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W Pruzanski

Publications and source records attributed to W Pruzanski.

At least 37 records · Page 2Linked to original sources

Serum amyloid A protein enhances the activity of secretory non-pancreatic phospholipase A2.

The acute-phase proteins serum amyloid A protein (SAA) and secretory phospholipase A2 (sPLA2) are simultaneously expressed during inflammatory conditions. SAA associates with high-density lipoprotein (HDL) altering its physicochemical composition. We found that purified acute-phase SAA, but not the constitutive form, markedly enhances the lipolytic activity of sPLA2 in a dose-related manner with phosphatidylcholine/lysophosphatidylcholine or phosphatidylethanolamine/lysophosphatidylethanolamine liposomal substrates. Normal HDL was found to reduce activity of sPLA2 in a dose-dependent manner, but when acute-phase HDL containing 27% SAA was tested, it enhanced sPLA2 activity. Immunopurified monospecific antibodies against SAA completely abolished the enhancing activity of SAA and acute-phase HDL. Given the central role of HDL in lipoprotein metabolism, the interaction between HDL, SAA and sPLA2 may account for changes detected in lipoprotein metabolism during the acute phase.

Acute-Phase Proteins↗

Inhibition of human group II phospholipase A2 by C-reactive protein in vitro.

Endotoxin or cytokine-induced expression of a secretory non-pancreatic phospholipase A2 (sPLA2) has been implicated in the pathogenesis of multisystem organ dysfunction or failure in patients with septic shock. Circulating sPLA2 levels increase as much as 1000-fold during the course of septic shock. However, the mode of regulation of the activity of this lipolytic enzyme is unknown, since circulating inhibitors have not been identified. We investigated the potential inhibitory activity of the acute phase reactant, C-reactive protein (CRP), a phospholipid-binding protein whose expression increases as much as 1000-fold during severe infections. Serum CRP and sPLA2 profiles were highly concordant in patients with septic shock. In studies in vitro, human CRP inhibited hydrolysis of PC-lyso-PC (2:1) multilamellar liposomes by human recombinant sPLA2 in a dose-dependent manner, with an apparent IC50 of 50 micrograms/ml CRP and maximal inhibition at 100 micrograms/ml. Inhibition of sPLA2 activity by CRP was substrate concentration-dependent, and increasing substrate concentrations reversed the inhibitory effect of CRP using the PC-lyso-PC system. Preincubation of CRP with phosphorylcholine led to a concentration-dependent loss of CRP-induced inhibition of substrate hydrolysis. These observations are consistent with a substrate-depletion model of inhibition of sPLA2 activity by CRP.

C-Reactive Protein↗

Treatment of inflammatory myopathy with intravenous gamma globulin.

Intravenous immunoglobulin (IVIg) is a new modality used to help treat conditions associated with immune dysregulation. The inflammatory myopathies are a group of complex diseases including dermatomyositis, polymyositis, and inclusion-body myositis. Overall evaluation of IVIg in myopathy has been hampered by difficulty in accurately diagnosing and assessing disease activity. The lack of large, well controlled, double-blind trials has precluded clear evaluation of the effectiveness of IVIg in these diseases. However, from the data presented in published reports, it appears that IVIg may be useful in the treatment of inflammatory myopathies, particularly dermatomyositis.

Humans↗

Induction of release of secretory nonpancreatic phospholipase A2 from human articular chondrocytes.

OBJECTIVE: Secretory nonpancreatic phospholipase A2 (sPLA2) is a known inducer/promoter of the inflammatory process in the joints. It correlates with disease activity in adult and juvenile rheumatoid arthritis. Synovial fluids contain high concentrations of sPLA2. We discovered that human articular cartilage contains large quantities of sPLA2 and that culture chondrocytes constitutively synthesize and release sPLA2. To test the mechanism controlling the release of sPLA2, we exposed cultured human articular chondrocytes to cytokines and other agents, known to induce sPLA2 in other cells. METHODS: Chondrocytes obtained from cartilage of normal appearance from rheumatoid and osteoarthritic joints, and from normal, neonatal joints were compared to rabbit articular chondrocytes. Radiolabeled Escherichia coli derived phospholipid assay and ELISA technique using monoclonal antibodies against recombinant human synovial type sPLA2 were employed. The cells were grown as monolayers as well as in alginate beads. RESULTS: Human articular chondrocytes from both arthritic and neonatal joints released sPLA2 constitutively but could not be further stimulated with interleukin-1 beta (IL-1 beta), tumor necrosis factor alpha (TNF-alpha), IL-6, oncostatin M, lipopolysaccharide (LPS), or forskolin. Marked stimulation was observed when the cells were exposed to 8-bromo cyclic adenosine monophosphate (cAMP). Growing the cells as monolayers or in alginate beads did not change the results. In contrast to human cells, rabbit chondrocytes responded to IL-1 beta and IL-1/TNF, but not to TNF-alpha alone, with a very marked increase in extracellular sPLA2 activity. CONCLUSION: Human articular chondrocytes synthesize and constitutively release sPLA2. Such continuous release is most probably responsible for the high concentration of sPLA2 in articular cartilage and may be the source of synovial fluid sPLA2. To our knowledge, human articular chondrocytes are the only sPLA2 producing cells tested to date that do not respond to cytokine stimulation with increased sPLA2 activity; yet enhancement was seen with 8-bromo cAMP. It seems therefore that, human articular chondrocytes possess signalling mechanisms for the release of sPLA2 unlike those from other mammalian cells. The significance of this observation remains to be elucidated.

8-Bromo Cyclic Adenosine Monophosphate↗

Induction of TNF-alpha and proinflammatory secretory phospholipase A2 by intravenous administration of CAMPATH-1H in patients with rheumatoid arthritis.

OBJECTIVE: To test the effect of infusions of CAMPATH-1H on levels of proinflammatory secretory phospholipase A2 (sPLA2) and tumor necrosis factor alpha (TNF-alpha) in patients with rheumatoid arthritis (RA). METHODS: Two patients with RA were infused with CAMPATH-1H; extracellular nonpancreatic sPLA2 activity was tested using radiolabelled E. coli membrane phospholipid, and circulating TNF-alpha levels were tested by ultrasensitive immunoassay. RESULTS: Circulating TNF-alpha began to rise within the first 2 h after infusion, reaching > 1000-fold values compared to preinfusion levels. Circulating sPLA2 activity began to rise a few hours after the start of infusion and reached extremely high values in 12 h, concomitant with fever and hypotension. The activity of sPLA2 decreased to pretreatment values in 3-18 days after infusion. CONCLUSION: The mechanism leading to the increase of TNF-alpha and hyperphospholipasemia A2 has not been elucidated. It is possible that CAMPATH-1H activates cells that synthesize and release TNF-alpha and sPLA2, and/or that it induces interleukin 2 release, which in turn activates TNF-alpha, with subsequent release of sPLA2.

Adult↗

Impact of intravenous infusions of low and high doses of gamma globulins (IVIG) on phagocytic functions in adults with primary humoral immunodeficiency.

Twelve adult patients with primary humoral immunodeficiency were treated for at least six months with IVIG 200 mg/kg/mo and then crossed over to a high dose of 600 mg/kg/mo. Polymorphonuclear and mononuclear cells of these patients were tested after the third infusion in the low-dose cycle and then after the third infusion in the high-dose cycle, each time a day before, four days after, and 14 days after intravenous infusion. Each time, patients' cells and normal cells were tested using normal sera and patients' sera. IVIG infusions led to a significant increase in the level of circulating IgG, which was much more prominent in the high-dose group. Phagocytosis, phagocytic index, intracellular bactericidal activity and chemotaxis of polymorphonuclear cells (PMNs) were at least as active as in healthy controls. Actually in both cycles patients' PMN's had slightly higher phagocytic activity than normal cells. Patients' serum in the high dose cycle supported chemotaxis better than normal serum. Efficient phagocytic activity was maintained throughout the cycle; however, it was more active (P < 0.0125) in the midcycle in the high-dose cycle. Superoxide generation was normal in all conditions. Monocytic function was also normal in all conditions tested. It may be concluded that as far as cellular phagocytic functions are concerned, the high dose of IVIG does not protect the host more efficiently than the low dose.

Adult↗

Phospholipase A2 in juvenile rheumatoid arthritis: correlation to disease type and activity.

OBJECTIVE: Secretory nonpancreatic phospholipase A2 (snpPLA2) is a proinflammatory enzyme and its activity in serum correlates with disease activity in adults with rheumatoid arthritis. Juvenile rheumatoid arthritis (JRA) may be stratified into 3 clinical types with differing degrees of disease activity. Since in JRA there are no reliable indices of disease activity, our objective was to find whether the level of circulating snpPLA2 correlates with the severity of inflammation and with JRA activity. METHODS: PLA2 enzymatic activity was assayed using E. coli membranes labelled with (14C)-oleic acid. SnpPLA2 immunoreactivity was tested by ELISA technique using monoclonal antibodies against recombinant human (rh) snpPLA2. SnpPLA2 activity was determined in sera of 127 children including 25 with systemic (S-JRA), 50 with polyarticular (Po-JRA) and 52 with pauciarticular (Pa-JRA) types of JRA. Twenty-five patients with active disease, were subsequently restudied in an inactive phase. RESULTS: Markedly increased snpPLA2 (> mean + 2 SD of normal mean, i.e., > 575 U/ml) was found during the active disease in 100% S-JRA, 57% Po-JRA and 25% Pa-JRA patients. The differences in the mean and median PLA2 activity among these 3 subtypes of JRA were highly significant (p < 0.001) with the highest levels found in S-JRA and the lowest in Pa-JRA. Presence of rheumatoid factor and/or of antinuclear antibody had no relation to the level of snpPLA2. SnpPLA2 activity became markedly lower when active inflammation became quiescent. In the whole group, snpPLA2 activity correlated highly with the Lansbury index, number of involved joints and number of effusions. A significant positive correlation was also found between snpPLA2 and erythrocyte sedimentation rate (ESR) and neutrophil count, while a significant negative correlation was noted with the level of albumin and hemoglobin. With the exception of snpPLA2, other laboratory variables did not correlate with the number of effusions or the number of active joints. However a negative correlation was noted between both hemoglobin and albumin, and Lansbury index. CONCLUSION: Circulating snpPLA2 significantly correlates with JRA activity and may serve as an index of activity in JRA especially in patients with systemic type of disease.

Adolescent↗

Circulating group II phospholipase A2 activity and antilipocortin antibodies in systemic lupus erythematosus. Correlative study with disease activity.

OBJECTIVE: Lipocortin (LC) and phospholipase A2 (PLA2) are involved in phospholipid metabolism, and on the cellular level LC seems to be an antagonist of PLA2. Since anti-LC1 autoantibodies were found in systemic lupus erythematosus (SLE), we undertook a study of the relationship between PLA2, anti-LC1, and disease activity in a large group of patients with SLE. METHODS: Sera from 81 patients with SLE were tested for the activity of extracellular PLA2 and the presence and level of antilipocortin 1 [anti-LC1 (IgM) and anti-LC1 (IgG)] antibodies. Both were compared to SLE activity. RESULTS: Mean PLA2 activity was 4.6-fold higher in patients with SLE than in healthy controls (707 +/- 219 vs 154 +/- 6 u/ml, p < 0.01). PLA2 activity correlated significantly with PLA2 immunoreactivity as estimated by an ELISA method using monoclonal antibodies against "synovial type" PLA2 (n = 21, r = 0.984, p < 0.001). Anti-LC1 IgM and IgG antibody levels were significantly higher in SLE than in healthy individuals [anti-LC1 (IgM) 54.5 +/- 4.6 vs 22.6 +/- 2.3 EU/ml, p < 0.001 and anti-LC1 (IgG) 54.3 +/- 3.4 vs 22.9 +/- 2.3 EU/ml, p < 0.001]. There was no correlation between PLA2 activity and anti-LC1 antibody titers. Elevated levels of PLA2 [> normal mean + 2 SD (i.e., > 300 u/ml)] were found in 41/81 patients with SLE. Anti-LC1 antibody titers were high (> 64 EU/ml) in 23/41 patients; 14/40 patients with SLE with normal PLA2 (< 300 u/ml) also had higher titers of anti-LC1 antibodies. PLA2 activity was significantly associated with the presence of synovitis, being markedly increased in 11/12 patients. Mean PLA2 in this group of patients (1593 +/- 957 u/ml) was significantly higher (p < 0.001) than that (553 +/- 188 u/ml) in the group of 69 patients with SLE without synovitis. CONCLUSIONS: There was no correlation of PLA2 activity with the Systemic Lupus Erythematosus Disease Activity Index (SLEDAI) or the Lupus Activity Criteria Count (LACC). Circulating PLA2 activity in SLE correlated only with active synovitis. There was no correlation of anti-LC1 titers with duration of the disease, age, steroid dosage, SLEDAI, or LACC or any individual clinical or laboratory variable included in the assessment of SLEDAI and LACC.

Adult↗

The role of phospholipase A2 in interleukin-1 alpha-mediated inhibition of mineralization of the osteoid formed by fetal rat calvaria cells in vitro.

Interleukin-1 (IL-1) may be an important mediator of bone remodeling, since it is a potent stimulator of bone resorption and has biphasic effects on bone formation. Continuous exposure of fetal rat calvaria (RC) cells to IL-1 alpha or IL-1 beta results in a dose-dependent inhibition of both bone nodule formation and mineralization of the organic matrix. In this study, the effects of recombinant human IL-1 alpha on the mineralization process were examined by the addition of IL-1 alpha late in the culture period, after osteoid nodules had formed and when they were induced to mineralize by the addition of organic phosphate. By means of a quantitative 45calcium radiolabeling assay, it was shown that short-duration exposures of fully-formed bone nodules to IL-1 alpha also inhibited mineralization, and that the duration of treatment directly correlated with the degree of inhibition. Because our earlier studies had demonstrated that IL-1 stimulated the release of PLA2 and PGE2 from RC cells, the effects of PLA2 and of inhibition of PGE2 synthesis on mineralization were investigated. Exogenous Naja naja group I PLA2 had little effect on the mineralization of bone nodules; however, Crotalus adamanteus group II PLA2 inhibited mineralization at concentrations similar to those found in the media from IL-1 alpha-treated cultures. Although PLA2 is thought to stimulate PGE2 synthesis by releasing arachidonic acid from membrane phospholipids, PGE2 release by RC cells accounted for only part of the IL-1 alpha-mediated inhibition, suggesting the presence of other mechanisms of exogenous PLA2 action in inhibiting mineralization.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Increased serum phospholipase A2 activity in Malawian children with falciparum malaria.

Some clinical manifestations of severe malaria resemble those of sepsis and there may be mediators of the host response that are common to both sepsis and malaria. Phospholipase A2 (PLA2), a proinflammatory enzyme whose expression is induced by tumor necrosis factor (TNF), has been implicated in the pathogenesis of complications of the sepsis syndrome. We examined levels of circulating PLA2 in Plasmodium falciparum malaria and studied the association of PLA2 with disease severity. Plasma PLA2 and TNF were measured in 75 Malawian children with P. falciparum malaria. The mean (SD) plasma PLA2 activity in children with acute malaria was 53,804 (37,256) units/ml as compared with 424 (349) units/ml in 34 healthy controls (P < 0.00001). The mean PLA2 activity in 45 convalescent patients was 2,546 (7,372) units/ml (P < 0.00001). In 48 patients with pretreatment PLA2 activity less than 60,000 units/ml, mortality was 8.3%, while in 27 patients with pretreatment PLA2 levels greater than 60,000 units/ml, mortality was 33.3% (P = 0.008). There were significant correlations between PLA2 and TNF (r = 0.471, P < 0.01), density of parasitemia (r = 0.443, P < 0.0001) and a decrease in hematocrit (r = 0.352, P < 0.005). These data show that P. falciparum malaria is associated with a markedly increased circulating PLA2, especially in patients with severe disease, as manifested by high parasite burden, anemia, coma, and death.

Acute Disease↗

Extracellular phospholipase A2 expression and inflammation: the relationship with associated disease states.

Human non-pancreatic PLA2 has been the object of intense scrutiny for a relatively short period of time. Its role in physiology remains enigmatic. While PLA2 may serve to remodel or remove peroxidised or senescent phospholipids, the enormous magnitude of its upregulation during infectious or inflammatory episodes is consistent with a role in host defense. However, the nature of this role remains elusive. Attempts to relegate this enzyme to the genre of acute phase reactants have not been helpful in unravelling its role. Difficulty in obtaining adequate amounts of native snp-PLA2 prior to the availability of recombinant snp-PLA2 led to the widespread use of snake venom homologs, particularly in studies of the biology of PLA2. This review has underscored the pitfalls inherent in that approach given the major differences between some venom PLA2s as compared to snp-PLA2. In addition, it bears reiterating that the complex composition of venom allows for potentiation of PLA2 activity by other constituents present in venom. Whether human host defense networks employ this interactive strategy is largely unknown. Nonetheless, in spite of these reservations, some very compelling data have emerged in recent years implicating snp-PLA2 in the initiation or potentiation of local and systemic inflammatory processes. These include sepsis and associated acute lung injury as well as inflammatory arthritides, with rheumatoid arthritis as the prototype. The mechanisms of snp-PLA2 homeostasis are considerably better understood, and it has become apparent that snp-PLA2 is an integral part of a larger network of proinflammatory cytokines, growth factors and lipid mediators. The interrelationship between the functions of secretory and cytosolic PLA2s remains to be defined. A number of selective PLA2 inhibitors have been identified which will allow for discrimination between the actions of these classes of PLA2. The availability of synthetic inhibitors in conjunction with endogenous modulators of PLA2s will shift the biology of PLA2 from the realm of the inferential to that of the mechanistic.

Animals↗

Induction of group II phospholipase A2 expression and pathogenesis of the sepsis syndrome.

Phospholipase A2 catalysed hydrolysis of phospholipid substrates is rate-limiting in the release of arachidonic acid for subsequent downstream metabolism to biologically active eicosanoids. Concomitant release of lysoplatelet activating factor (lyso PAF) serves as the precursor of PAF. Thus, phospholipase A2 (PLA2) is pivotal in the generation of a spectrum of biologically active lipids. Over the course of the past decade, studies have increasingly pointed to a pathogenetic association between endotoxin-induced PLA2 expression and ensuing circulatory shock and multisystem organ failure in animals with experimental endotoxemia as well as in patients with septic shock. The structural, functional, regulatory and biologic characteristics of PLA2 are reviewed in relation to septic shock and its complications and areas of controversy are highlighted.

Animals↗

Inhibition of enzymatic activity of phospholipases A2 by minocycline and doxycycline.

Extracellular phospholipases A2 play an important role in articular and extra-articular inflammatory processes. Secretory non-pancreatic phospholipase A2 (PLA2) has been implicated in the pathogenesis of articular inflammation in rheumatoid arthritis, whereas pancreatic PLA2 contributes to the tissue damage associated with acute pancreatitis. Since in experimental models lipophilic tetracyclines such as minocycline and doxycycline are antiinflammatory, we examined their effects on PLA2 activity using two assay systems in vitro. We found that minocycline and to a lesser degree doxycycline were markedly inhibitory to both pancreatic and non-pancreatic PLA2. Using [14C]oleic acid labeled Escherichia coli membrane phospholipids as substrate, the IC50 values for minocycline and doxycycline were 3.6 x 10(-5) M (18 micrograms/mL) and 0.98 x 10(-4) M (47 micrograms/mL), respectively. In a scooting mode assay using the synthetic phospholipid 1-palmitoyl-2-(10-pyrenedecanoyl)-3-L-phosphatidylmethanol as substrate, IC50 values for minocycline were 5 microM (2.47 micrograms/mL) for non-pancreatic PLA2 and 8 microM (3.95 micrograms/mL) for pancreatic PLA2. Addition of excess calcium up to 50 mM did not reverse the inhibitory activity of tetracyclines. We conclude that lipophilic tetracyclines inhibit PLA2, probably by interaction with the substrate, and may be a useful adjunct in the therapy of inflammatory conditions in which PLA2 is implicated pathogenetically.

Animals↗

Enzymatic activity and immunoreactivity of extracellular phospholipase A2 in inflammatory synovial fluids.

Synovial fluid PLA2 concentration was measured by an ELISA technique using monoclonal antibodies raised against human recombinant "synovial-type" group II phospholipase A2. This ELISA was specific for synovial-type PLA2 and did not detect pancreatic (group I) PLA2. In all synovial fluids examined, including rheumatoid, osteoarthritic, psoriatic, and gouty fluids, synovial fluid PLA2 enzyme activity significantly correlated with PLA2 immunoreactivity (P < 0.001). Within the limits of the ELISA technique, there was no evidence for the presence of specific or nonspecific modulation of PLA2 activity by either putative PLA2 activating or inhibitory proteins.

Arthritis↗

Hyperphospholipasemia A2 in human volunteers challenged with intravenous endotoxin.

Phospholipase A2 (PLA2) activity was measured in the serum of 23 individuals infused intravenously with endotoxin (EN) at a dose of 4 ng/kg body weight. A marked increase in PLA2 was noted 3 h after EN challenge (mean 828 +/- 513 units/ml), reached its maximum at 24 h after the challenge (mean 2667 +/- 2442 units/ml), and was still evident at 48 h (mean 763 +/- 366 units/ml). In contrast, TNF levels were maximal (mean 712 +/- 375 pg/ml) 90 min after the EN challenge and subsided to very low values (5 +/- 5 pg/ml) 5 h after the challenge. There was a positive correlation between the maximum response of TNF and that of PLA2 (r = 0.82, P < 0.01). Administration of ibuprofen or pentoxifylline did not alter the PLA2 response. EN challenge did not affect serum pancreatic PLA2 concentration or that of the lysosomal cationic enzyme, lysozyme. Neutralizing antibody against human recombinant (synovial type) PLA2 completely abolished PLA2 activity in the sera tested. We conclude that EN infusions cause marked intravascular release of nonpancreatic secretory PLA2 and that the magnitude of this response seems to be related to the prior generation of TNF.

Endotoxins↗