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C3b acceptors on macrophages: inhibition of Fc gamma-receptor-mediated phagocytosis by acceptor-bound C3b.

The binding of nascent human C3b (i.e. the fragment of C3 just after trypsin cleavage) to mouse peritoneal macrophages was demonstrated by immune adherence. Acceptor-bound C3b could be detected longer than 24 h on the cell membrane. The rosette formation and phagocytosis of SRBC coated with anti-SRBC rat IgG was inhibited by preincubation of the cells with C3 and trypsin (15 min, 37 degrees C). However, the phagocytosis of opsonized yeast particles was not influenced by acceptor-bound C3b, proving that C3b-C3b acceptor interaction did not alter the function of C3b-receptors. Acceptor-bound C3b on the macrophages failed to mediate phagocytosis of human 0,Rh+ red cells having C3b-receptors.

Animals↗

Localization of Fc gamma receptors and complement receptors CR1 on human peripheral nerve fibres by immunoelectron microscopy.

The localization of receptors for the Fc part of IgG (Fc gamma R) and for the complement C3b/C4b components (CR1) on human peripheral nerve fibres was investigated by indirect immunoperoxidase staining of frozen nerve sections with monoclonal antibodies. Transmission electron microscopy revealed that Fc gamma R and CR1 are localized to the entire surface membrane and inner membrane (axolemma) of the Schwann cell. Myelin and axons were not stained. The presence of Fc gamma R and CR1 in human Schwann cells adds further evidence for the immunocompetence of these cells.

Animals↗

In vitro stimulation of polymorphonuclear cell adhesion by ribomunyl and antibiotic + ribomunyl combinations: effects on CD18, CD35 and CD16 expression.

Several functions of polymorphonuclear cells (PMNs) require adhesion to occur. Various membrane proteins' functions such as CD18 (beta 2 chain of integrin), CD35 (CR1) and CD16 (F c gamma Receptor III) participate in adhesion. In vivo treatment with Ribomunyl (R), an immunomodulating agent, was shown to enhance adhesion and migration of PMNs. To explore the direct effect of R on PMNs, cells from healthy subjects were treated in vitro with R. A significant increase of PMN adhesion and expression of CD18 and CD35 molecules were observed with 50 and 100 micrograms/ml of R after 2 h incubation. However, R-treatment decreased the PMN reactivity towards anti-CD16 (F c gamma RIII) monoclonal antibody. The effect of R on adhesion and membrane molecule expression was independent of the presence of serum and of polymixin B. Thus, this effect cannot be due to lipopolysaccharide (LPS) contaminants and does not require interactions with serum components. In previous studies, it was shown that in vitro amoxicillin increased some PMN functions whereas josamycin decreased them. The in vitro incubation of PMNs with R and amoxicillin (100 micrograms/ml) potentiated the positive effect of amoxicillin on adhesion and the antibiotic counterbalanced the negative effect of R on CD16 expression. In addition, R compensated the negative effect of josamycin (100 micrograms/ml) on PMN adhesion and on CD18 and CD35 expression. This study indicates: (1) the direct effect of R on PMN adhesion and on expression of molecules involved in adhesive-mediated functions, and (2) the beneficial effect of the association of R with antibiotics which can stimulate PMN activity.

Adjuvants, Immunologic↗

Immunotoxicity of sulfuric acid aerosol: effects on pulmonary macrophage effector and functional activities critical for maintaining host resistance against infectious diseases.

Despite the widespread occurrence of acidic sulfur oxides in the ambient environment and their potential risks to human health, effects associated with pulmonary immune defenses have been poorly studied. The current in vivo study was designed to provide some insight into this relatively unexplored area by investigating the impact of inhaled sulfuric acid on immune defense mechanisms critical for maintaining pulmonary resistance against infectious diseases. Results of this study demonstrate that repeated inhalation of sulfuric acid reduces the uptake and intracellular killing of pathogenic bacteria by exposed pulmonary macrophages, and depresses the activity/production of important biological modifiers critical for maintaining pulmonary immunocompetence. These findings have important implications for human health, and may contribute to a better understanding of the possible mechanism(s) underlying the epidemiological evidence which suggests an association between total sulfates in the ambient air and increased incidence of acute bronchitis and lower respiratory illness in school-age children.

Aerosols↗

Myeloperoxidase reduces the opsonizing activity of immunoglobulin G and complement component C3b.

The effect of myeloperoxidase, hydrogen peroxide (H2O2) and a halide (Cl) on the opsonizing molecules in immunoglobulin G (IgG) and complement factor C3b was assayed. At concentrations of the enzyme (1 microgram/ml) that can be found in the extracellular fluid during inflammation, the myeloperoxidase-H2O2-Cl system inhibited the opsonizing effect of IgG and C3b measured as phagocytic uptake and superoxide generation. The effect was related to the enzymatic peroxidative activity of the protein. The presence of albumin (10 mg/ml) reduced the effect of myeloperoxidase with 10-20%. Taurine, which in the presence of myeloperoxidase-H2O2-Cl forms hydrophilic chloramines, and D-penicillamine, which scavenges HOCl, neutralize the inhibitory effect of myeloperoxidase. This suggests that either hypochlorous acid or lipophilic chloramines may exert its effect by oxidizing free sulphydryl groups exposed on the opsonizing ligands. Since the myeloperoxidase-H2O2-halide system also affects chemotactic factors, leukotrienes, proteinases and membrane receptors, the system may in several ways affect the development of the inflammatory response.

Complement C3b↗

Eicosanoids modulate CR1- and Fc-dependent bacterial phagocytosis.

It is known that macrophages produce large amounts of eicosanoids during phagocytosis and that pharmacological concentrations of prostaglandin E2 (PGE2) inhibit phagocytosis in several models. However, the physiological effect on phagocytosis of endogenous prostaglandins, produced during CR1- or FcR-mediated bacterial phagocytosis, remains unclear. In this study, we show that indomethacin inhibits the CR1- but not the FcR-dependent phagocytosis of bacteria by rat peritoneal cells in the same range of concentrations that inhibit the synthesis of PGE2, PGI2 and thromboxane A2. An exogenous supply of PGE2 and PGE1 (10(-10) to 10(-8) M) restored the CR1-mediated phagocytosis; higher concentrations were inhibitory. Our data indicate that PGE2 and/or PGI2, produced by rat peritoneal cells, are involved in CR1-dependent bacterial phagocytosis.

Alprostadil↗

Downregulated CD36 and oxLDL uptake and stimulated ABCA1/G1 and cholesterol efflux as anti-atherosclerotic mechanisms of interleukin-10.

OBJECTIVE: Marked anti-atheromatous effects of the anti-inflammatory cytokine interleukin-10 (IL-10) were observed in several lipid-driven animal models of arteriosclerosis. We therefore investigated whether IL-10 affects macrophage cholesterol handling. METHODS: Human THP-1 cells and peripheral monocytes served as macrophage models. Specific mRNA was quantified by real-time RT-PCR, protein expression by flow cytometry and Western blotting. Cellular cholesterol handling was studied by lipoprotein-facilitated uptake and efflux assays. IL-10 effects were also studied in cells transfected with liver X receptor alpha (LXRalpha)-siRNA or a LXRalpha response element (LXRE) reporter construct. RESULTS: Picomolar IL-10 suppressed basal and peroxisome proliferator-activated receptor gamma (PPARgamma)-stimulated transcription of the scavenger receptor CD36 due to reduced PPARgamma protein expression. In contrast, IL-10 stimulated transcription of the active cellular cholesterol exporters ATP-binding cassette transporters A1 and G1 (ABCA1, ABCG1) and the LDL receptor, whereas scavenger receptor-BI (SR-BI) was unchanged. The reduction of CD36 and stimulation of ABCA1 expression was confirmed in human monocytes. Thereby, IL-10 prevented cellular cholesterol overloading from oxidized LDL (oxLDL) and enhanced efflux to apoA-containing particles initiating reverse cholesterol transport. Experiments with inhibitors, LXRalpha silencing and the LXRE reporter gene construct supported the proximal transmission of the IL-10 effect on ABCA1 by the IL-10 receptor/signal transducer and activator of transcription 3 (STAT3) pathway and distal cross-talk to the LXRalpha and PPARalpha/retinoic acid X receptor (RXR) and cAMP/protein kinase A (PKA) pathways. CONCLUSIONS: In addition to immune and anti-inflammatory actions, IL-10 redirects macrophage cholesterol handling towards reverse cholesterol transport, which contributes to its anti-atherosclerotic action.

ATP Binding Cassette Transporter 1↗

Possible role of factor XIII subunit A in Fcgamma and complement receptor-mediated phagocytosis.

Besides its traditional role in hemostasis, factor XIII subunit A (FXIII-A) is supposed to function as a cellular transglutaminase and to be involved in certain intracellular processes, including cytoskeletal remodeling. To investigate its intracellular role, the aim of the present study was to follow changes in FXIII-A production in combination with the receptor-mediated phagocytic activities of monocytes/macrophages and to examine the phagocytic functions of monocytes in patients with FXIII-A deficiency. Human blood monocytes were isolated from the buffy coats of healthy volunteers and cultured for 4 days. The FcgammaR-mediated phagocytosis of sensitized erythrocytes (EA) and the complement receptor (CR)-mediated phagocytosis of complement-coated yeast particles were studied during monocyte/macrophage differentiation. Changes in the gene expression of FXIII-A were detected by real-time quantitative RT-PCR. FXIII-A protein production was investigated with fluorescent image analysis at single cell level and Western immunoblot analysis. Both the FcgammaR and CR-mediated phagocytosis increased during culturing, which peaked on day 3. The phagocytic activity of the cells could be markedly inhibited with monodansylcadaverine, an inhibitor of the transglutaminase-induced crosslinking of proteins. The phagocytosis of EA, complement-coated and uncoated yeast particles was found to be strongly diminished in monocytes of FXIII-A deficient patients. The phagocytic functions of cultured cells showed a change in parallel with the alterations in FXIII-A mRNA expression, as well as with that in FXIII-A in protein synthesis detected by image and Western immunoblot analyses in concert. Our results suggest that FXIII-A plays a role in the Fcgamma and complement receptor-mediated phagocytic activities of monocytes/macrophages.

Blotting, Western↗

Complement regulators in extraocular muscle and experimental autoimmune myasthenia gravis.

Complement activation at motor endplates is the primary effector mechanism in myasthenia gravis (MG). In this study, we evaluated whether differences in gene transcript levels and protein expression of cell-surface complement regulators could be a factor in the increased susceptibility of extraocular muscle (EOM) compared to other skeletal muscles to MG. Experimental autoimmune MG (EAMG) was induced in mice by administration of a monoclonal antibody (mAb) directed toward the acetylcholine receptor (AChR). Standard RT-PCR and real-time PCR (qPCR) were used to assess mRNA levels of decay-accelerating factor (DAF), CD59, and complement receptor 1-related gene/protein y (Crry). Gene transcript levels of the alpha- and gamma-subunits of the AChR were also evaluated by qPCR. Protein expression of the three intrinsic complement regulators at the neuromuscular junction was assessed by immunohistochemistry. Under constitutive conditions by RT-PCR, no significant differences were detected, but qPCR, EOM showed lower mRNA levels of all three complement regulators, but higher levels of alpha- and gamma-subunit gene transcripts. With EAMG, significant decreases in mRNA levels of all three complement regulators as well as AChR subunits occurred in EOM, but not in the diaphragm. Immunoreactivity for all three complement regulators was highly concentrated at diaphragm junctions, whereas it was less intense or absent at EOM junctions. With EAMG, immunoreactivity for Crry and DAF increased at diaphragm junctions and for DAF at EOM junctions. Diminished intrinsic complement regulatory activity may contribute to the susceptibility of EOM to MG. Our findings suggest that complement inhibitor-based therapies could be useful in treating ocular manifestations of MG.

Animals↗

Two polymorphisms in the fracalkine receptor CX3CR1 are not associated with peripheral arterial disease.

OBJECTIVE: CX(3)CR1 is a novel chemokine receptor located on monocytes. Recently, two polymorphisms were linked to coronary artery disease (CAD), V249I and T280M. Carriers of at least one I-allele or one M-allele were found less frequently among patients with CAD compared to controls. The aim of the present study was to investigate the influence of these polymorphisms on the development of peripheral arterial disease (PAD). METHODS: 522 human subjects with documented PAD and 522 age and sex matched controls were genotyped by polymerase chain reaction followed by restriction digestion. RESULTS: Adjusted odds ratio (OR) of carriers of the I-allele for PAD was 1.34 (95% confidential interval (CI) from 0.86 to 2.09; P=0.19). The OR associated with the M-allele for PAD was 0.65 (95% CI from 0.41 to 1.04; P=0.07), when tested in the same regression analysis with the V249I genotypes. The genotypes were not linked to age at onset or severity of the disease. A subgroup of 137 CAD patients of whom 131 could be genotyped and who did not differ in baseline parameters from the remaining PAD patients, showed VV-genotype in 52.0%, VI in 42.7% and II in 5.3% CAD (OR associated with the I-allele for CAD: 1.29; 95% CI: 0.66-2.51; P=0.46). The distribution of the T280M genotypes was 67.1, 29.8, 3.1% (TT, TM, MM) also showing no association with CAD (OR=0.77; 95% CI 0.36-1.46; P=0.37). CONCLUSION: In this study we could not detect a difference in genotype frequencies of the V249I and T280M polymorphisms in CX(3)CR1 between PAD patients and controls. CAD concomitant with PAD was also not affected by the I- or the M-allele.

Age Distribution↗

Phagocytosis by the murine testicular TM4 Sertoli cell line in culture.

To investigate phagocytosis, an assay enabling flow cytometric analysis of single cells having internalized fluorescent carboxyl microspheres was employed. Greater than 80% of murine testicular Sertoli line (TM4) cells were found to phagocytose one or more microspheres within six hours and electron microscopy confirmed carboxyl microsphere internalization. This level was equivalent to that of a macrophage-like cell line and much greater than the levels of testicular Leydig (TM3) cells. Reducing extracellular calcium or using a calcium channel blocker profoundly inhibited phagocytosis suggesting that phagocytosis by Sertoli cells requires extracellular Ca++. Although follicular stimulating hormone, luteinizing hormone, and testosterone had no significant effects on Sertoli cell phagocytosis, insulin, epidermal growth factor, and hydrocortisone enhanced activity. In contrast, beta-endorphin and 8-bromoadenosine-cyclic monophosphate had an inhibitory effect. In contrast to augmenting macrophage phagocytosis, 1,25-(OH)2D3, interferon-gamma, prostaglandin E2, and lipopolysaccharides, had no apparent effect on that by Sertoli cells. Additionally, neither C3bi receptors (Mac-1 antigen) nor FcRII could be detected on Sertoli cells. In total, the findings demonstrated that the murine Sertoli line exhibits potent phagocytic function and suggest the regulation of this activity may differ from that in "professional" phagocytic cells.

8-Bromo Cyclic Adenosine Monophosphate↗

Neuronal activity and its influence on developmentally regulated GABA(A) receptor expression in cultured mouse cerebellar granule cells.

Mouse cerebellar granule cells (CGCs) were cultured in either non-depolarising (5 mM KCl, '5K') or depolarising (25 mM KCl, '25K') media. CGCs at 5K developed an elaborate network of processes and formed compact cell aggregates, whilst at 25K, cell aggregation was rarely observed. GABA(A) receptor (GABAR) expression was significantly affected by the culture conditions. Depolarisation resulted in a approximately 55% reduction in the expression of total specific [(3)H]Ro15-4513 binding sites, largely due to a >85% loss of the flunitrazepam-insensitive (BZ-IS) subtype of binding sites. The number of flunitrazepam-sensitive (BZ-S) [(3)H]Ro15-4513 binding sites expressed and the K(D) of [(3)H]Ro15-4513 to either GABAR subtype were not significantly affected. The BZ-S subtype expressed by 5K CGCs was essentially all type I, as expected of mature CGCs, however at 25K, these were predominantly type II (approximately 70%) and zolpidem-insensitive (approximately 30%)-pharmacological finger-prints of immature CGCs. By immunoblotting we determined that CGCs cultured at 25K expressed GABAR alpha1, alpha6 and beta3 subunits at 14, 3 and 167% of 5K levels, respectively. GABAR beta2 subunits, however, were barely detectable. The changes in GABAR subunit expression were paralleled by similar changes in the steady-state levels of the subunit mRNAs. The switch from type I to type II BZ-S pharmacology upon depolarisation was mirrored by a switch in gene expression from alpha1 (12% of 5K) to alpha3 (371% of 5K). Interestingly, although depolarisation reduced beta2 subunit mRNA to 25% of 5K, beta2 protein was undetectable.Thus, we have shown that electrically active (5K) mouse CGCs differentiate in vitro to express a GABAR profile expected of adult CGCs in vivo. Chronically depolarised, electrically silent CGCs appear to be developmentally arrested, expressing some GABAR characteristics of prenatal CGCs. This model system should prove invaluable for elucidating signalling pathways orchestrating GABAR differentiation.

Animals↗

Hypoxemia up-regulates interleukin-8 stimulated phagocytosis of polymorphonuclear leukocytes by differential regulation of CD32w and CD35 messenger RNA expression.

BACKGROUND: The purpose of these studies was to investigate the effect of hypoxemia on interleukin-8 (IL-8) regulation of phagocytosis and surface opsonic receptor expression of whole blood polymorphonuclear leukocytes (PMNs). METHODS: Whole blood PMNs were rendered hypoxemic (PvO2 less than 15 mm Hg) or normoxic (PvO2 equals 60 to 80 mm Hg) and incubated with IL-8 (50 ng/ml) before the sequential addition of serum-opsonized fluorescent microspheres (emission wavelength, 560 nm) and fluorescein isothiocyanate-conjugated mouse anti-human CD32w or CD35 antibodies (emission wavelength, 513 nm). Concomitant two color flow cytometric analysis was then performed to measure the mean channel fluorescence (MCF) and the percentage of positive PMNs. Steady-state messenger RNA levels for CD32w and CD35 were quantitated by means of Northern blot analysis by using total RNA extracted from purified PMNs from each study group. RESULTS: Hypoxemia increased IL-8 stimulated PMN phagocytosis (percentage of positive PMNs, 38 +/- 1.5 versus 27 +/- 2.0, MCF, 5491 +/- 182 versus 4060 +/- 121 for hypoxemia plus IL-8 versus normoxia plus IL-8, respectively; p < 0.05). Hypoxemia increased IL-8 stimulated PMN expression of CD32w and CD35 (MCF CD32w, 791 +/- 105 versus 336 +/- 81; MCF CD35, 542 +/- 87 versus 254 +/- 41; p < 0.05). Under normoxic conditions IL-8 decreased messenger RNA levels for both CD32w and CD35, but under hypoxemic conditions IL-8 increased messenger RNA levels only for CD32w. CONCLUSIONS: Hypoxemia directly regulates IL-8 control of PMNs by increasing phagocytosis, receptor expression, and messenger RNA for these receptors. Studies investigating cytokine regulation of PMN function need to take into account oxygen tension when establishing the fundamental effects of cytokines on PMN physiology.

Cytokines↗

Hypoxemia/reoxygenation down-regulates interleukin-8-stimulated bactericidal activity of polymorphonuclear neutrophil by differential regulation of CD16 and CD35 mRNA expression.

BACKGROUND: The purpose of this study was to determine the effects of hypoxemia/reoxygenation (H/R) on the regulation of interleukin-8 (IL-8)-stimulated human polymorphonuclear neutrophil (PMN) bactericidal activity. METHODS: Venous human whole blood was rendered normoxic (Pvo2 saturation 60% to 80%), hypoxemic (Pvo2 saturation, less than 15%), or H/R (Pvo2 saturation more than 97%) by dialyzing the blood against a gas mixture of N2/H2/CO2 +/- 30% O2. Two hundred microliter aliquots from each study group were incubated with IL-8 (50 ng/ml) for 45 minutes before fluorescein isothiocyanate-conjugated mouse antihuman CD16 or CD35 antibodies were added. Bactericidal activity was measured with the release of 51Cr from labeled bacteria at 1:1, 5:1, and 10:1 PMN-target ratios. Steady-state mRNA levels for CD16 and CD35 were quantified by Northern blot analyses. RESULTS: H/R reduced PMN bactericidal activity compared with hypoxemic levels for staphylococcus aureus (48 +/- 5.6 versus 27 +/- 3.3) and Escherichia coli (58 +/- 7.1 versus 33 +/- 4.2). H/R reduced the surface expression of CD16 but not CD35 (mean channel fluorescence CD16, 610 +/- 70 versus 310 +/- 30 for hypoxemia versus H/R; p < 0.01). After H/R was performed, IL-8 decreased mRNA levels for CD16 but not for CD35 compared with levels seen during hypoxemia + IL-8. CONCLUSIONS: H/R down-regulates IL-8-stimulated PMN bactericidal activity by decreasing steady-state mRNA levels and surface expression of CD16. PMN bactericidal capability after H/R + IL-8 is primarily complementary and not Fc gamma receptor dependent.

Blood Bactericidal Activity↗

Altered expression of IgG and complement receptors indicates a significant role of phagocytes in atopic dermatitis.

BACKGROUND: Strict dietary precautions against allergic sensitization may benefit a group of predisposed children. OBJECTIVE: To develop new strategies for identifying these children, a better understanding of the processes that initiate sensitization and regulate and perpetuate the inflammatory response is needed. METHODS: We measured the expression of the receptors for the constant (Fc) region of IgG (Fc gamma RI, Fc gamma RII, and Fc gamma RIII) and that for the complement fragments C3b and C3bi (CR1 and CR3) in neutrophils and monocytes from 39 children with atopic dermatitis, 17 disease control patients with acute infections, and 17 healthy control subjects. The capacity of phagocytes to produce reactive oxygen species was also determined. To find the best way of discriminating the patients with atopic dermatitis from control subjects, a stepwise logistic binary regression model was made. RESULTS: The stepwise logistic regression analysis was based on differences in individual receptor expression between the study groups. Because acute infections strongly affected receptor expression in both neutrophils and monocytes, to avoid diagnostic bias, children with acute infections were excluded from the analysis. The combination of the receptors CR1 in neutrophils and Fc gamma RI and Fc gamma RII in monocytes was the best indicator of atopic dermatitis. A significant correlation between the expression of CR1 in neutrophils and in monocytes, as well as reactive oxygen species production of phagocytes, and the severity of the eczema was detected. CONCLUSIONS: These results suggest that a distinct receptor profile of phagocytic cells can be characterized in patients with atopic dermatitis, providing a new direction to the search for early identification of children predisposed to allergic sensitization.

Causality↗

Slowly progressive systemic mastocytosis with high mast-cell burden and no evidence of a non-mast-cell hematologic disorder: an example of a smoldering case?

A 43-year-old man with extensive systemic mastocytosis with poor prognostic indicators but no overt hematologic abnormality is described. This patient's clinical presentation and course are consistent with the newly proposed 'smoldering mastocytosis' category. Long-term follow-up of patients is needed to determine whether they may be at higher risk for progression into more aggressive categories.

Adult↗

Ribosomal proteins sustain morphology, function and phenotype in acute myeloid leukemia blasts.

Translation of mRNA is a prerequisite for cell proliferation, differentiation and viability. We have studied the effect of ribosome protein factors (GPRE) on acute myeloid leukemia (AML) blast cells. Ribosomes were isolated from MPC-11 cells using ultra-centrifugation. GPRE were extracted using a high KCl procedure. Blast cells from six AML patients were grown in suspension cultures for 24 and 96 h. GPRE or granulocyte macrophage-colony stimulating factor (GM-CSF) were added at the start of the incubation. GPRE, but not GM-CSF, prevented chromatin condensation and fragmentation of blast cell nuclei in AML-M2, -M4 and -M5 and the loss of nucleoli in AML-M2 and -M5. The fraction of phagocytosing blast cells in AML-M1, -M2, -M4 and -M5 was increased by GPRE. GPRE stimulated opsonin-dependent and -independent attachment and internalisation of N. meningitidis. GPRE increased the fraction of blasts expressing CD11b and CD32 in AML-M2 and -M5. GPRE diminished the fraction of AML-M5 cells bearing CD35 and CD32. GPRE also decreased the fraction of CD11c-bearing AML-M2 and -M5 cells. GM-CSF potentiated effects of GPRE in AML-M1, -M2, -M4 and -M5. GPRE and GM-CSF in combination affected phagocytosis and surface antigen expression in blast cells that were not influenced by either factor alone. Neither GPRE nor GM-CSF induced terminal differentiation or DNA-synthesis. We conclude that GPRE affects AML blast cell morphology, function and surface molecule expression, possibly by inhibiting apoptosis. The effects of GPRE may be mediated by ribosomal proteins that regulate translation and modulate the subcellular distribution of mRNA species.

Acute Disease↗