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D J Loegering

Publications and source records attributed to D J Loegering.

At least 19 recordsLinked to original sources

Respiratory burst capacity of activated macrophages is resistant to depression by erythrocyte phagocytosis.

The present study evaluated whether macrophage activation would reduce the depression in the capacity of macrophages to produce H2O2 following EIgG phagocytosis. Macrophage activation was accomplished by exposing inflammatory rat peritoneal macrophages to 10 units of IFN gamma for 72 h. IFN gamma treatment caused a four to fivefold increase in phorbol myristate acetate (PMA)-triggered H2O2 production, but Fc receptor phagocytic function was unaltered. IFN gamma-activated macrophages were able to phagocytize a greater number of EIgG before a decrease in PMA-triggered H2O2 production was observed and the level of H2O2 production did not fall below that of untreated-inflammatory macrophages that had not received an EIgG phagocytic challenge. The depression in Fc receptor phagocytic function was unaltered with macrophage activation. These results indicate that activated macrophages are resistant to the depression of respiratory burst capacity caused by erythrocyte phagocytosis and suggests that IFN gamma treatment may be effective in preventing the impairment of host defense against bacterial infection that is associated with erythrocyte phagocytosis.

Animals

Corynebacterium parvum can reverse the depression of macrophage hydrogen peroxide production caused by erythrocyte phagocytosis.

Our previous studies have shown that the phagocytosis of IgG-coated erythrocytes (EIgG) in vivo increases the mortality rate with bacterial infection, and EIgG phagocytosis in vitro depresses phorbol myristate acetate (PMA)-triggered H2O2 production. The present study was undertaken to determine if the depression of H2O2 production caused by EIgG phagocytosis could be reversed by exposing macrophages to priming agents. Macrophages exposed to 100 micrograms/ml of C. parvum, it's pyridine-soluble extract (PE), or the pyridine extract residue (PER) for 1 hr showed an enhanced production of H2O2 in response to PMA triggering. The priming effect of C. parvum, PE, and PER lasted for 3-6 hr. 18 hr after exposure to C parvum or PER, PMA-triggered H2O2 production was depressed, however PE did not have this effect. The priming effect of C parvum was not prevented by cycloheximide. EIgG phagocytosis caused a dose dependent depression of PMA-triggered H2O2 production. When macrophages were exposed to C. parvum, PE, or PER following EIgG phagocytosis, the priming of PMA-triggered H2O2 production was reduced but H2O2 production was maintained at levels equal to or greater than that of control macrophages. These results show that phagocytosis did not prevent the action of priming agents on macrophage respiratory burst capacity, and suggests that such agents may preserve macrophage bactericidal function following phagocytosis.

Animals

Macrophage hydrogen peroxide production and phagocytic function are decreased following phagocytosis mediated by Fc receptors but not complement receptors.

Previous in vivo and in vitro studies have shown that the phagocytosis of IgG-coated erythrocytes results in a depression of macrophage function. The present study compared the effect of phagocytosis mediated by Fc receptors with that mediated by complement receptors. The phagocytosis of IgG-coated erythrocytes by elicited peritoneal macrophages depressed their capacity to produce hydrogen peroxide as well as phagocytic function. Phagocytosis of erythrocytes coated with IgM and complement had neither of these effects. These results implicate the intracellular signaling that results from Fc receptor mediated phagocytosis in the depression of macrophage function that is caused by phagocytosis.

Animals

Scavengers of reactive oxygen intermediates do not mediate the depression of macrophage hydrogen peroxide production caused by erythrocyte phagocytosis.

Our previous studies have shown that a phagocytic challenge with IgG-coated erythrocytes (EIgG) depressed macrophage triggered H2O2 production in vitro, and in vivo there was a decrease in the survival rate following bacteremia. The phagocytosis of an equal number of IgG-coated erythrocyte ghosts had none of these effects, indicating that the contents of the erythrocytes are important for these effects. The present study evaluated the role of the scavengers of reactive oxygen intermediates within erythrocytes in the depression of H2O2 production triggered with phorbol myristate acetate following a phagocytic challenge with EIgG. Elicited rat peritoneal macrophages (PM) were challenged with EIgG prepared from normal E or E with inactivated catalase, depleted glutathione, hemoglobin converted to methemoglobin, or fixed with formaldehyde. The depression of triggered H2O2 production was similar when equal numbers of normal EIgG and EIgG with inactivated scavengers were phagocytized. When the phagocytic challenge with normal EIgG was carried out in the presence of cytochalasin B, no depression of triggered H2O2 production was observed. Cytochalasin B partially blocked the phagocytosis of EIgG, so that with larger doses of EIgG there was sufficient ingestion of EIgG to depress H2O2 production in untreated PM. These results indicate that the scavengers of reactive oxygen intermediates present in erythrocytes are neither required nor sufficient to depress H2O2 production by macrophages.

Animals

Effect of phagocytosis of erythrocytes and erythrocyte ghosts on macrophage phagocytic function and hydrogen peroxide production.

Our previous studies have shown that an in vivo phagocytic challenge with IgG-coated erythrocytes can depress Kupffer cell complement and Fc receptor function, as well as decrease the survival rate following endotoxemia and bacteremia. In an effort to better understand the mechanism underlying these in vivo findings, the present study evaluated the in vitro effects of a phagocytic challenge with either IgG-coated erythrocytes (EIgG) or erythrocyte ghosts (GIgG) on macrophage phagocytic and respiratory burst activity. Elicited rat peritoneal macrophage (PM) monolayers were challenged with varying doses of EIgG, then the noninternalized EIgG were lysed hypotonically and the monolayers incubated for an additional hour prior to determining phagocytic function and PMA-stimulated hydrogen peroxide production. Challenge of PM with 1 x 10(6) EIgG per well had no effect, but challenge with 1 x 10(7) or 1 x 10(8) EIgG per well caused a dose-dependent depression of phagocytic function or hydrogen peroxide production. GIgG were formed by hypotonically lysing EIgG bound to PM at 4 degrees C. The bound GIgG were phagocytized during a subsequent incubation at 37 degrees C. Challenge with GIgG depressed phagocytic function only with the highest challenge dose tested (1 x 10(8) per well) and did not depress hydrogen peroxide production. The observation that prior phagocytic challenge with EIgG depressed macrophage function to a greater extent than challenge with GIgG supports our previous in vivo observations. Furthermore, these studies suggest that the internalization of erythrocyte contents, and not phagocytosis per se, plays an important role in determining macrophage host defense function.

Animals

Determination of Kupffer cell Fc receptor function in vivo following injury.

This study was carried out to determine whether Kupffer cell Fc receptor function is depressed after injury. Three approaches to the determination of Fc receptor function were evaluated: IgG-coated erythrocytes (EIgG) were used as the receptor probe with a perfused liver system, EIgG were used as the receptor probe in vivo, and small aggregates of IgG (AIgG) were used as the receptor probe in vivo. Nearly half of the injected dose of EIgG was taken up by the perfused liver (nonrecirculating, serum-free system). In contrast, only 2.6% of erythrocytes not coated with IgG were taken up, and only 5.6% of erythrocytes coated with IgM were taken up by the perfused liver. Thus, there was little nonspecific or complement-dependent uptake of EIgG by the liver. The uptake of EIgG by the perfused liver was depressed following thermal injury, endotoxemia, and the phagocytosis of EIgG. These results were interpreted as indicating that Kupffer cell Fc receptor function was depressed under these conditions. The results obtained with the hepatic uptake of EIgG in vivo were very similar to those with EIgG in the perfused liver. However, since it was found that complement receptors as well as Fc receptors were probably involved in the in vivo clearance of EIgG, these results could be due to a depression of one or both of these receptors. The hepatic uptake of AIgG was not depressed by complement depletion, but was decreased by the injection of large aggregates of IgG. However, the hepatic uptake of AIgG was not depressed following thermal injury, endotoxemia, or the phagocytosis of EIgG. Thus, AIgG was not sensitive to the effects of injury on Kupffer cell function, whereas the uptake of EIgG by the perfused liver may provide an indication of Kupffer cell Fc receptor function. The depression of Kupffer cell Fc receptor function following injury may contribute to the impairment of host defense caused by injury.

Animals

Effect of ibuprofen and dexamethasone on Kupffer cell complement receptor function after endotoxemia and the phagocytosis of erythrocytes.

Depression of Kupffer cell complement receptor (CR) function is associated with several states of depressed host defense. This study was carried out to determine if ibuprofen and dexamethasone, which decrease the mortality rate following endotoxemia, could prevent the depression of CR function caused by endotoxemia and the phagocytosis of antibody-coated erythrocytes (EIgG). The depression of CR function caused by endotoxin was completely prevented by the administration of ibuprofen or dexamethasone. Thus, the ability of these drugs to prevent the depression of macrophage function may contribute to their salutory effects during endotoxin shock. In contrast to the effect with endotoxemia, the depression of CR function caused by the phagocytosis of EIgG was not modified by pretreatment with ibuprofen or dexamethasone. Additional studies demonstrated that the depression of CR function caused by EIgG was probably not due to EIgG in the blood or bound to Kupffer cells, interfering with the receptor probe for access to the CR. This study has shown that ibuprofen and dexamethasone can prevent the depression of CR function caused by endotoxin but not the depression caused by the phagocytosis of EIgG. These results suggest that different mechanisms mediate the depression of CR function caused by endotoxin and the phagocytosis of EIgG.

Animals

Effect of beta-receptor stimulation on Kupffer cell complement receptor clearance function.

The clearance function of complement receptors on Kupffer cells is depressed after several forms of experimental injury. In vitro studies have shown that stimulation of beta-receptors on macrophages causes a depression of several aspects of macrophage function. The present study evaluated the possibility that the increase in sympathetic activity associated with injury contributes to the depression of Kupffer cell complement receptor function. Complement receptor function was assessed in rats from the hepatic uptake of rat erythrocytes coated with IgM. Isoproterenol caused a depression of receptor function when infused at a rate of 5.0 and 0.5 micrograms/kg/min for 15 min but not after infusion of 0.05 micrograms/kg/min. Infusion of isoproterenol, norepinephrine, and epinephrine at 0.5 micrograms/kg/min depressed receptor function by 41%, 38%, and 29%, respectively. Beta-receptor blockade with propranolol prevented the depression of receptor function caused by isoproterenol and norepinephrine. Thermal injury depressed receptor function by 65%, and this depression was reduced to 35% by beta-receptor blockade. Therefore, stimulation of beta-receptors on macrophages by increased circulating levels of catecholamines after injury could contribute to the depression of Kupffer cell function caused by injury.

Animals

Kupffer cell complement receptor clearance function after surgical injury and phagocytosis of immune complexes: effect of changes in plasma fibronectin.

The present study evaluated the effect of changes in plasma fibronectin levels on the degree of depression of in vivo clearance function of Kupffer cell complement receptors after injury and the phagocytosis of immune complexes. In vitro studies have suggested that fibronectin may act as an opsonin for the clearance of immune complexes from the blood by binding to C1q and may influence the expression and activation of immune receptors on macrophages. Complement receptor clearance function was assessed in rats from the hepatic uptake of rat erythrocytes coated with antierythrocyte IgM. Increasing plasma fibronectin by the injection of purified fibronectin or decreasing fibronectin by the injection of gelatin had no effect on complement receptor function in otherwise normal animals. Surgical injury depressed both plasma fibronectin levels and complement receptor function. Injection of fibronectin at the time of injury prevented the depression of receptor function; however, when fibronectin was given 1 hour after injury, receptor function remained depressed even though fibronectin levels were increased. The phagocytosis of immune complexes (IgG-coated rat erythrocytes [EIgGs]) depressed complement receptor function but did not depress plasma fibronectin levels. The depression of receptor function caused by the phagocytosis of EIgGs was prevented by administering fibronectin and was potentiated by administering gelatin, which decreased plasma fibronectin levels. Therefore, plasma fibronectin concentrations can influence in vivo Kupffer cell complement receptor function under certain conditions that lead to the depression of complement receptor function.

Animals

Effect of Kupffer cell phagocytosis of erythrocytes and erythrocyte ghosts on susceptibility to endotoxemia and bacteremia.

The phagocytosis of erythrocytes by macrophages has previously been shown to depress macrophage function. In this study we compared the effect of the phagocytosis of erythrocytes and erythrocyte ghosts by Kupffer cells on the duration of the depression of complement receptor clearance function and host defense against endotoxemia and bacteremia. Phagocytosis of erythrocytes and erythrocyte ghosts was induced in rats by the injection of rat erythrocytes or erythrocyte ghosts coated with anti-rat erythrocyte immunoglobulin G (EIgG and GIgG, respectively). The hepatic uptake of EIgG and GIgG (17.4 X 10(8)/100 g) occurred during the first 30 min after injection. The digestion of phagocytized EIgG and GIgG, as assessed by electron microscopy, was complete at 24 and 3 h after injection, respectively. The depression of Kupffer cell complement receptor clearance function caused by EIgG and GIgG returned to normal by 6 h after injection of EIgG and by 3 h after injection of GIgG. Phagocytosis of EIgG depressed the survival rate after endotoxemia and bacteremia when endotoxin or bacteria were injected at 30 min after EIgG. The survival rate returned to normal when the endotoxin and bacteria were injected at 12 and 6 h after the EIgG, respectively. Phagocytosis of GIgG did not depress the survival rate after endotoxemia and bacteremia. Thus, compared with erythrocytes, erythrocyte ghosts are more rapidly digested after phagocytosis, depress complement receptor function for a shorter period of time, and cause less depression of host defense. These findings indicate that the contents of erythrocytes play an important role in the impairment of host defense caused by the phagocytosis of erythrocytes by Kupffer cells.

Animals

Hepatic macrophage complement receptor clearance function following injury.

Previous work has demonstrated that in vivo hepatic macrophage complement receptor clearance function is depressed following thermal injury. The present study was carried out to determine if complement receptor function depression is associated with other states of depressed host defense. Hepatic complement receptor clearance function was determined from the hepatic uptake of rat erythrocytes coated with antierythrocyte IgM (EIgM) in rats. Receptor function was determined following cannulation of a carotid artery, laparotomy plus enterotomy, hemorrhagic shock, trauma, thermal injury, acute bacteremia, acute endotoxemia, and injection of erythrocyte stroma, gelatinized lipid emulsion, or colloidal carbon. Hepatic uptake of EIgM was depressed following each of these experimental interventions except arterial cannulation. This effect was shown not to be due to a decrease in hepatic blood flow or depletion of complement and was therefore due to a depression in hepatic macrophage complement receptor clearance function. Thus, impairment of hepatic macrophage complement receptor function is associated with several states of depressed host defense.

Animals

Left ventricular function during lethal and sublethal endotoxemia in swine.

Our previous studies suggested that after a median lethal dose (LD50) of endotoxin, cardiac contractility was depressed in nonsurviving dogs. The canine cardiovascular system is unlike humans in that dogs have a hepatic vein sphincter that is susceptible to adrenergic stimulation capable of raising hepatic and splanchnic venous pressures. We retested the hypothesis that lethality after endotoxin administration is associated with cardiac contractile depression in pigs, because the hepatic circulation in this species is similar to that of humans. We compared cardiac mechanical function of pigs administered a high dose (250 micrograms/kg) or a low dose (100 micrograms/kg) endotoxin by use of the slope of the end-systolic pressure-diameter relationship (ESPDR) as well as other measurements of cardiac performance. In all the pigs administered a high dose, ESPDR demonstrated a marked, time-dependent depression, whereas we observed no significant ESPDR changes after low endotoxin doses. The other cardiodynamic variables were uninterpretable, due to the significant changes in heart rate, end-diastolic diameter (preload), and aortic diastolic pressure (afterload). Plasma myocardial depressant factor activity accumulated in all endotoxin-administered animals, tending to be greater in the high-dose group. In this group, both subendocardial blood flow and global function were depressed, whereas pigs administered the low dose of endotoxin demonstrated slight, but nonsignificant, increases in flow and function. These observations indicate that myocardial contractile depression is associated with a lethal outcome to high doses of endotoxin. One possible mechanism for this loss of contractile function may be a relative hypoperfusion of the subendocardium.

Animals

Kupffer cell complement receptor clearance function and host defense.

Kupffer cells are well known to be important for normal host defense function. The development of methods to evaluate the in vivo function of specific receptors on Kupffer cells has made it possible to assess the role of these receptors in host defense. The rationale for studying complement receptors is based on the proposed important role of these receptors in host defense and on the observation that the hereditary deficiency of a complement receptor is associated with recurrent severe bacterial infections. The studies reviewed here demonstrate that forms of injury that are associated with depressed host defense including thermal injury, hemorrhagic shock, trauma, and surgery also cause a decrease in complement receptor clearance function. This decrease in Kupffer cell receptor clearance function was shown not to be the result of depressed hepatic blood flow or depletion of complement components. Complement receptor function was also depressed following the phagocytosis of particulates that are known to depress Kupffer cell host defense function. Endotoxemia and bacteremia also were associated with a depression of complement receptor function. Complement receptor function was experimentally depressed in uninjured animals by the phagocytosis of IgG-coated erythrocytes. There was a close association between the depression of complement receptor clearance function and increased susceptibility to the lethal effects of endotoxin and bacterial infection. These studies support the hypotheses that complement receptors on Kupffer cells are important for normal host defense and that depression of the function of these receptors impairs host defense.

Animals

Prostaglandin E2 and muscle protein turnover in Pseudomonas aeruginosa sepsis.

Rats were injected intraperitoneally with Pseudomonas aeruginosa (septic group) or sterile 0.9% NaCl (controls). Soleus muscles were excised 7 h later, and muscle prostaglandin E2 release and tyrosine release were measured in vitro. Muscles of septic rats exhibited 226-326% higher release of prostaglandin E2 and 54-84% higher net proteolysis than muscles of controls. Inclusion of aspirin or indomethacin in the incubation medium almost completely inhibited prostaglandin E2 production, but had no effect on net proteolysis in muscles from either group. Inclusion of cycloheximide, a protein synthesis inhibitor, increased tyrosine release of control muscles by 42%, whereas no statistically significant increase was observed in muscles from infected rats. However, total proteolytic rate, indexed by tyrosine release in the presence of cycloheximide, was 22% higher in muscles of septic rats compared to that of control animals. Concomitantly, inclusion of cycloheximide inhibited prostaglandin E2 release by muscles of infected rats by 91% and that of controls by 65%. It is concluded that muscles of septic animals exhibit a pronounced stimulation of prostaglandin E2 release and net proteolysis, combined with a small increase in total proteolytic rate, the stimulation of net proteolysis is mainly due to inhibition of protein synthesis, the increases in net and total proteolysis appear to be independent of prostaglandin E2 production, cycloheximide has a previously unrecognized inhibitory effect on muscle prostaglandin E2 production.

Animals

Reticuloendothelial-depressing substance: studies on the mechanism of action.

This study was carried out to evaluate the mechanism of action of a reticuloendothelial (RE)-depressing substance. This RE-depressing substance was obtained from the plasma of dogs subjected to 3 hr of intestinal ischemia. RE-depressing substance was partially purified by dialysis and reverse-phase column chromatography. The assay of RE-depressing activity was based on the depression of the rate of clearance of colloidal carbon from the blood of rats or mice. The effect of RE-depressing substance on three other RE system (RES) test particles (gelatinized lipid emulsion, formalinized sheep erythrocytes, and IgM-coated erythrocytes) was determined. RE-depressing substance did not affect the clearance rate or the organ localization of these three test particles. Therefore, RE-depressing substance affected only the clearance of colloidal carbon. Since platelet aggregation has been shown to contribute to the clearance of colloidal carbon, the effect of RE-depressing substance on platelet aggregation was evaluated. RE-depressing substance depressed in vitro platelet aggregation induced by ADP or collagen. It was concluded that the effect of RE-depressing substance on the clearance of colloidal carbon was due to a depression of platelet aggregation rather than to a depression of hepatic macrophage phagocytic function.

Animals

Canine left ventricular function during experimental pancreatitis.

Left ventricular contractility following induction of experimental pancreatitis (EP) was studied. Contractility was evaluated by analyzing the left ventricular end systolic pressure-diameter relationship (sigma ES). Sigma ES is independent of large changes in preload, afterload, and heart rate, but sensitive to changes in ventricular contractility. Following injection of 100,000 IU trypsin in 4% taurocholate into the pancreas to induce EP, seven of eight dogs survived 5 hr. These dogs exhibited an initial significant reduction in mean arterial pressure (MABP) which stabilized at 90% of control at 3-5 hr post-EP. Cardiac output (CO) dropped slowly after EP induction (from 3.08 +/- 0.43 to 2.22 +/- 0.22 liters/min) associated with no significant change in peripheral resistance. Stroke work and stroke volume were markedly depressed reflecting the changes in MABP and CO. No consistent changes in +dP/dt or -dP/dt were observed. The ratio of endo/epicardial blood flow was unchanged as was blood Ca2+ levels throughout the experiment. Ventricular contractility as reflected by sigma ES tended to improve (from 49.7 to 69.6 mm Hg/mm at 4 hr following EP). Therefore, it was concluded that these animals exhibited no loss of ventricular contractility during EP.

Acute Disease

Depressing hepatic macrophage complement receptor function causes increased susceptibility to endotoxemia and infection.

Previous work has demonstrated that in vivo hepatic macrophage complement receptor clearance function is depressed after thermal injury. To determine whether impairment of complement receptor function is important in host defense, the present study evaluated the effect of the depression of complement receptor function in uninjured animals on susceptibility to endotoxin shock and bacterial infection. Hepatic complement receptor clearance function was evaluated by measuring the hepatic uptake of a test dose (2.9 X 10(8)/100 g) of rat erythrocytes coated with anti-erythrocyte immunoglobulin M (EIgM) or EIgG in rats. Depression of hepatic complement receptor function was induced by the injection of EIgG. The hepatic uptake of the test dose of EIgM or EIgG was depressed after the injection of 8.7 X 10(8) EIgG per 100 g and 17.4 X 10(8) EIgG per 100 g but not after the injection of 2.9 X 10(8) EIgG per 100 g. This effect was shown not to be due to a decrease in hepatic blood flow or a depletion of serum C3 and was, therefore, due to a depression in hepatic macrophage complement receptor clearance function. Susceptibility to endotoxin shock was increased with the dose of 8.7 X 10(8) EIgG per 100 g, and susceptibility to infection with Pseudomonas aeruginosa was increased with the dose of 17.4 X 10(8) EIgG per 100 g. Therefore, depression of hepatic macrophage complement receptor clearance function with EIgG is associated with depressed host defense.

Animals