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Reduction in complement activation from biomaterials by removal of air nuclei from the surface roughness.

The activation of the rabbit complement system by each of three different synthetic materials is reported. Samples of each type of material were subjected to one of two different priming procedures. One priming procedure was intended to remove the air nuclei from the surface roughness of the materials; the other procedure was just the normal one. It was found that the removal of the air nuclei during priming reduced the complement activation by each of the two materials of lower surface tension, but not by a statistically significant amount for the material of highest surface tension, cellophane. For the denucleated samples of the three materials, the amount of complement activation was found to correlate with the critical surface tension of the materials; if the samples of the materials were normally primed, there was no correlation of the amount of complement activation with the critical surface tension of the material.

Air↗

Analysis of human monocyte chemoattractant binding by flow cytometry.

The chemotactic peptide fMet-Leu-Phe-Lys is a potent chemoattractant for human blood monocytes. However, only one-third of the monocytes respond. To determine whether or not lack of response reflected absence of attractant receptors, we equilibrated peripheral blood mononuclear cells with fMet-Leu-Phe-Lys-FITC and analyzed binding by flow cytometry. The fluoresceinated peptide bound rapidly at 0 degree C, and the amount bound approached saturation with increasing concentration. The percentage of blood monocytes that bound the peptide was 60 +/- 8 (SEM for seven experiments). In contrast, only 36 +/- 3% (SEM for 16 experiments) of monocytes responded to the attractant by directed migration. It follows that, among the 64 nonmigrating monocytes per 100 total monocytes, approximately 40, or two-thirds of them, fail to bind attractant; the remaining one-third bind attractant but do not respond with directed movement.

Chemotaxis, Leukocyte↗

Accumulation of activated mononuclear phagocytes in the liver following lipopolysaccharide treatment of rats.

Lipopolysaccharide (LPS) is a toxic bacterial cell wall component that is rapidly cleared from the portal circulation by Kupffer cells. To determine if interaction with LPS causes the accumulation and activation of mononuclear phagocytes (MNP) in the liver, we compared the morphological and functional characteristics of MNP obtained from livers of rats treated with LPS (5 mg/kg, intravenously [IV]) with normal resident Kupffer cells. MNP were isolated from rat livers by combined collagenase/pronase perfusion, selective digestion, and differential centrifugation on a metrizamide gradient. MNP obtained from livers of LPS-treated rats were found to display morphologic and functional characteristics of activated macrophages. These cells were generally larger than resident cells, were highly vacuolated, and adhered to culture dishes more rapidly. Both cell types phagocytized sheep red blood cells (sRBC) in a time-dependent manner, reaching a maximum after 60-75 min incubation with sRBC. However, MNP from livers of LPS-treated rats phagocytized 10-15 times more sRBC than resident Kupffer cells from untreated animals. Employing the Boyden chamber technique, both cell types were also found to be chemotactic to a number of stimuli including the complement fragment, C5a, the tumor promoter, 12-0-tetradecanoyl-phorbol-13-acetate (TPA), and collagenous peptides related to tissue breakdown products. MNP from livers of LPS-treated rats were generally 10-15 times more responsive to the chemoattractants than resident Kupffer cells. In addition, both resident Kupffer cells and MNP from LPS-treated rats were found to release superoxide anion in response to stimulation by C5a and TPA. Taken together these results suggest that LPS treatment of rats leads to the recruitment and activation of MNP in the liver.

Animals↗

A neutrophil-derived proteolytic inactive elastase homologue (hHBP) mediates reversible contraction of fibroblasts and endothelial cell monolayers and stimulates monocyte survival and thrombospondin secretion.

Human heparin-binding protein (hHBP) is a recently discovered proteolytically inactive neutrophil elastase homologue with sequence identity to azurocidin and CAP37. The protein has antibacterial properties and chemotactic activity toward monocytes. In the present work, we show that monocytes, cultured under serum-free conditions, developed morphological changes and formed multicellular aggregates 4 h after the addition of hHBP at a concentration of 10 micrograms/ml. However, after prolonged incubation (11 days) with unchanged medium, the cells spread again. The hHBP-treated cells had a two- to threefold increase in survival compared to control cells, measured using trypan blue as an indicator of living cells. Differentiation of the alive cells to macrophages was detected by changes in morphology, a threefold increase in protein content, and a three- to fourfold increase in acid phosphatase activity. When monocytes in parallel experiments were labelled with [35S]methionine de novo synthesis and secretion of thrombospondin in a dose-dependent manner was observed after 16 h, with half-maximal secretion at 2 micrograms hHBP/ml and a maximal 12-fold increase in secretion with respect to controls at 16 micrograms/ml. Supplementary labeling with [35S]sulfate revealed that the same monocytes down-regulated the secretion of a large proteoglycan (300-400 kd), apparently also with a half-maximal decrease rate at 2 micrograms/ml hHBP. Exposure of confluent fibroblast and endothelial cell monolayers to hHBP (10 micrograms/ml) in the absence of fetal calf serum resulted in cell contraction leaving gaps between cells, the phenomenon being recognizable within 4 h after addition of hHBP. Addition of fetal calf serum to a concentration of 10% completely restored the monolayers. A unique role of hHBP in host defense involving recruitment of monocytes and a key function of hHBP in neutrophil extravasation in response to inflammatory chemotactic signals such as leukotriene B4, complement peptide C5a, and N-formyl-methionyl-leucyl-phenylalanine are suggested.

Amino Acid Sequence↗

Alkyl-PAF and acyl-PAF human neutrophil priming for enhanced fMLP- and rC5a-induced superoxide anion production.

Alkyl-PAF induced two components of polymorphonuclear leukocyte (PMN) priming for enhanced fMLP- and rC5a-induced superoxide anion (O2-) production. Component A priming had a shallow, linear alkyl-PAF concentration-response slope (10 pM-1 nM), and component B priming had a significantly steeper concentration-response slope (1-100 nM alkyl-PAF). Whereas the extent of component B priming decayed significantly within 5-10 min after pretreatment of PMNs with alkyl-PAF, component A priming was completely stable. WEB 2086, a specific and potent PAF receptor antagonist, abolished component A priming when PMNs were simultaneously stimulated with alkyl-PAF and either fMLP or rC5a but only partially reduced component B priming. However, whereas WEB 2086 also obliterated component A priming when PMNs were pretreated with alkyl-PAF for 2.5, 5, or 10 min prior to fMLP stimulation, WEB 2086 had little or no inhibitory effect on component B priming. Paradoxically, WEB 2086 significantly augmented alkyl-PAF-induced component B priming for enhanced rC5a-induced PMN O2. production yet concomitantly obliterated component A priming. PMN priming by acyl-PAF (1 nm-1 micron) had characteristics identical to those of alkyl-PAF-induced component A priming. These studies suggest that there are at least two effector pathways modulating alkyl-PAF-induced PMN respiratory burst priming. They are also consistent with the notion that component A priming is initiated via high-affinity PAF receptors and component B priming is mediated through low-affinity PAF receptors; and whereas alkyl-PAF interacts with both high- and low-affinity PAF receptors, both acyl-PAF and WEB 2086 preferentially bind to the high-affinity PAF receptors.

Adrenergic beta-Antagonists↗

Interleukin-8 priming of human neutrophils is not associated with persistently altered calcium fluxes but is additive with lipopolysaccharide.

Interleukin-8 (IL-8) priming was studied in neutrophils to examine its dependency on altered calcium fluxes and for similarity to lipopolysaccharide (LPS). IL-8 caused a rapid rise in [Ca2+]i that returned to baseline values by 20 min. Peak [Ca2+]i transients in response to N-formyl-methionyl-leucyl-phenylalanine (fMLP) were unaltered in IL-8-primed compared with unprimed cells. In comparison to LPS and tumor necrosis factor (TNF), IL-8 was a much weaker priming agent as measured by either O2- or H2O2 production. Despite their large disparity in potency, IL-8 and LPS printing were additive using fMLP, a receptor-dependent stimulator, and synergistic using the post-receptor, protein kinase C activator, phorbol 12-myristate 13-acetate (PMA) to trigger the respiratory burst. In contrast, IL-8 and TNF priming were synergistic for fMLP (P = 0.05), but completely nonadditive when PMA was used as the neutrophil stimulant (P = 0.05 for subadditivity). Thus, lasting alterations in [Ca2+]i are not a necessary characteristic of IL-8-primed cells. IL-8 and LPS appear to prime by non-overlapping pathways, whereas IL-8 and TNF appear to share mechanisms distal to protein kinase C activation. IL-8 and LPS may independently contribute to neutrophil-mediated host defense or injury by priming through distinct pathways.

Analysis of Variance↗

A new sensitive chemiluminescence probe, L-012, for measuring the production of superoxide anion by cells.

A sensitive chemiluminescence method for measuring the production of superoxide anion (O2-) by activated EoL-1 cells (human eosinophilic leukemia cell line) is described. Recently, we succeeded in synthesizing a new chemiluminescence probe, 8-amino-5-chloro-7-phenylpyrido[3,4-d]pyridazine-1,4(2H,3H)dione (L-012). In the presence of L-012, activated EoL-1 cells which produce reactive oxygen species generated a marked chemiluminescence with negligible background. The L-012-dependent chemiluminescence was completely abolished by 100-300 U/ml superoxide dismutase, indicating that the main reactive oxygen species detected in this reaction was O2-. The light intensity and the sensitivity of L-012 to O2- were higher than those of other chemiluminescence probes such as luminol and Cypridina luciferin analog (MCLA). Thus, L-012 would provide an improved chemiluminescence method for measuring O2- from cells.

Complement C5a↗

Antibodies against the N-terminus of IL-8 receptor A inhibit neutrophil chemotaxis.

Neutrophil migration and activation are the cornerstones of the acute inflammatory response. Interleukin-8 triggers several functions of neutrophils in host defense: chemotaxis, degranulation and enzyme release, and superoxide production. Interleukin-8 is most potent as a chemoattractant, so chemotaxis is likely the most important of these functions. The effects of interleukin-8 on neutrophils are mediated through two receptors, IL-8RA and IL-8RB. To investigate the role of these receptors in neutrophil chemotaxis, we produced inhibitory antibodies to IL-8RA. These antibodies inhibit neutrophil chemotaxis toward IL-8 in vitro. These findings show that IL-8RA mediates a chemotactic signal in neutrophils and suggest that an anti-receptor strategy may be a useful approach to limit neutrophil migration in inflammation.

Animals↗

Complement component C5 deficiency reduces edema formation in murine ligation-induced acute pancreatitis.

The complement cascade is activated in humans and animals with acute pancreatitis. Activation of complement component C5 liberates C5a, C5a-desarg, and terminal complement complexes (TCCs) that increase capillary permeability, edema, and leukocyte chemotaxis at injured sites. Complement activation plays a major role in pathogenesis of capillary leak and edema formation in severe acute pancreatitis; however, the contribution of C5 (C5a/C5a-desarg, TCCs) has not been defined. Using He gene mutant mice lacking circulating C5, the role of C5 in ligation-induced acute pancreatitis was evaluated. We performed the following experiments: C5-sufficient (Hc1/Hc1) and C5-deficient (Hc0/Hc0) mice had bile and pancreatic ducts ligated. Sham-operated mice had ducts dissected but not ligated. Mice were killed at 4, 8, and 24 hr after bilepancreatic duct ligation. Serologic and morphologic evidences of acute pancreatitis were evaluated. Pancreatic edema was assessed using analysis of pancreatic water content, histologic edema score, and determination of wet weight ratio. After 4, 8, and 24 hr of bile-pancreatic duct ligation, hyperamylasemia and histologic changes of acute pancreatitis were observed in both C5-deficient and C5-sufficient mice. Edema developed in all mice with acute pancreatitis. However, when compared to C5-sufficient mice, mice deficient in C5 developed significantly less pancreatic edema at both 8 and 24 hr of bile-pancreatic duct ligation. This difference was not observed 4 hr after induction of acute pancreatitis. We conclude that C5 contributes to edema formation in murine ligation-induced acute pancreatitis. The presence of an early C5-independent phase, in conjunction with the observation of significant edema in mice deficient in C5, suggests there are other mediators of edema formation in this acute pancreatitis model.

Amylases↗

Dynamics of tissue neutrophil sequestration after cutaneous burns in rats.

BACKGROUND: Neutrophil recruitment in organs after burns may cause local vascular damage, which can be reduced by agents blocking neutrophil adhesion to the vascular wall. Because these agents may increase susceptibility to infection, it is important to characterize the dynamics of neutrophil sequestration in order to optimize an eventual anti-adhesion therapy. MATERIALS AND METHODS: Rats were scald burned over 20 or 40% of their total body surface area (TBSA) and saline resuscitated. Sham controls were used. Myeloperoxidase (MPO) activity was measured in lungs, liver, kidney, gut, and burned skin up to 1 week postburn. Extravascular accumulation of (125)I-labeled bovine serum albumin ((125)I-BSA) was measured at 12 h postburn. RESULTS: MPO activity in lungs, liver, and kidney was increased within 3 h postburn and returned to normal within 24-48 h. Peak MPO levels occurred at 6-12 h postburn and were similar for both burn sizes. No MPO increase was observed in gut. MPO levels in burned skin did not increase before 6 h, peaked at 24 h, decreased at 48 h, but remained elevated for up to 7 days. Neutrophil recruitment in lungs and liver was confirmed histochemically. No neutrophils were found in kidneys. Extravascular (125)I-BSA was increased in lungs, liver, kidneys, and gut, in the 40% TBSA group only. CONCLUSIONS: Neutrophil sequestration in remote organs is a transient phenomenon while neutrophil homing into the wound site is sustained. Neutrophil accumulation dynamics are independent of burn size, although a minimum size is required to trigger vascular damage. Temporary early anti-adhesion therapy to reduce lung and liver neutrophil sequestration with little impact on neutrophil homing into the burn wound may be possible.

Animals↗

Proinflammatory properties of molluscum bodies.

Molluscum contagiosum, a condition characterized by benign viral tumours, occasionally becomes inflamed and regresses spontaneously, an event probably initiated by a host cell-mediated immune rejection against the lesion, but it inevitably involves the disruption of the epidermal tissue to expose the molluscum bodies to the tissue fluids of the dermis. It has been suggested that the molluscum bodies induce inflammation by a mechanism similar to that involved in ruptured epidermal cysts or in acne. Despite the occasional development of inflammation in molluscum contagiosum, the proinflammatory properties of molluscum bodies have never been studied in vitro. Thus, in the present study we sought to determine whether molluscum bodies exert a proinflammatory effect by inducing neutrophil chemotaxis. When exposed to fresh serum in vitro, water-insoluble components of molluscum bodies activated the alternative complement pathway to produce chemotactic C5a/C5a des Arg. We also found that an aqueous extract of molluscum bodies exerted potent chemotactic activity for neutrophils. Remarkably high amounts of the immunoreactive proinflammatory cytokines IL-8 and GRO alpha were present in the extract even when compared with psoriatic scale extracts. Gel filtration HPLC of the extract demonstrated the presence of neutrophil chemotactic activity over a wide range of molecular mass. These data suggest that disruption of the epidermal wall of molluscum bodies induces acute inflammatory changes by activation of the alternative complement pathway on exposure to the tissue fluids, and that the molluscum bodies themselves release proinflammatory cytokines and other neutrophil chemotactic factors on decomposition.

Chemotaxis, Leukocyte↗

Chemotaxis: basic aspects of methodology, mechanisms and pathology.

This review is an attempt to discuss the basic conceptual tools that are a prerequisite for any clinical study of chemotactic defects. They include familiarity with definitions of common terms and with the merits and drawbacks of the several possible in vivo and in vitro assay methods. Cellular mechanisms involved in locomotion are complex. They include basic requirements for cell metabolism as well as receptor recognition, attachment to surfaces and contraction of the cytoskeleton of the cell. Of the many chemotactic factors reported, few are well characterized and universally agreed upon. Similarly, with the use of more stringent criteria, a number of clinical defects of chemotaxis have proven transitory or even artifactual.

Adult↗

Transendothelial cell diapedesis of neutrophils in inflamed human skin.

The mode of extravasation of neutrophils (PMNs) in cutaneous inflammation was studied in sequential biopsy specimens taken from human skin. Inflammatory skin reactions were produced by intracutaneous injection of endogeneous mediators of inflammation--C5ades arg, LTB4, neutrophil-activating peptide (NAP) and interleukin-1 (IL-1). Within 30 min after injection neutrophils were observed in close contact with endothelial cells of postcapillary venules and, following cytoplasmic engulfment, the cells were found to be transported transcellulary through the endothelial layer. In a total of 20 biopsy specimens taken at various times, cell migration via interendothelial gaps was absent. Instead, the transcellular pathway appeared to be the first and foremost mode of diapedesis. During this migratory process PMNs lacked signs of degranulation and numerous electron-lucent vesicles and secondary lysosomes were found. In addition, coated pits present on leukocyte as well as endothelial-cell membranes were indicative of receptor-mediated endocytotic processes.

Cell Movement↗

Surface membrane enzyme, chemotactic peptide binding activities, and chemotactic responsiveness of rabbit peripheral and peritoneal neutrophils.

The chymotrypsin-like esterase activity of plasma membrane and the ecto-5'nucleotidase and ecto-p-nitrophenyl phosphatase activities in peritoneal neutrophils are 2- and 3-fold higher than peripheral blood neutrophils. The binding of the chemotactic peptide, formyl norleucyl-leucyl-phenyl-alanine to peritoneal neutrophils is 6- to 7-fold higher than to peripheral blood neutrophils. The chemotactic responsiveness of peritoneal neutrophils to the chemotactic peptide is 5-fold greater than peripheral blood neutrophils. However, there was no significant difference in the chemotactic responsiveness to complement component C5a between the blood and peritoneal cells.

Animals↗

Relationship between the transient cAMP increase, exocytosis from specific and azurophil granules and chemotaxis in neutrophil granulocytes.

The short transient increase of the intracellular cAMP concentration during the first minute following stimulation, exocytosis from specific and azurophil granules, random and directional locomotion were assessed following stimulation of human and equine neutrophils with f-Met-Leu-Phe, C5ades Arg, standard gamma globulin (SGG) and the ionophore A23187. Different leucocyte-activating agents elicited distinct patterns of responses. The results showed that: Chemotactic factors produced exocytosis of small amounts of vitamin B12-binding proteins but not beta-glucuronidase, in the absence of cytochalasin B. Chemotaxis, the appearance of the transient cAMP peak and exocytosis from specific granules in response to cytotaxins were strictly correlated in the absence of cytochalasin B but not if exocytosis was measured in the presence of cytochalasin B. Thus comparison of exocytosis measured in the presence of cytochalasin B with other functions may be misleading. The non-chemotactic agents tested (SGG, A23187) produced secretion but no cAMP peak within 1 minute after stimulation, indicating that the cAMP peak is no obligatory event for triggering exocytosis in general. The ionophore A23187 alone at a concentration of 10(-6) M produced exocytosis from specific granules only, increased motility of cells in suspension and a marked increment of neutrophil adhesion to glass and after a lag period a sustained increase in cAMP. SGG elicited release of both vitamin B12-binding proteins and beta-glucuronidase.

Calcimycin↗