:6 in plasma instead of brain would thus lead to a gross underestimation of the rate of phospholipid synthesis.

Animals

Formation, metabolism, and action of hepoxilin A3 in the rat pineal gland.

The present study was undertaken to investigate the possible formation of hepoxilin A3 in the rat pineal gland and to study the potential physiological role for this compound in this tissue. Incubation of homogenates of rat pineal glands with arachidonic acid (66 microM) led to the appearance of hepoxilin A3 (HxA3) analyzed as its stable trihydroxy derivative, trioxilin A3 by gas chromatography in both the electron impact and negative ion chemical ionization modes. Endogenous formation of HxA3 is estimated to be 1.43 +/- 0.66 ng/micrograms of protein. This amount is not modified when the tissue is boiled (2.07 +/- 0.66 ng/micrograms of protein). However, the formation of this compound was stimulated to 21.26 +/- 5.82 ng/micrograms of protein when exogenous arachidonic acid was added to the homogenate. Addition of the dual cyclooxygenase/lipoxygenase inhibitor BW 755C (10 micrograms) resulted in a partial blockade of hepoxilin formation. Using [1-14C]HxA3, we demonstrated that the pineal gland contained hepoxilin epoxide hydrolase, which hydrolyzed HxA3 into trioxilin A3. This hydrolysis was inhibited by 1 mumol/L of 3,3,3-trichloropropene-1,2-oxide. In a separate study, HxA3 in the presence of 3,3,3-trichloropropene-1,2-oxide to block the hydrolysis of HxA3 decreased the production of cyclic AMP in cultured organ rat pineals after stimulation with 5'-N-ethylcarboxamidoadenosine, an A1/A2 adenosine receptor agonist. This effect is stereospecific because the (8S)-enantiomer is more active in decreasing cyclic AMP production (-88.7%) than the (8R)-enantiomer. This is the first demonstration of the presence, metabolism, and action of HxA3 in the rat pineal gland.

4,5-Dihydro-1-(3-(trifluoromethyl)phenyl)-1H-pyraz

n-3 fatty acid deficiency increases brain protein synthesis in the free-moving adult rat.

The autoradiographic method with L-[35S]methionine was used to determine the effects of an n-3 fatty acid deficiency on brain protein synthesis. Brain protein synthesis was significantly increased (from 50 to 150%) in 45 of the 52 brain structures studied in n-3 fatty acid-deficient rats as compared with control animals. Biochemical analysis confirmed the increase in overall rate of protein synthesis in brain as a whole.

Animals

Effect of an n-3 fatty acid-deficient diet on the adenosine-dependent melatonin release in cultured rat pineal.

We studied the effect of a diet deficient in n-3 fatty acids on the adenosine-dependent melatonin release from cultured rat pineal gland after stimulation by 5'-N-ethylcarboxamidoadenosine (NECA), an A2 adenosine agonist. Experiments were conducted with 2-month-old rats raised on semipurified diets containing either peanut oil (n-3 deficients) or peanut plus rapeseed oil (controls). The proportion of docosahexaenoic acid (22:6 n-3) in the pineal total lipid fraction and in phosphatidylcholine and phosphatidylethanolamine was significantly decreased in n-3-deficient rats. This was compensated for partially by an increase in 22:4 n-6 and 22:5 n-6 levels. The activity of the cultured rat pineal, in terms of cyclic AMP content and N-acetylserotonin and melatonin release in the medium, was lower after stimulation by 10(-5) mol/L NECA in the group fed peanut oil than in the group fed peanut plus rapeseed oil. The increased ratio of n-6/n-3 fatty acids in pineal total lipids and the major glycerophospholipids (phosphatidylcholine and phosphatidylethanolamine) may have an important influence on the rat pineal responses. The results are discussed in the context of changes in membrane-bound proteins, including enzymes and/or receptors involved in the rat pineal gland function.

Adenosine

[Implication of melatonin in the control of the interdigestive ileocecal-colic electromyographic profile in rats].

In the interdigestive period, intestinal motility displays myoelectrical complexes occurring cyclically at a constant rhythm. Since it is established that the pineal gland plays an important role in the control of circadian rhythms via its melatonin secretion, we decided to study the effects of pinealectomy and melatonin on the organization of the ileo-ceco-colic electromyogram of the rat. Pinealectomy resulted in the disappearance of ileal myoelectrical complexes and, concurrently, an excitomotor effect on the cecocolic tract. In pinealectomized rats a single intravenous injection of melatonin during lighting period induced an immediate recovery of the ileal myoelectrical complexes and a progressive return to the control electromyographic pattern of the ceco-colic tract. The melatonin action was definitive.

Animals

Evidence for adenosine A2b receptors in the rat pineal gland.

We describe the effects of 5'-N-ethylcarboxamidoadenosine (NECA), a mixed A2a/A2b adenosine receptor agonist and 2-[p-(carboxyethyl)-phenylethylamino]-5'-N-ethylcarboxamidoaden osin e (CGS 21680), a selective A2a agonist, on cyclic AMP and N-acetylserotonin synthesis in rat pineal gland. NECA, 1 and 10 microM, increased cyclic AMP by 5- and 25-fold and N-acetylserotonin by 40- and 60-fold respectively, whereas CGS 21680 at the same concentrations was ineffective. These results argue for the presence of adenosine A2b receptors in rat pinealocytes.

Adenosine

Brain protein synthesis in the conscious rat using L-[35S]methionine: relationship of methionine specific activity between plasma and precursor compartment and evaluation of methionine metabolic pathways.

The method previously developed for the measurement of rates of methionine incorporation into brain proteins assumed that methionine derived from protein degradation did not recycle into the precursor pool for protein synthesis and that the metabolism of methionine via the transmethylation pathway was negligible. To evaluate the degree of recycling, we have compared, under steady-state conditions, the specific activity of L-[35S] methionine in the tRNA-bound pool to that of plasma. The relative contribution of methionine from protein degradation to the precursor pool was 26%. Under the same conditions, the relative rate of methionine flux into the transmethylation cycle was estimated to be 10% of the rate of methionine incorporation into brain proteins. These results indicate the following: (a) there is significant recycling of unlabeled methionine derived from protein degradation in brain; and (b) the metabolism of methionine is directed mainly towards protein synthesis. At normal plasma amino acid levels, methionine is the amino acid which, to date, presents the lowest degree of dilution in the precursor pool for protein synthesis. L-[35S]-Methionine, therefore, presents radiobiochemical properties required to measure, with minimal underestimation, rates of brain protein synthesis in vivo.

Animals

Docosahexaenoic acid (cervonic acid) incorporation into different brain regions in the awake rat.

A quantitative method is presented to examine the localization, in individual brain regions of awake rats, of docosahexaenoic acid (22:6 n-3 or cervonic acid), the main polyunsaturated fatty acid of the nervous system together with arachidonic acid. Following the intravenous injection of 10 microCi [14C]22:6 n-3 (around 0.2 mumol/rat). 0.11-0.28% of the initial radioactivity was located in specific brain areas after detection from 10 to 240 min. Brain regional radioactivity determined by quantitative autoradiography indicated that 60 min after injection, [14C]22:6 n-3 concentrations ranged from 13.75 nCi/g of tissue in inferior olive to 5.59 nCi/g in frontal cortex. The results indicate a higher incorporation into the auditory system: inferior colliculus, central cochlear nucleus, lateral lemniscus, into neuroendocrine structures: paraventricular and supraoptic nuclei, and into certain circumventricular organs such as the pineal gland and neurohypophysis. Analysis of the Bligh and Dyer lipid extracts of rat brain revealed that 60 min after injection, 80-85% of the radioactivity was in choline and ethanolamine phosphoglycerides. These observations suggest that intravenous injection of [14C]22:6 n-3 may be used to study the brain lipid compartmental metabolism in vivo in order to visualize alterations of structural lipid components.

Animals

Fatty acid composition of the rat pineal gland. Dietary modifications.

When compared to brain, the fatty acid composition of the rat pineal gland revealed that the total proportion of n-6 polyunsaturated fatty acids (PUFA) was 2.3-fold higher, whereas the proportion of n-3 fatty acids was similar. Specifically, 20:4(n-6) and 18:2(n-6) were respectively 1.56- and 11.80-fold higher in the pineal than in the brain, while the proportions of 22:6(n-3) were similar in both tissues. In addition, 18:1(n-9) was found 2.15-fold lower in the pineal. Feeding adult rats with fish oil concentrates induced a significant alteration of the polyunsaturated fatty acid composition of the pineal. There was a reciprocal replacement of the n-6 by the n-3 fatty acids. Conversely, in rats fed a n-3 fatty acid-deficient diet (sunflower oil or coconut oil diet), the pineal gland contained reduced proportions of n-3 fatty acids. We conclude that the pineal gland (i) differs from the brain in containing much higher proportions of 18:2(n-6) and from the other tissues for its high proportions of 22:6(n-3) and (ii) is highly sensitive to the n-3 fatty acid diet in contrast to what is known for the brain. These findings are discussed in the context of melatonin biosynthesis, the major hormone of the pineal gland.

Animals

Detection of the release of 5-hydroxyindole compounds in the hypothalamus and the n. raphe dorsalis throughout the sleep-waking cycle and during stressful situations in the rat: a polygraphic and voltammetric approach.

In the present work, voltammetric method combined with polygraphic recordings were used in animals under long-term chronic conditions; the extracellular concentrations of 5-hydroxyindole compounds (5-OHles) and in particular 5-hydroxyindoleacetic acid (5-HIAA) were measured in the hypothalamus and in the nucleus Raphe Dorsalis (n.RD). The hypothesis that extracellular detection of 5-HIAA, in animals under physiological conditions, might reflect serotonin (5-HT) release is suggested by the following observations: serotoninergic neurons are reported to contain only monoamine oxidase type B (MAO-B);--an inhibitor of such an enzyme, MDL 72145 (1 mg/kg), fails to decrease the extracellular 5-HIAA peak 3 height:--MAO type A is contained in non-5-HT cells or neurons;--only the inhibitor of this last type of enzyme (Clorgyline 2.5 mg/kg) induces a complete disappearance of the voltammetric signal. The 5-HIAA measured in the extracellular space thus comes from the 5-HT released and metabolized outside the 5-HT neurons. Throughout the sleep-waking cycle, 5-OHles release occurs following two different modes: 1--during sleep, in the vicinity of the 5-HT cellular bodies in the n.RD; this release might come from dendrites and be responsible for the 5-HT neuronal inhibition occurring during sleep; 2--during waking, at the level of the axonal nerve endings impinging on the hypothalamus; this release might be related to the synthesis of "hypnogenic factors". Finally, we have observed that in the hypothalamus, 30 min. of immobilization-stress (IS) induces a larger increase of the voltammetric signal (+80%) than a painful stimulation of the same duration (+30%); the possible link between the 5-OHles release occurring in this area during an IS and the subsequent paradoxical sleep rebound is discussed.

Allylamine

The role of 5-hydroxytryptophan (5-HTP) in the regulation of the sleep/wake cycle in parachlorophenylalanine (p-CPA) pretreated rat: a multiple approach study.

In the rat, the insomnia which follows the administration of parachlorophenylalanine (p-CPA), a serotonin synthesis inhibitor, is transiently reversed either by intra-cisternal injection of L-5-HTP or by an associated injection of 5-HTP and an L-aromatic-acid-decarboxylase inhibitor (benserazide). Histochemical, immunohistochemical and chemical investigations showed that 5-HTP administration does not lead to a detectable increase in cerebral 5-HT. These findings suggest that the restoration of sleep after p-CPA treatment could be mediated by the central action of 5-HTP.

5-Hydroxytryptophan

[Brain protein synthesis in awake rats: equilibrium of L-methionine between plasma and direct precursor pool].

After 1 hr. of continuous infusion of L-(35S)methionine the specific activities of L-methionine in plasma and tissue-free and tRNA-bound L-methionine in brain were in the same range. This result indicates that, under steady-state conditions, dilution of the precursor pool for protein synthesis (L-methionyl-tRNA) by L-methionine derived from a source other than plasma can be considered as negligible.

Animals

Time-course variations induced by pargyline on the 5-hydroxyindole compounds measured in the nucleus raphe dorsalis and in blood: a voltammetric and HPLC approach in the rat.

Ninety min after pargyline (Pargy, 75 mg/kg) injection, the +300 mV voltammetric signal, measured in the nucleus raphe dorsalis (nRD) of freely moving rats, disappeared completely. This effect was also followed (2-7 h post-injection) by the reappearance of a peak (post-Pargy-peak) at the same +300 mV potential. The height of this post-Pargy signal was still decreased by Pargy (30 or 75 mg/kg). Endogenous 5-hydroxyindoleacetic acid (5-HIAA) contents, measured with HPLC in the nRD of Pargy-treated rats, exhibited analogous variations. Inhibition of monoamine oxidases by Pargy seems thus to be effective in blocking 5-HIAA production over only 2 h. The 15-fold increase of 5-HT endogenous content in the nRD (3 h after injection) was not reflected in the voltammetric extracellular measurements performed 90 min to 7 h after Pargy injection; this increase is suspected to be mainly intracellular.

Animals