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J Hakim

Publications and source records attributed to J Hakim.

At least 91 records · Page 5Linked to original sources

Production by K 562 cells of an inhibitor of adherence-related functions of human neutrophils.

Certain tumor cells generate factors that inhibit neutrophil chemotaxis. Our study was designed to explore whether such factors are produced by K 562 malignant cells and whether these have a broader effect in altering neutrophil functions. After 48 h of in vitro culture of K 562 cells, the culture medium and the cells were separated, lyophilized, and extracted with ethanol. These K 562 products, i.e., either the cell or supernatant extract, inhibited both nonstimulated locomotion and locomotion induced either by FMLP or activated serum. Furthermore, K 562 products inhibited neutrophil adherence and oxidative burst induced by opsonized zymosan, whereas oxidative burst induced by PMA or FMLP was not altered. K 562 products had an inhibitory effect on the PMN binding to iC3b-coated particles. They did not modify Mo1 expression of resting cells, did not alter the up-regulation of the receptor induced by FMLP but inhibited the FMLP-induced capping of Mo1 Ag. Con A capping was also inhibited. Actin polymerization in FMLP-stimulated PMN, as measured by flow cytometry and phalloidin binding to F-actin, was inhibited by K 562 products. The inhibitory factor present in K 562 products (cell and culture supernatant) was purified in three steps including gel filtration, ion-exchange chromatography, and IEF. The eluted active fraction corresponded to single band of about 8 kDa on SDS-PAGE. From these experiments, it is concluded that K 562 malignant cells in culture contain and release a low molecular mass factor (congruent to 8 kDa) that inhibits all adherence-related functions of neutrophils, whereas it does not alter FMLP- or PMA-induced oxidative burst. Further studies are needed to assess whether products of other tumor cells also act on the neutrophil by inhibiting adherence-related functions, Mo1 function and capping, and actin polymerization.

Actins↗

Staurosporine, a protein kinase inhibitor, up-regulates the stimulation of human neutrophil respiratory burst by N-formyl peptides and platelet activating factor.

Staurosporine (STAR), a potent protein kinase C (PKC) antagonist, was found to modulate the chemoattractant-induced respiratory burst of human polymorphonuclear leukocytes (PMNs) according to drug concentration. Low STAR concentrations from 10 to 200 nM potentiated the N-formyl-methionyl-leucyl-phenylalanine (fMLP) and platelet activating factor (Paf)-induced respiratory burst, affecting both the initial rate and the total amount of superoxide anion generated. The maximal increase occurred in the presence of 100 nM STAR and optimal fMLP concentration and reached 60-100% of control values. Above 250 nM, STAR inhibited the respiratory burst with an IC50 of 360 and 320 nM for fMLP and Paf, respectively. The respiratory burst induced by PKC activators such as phorbol myristate acetate or phorbol 12, 13 dibutyrate was inhibited effectively by STAR, with a low IC50 (25 nM) for both stimuli. Thus, the use of low STAR concentrations points to two possible roles of PKC in the regulation of NADPH oxidase activity, i.e. a positive regulation in phorbol ester-treated cells and a negative regulation in chemoattractant-stimulated PMNs.

Alkaloids↗

Consequences of neutrophil adhesion to physiological and pathological targets.

The ability of neutrophils to adhere in a coordinated and reversible manner to the endothelium and other tissular components is crucial to their chemoattractant-induced locomotion towards relevant targets. Opsonins play a major role in the killing effect of neutrophils by inducing close adherence between the neutrophil and the target, thus maximizing the effect of the reactive oxygen species released by the stimulated neutrophils. Reactive oxygen species are released together with degradative enzymes and other killing proteins associated with neutrophil degranulation. This targeted neutrophil activity kills invading microorganisms but, in a similar way, may be harmful to organs, cells and molecules that have been altered in some way or are involved in immune reactions. In some other pathological situations where body fluids contain proinflammatory agents, neutrophils may behave in a nontargeted and inappropriate manner. In such cases, adherence is often increased, thus slowing locomotion. Moreover, inflammatory agents often prime neutrophils for the oxidative burst induced by chemoattractants or other stimuli. The combined slow locomotion and hypersensitivity of primed neutrophils leads to a premature release of killing substances which may affect blood components, vascular cells, connective tissue or whole organs. Any disturbance of neutrophil adherence is thus potentially harmful and must be recognized and suitably treated.

Autoimmunity↗

Pentoxifylline inhibition of procoagulant activity generated by activated mononuclear phagocytes.

When appropriately stimulated, monocytes are able to initiate blood coagulation through the membrane expression of tissue factor. This procoagulant activity is thought to play a role in activating coagulation in response to inflammatory stimuli in vivo. We found that pentoxifylline, a methylxanthine derivative already reported to regulate some monocyte functions, inhibits the procoagulant activity developed by U937 cells and monocytes in vitro in response to endotoxin. This effect was accompanied by an early increase in intracellular levels of cyclic AMP and was mimicked by compounds that induce an increase in the level of cyclic AMP levels. These results suggest that the suppressive effect of pentoxifylline occurs at least in part via an increase in intracellular cyclic AMP levels.

1-Methyl-3-isobutylxanthine↗

Dual effect of phorbol myristate acetate on chemoattractant-induced locomotion of human neutrophils.

Phorbol myristate acetate (PMA) is a potent activator of Ca2+/phospholipid-dependent protein kinase (PKC) and was used to study the involvement of this kinase in human polymorphonuclear neutrophil (PMN) locomotion. Preincubation of PMNs with low concentrations of PMA (4 to 64 x 10(-11) M) had the following effects: (1) fMet-Leu-Phe-induced migration under agarose was increased when the chemoattractant was used at the suboptimal concentration of 10(-8)M and not at the optimal concentration of 10(-7)M; (2) no effect on spontaneous or serum- or LTB4- induced migration at either suboptimal or optimal concentrations; (3) PMA enhanced fMet-Leu-Phe-induced migration, increasing the speed of locomotion but not affecting shape changes induced by fMet-Leu-Phe; (4) the number of fMet-Leu-Phe-specific receptors expressed on the PMN membrane was not altered. Intermediate concentrations of PMA (1.6 to 4.0 x 10(-9) M) had no effect on PMN migration, whereas higher concentrations (4.0 to 16 x 10(-9) M) reduced both spontaneous and fMet-Leu-Phe-, serum-, or LTB4-induced migration in a dose-dependent manner. Effects observed with low concentrations of PMA were not associated with a translocation of cytosolic PKC even when preincubation with PMA was followed by fMet-Leu-Phe stimulation. In contrast, effects observed with higher concentrations of PMA paralleled the decrease in cytosolic PKC activity.

Cells, Cultured↗

Experience with malignant tumours of the maxillary sinus in the Department of Otolaryngology Universiti Kebangsaan Malaysia, Kuala Lumpur.

Thirty one cases of malignant tumours of the maxillary sinus presenting to the Department of Otolaryngology, Universiti Kebangsaan Malaysia over a four year period from 1982 to 1986 are reviewed. 18 cases (58.1%) were squamous cell carcinoma while seven cases (22.5%) were Non-Hodgkin's lymphoma. There were four cases (12.0%) of adenoid cystic carcinoma while in two cases (6.5%) the tumours were undifferentiated. Presentation was generally late. Nasal obstruction, facial swelling and epistaxis were the main presenting symptoms. Nasal involvement was found in 61.3% of cases, while 51.6% had involvement of the palate as well. Metastasis to the cervical lymph node were uncommon (6.5%). Surgery and radiotherapy with or without chemotherapy were the main modes of treatment in the management of malignant tumours of the maxillary sinus.

Adolescent↗

[Splenectomy in hematologic diseases. Indications, technics and early results. A retrospective study of 1095 cases].

Since July 1st, 1958, we have operated 1095 patients with some hematological disease. We review the chief currently accepted surgical indications for splenectomy (Hodgkin's disease no longer being one of them, or seldom so), and we communicate our results pertaining to the immediate postsurgical period. Mortality and morbidity have been 1.36% and 3.28%, respectively. In over 95% of cases, there have been no complications. The low incidence (1.36%) of infection-related complications was partly due to the important number of splenic drains placed. High quality results can only be achieved when tight collaboration exists between hematologists, radiologists and surgeons.

Drainage↗

[Oxygen, phagocytic cells and atheroma].

Phagocytes (P), i.e. neutrophils, monocytes and macrophages, may be involved as well as reactive oxygen species (ROS) in the initiation and development of atherosclerosis. Evidences for this assumption are the following; P and ROS are both able to damage endothelial cells whose dysfunction is crucial in the etiology of atherosclerosis. ROS generated by endothelial cells, smooth muscle cells or mainly blood cells such as neutrophils but also monocytes platelets and erythrocytes, peroxide directly endothelial cell membranes. Damage to cell membranes can be induced by P that adhere to, and release on endothelial cells large amounts of proteolytic and lipolytic enzymes. ROS can also induce formation in the blood of lipoperoxides which are often included in LDL (low density lipoproteins). These modified LDL are cytotoxic, possess phospholipase A2 activity and are recognized by the LDL scavenger receptor which is on the monocyte-macrophage membrane. The modified LDL are also immunogenic inducing formation of autoantibodies directed against them and normal LDL. Modified LDL and LDL immune complexes can be ingested by monocytes leading to foam cells and ROS. The damaged endothelial cells have an increased permeability to macromolecules, synthetize chemotactic factors, decrease their prostacyclin production and favour the adherence of neutrophils and monocytes to their surface. All these factors could increase ROS production and lipid peroxidation amplifying intra and extra-cellular accumulation of lipoperoxides in vascular walls. The ability of ROS and P to damage endothelial cells, to induce lipid peroxidation and thus to be involved in atherosclerosis relies on in vitro experimental results.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Role of cytochrome b-559 in arachidonic acid activation of resting human neutrophils.

Whether or not cytochrome b-559 is a necessary component of NADPH oxidase activity in neutrophils is still controversial. In highly purified plasma membranes isolated from resting neutrophils and lacking cytochrome b, addition of arachidonic acid induced an NADPH oxidase activity. This activity was similar to that of plasma membranes isolated from phorbol myristate acetate (PMA)-stimulated cells which possessed cytochrome b. Addition of arachidonic acid to the latter plasma membranes did not alter the oxidase activity. It can be concluded that plasma membranes isolated from resting neutrophils have, in the presence of arachidonic acid, an NADPH oxidase activity similar to that of PMA-stimulated cells, except that it is independent of cytochrome b-559.

Arachidonic Acid↗

Protective effect of indomethacin against chemotactic deactivation of human neutrophils induced by formylated peptide.

The effects of the nonsteroidal antiinflammatory drug indomethacin on the parameters relating to the migration and respiratory burst of human polymorphonuclear leukocytes (PMN) were studied in an attempt to clarify the mechanism of this drug's action on PMN. At various concentrations below 200 micrograms/ml, indomethacin partially inhibited the spontaneous migration of PMN but did not alter the directional migration induced by C5a-activated serum. In the presence of N-formyl-methionyl-leucyl-phenylalanine (FMLP) as chemoattractant, directed PMN migration was either inhibited or stimulated by indomethacin, depending on FMLP concentration. When PMN migration was induced by the optimal and suboptimal FMLP concentrations of 10(-7) and 10(-8) M, indomethacin inhibited this migration, but when the high FMLP concentration of 10(-6) M depressed this migration by chemotactic deactivation, indomethacin restored it to its maximum. Both the inhibitory and stimulatory effects of indomethacin on FMLP-induced PMN migration were due to changes in the migration speed. Indomethacin also inhibited FMLP-induced changes in the shape of floating PMN, and in respiratory burst, as well as specific FMLP binding to PMN. In contrast, indomethacin did not alter the PMN respiratory burst induced by phorbol myristate acetate or C5a-activated serum. These data show that indomethacin is able to prevent the loss of PMN chemokinetic activity induced by formylated peptides and suggest that it might be useful for investigating the mechanism of peptide-induced chemotactic deactivation.

Chemotaxis, Leukocyte↗

Differential in vivo effects of indomethacin, ibuprofen, and flurbiprofen on oxygen-dependent killing activities of neutrophils elicited by acute nonimmune inflammation in the rat.

The effects of oral administration of various doses of indomethacin, ibuprofen, and flurbiprofen were studied in acute nonimmune pleurisy induced by calcium pyrophosphate crystals (CaPP) in the rat. Drug effects on pleurisy development, as measured by the pleural fluid volume, the number of emigrating leukocytes, and the in vitro oxygen uptake and hydrogen peroxide production of elicited polymorphonuclear neutrophils (PMNs) were investigated. Indomethacin (1.5, 3, and 6 mg/kg) induced a dose-dependent reduction of both exudate volume and number of emigrating leukocytes which reached approximately 50% of control values. A similar inhibition of these two inflammation parameters was observed for the three doses of ibuprofen (6, 18, and 54 mg/kg) and flurbiprofen (0.5, 1.5, and 4.5 mg/kg). The ability of elicited neutrophils to consume oxygen upon stimulation by serum-treated zymosan particles (STZ) was not altered in PMNs derived from animals treated with indomethacin or flurbiprofen, whereas a 35% decrease was induced by ibuprofen. Ibuprofen, but not indomethacin or flurbiprofen, also impaired STZ-induced PMN production of hydrogen peroxide. Furthermore, this inhibition was inversely related to ibuprofen doses. These data indicate that, in addition to their common properties to reduce leukocyte emigration at inflammatory sites, certain NSAIDs such as ibuprofen, but not flurbiprofen or indomethacin, impair particle-induced oxygen-dependent killing activities of elicited PMNs.

Animals↗

Influence of subinhibitory concentrations of ceftriaxone on opsonization and killing of Pseudomonas aeruginosa by human neutrophils.

Ceftriaxone, a 2-aminothiazolyl cephalosporin does not alter human neutrophil (PMN) bactericidal function. However, low concentrations of ceftriaxone induce some bacterial strains to be more sensitive to PMN killing. We have studied the effect of a subinhibitory concentration of ceftriaxone (10 mg/l) on Pseudomonas aeruginosa (MIC greater than 128 mg/l). After an overnight exposure to this concentration of ceftriaxone, P. aeruginosa elongated into filaments. PMN killing of ceftriaxone-treated bacteria was better than killing of control bacteria. This enhanced killing was correlated with an increased sensitivity to oxygen-dependent bacterial killing. Furthermore, the altered bacteria induced a greater oxidative response of PMN which was independent of their chemiluminescence response after stimulation by control P. aeruginosa. This increased oxidative burst was attributable to both non-opsonodependent stimulation and to increased deposit of opsonins.

Ceftriaxone↗

Cryptococcal meningitis presenting as uveitis.

A patient presented with a posterior uveitis. An inferior plaque of retinal exudation was seen. Full investigation failed to establish a cause until six weeks later, when cryptococcal meningitis developed. The patient was immunocompetent. Exudation in relation to retinal vessels is unusual in idiopathic posterior uveitis, and cryptococcosis should be considered in the differential. Diagnosis is by lumbar puncture or vitreous aspiration.

Adult↗

Protection of rat from oxygen toxicity by inducers of cytochrome P-450 system.

Rats were pretreated with various inducers of cytochrome P-450 before being exposed to pure normobaric oxygen (O2) in order to determine whether the inducers interfere with toxicity. The pulmonary and liver inducers beta-naphthoflavone (beta NF) and 3-methylcholanthrene (3MC) increased the survival rate and decreased the amount of pleural and lung fluid accumulation in adult rats exposed to oxygen. Phenobarbital (PB), which is essentially active in the hepatic microsomal cytochrome P-450, was less effective in counteracting oxygen toxicity. After 7 days of exposure to oxygen, none of the untreated rats survived, whereas 40, 73, and 90% survival was observed in rats treated with PB, 3MC, and beta NF, respectively. After 60 h of O2 exposure, significantly less pleural and lung fluid accumulation was observed in beta NF- and 3MC-treated rats than in untreated or PB-treated rats (p less than 0.001). Both beta NF and 3MC prevented the increase of lung peroxidation (assessed by measuring of malondialdehyde) and that of hydrogen peroxide production by lung microsomes induced by O2 exposure. These protective effects are associated with a large increase in the components of the pulmonary cytochrome P-450 system and its peroxidase activity and with an increased response to hyperoxia by lung antioxidant enzyme activities. In contrast, in control rats, the activities of the antioxidant enzymes were not increased, and both the quantity and the peroxidase activity of cytochrome P-450 were significantly decreased by O2 exposure. We conclude that in the rat, pretreatment by inducers of pulmonary cytochrome P-450 results in marked protection against O2 toxicity and an increase of antioxidant enzyme response to hyperoxia.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Negative effect of a protein kinase C inhibitor (H-7) on human polymorphonuclear neutrophil locomotion.

The effects of 1-(5-isoquinoline sulphonyl)-2-methyl piperazine (H-7), a recently described inhibitor of Ca2+/phospholipid-dependent protein kinase (protein kinase C), were studied during under-agarose migration of human polymorphonuclear neutrophils (PMN) stimulated by various chemoattractants, in order to determine whether protein kinase C is involved in PMN locomotion. The effect of H-7 on the oxidative burst induced by phorbol 12-myristate 13-acetate or N-formyl-methionyl-leucyl-phenylalanine (FMLP) was also measured. Pre-incubation of PMN with H-7 concentrations ranging from 50 to 400 microM inhibited: (i) spontaneous PMN migration under agarose; (ii) the directed migration induced by activated serum, leukotriene B4 or FMLP; and (iii) the speed of the migration induced by FMLP. The inhibition by H-7 of FMLP-induced directed migration was less when FMLP was used at high concentrations which, in the absence of H-7, inhibit locomotion. H-7 depressed the oxidative burst induced by phorbol myristate acetate (PMA) but not that induced by FMLP. All the effects of H-7 on the oxidative burst and migration were reversed by washing PMN after H-7 treatment. These findings indicate that protein kinase C, inhibitable by H-7, is involved in a mechanism controlling the speed of PMN locomotion.

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

[Interaction of roxithromycin with human polymorphonuclear neutrophils in vitro and ex vivo].

Roxithromycin (RU 28965) a new semisynthetic macrolide has been reported to display an antibacterial spectrum and activity in vitro similar to those of others macrolides. However, roxithromycin seems more efficient than erythromycin in in vivo experimental infections (mice). We have previously reported that roxithromycin increases the ability of human neutrophils (PMN) for bactericidal activity (S. aureus) or phagocytosis (K. pneumoniae) in vitro without altering other PMN functional parameters. In this study, roxithromycin (single dose-300 mg) was given to 6 human volunteers. The neutrophils collected 90 min after ingestion display a significant increased ability to phagocytose and kill S. aureus and K. pneumoniae. Furthermore chemotaxis, oxidative burst and myeloperoxidase activity of the PMN after roxithromycin ingestion were enhanced compared to those of PMN before ingestion. This discrepancy between immunomodulating effect of roxithromycin in vitro and in vivo outlines the complexity of in vivo experimental models and requires further studies in vivo in particular in patients suffering from sepsis.

Adult↗

Diclofenac binding to human polymorphonuclear neutrophils: effect on respiratory burst and N-formylated peptide binding.

The respiratory burst of human polymorphonuclear neutrophils (PMN) induced by particle or soluble stimuli was measured in the presence of the nonsteroidal anti-inflammatory drug, diclofenac sodium (Voltaren). Diclofenac (25-100 micrograms/ml) inhibited the oxygen consumption of PMN stimulated by 5 X 10(-7) M of N-formyl-methionyl-leucyl-phenylalanine (FMLP). The inhibition was linearly correlated to diclofenac concentration. By contrast, diclofenac did not affect the rate of heat-killed Klebsiella pneumoniae ingestion of PMN, or the PMN O2-uptake induced by (0.67 microgram/ml) serum-opsonized zymosan or (1 microgram/ml) phorbol myristate acetate (PMA). The PMN production of superoxide anion induced by various FMLP concentrations (10(-7), 10(-6) and 10(-5) M) was also decreased by diclofenac. However, this inhibition declined when the formylated peptide concentration was raised suggesting that diclofenac could alter FMLP binding to the PMN membrane. Binding experiments of tritiated FMLP to intact PMN performed at 22 degrees and 4 degrees showed high- and low-affinity FMLP sites with dissociation constant (Kd) values of approximately 2 X 10(-8) M and 10(-5) M respectively. Diclofenac did not significantly alter the low-affinity component but induced modifications of the high-affinity component which were different at 22 degrees and 4 degrees. At 22 degrees only the dissociation constant value was enhanced by diclofenac (competitive inhibition) whereas at 4 degrees both binding parameters (i.e. dissociation constant and number of available binding sites) were modified (mixed inhibition). Diclofenac was also shown to bind to PMN with a low affinity. This binding was not diminished at 4 degrees by various concentrations of FMLP which even increased the number of diclofenac binding sites on PMN at 22 degrees. These data suggest that diclofenac binding to PMN may decrease FMLP-induced PMN respiratory burst by interfering with the peptide recognition by specific FMLP receptors.

Anti-Inflammatory Agents, Non-Steroidal↗

Prenatal diagnosis of chronic granulomatous disease (CGD) in four high risk male fetuses.

Prenatal diagnosis of chronic granulomatous disease (CGD) was performed in four male high risk fetuses. The male sex was previously determined by an amniotic cell karyotype. Three kinds of test were performed on fetal blood obtained by umbilical venous puncture under fetoscopy at the 20th gestational week: nitroblue tetrazolium reduction (NBT) cytochemical test with phorbol myristate acetate (PMA) as activator; luminol enhanced chemiluminescence with activation by serum opsonized zymosan (STZ) or PMA; superoxide anion (0-2) production by measurement of the superoxide dismutase inhibitable reduction of cytochrome c with PMA as activator. Results were compared to those obtained in six fetuses investigated for other inherited diseases. In one case, absence of granulocyte defects was confirmed at birth. In three other cases, the tests showed deficient metabolic oxidative granulocytes. The pregnancy was terminated and the CGD diagnosis was confirmed on the products of abortion. The use of three different techniques performed on whole blood for CGD prenatal diagnosis is recommended instead of a single isolated test to ensure a higher confidence in the diagnosis.

Female↗