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B Pipy

Publications and source records attributed to B Pipy.

At least 55 records · Page 3Linked to original sources

Substance P and alveolar macrophages: effects on oxidative metabolism and eicosanoid production.

The tachykinin substance P (SP) is present in lung sensory nerve endings and may be released after neurogenic stimulation. Its role in the pathogenesis of asthma is still unclear. Nevertheless, it may play a major role in airway neurogenic inflammation. Alveolar macrophages are the predominant cells of the airway space and are involved in various types of airway inflammation. We studied guinea pig alveolar macrophage response to SP and other related peptide (C- and N-terminal sequences, NK1-receptor agonist) stimulation. Alveolar guinea pig macrophages were recovered by bronchoalveolar lavage (BAL). Macrophage reactive oxygen intermediate (ROI) production was studied by luminol-dependent chemiluminescence with several concentrations of SP and related peptides. Eicosanoid synthesis after stimulation was evaluated by thin-layer chromatography (TLC) and enzyme-linked immunosorbent assay (ELISA). SP, C-terminal sequence, and NK1-receptor agonist significantly increased ROI production by alveolar macrophages (P < 0.01). NK1-agonist and C-terminal sequence modified arachidonic acid metabolism and induced a significant increase in prostaglandin (PG)D2 synthesis (211% and 66%, respectively). We concluded that SP and related peptides directly affect guinea pig alveolar macrophages by inducing the production of inflammatory metabolites.

Animals↗

Effects of modulation of sulphation and glucuronidation on chlorpropham metabolism and cytotoxicity in isolated rat hepatocytes.

After modulation of sulphation and glucuronidation, the relationship between the changes in metabolism and cytotoxicity of chloropropham (CIPC), a widely used herbicide, was investigated in isolated rat hepatocyte suspensions. Under physiological conditions, CIPC had a cytolytic effect, modified membrane permeability and reduced intracellular ATP level. CIPC was metabolized by hepatocytes mainly into 4-OH chlorpropham sulphate (37%) and glucuronide conjugates (18%). Inhibition of sulphation, by omitting sulphate from the isolation and incubation media, did not affect the cytotoxicity of CIPC, since there was a 2.5-fold compensatory increase in 4-OH CIPC glucuronide. Inhibition of glucuronidation by adding 4 mM D-galactosamine in the incubation medium led to a 66% decrease of glucuronide conjugate and simultaneously to a 32% decrease of sulphate conjugate. In that case, concentrations of free 4-OH CIPC in both hepatocytes and incubation medium were markedly increased, while those of 3-chloroaniline and 3-chloroacetanilide were slightly modified and remained low. This alteration of metabolism was accompanied by modification of cell permeability and reduction in ATP synthesis. The cytolytic effect was due to CIPC itself, whereas the effect on energetic metabolism was attributed to a metabolite. Results demonstrated for the first time a partial inhibition of sulphation by D-galactosamine (4 mM), probably due to the effect of D-galactosamine on intracellular ATP levels.

Adenosine Triphosphate↗

Arachidonic acid metabolism in alveolar macrophages from actively sensitized guinea-pigs: effects of sensitization and specific allergen.

Arachidonic acid (AA) metabolism, including mediator release and lipid turnover, was explored in [3H]AA-radiolabelled alveolar macrophages obtained from guinea-pigs actively sensitized to ovalbumin (sAM) and controls (cAM). The basal and allergen-induced AA metabolism of cAM and sAM were examined in the presence and absence of homologous serum obtained from the same control or sensitized animals. Basal AA metabolism of cAM and sAM involved the release of lipoxygenase and cyclooxygenase [3H]metabolites and free [3H]AA into the culture medium. However, in sAM, the production of free [3H]AA was significantly lower than in cAM. The allergen had no effect on the basal AA metabolism of cAM and sAM or on the metabolism of cAM and sAM cultured in the presence of control serum. In contrast, it increased the [3H]LTC4-D4 and free [3H]AA production of sAM cultured with sensitized serum but not those of cAM cultured with the same sensitized serum. In sAM, the allergen effect disappeared when the sensitized serum was heated for 1 h to 56 degrees C. Our results suggest that two factors, both induced by the active sensitization of guinea-pigs, one in the serum and one on the macrophages obtained from sensitized guinea-pigs, are required for the allergen to have an impact on the AA metabolism of alveolar macrophages in increasing the production of 5-lipoxygenase metabolites.

Allergens↗

Ca(2+)-dependent activation of phospholipases C and D from mouse peritoneal macrophages by a selective trigger of Ca2+ influx, gamma-hexachlorocyclohexane.

The gamma-isomer of hexachlorocyclohexane (gamma-HCCH), which displays structural homology with inositol, was found to induce an initial influx of Ca2+ in mouse peritoneal macrophages. This was responsible for Ca(2+)-induced Ca2+ release via inositol 1,4,5-trisphosphate produced by phospholipase C and resulted in a sustained increase of cytoplasmic free Ca2+ concentration ([Ca2+]i). Entry of Ca2+ evoked by gamma-HCCH also stimulated phospholipase D, as well as the generation of reactive oxygen species formed by NADPH oxidase. These data suggest that some isoform(s) of phospholipase C, and possibly phospholipase D, can be activated by strictly Ca(2+)-dependent mechanisms. They also describe a new experimental tool allowing to trigger a selective influx of Ca2+. gamma-HCCH could thus be used in further studies aimed to delineate the role of Ca2+ entry in the subsequent activation of other signalling pathways.

Animals↗

Henoch-Schönlein purpura in a patient with diabetic nephropathy.

A 46-year-old man presented with Henoch-Schönlein purpura and diabetic nephropathy. At 30 years of age, the patient had presented with an acute and severe nephritic syndrome with severe renal impairment. The renal function returned to normal 6 months after this first attack. At the age of 38 years, the patient was diagnosed as having type II diabetes and was treated with diet alone. At 44 years of age, a renal biopsy was performed because of proteinuria and hematuria. In this renal biopsy, mesangial expansion, medial arterial hyperplasia, and focal interstitial fibrosis were found to be present. Mesangial and subendothelial deposits of immunoglobulin A (IgA) were demonstrated by immunofluorescence. At 45 years of age, cutaneous vasculitis appeared, and at 47 years of age, the patient presented with necrotic purpura, non-insulin-dependent diabetes, renal impairment, proteinuria, and hematuria. A skin biopsy demonstrated leukocytoclastic skin vasculitis with IgA deposits in the arterial walls. A second renal biopsy was performed that showed diabetic glomerulosclerosis associated with a marked vascular and interstitial fibrosis. Mesangial and subendothelial deposits of IgA and C3 and linear IgG deposits along the glomerular basement membranes were demonstrated by immunofluorescence. Electron microscopy showed that the glomerular basement membranes were thickened; a fusion of foot processes was observed and electron-dense deposits were present in the widened mesangium. In summary, we describe a patient with a history of ancient glomerulonephritis who presented with an IgA mesangial nephropathy consistent with Henoch-Schönlein purpura associated with diabetic glomerulosclerosis.(ABSTRACT TRUNCATED AT 250 WORDS)

Diabetes Mellitus, Type 2↗

Failure of mouse peritoneal macrophage activation by the purified excreted/secreted antigens of Toxoplasma gondii.

This study was carried out to evaluate the effect of excreted/secreted antigens on macrophages infected by Toxoplasma gondii. Six proteins 28, 30, 45, 58, 63 and 145 kDa were separated by different chromatographic techniques. Mouse peritoneal macrophages were treated in vitro and in vivo with these purified fractions. Penetration and proliferation assays of T. gondii in the macrophages were performed in vitro. The different antigens used did not change the rate of penetration and proliferation of the parasites. Therefore, the secreted products, which are capable of provoking an immune response, could not directly activate the macrophages. Furthermore, the secreted products were not cytotoxic and neither did they possess a visible phospholipasic activity which would have increased penetration.

Animals↗

Arachidonic acid metabolism of rat peritoneal macrophages after passive sensitization and allergen challenge.

The aim of our work was to evaluate the effect of passive sensitization of rat peritoneal macrophages (treatment of cells by an anti-ovalbumin IgE-rich serum) on arachidonic acid (AA) metabolism and the impact of specific antigen (ovalbumin) on this process. Compared to a control treatment without serum, the atopic serum and a serum without IgE, used on [3H]AA-labeled macrophages, increased cyclooxygenase and lipoxygenase eicosanoid production. Sera, used prior to [3H]AA incorporation, induced a decrease of 3H-labeled membrane phospholipids and an increase of lipoxygenase metabolites in the [3H]AA incorporation medium. To establish if the serum-induced catabolism of AA differed according to whether it was externally added to the culture medium or incorporated into membrane phospholipids, we studied the eicosanoid secretion of [3H]AA-prelabeled macrophages, treated by the serum and incubated with [14C]AA. It was confirmed that phospholipid-incorporated AA was catabolised following the cyclooxygenase and lipoxygenase pathways and external AA preferentially following the lipoxygenase pathway. The allergen increased the eicosanoid formation of passively sensitized macrophages but not that of cells treated by the serum without IgE. Our data suggest that changes occurring in passive sensitization, on AA mobilization from membrane phospholipids and on AA catabolism, induced by the serum, are independent of IgE and must be taken into consideration on interpreting the allergen effect.

Allergens↗

Eicosanoid production by mouse peritoneal macrophages during Toxoplasma gondii penetration: role of parasite and host cell phospholipases.

The metabolism of endogenous arachidonic acid by mouse resident peritoneal macrophages infected in vitro with Toxoplasma gondii was studied. Prelabeling of macrophages with [5,6,8,9,11,12,14,15-3H]arachidonic acid and challenge with tachyzoites for 15 min resulted in a high mobilization of free labeled arachidonic acid (178%) in the culture medium. The parasites also triggered the synthesis of 6-keto-prostaglandin F1 alpha (47%), prostaglandin E2 (44%), leukotrienes C4 and D4 (33%) and 5-, 12-hydroxyeicosatetraenoic acids (155%). The study indicated that during the intracellular development phase of the parasites, 6-keto-prostaglandin F1 alpha (38%), prostaglandin E2 (31%) leukotrienes C4 and D4 (15%), hydroxyeicosatetraenoic acids (43%), and free arachidonic acid (110%) were secreted into the culture medium. Pretreatment of tachyzoites with phospholipase A2 inhibitors (4-p-bromophenacyl bromide and quinacrine) and no calcium in the culture medium resulted in inhibition of tachyzoite penetration into the macrophages and a decrease of the arachidonic acid metabolism. The triggering of the arachidonic acid cascade by T. gondii was dependent on the active penetration of the parasites into the macrophages, whereas preincubation of the macrophages with phospholipase A2 inhibitors did not affect penetration or free arachidonic acid release, thereby supporting a role for parasite phospholipase in the penetration process and in arachidonic acid mobilization from macrophage membrane phospholipids. Moreover, treatment of macrophages with phospholipase A2 inhibitors decreased the activities of the cyclooxygenase and lipoxygenase pathways, also suggesting an activation of host cell phospholipase A2 by the parasite.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Role of prostacyclin in hemodynamic alterations in conscious rats with extrahepatic or intrahepatic portal hypertension.

Although prostaglandins are thought to be involved in the hyperdynamic circulation of portal hypertension, the role of this substance has not been elucidated. Dose-response curves, the hemodynamic effects of prostacyclin (20 micrograms/kg) and its inhibitor indomethacin and measurements of plasma and urinary levels of 6-keto-prostaglandin F1 alpha were compared in three groups of six rats each: normal, with portal vein stenosis and with secondary biliary cirrhosis. Plasma and urinary levels of 6-keto-prostaglandin F1 alpha were higher in rats with portal vein stenosis and cirrhotic rats than in normal rats. Dose-response curves showed similar maximal decreases in arterial pressure in the three groups, whereas the maximal increase in portal pressure was less marked in cirrhotic rats than in normal rats and rats with portal vein stenosis. In normal rats, prostacyclin increased cardiac output by 21% and portal pressure by 41%. Similar increases were observed in rats with portal vein stenosis. In contrast, prostacyclin did not affect cardiac output and portal pressure in cirrhotic rats. Indomethacin induced a more marked vasoconstrictive effect in normal rats than in cirrhotic rats. This study shows that prostacyclin plays a role in the hemodynamic alterations in portal hypertension. Moreover, the hyporeactivity observed in cirrhotic rats suggests that prostacyclin plays a major role in the circulatory changes of portal hypertension due to chronic liver disease.

6-Ketoprostaglandin F1 alpha↗

Possible implication of arachidonic acid metabolism in the decrease of chemiluminescence production after exposure of murine peritoneal macrophages to diethylnitrosamine and tumour promoter, 12-O-tetradecanoylphorbol-13-acetate.

The effect of the carcinogen diethylnitrosamine (DEN) on prostaglandins (PGs), leukotrienes (LTs) and reactive oxygen intermediates production by murine peritoneal macrophages was assessed. In vitro exposure to DEN (0.8, 1.6 and 8 mM) resulted in a dose-dependent stimulation of the PGs and LTs generation by macrophages. DEN-exposed peritoneal macrophages demonstrated enhanced production of arachidonic acid (AA) metabolites following stimulation with 12-O-tetradecanoylphorbol 13-acetate (TPA) as compared to macrophages stimulated with TPA alone. Studies of [3H]AA release from glycerolipids of prelabelled macrophages and of the distribution of AA metabolites between intra and extracellular compartments indicated that DEN induced de novo synthesis of AA metabolites. The stimulation of AA metabolism by DEN was decreased by H-7 and staurosporine, protein kinase C (PKC) inhibitors, and so could be dependent on PKC activation. The generation of PGs by macrophages after DEN exposure was also inhibited by indomethacin (cyclo-oxygenase inhibitor). DEN at high concentrations (1.6-16 mM) inhibited chemiluminescence production by peritoneal macrophages in a dose-dependent manner, triggered by tumour promoter TPA; lower concentrations (0.8 and 1.2 mM) increased this reactive oxygen intermediates dependent chemiluminescence production induced by TPA. The role of AA metabolism in the alteration of chemiluminescence production by murine peritoneal macrophages treated in vitro with DEN and triggered by TPA has been evaluated by using AA metabolism inhibitors. The stimulation of chemiluminescence by TPA was inhibited by the addition of phospholipase A2 (PLA2) inhibitor, 4-p-BPB; this metabolic inhibitor did not affect the decrease of chemiluminescence production induced by DEN. The cyclo-oxygenase (CO) inhibitor, indomethacin, reversed the inhibition of TPA-induced chemiluminescence caused by DEN. These results suggest that AA and/or a lipoxygenase product can potentiate the reactive oxygen intermediates production by macrophages stimulated by TPA. The CO pathway could be involved in the inhibition by DEN of the reactive oxygen intermediates generating enzyme system. It is suggested that this inhibition could be related to AA metabolites issued from the CO pathway or to DEN oxygenated metabolites issued from the co-oxidation of the DEN by the PGs endoperoxide synthase. These results also raise the problem of macrophage dysfunction by chemical carcinogens and the implication of the CO pathway in this process.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Control of terminal differentiation of adipose precursor cells by glucocorticoids.

The role of glucocorticoids on adipose conversion has been studied using confluent Ob1771 mouse preadipose cells maintained in a serum-free culture medium able to support the emergence of early but not that of late markers of differentiation. Under these culture conditions, glucocorticoids play, at physiological concentrations, a permissive role for terminal differentiation, characterized by glycerol-3-phosphate dehydrogenase expression and triacylglycerol accumulation within 12 days, whereas progesterone, testosterone, and estradiol are inactive. Glucocorticoids behave as mitogenic-adipogenic stimuli able to trigger growth-arrested, early marker-expressing cells to enter the terminal phase of the differentiation program and thus appear to mimic the mitogenic-adipogenic activity already described for arachidonic acid and cyclic AMP-elevating agents, especially prostacyclin. When compared to corticosterone alone, exposure of Ob1771 cells to both corticosterone and arachidonic acid leads to an additional increase in the glycerol-3-phosphate dehydrogenase activity and number of differentiated cells; this potentiation is further enhanced when the culture medium is supplemented with the cyclic AMP phosphodiesterase inhibitor 3-isobutyl-1-methylxanthine. This suggests indirectly the involvement of prostacyclin as a metabolite of arachidonic acid able to induce cyclic AMP accumulation. In agreement with this hypothesis, it is found that a promoting effect is exerted by corticosterone on the metabolism of arachidonic acid, leading in turn to an increase in the production of prostacyclin. These findings allow a better understanding of the role of glucocorticoids on adipose cell differentiation and explain a posteriori the effectiveness of the combination of dexamethasone-isobutyl-methylxanthine used in innumerable studies.

Adipose Tissue↗

Systemic and splanchnic hemodynamic effects of molsidomine in rats with carbon tetrachloride-induced cirrhosis.

Molsidomine, a long-acting vasodilator mainly used as an antianginal agent, was reported to decrease the portohepatic venous pressure gradient in patients with alcoholic cirrhosis. This study investigated the effects of linsidomine, the active metabolite of molsidomine, on systemic and splanchnic hemodynamics in rats with CCl4-induced cirrhosis using the microsphere technique. Compared with placebo-treated rats, linsidomine-treated animals were found to have a significant decrease in portal venous pressure (-18%, p less than 0.01) and in mean arterial pressure (-16%, p less than 0.01), smaller peripheral resistances (p less than 0.01), greater portal venous inflow (p less than 0.05), smaller splanchnic arteriolar resistances (p less than 0.01) and smaller protocol-lateral resistances (p less than 0.05). Cardiac output, hepatic arterial blood flow, portal blood flow and estimated hepatic blood flow were not significantly different between the two groups of animals. Linsidomine-treated rats exhibited a trend toward greater collateral blood flow compared with controls, but this difference was not significant. We conclude that linsidomine decreases portal venous pressure by reducing portocollateral resistances without affecting liver blood flow. These effects should be beneficial for patients with cirrhosis and portal hypertension.

Animals↗

1-naphthyl N-methyl carbamate effect on intra- and extracellular concentrations of arachidonic acid metabolites, and on the chemiluminescence generation by mouse peritoneal macrophages.

1-Naphthyl N-methyl carbamate (carbaryl), potent carbamate insecticide with anticholinesterase activity, was tested for its ability to affect mouse peritoneal macrophages in particular arachidonic acid (AA) metabolism and oxidative burst. Carbaryl inhibited in a dose-related manner the reactive oxygen intermediate dependent chemiluminescence (CL) induced by opsonized zymosan (OZ), 12-O-tetradecanoyl phorbol-13-acetate (TPA) and calcium ionophore (A23187); this carbamate did not affect CL-mediated by AA. The intracellular and extracellular concentrations of prostaglandins (PGs) and 5-hydroxyeicosatetraenoic (5-HETE) generated in macrophages stimulated with OZ has been investigated for various periods. Carbaryl effect displayed two successive phases on AA metabolism stimulation. In a first phase (up to 2-15 min), carbaryl did not alter the rapid AA metabolite synthesis (total amount of intra- and extracellular metabolites) but it increased intracellular concentration of PGE2, PGA2, PGF2 alpha and decreased 5-HETE intracellular concentration. In a second phase (after 2-15 min), carbaryl inhibited AA metabolite synthesis. The release of cyclooxygenase (CO) and lipoxygenase (LO) metabolites decreased, in particular PGF2 alpha and PGD2 which in addition seemed to be submit to a cellular retention; the inhibition of other metabolite release appeared essentially related to the inhibition of their synthesis since the intracellular amount did not augment. The inhibition by carbaryl of the NADPH-oxidase dependent CL induced by OZ may be related to the alteration of the intra- and extracellular concentrations of AA metabolites.

Animals↗

Chemiluminescence response and arachidonic acid metabolism of macrophages induced by gamma-hexachlorocyclohexane (lindane).

The influence of gamma-hexachlorocyclohexane (gamma-HCCH) on arachidonic acid (AA) metabolism and oxygen metabolite production was investigated on mouse peritoneal macrophages gamma-HCCH stimulated 6KPGF1 alpha, PGE2, LTC4, LTB4 and HETEs production and increased the luminol-dependent chemiluminescence (CL). Lindane acted synergistically with phorbol ester on prostaglandins-leukotrienes (PGs-LTs) and CL production. Similar stimulation of CL and PGs-LTs production was found after challenge by the calcium ionophore A23187. The implication of calcium mobilization in lindane effects was proposed.

Animals↗

[Effects of cotrimoxazole on some macrophage functions: microbicide, tumoricide, production of free oxygen radicals, prostaglandins and leukotrienes].

In order to demonstrate an immunomodulating effect of cotrimoxazole, we investigated its influence on some macrophage (M phi) functions in culture: P815 tumor cells killing, Toxoplasma gondii killing, production of free oxygen radicals by luminol-dependent chemiluminescence, prostaglandins and leukotrienes secretion evaluated after incorporation of tritiated arachidonic acid. In vitro, cotrimoxazole inhibited in a dose-dependent fashion the chemiluminescence of murine resident peritoneal or guinea pig alveolar M phi. Production of prostaglandin (PG) 6-keto-F1 alpha, PGF2 alpha, and 5-hydroxyeicosatetraenoic acid by resident peritoneal M phi was also inhibited. However, PGD2 synthesis by alveolar M phi was enhanced. A second study was performed on peritoneal M phi, resident or elicited in vivo by one intra-peritoneal injection of an extract from Mycobacterium Tuberculosis membranes and obtained from mice pretreated or not by cotrimoxazole per os. Resident M phi from cotrimoxale-treated animals showed increased production of leucotriene B4 compared to M phi from controls. 6-keto-PGF1 alpha and free oxygen radicals production by elicited M phi was greatly enhanced by cotrimoxazole whereas thromboxane B2 was reduced. Finally cotrimoxazole enhanced intracellular killing of Toxoplasma gondii and cytotoxicity for tumor cells P815 by resident but not by elicited M phi. It is concluded that cotrimoxazole can modulate MO activation and some M phi functions involved in immune homeostasis. This data could help to understand why an antibiotic such as cotrimoxazole, which is known to be frequently used in immunocompromised hosts, is also efficient in Wegener's granulomatosis.

Animals↗