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Biomedical subjects

M Baggiolini

Publications and source records attributed to M Baggiolini.

At least 163 records · Page 9Linked to original sources

Neutrophil accumulation and plasma leakage induced in vivo by neutrophil-activating peptide-1.

Neutrophil accumulation and plasma leakage induced in rabbit skin by neutrophil-activating peptide-1 (NAP-1, a 72 amino acid peptide produced by monocytes and a variety of tissue cells), E. coli endotoxin, and interleukin-1 (IL-1) were compared. Neutrophil accumulation at sites injected with NAP-1 was intense, rapid, and long-lasting; it reached a maximum rate during the first 30 min, continued at constant rate for 4-6 h, and remained detectable up to at least 8 h. In contrast, the neutrophil-attracting effect of endotoxin and IL-1 was slower in onset and more transient; it peaked in the first 2 h and declined to a very low level after 4 h. Plasma leakage induced by NAP-1 had a shorter time course than neutrophil accumulation and ceased after 6 h. Depletion of blood neutrophils by treatment with hydroxyurea prevented the plasma leakage induced by NAP-1 or endotoxin but not by histamine. Desensitization to NAP-1 was studied by restimulation of lesions. Following restimulation with NAP-1 after intervals from 6-10 h, there was diminished infiltration of neutrophils, while nearly normal responses were obtained after an interval of 24 h. Desensitization was dose dependent and affected both plasma leakage and neutrophil accumulation. In lesions initiated with NAP-1 there were normal responses following restimulation with endotoxin but marked desensitization to IL-1, suggesting that NAP-1 may contribute to inflammation induced by IL-1 but not by endotoxin. This study indicates that NAP-1 is a potent mediator of neutrophil accumulation in vivo, with characteristics similar to those reported for C5 fragments, but with a more protracted action.

Animals↗

Negative regulation of human megakaryocytopoiesis by human platelet factor 4 (PF4) and connective tissue-activating peptide (CTAP-III).

We have previously reported that human platelet factor 4 (PF4) and beta-thromboglobulin inhibit human megakaryocyte (meg) colony formation in vitro. Here, we report further findings concerning the effect of PF4 as well as another platelet-derived factor: connective tissue-activating peptide (CTAP-III). Addition of these factors (2.5-10 micrograms/ml) into normal marrow cultures resulted in a significant decrease of meg colonies, especially the mixed-meg colonies, BFU-meg and large CFU-meg, suggesting that they inhibit both proliferation and maturation of meg progenitor cells, with a predominant effect on earlier progenitor cells. Comparison of the effects of the two factors showed that their major effects were similar, with some difference in inhibitory degree. These results indicate that both PF4 and CTAP-III are potent inhibitors of meg colony formation and involved in negative autocrine regulation of megakaryocytopoiesis.

Bone Marrow Cells↗

Turning on the respiratory burst.

The respiratory burst is a distinguishing property of phagocytes. It is induced by chemotactic stimulation or phagocytosis and reflects the activation of a membrane-bound enzyme system that transfers electrons from cytosolic NADPH to extracellular oxygen, producing superoxide. The products of the burst are essential for the killing of microorganisms, but are also a cause of tissue damage and inflammation. Studies aimed at a better understanding of the regulation of the respiratory burst should help in the search for new ways to treat infections and inflammation.

Animals↗

Human alveolar macrophage gene expression of interleukin-8 by tumor necrosis factor-alpha, lipopolysaccharide, and interleukin-1 beta.

The alveolar macrophage (AMO) in its pivotal position for pulmonary host defense may play a prominent role in the orchestration of polymorphonuclear leukocyte (PMN) diapedesis. We demonstrate that the human AMO may participate in these inflammatory events through the production of a novel neutrophil chemotactic factor, interleukin-8 (IL-8). The induction of AMO-derived IL-8 by tumor necrosis factor (TNF), lipopolysaccharide (LPS), and interleukin-1 (IL-1 beta) was shown to be both dose and time dependent. Maximal IL-8 gene expression, as assessed by Northern blot analyses, was achieved with 20 ng/ml and 1 microgram/ml, respectively, for each of the cytokines and LPS. A kinetic study of TNF-, IL-1 beta-, and LPS-treated AMOs showed significant steady-state IL-8 mRNA accumulation post-stimulation at 1 h, peaking by 8 h, with a decline over the next 16 h. Immunohistochemical staining using rabbit anti-human IL-8 antibody demonstrated significant immunolocalization of cell-associated IL-8 antigen at 4 h, with persistence over the next 20 h. Chemotactic bioactivity peaked by 8 h, with continued production over the next 16 h. Chemotactic bioactivity from AMO-conditioned media was inhibited by IL-8 antiserum by 2, 31, 44, and 47%, respectively, for unstimulated control, LPS-, IL-1 beta-, and TNF-treated cells. Preimmune serum had no effect on chemotactic activity. These data support the central role of the AMO in the elicitation of PMNs into the lung via the production of IL-8.

Chemotactic Factors↗

Neutrophil chemotactic factor (IL-8) gene expression by cytokine-treated retinal pigment epithelial cells.

The neural-derived retinal pigment epithelium (RPE) underlies the sensory retina and is central to both retinal homeostasis and many common retinal diseases. Retinal pigment epithelium cells are actively phagocytic and share several features with macrophages that have recently been shown to produce a neutrophil chemotactic factor (NCF), also known as interleukin-8, after cytokine stimulation. Because RPE cell responses to cytokines are largely unknown, human RPE cell NCF production was monitored after interleukin-1-beta (IL-1 beta), tumor necrosis factor-alpha, or lipopolysaccharide stimulation. RPE NCF mRNA expression and RPE production of biologically active NCF was time and concentration dependent. Maximal NCF mRNA expression occurred at 20 ng/ml for IL-1 beta. Messenger RNA expression in RPE cells and biologically active NCF in RPE cell supernatants were found 1 hour after stimulation and were maintained for 24 hours. These findings demonstrate that cytokine-stimulated RPE cells may evoke or augment neutrophil-mediated inflammation by synthesizing NCF, a cytokine that may be important in ocular disease mechanisms.

Biological Assay↗

Staurosporine inhibits the respiratory burst and induces exocytosis in human neutrophils.

The protein kinase C inhibitor staurosporine influenced in different ways the functions of human neutrophils. Staurosporine prevented the enhanced protein phosphorylation in phorbol ester- and N-formylmethyionyl-leucylphenylalanine (fMLP)-stimulated cells, and was a powerful inhibitor of the respiratory burst induced by phorbol myristate acetate [IC50 (concentration causing 50% inhibition) 17 nM] and the chemotactic peptides fMLP and C5a (IC50 24 nM). It did not alter, however, the superoxide production by cell-free preparations of NADPH oxidase. Staurosporine had no effect on agonist-dependent changes in cytosolic free Ca2+ and exocytosis of specific and azurophil granules, and showed only a slight inhibition of the release of vitamin B12-binding protein induced by phorbol myristate acetate (decreased by 40% at 200 nM). On the other hand, staurosporine also exhibited neutrophil-activating properties: it induced the release of gelatinase (from secretory vesicles) and vitamin-B12-binding protein (from specific granules). These effects were protracted, concentration-dependent, insensitive to Ca2+ depletion, and strongly enhanced by cytochalasin B. Staurosporine, however, did not induce the release of beta-glucuronidase or elastase (from azurophil granules). Except for the sensitivity to cytochalasin B, these properties suggest a similarity between the exocytosis-inducing actions of staurosporine and PMA. The results obtained with staurosporine provide further evidence that different signal-transduction processes are involved in neutrophil activation, and suggest that protein phosphorylation is required for the induction of the respiratory burst, but not for exocytosis.

Alkaloids↗

Effects of the neutrophil-activating peptide NAP-2, platelet basic protein, connective tissue-activating peptide III and platelet factor 4 on human neutrophils.

Platelet basic protein (PBP), connective tissue-activating peptide III (CTAP-III), and platelet factor 4 (PF-4) were purified from human platelet release supernatants by heparin-Sepharose ion-exchange and reversed-phase HPLC, and their neutrophil-activating effects were compared with those of NAP-2, a peptide of 70 amino acids corresponding to part of the sequence of PBP (1) and with sequence homology to NAF/NAP-1. NAP-2-induced elastase release and a rise in cytosolic free Ca2+ at concentrations between 0.3 and 100 nM, and neutrophil chemotaxis at concentrations between 0.03 and 10 nM. It was half as potent as NAF/NAP-1 in inducing exocytosis but showed the same activity in the other responses. By contrast, only minimal if any effects were obtained with PBP, CTAP-III, and PF-4 up to 100 nM. NAP-2 thus appears to behave like a typical chemotactic receptor agonist. It could be generated from PBP and/or CTAP-III released from activated platelets and lead to the accumulation of neutrophils in platelet aggregates.

Amino Acid Sequence↗

The neutrophil-activating peptide NAF/NAP-1 induces histamine and leukotriene release by interleukin 3-primed basophils.

IgE-independent mediator release from basophils is considered an important event in inflammation, particularly in nonallergic immediate hypersensitivity and in allergic late-phase reactions. This study demonstrates that after exposure to IL-3, basophils release histamine and leukotrienes in response to the neutrophil-activating peptide NAF/NAP-1. Thus, the sequential action of two pure cytokines can promote basophils mediator release. In the presence of IL-3, NAF/NAP-1 functions like a "histamine-releasing factor" and may therefore not only induce cellular infiltration but also provoke symptoms of hypersensitivity reactions.

Basophils↗

Respiratory burst oscillations in human neutrophils and their correlation with fluctuations in apparent cell shape.

Neutrophils pretreated with phorbol 12-myristate 13-acetate (1-10 nM) and stimulated with low concentrations of chemotactic agonists (1-10nM) exhibited a marked increase in respiratory burst activity that was characterized by regular oscillations. These were accompanied by parallel oscillations in turbidity having the same phase and period. Four different agonists, f-Met-Leu-Phe, complement fragment C5a, platelet-activating factor, and leukotriene B4, induced virtually identical oscillations, with mean periods of 7.9 +/- 0.6 s (respiratory burst) and 7.9 +/- 0.8 s (turbidity) at 37 degrees C. No burst oscillations were observed at high agonist concentrations (50-100 nM) unless the fungal metabolite 17-hydroxywortmannin was added prior to stimulation. In the absence of phorbol 12-myristate 13-acetate, the respiratory burst activity was inhibited by 17-hydroxywortmannin, the protein kinase C inhibitor staurosporine, and calcium depletion, while agonist-dependent turbidity changes including the oscillations were unaffected. Turbidity changes reflect corresponding changes in cell size and/or shape, suggesting that cyclic alterations in morphology such as lamellipod extension and retraction physically affect the catalytic efficiency of the membrane-bound burst enzyme NADPH-oxidase. The oscillations appear to be controlled via receptor-dependent activation mechanisms which do not involve PKC activation or the rise in internal calcium presumably derived from phospholipase C activation.

Androstadienes↗

[Naf/nap-1, a new peptide which activates neutrophil leukocytes].

NAF/NAP-1 is a novel tissue-derived chemotactic peptide. It consists of 72 amino acids and has no sequence homology to known cytokines. NAF/NAP-1 is produced by a wide variety of cells after stimulation with interleukin-1, tumor necrosis factor or endotoxin, and has the properties of a local mediator of neutrophil recruitment into diseased tissues. There are indications that NAF/NAP-1 is important in the pathophysiology of inflammatory conditions such as psoriasis, idiopathic pulmonary fibrosis, asbestosis, adult respiratory distress syndrome and different forms of arthritis.

Amino Acid Sequence↗

Neutrophil activating factor (NAF) induces polymorphonuclear leukocyte adherence to endothelial cells and to subendothelial matrix proteins.

Neutrophil activating factor is a polypeptide cytokine released from stimulated mononuclear phagocytes and endothelial cells. We found that neutrophil activating factor induced time- and concentration-dependent binding of human polymorphonuclear leukocytes to endothelial monolayers and subendothelial matrix proteins, via a mechanism that involves altered expression of the leukocyte CD11/CD18 glycoproteins. Thus, neutrophil activating factor is a third mediator, in addition to platelet-activating factor and endothelial leukocyte adhesion molecule 1, that is synthesized by activated endothelium and that can induce polymorphonuclear leukocyte adhesion to endothelial cells. Because NAF is released into the pericellular fluid, it may also stimulate binding of the leukocytes to exposed subendothelial structures at sites of vascular injury.

Antigens, Surface↗

A novel cleavage product of beta-thromboglobulin formed in cultures of stimulated mononuclear cells activates human neutrophils.

A neutrophil-activating peptide, NAP-2, was found to be produced in cultures of human mononuclear cells in the presence of E. coli lipopolysaccharide or phytohaemagglutinin. NAP-2 induced the release of elastase from cytochalasin B-treated human neutrophils. Amino- and carboxy-terminal sequencing and electrophoretic analysis showed that NAP-2 is a single peptide of 70 amino acids (Mr 7,628, IEP 8.7) corresponding to a carboxyterminal fragment of beta-thromboglobulin. NAP-2 is homologous to NAF/NAP-1. When aligned on the basis of their two first cysteines, 13 out of 20 amino-terminal residues are identical. The overall homology between the two peptides is 46%.

Amino Acid Sequence↗

Histamine and sulfidoleukotriene release from human basophils: different effects of antigen, anti-IgE, C5a, f-Met-Leu-Phe and the novel neutrophil-activating peptide NAF.

Human blood leukocytes were challenged by IgE-dependent stimuli (antigens or anti-IgE antibodies) and the chemotactic agonists C5a, N-formyl-Met-Leu-Phe (fMLP) or NAF, a novel neutrophil-activating peptide produced by stimulated human monocytes. IgE-dependent stimuli induced abundant release of histamine and sulfidoleukotrienes (LTC, LTD and LTE). The effects of the chemotactic peptides differed considerably: C5a induced high percentages of histamine release already at concentrations as low as 10(-9) M, but no leukotriene formation: NAF was completely inactive up to 10(-6)M, and fMLP induced moderate release of both products at relatively high concentration only (1-2.5 x 10(-6) M). All three chemotactic peptides, however, induced a concentration-dependent release of elastase from cytochalasin-B-treated human neutrophils. The EC50 was approximately 0.3, 2 and 5 x 10(-9) M for C5a, NAF and fMLP, respectively. NAF showed activity over a wider concentration range and its dose-response curve was less steep than that of the two other agonists. Our results suggest that NAF, that may be generated at the sites of hypersensitivity reactions, is likely to induced the immigration of neutrophils, but not the direct activation of basophils and mast cells. In this respect, NAF differs from less selective chemotactic peptides like the complement product C5a or the N-formyl-methionyl peptides.

Antibodies, Anti-Idiotypic↗

In vivo inflammatory activity of neutrophil-activating factor, a novel chemotactic peptide derived from human monocytes.

Neutrophil-activating factor (NAF), a 72-amino acid peptide produced by human monocytes, induced plasma leakage and neutrophil accumulation after intradermal injection in rabbits (10(-11) to 10(-9) mol/site). NAF was about three times more potent than fMet-Leu-Phe, but considerably less potent than endotoxin. The response to NAF was not inhibited by the endotoxin inhibitor polymyxin B or the protein synthesis inhibitor actinomycin D. Histology of NAF-induced lesions showed large numbers of neutrophils, but no monocytes, eosinophils, basophils, or lymphocytes were observed. Intravascular neutrophil accumulation, aggregate formation, and venular wall damage were also apparent. In vitro, NAF stimulated rabbit neutrophils as shown by the release of N-acetyl-beta-glucosaminidase. This study demonstrates that NAF elicits a rapid inflammatory response in vivo with massive neutrophil emigration, which is qualitatively similar to that observed with other chemotactic agonists.

Animals↗

[Properties and activation mechanism of neutrophilic leukocytes].

The mechanism of neutrophil activation by chemotactic receptor agonists was studied by monitoring stimulus-induced changes in the cytosolic free calcium concentration and hydrogen peroxide formation during the respiratory burst. Two receptor-dependent signal transduction sequences were identified. One sequence depends on calcium, phospholipase C and protein kinase C, and is rate limiting, while the other is comparatively fast and appears to be calcium-independent. The present studies indicate that both sequences must act in concert to transduce receptor-mediated signals and to activate the NADPH oxidase.

Animals↗