Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Pyrogens”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 703 records · Page 39Linked to original sources

Carbon monoxide as a novel central pyrogenic mediator.

Carbon monoxide (CO) are produced by heme oxygenase (HO), and HO was detected in hypothalamus. However, the roles of CO produced in hypothalamus was not fully elucidated. So, we tested the effects of CO on body temperature because preoptic-anterior hypothalamus was known as the presumptive primary fever-producing site. CO-saturated aCSF (4 microl, i.c.v.) and hemin (10 microg, i.c.v.) elicited marked febrile response. Pretreatment with indomethacin completely inhibited CO- and hemin-induced fever. Zinc protoporphyrin-IX (10 microg, i.c.v.) or ODQ (50 microg, i.c.v.) partially reduced hemin-induced febrile response. Dibutyryl-cGMP (100 microg, i.c.v.) produced profound febrile response and this febrile response was attenuated by indomethacin. These results indicate that endogenous CO may have a role as a pyrogenic mediator in CNS and CO-mediated pyresis is dependent on prostaglandin production and partially on activation of soluble guanylate cyclase.

Animals↗

Streptococcal pyrogenic exotoxin B causes mitochondria damage to polymorphonuclear cells preventing phagocytosis of group A streptococcus.

The streptococcal pyrogenic exotoxin B (SpeB) is known to be involved in group A streptococcus (GAS) survival in blood, but the detailed mechanism is not clear. For clarification of this issue, speB isogenic mutants of strains M6 and M49 were constructed by using an integrational plasmid and confirmed by Southern blot analysis. The resistance to phagocytosis of wild-type strains and their speB isogenic mutants was analyzed. The results demonstrated a five-fold increase in phagocytosis of speB mutants compared to that of wild-type strains in whole blood, but no significant difference in plasma. To further clarify whether this effect is due to a functional SpeB protein, recombinant SpeB (r-SpeB) and a SpeB mutant protein lacking proteinase activity (r-C192S) were purified and incubated with a speB mutant in whole blood. The results showed a two- to threefold increase in resistance to phagocytosis when the M6 speB mutant was incubated with r-SpeB, but not with r-C192S. Incubation with the wild-type strain, speB mutant, or the r-SpeB protein did not affect the total cell number of polymorphonuclear (PMN) cells in whole blood under laboratory conditions. However, the PMN cells' mitochondria showed decreasing dehydrogenase activity and loss of membrane potential after r-SpeB treatment. These data indicate that SpeB could cause the mitochondria damage to the PMN cells, preventing immune clearance at an early infectious stage.

Bacterial Proteins↗

Secretion of interleukin 1/leucocytic pyrogen from endotoxin-stimulated human alveolar macrophages is unaffected by indomethacin.

Human alveolar macrophages obtained from 7 normal volunteers and 7 patients with lung disease were stimulated with endotoxin (lipolysaccharide) to induce interleukin 1/leucocytic pyrogen (IL1/LP) secretion. Using the thymocyte assay we quantitated IL1/LP activity in macrophage supernatants obtained after 24 h. 10 micrograms/ml lipopolysaccharide stimulated alveolar macrophages to secrete significantly more IL1/LP activity than did 1 micrograms/ml. Apart from one patient with sarcoidosis, the presence of indomethacin did not significantly inhibit the quantity of IL1/LP secreted in response to LPS. We also demonstrated that the presence of indomethacin did not affect the response of thymocytes to IL1/LP. We conclude that the secretion of IL1/LP by human alveolar macrophages in response to endotoxin is not significantly reduced by the cyclooxygenase inhibitor indomethacin.

Animals↗

Permeability of the middle ear to staphylococcal pyrogenic exotoxin in otitis media.

Middle ear permeability after instillation of staphylococcal pyrogenic exotoxin was studied in each of 12 cats, 6 of them with otitis media induced by obstructing their eustachian tubes. This is the first report that there is passage of toxin to the perilymph, cerebrospinal fluid and blood not only in diseased ears, but also in normal controls, 25 min and 12 h after exposure of the middle ear cavity and round window membrane to toxin. The data suggest a pathophysiological explanation for the association of otitis media and sensorineural hearing loss and/or endolymphatic hydrops; potentially both entities can be caused by exotoxins. It also documents the extraordinary capabilities of movement of staphylococcal exotoxin.

Animals↗

The influence of lipoxygenase inhibitors on the in vitro production of human leukocytic pyrogen and lymphocyte activating factor (interleukin-1).

Leukocytic pyrogen (LP), the endogenous mediator of fever, is synthesized and released from mononuclear phagocytes following activation by several microbial and immunologically-derived substances. Purified fractions of LP also stimulate thymocyte proliferation and LP seems to be indistinguishable from lymphocyte activating factor (LAF) otherwise known as interleukin-1 (IL-1). In the present investigation, we have examined the effect on IL-1 production of drugs inhibiting both cyclooxygenase- and lipoxygenase-mediated transformations of arachidonic acid (ETYA, 5,8,11,14-eicosatetraynoic acid and compound BW755C, 3-amino-1-3-trifluoromethylphenyl-2-pyrazoline). Ibuprofen inhibited the production of PGE2 from stimulated human monocytes but had no effect on LP and LAF release. ETYA prevented LP production from human monocytes when added to the incubation fluid prior to activation by Staphylococcus albus. When added after cell activation, ETYA was ineffective. Similar results were obtained using BW755C. Prostaglandin E2 (PGE2) levels in cell supernates were markedly decreased in the presence of either drug when compared to supernates from untreated, stimulated cells. Low PGE2 levels were also demonstrated in supernates of cells in which either ETYA or BW755C were added 1 hour after stimulation. Pretreatment with BW755C also resulted in decreased LAF activity in the supernates of mononuclear cells stimulated with staphylococci, endotoxin, or muramyl dipeptide. Other experiments demonstrated that crude or purified human LP retains its activity following treatment with soybean lipoxidase. These findings indicate that a product of arachidonate lipoxygenase is important in the sequence of events underlying cell activation for the production of human LP/LAF/IL-1. The possibility that LP might be an eicosanoid-peptide conjugate structurally resembling the leukotrienes was ruled out.

4,5-Dihydro-1-(3-(trifluoromethyl)phenyl)-1H-pyraz↗

The effect of BE 2254 on the metabolic response stimulated by pyrogen in rabbits.

1. Thermoregulatory effector processes were investigated in rabbits after treatment with 1 and 2 micrograms/kg of lipopolysaccharide Escherichia coli (LPS). Both doses produced a fever reaction resulting from stimulation of the metabolic rate and heat conservation responses. 2. BE 2254 administered in feverish rabbits reduced the metabolic as well as pyretic activity produced by both doses of pyrogen. 3. It is suggested that stimulation of the thermoregulatory heat production which contributes to a febrile rise in body temperature is dependent on alpha 1-adrenoceptor mechanisms.

Adrenergic alpha-Antagonists↗

Effect of streptococcal pyrogenic exotoxin on rabbit macrophage functions in vitro: mediation by splenic lymphocytes.

Streptococcal pyrogenic exotoxin (SPE) showed no direct effect on rabbit macrophage functions in vitro. However, when splenic lymphocytes were added to macrophage cultures, SPE caused marked augmentation of glucose consumption and superoxide anion production, and concomitant inhibition of phagocytosis without loss of cell viability. The SPE effects were demonstrated to be mediated by a soluble factor(s) released from the splenic lymphocytes in response to SPE stimulus.

Animals↗

Streptococcal pyrogenic exotoxin B cleaves properdin and inhibits complement-mediated opsonophagocytosis.

Streptococcal pyrogenic exotoxin B (SPE B), a cysteine protease, is an important virulence factor in group A streptococcal (GAS) infection. The reduction of phagocytic activity by SPE B may help prevent bacteria from being ingested. In this study, we investigated the mechanism SPE B uses to enable bacteria to resist opsonophagocytosis. Using Western blotting and an affinity column immobilized with SPE B, we found that both SPE B and C192S, an SPE B mutant lacking protease activity, bound to serum properdin, and that SPE B, but not C192S, degraded serum properdin. Further study showed that SPE B-treated, but not C192S-treated, serum blocked the alternative complement pathway. Reconstitution of properdin into SPE B-treated serum unblocked the alternative pathway. GAS opsonized with SPE B-treated serum was more resistant to neutrophil killing than GAS opsonized with C192S-treated or normal serum. These results suggest that a novel SPE B mechanism, one which degrades serum properdin, enables GAS to resist opsonophagocytosis.

Animals↗

Abrogation of streptococcal pyrogenic exotoxin B-mediated suppression of phagocytosis in U937 cells by Cordyceps sinensis mycelium via production of cytokines.

Streptococcal pyrogenic exotoxin B (SPE B) is a virulent factor in group A streptococcal infection. We previously showed that SPE B reduced phagocytosis in human monocytic U937 cells. Here we show that the mycelium extract of Cordyceps sinensis (CS), a Chinese immunomodulatory herbal medicine, increased phagocytosis in U937 cells. Neither heat nor trypsin pretreatment prevented CS extract from causing this increase. Further studies indicated that SPE B-mediated suppression of U937 cell phagocytic activity was abrogated by CS extract. Factors in the conditioned medium from CS-extract-treated U937 cells were responsible for blocking the SPE B-mediated suppression of phagocytosis. Heating the conditioned medium eliminated the increase, which suggested that the U937-cell protein products augmented phagocytosis. Analyzing cytokine mRNA expression of U937 cells revealed increases in interferon-gamma (IFN-gamma), interleukin (IL)-12 p35 and p40, and tumor necrosis factor-alpha (TNF-alpha), but not in IL-1beta, IL-6, or IL-8. Treating U937 cells with anti-IFN-gamma, IL-12, and TNF-alpha antibodies also eliminated the conditioned medium-induced increase in phagocytosis. Taken together, SPE B inhibited phagocytosis, but CS mycelium extract abrogated this inhibition by causing cytokine production.

Bacterial Proteins↗

Histopathologic changes in kidney and liver correlate with streptococcal pyrogenic exotoxin B production in the mouse model of group A streptococcal infection.

Previous studies show that isogenic mutants deficient in streptococcal pyrogenic exotoxin B (SPE B) cause less mortality and skin tissue damage than wild-type strains of Streptococcus pyogenes when inoculated into mice via an air pouch. In this study, the growth and dissemination of bacteria, pathologic changes in various organs, and their correlation with SPE B production were examined. Bacterial numbers in the air pouch from wild-type strain NZ131-infected mice increased at 48 h, while those from speB mutant SW510-infected mice continuously reduced. Mice infected with NZ131 developed bacteremia and greater dissemination in the kidney, liver, and spleen; those infected with SW510 showed either no or slight bacteremia and dissemination. Co-inoculation of SW510 with recombinant SPE B showed a higher bacterial count in the air pouch, bacteremia, and organ dissemination compared to co-inoculation with a C192S mutant lacking protease activity. The histopathologic changes examined showed lesions in kidney and liver in the NZ131-infected but not in SW510-infected mice. The elevation in sera of BUN, AST, and ALT correlated positively with renal and liver impairment. Taken together, SPE B produced during S. pyogenes infection plays a pathogenic role. A direct effect of SPE B on vessel permeability change was also demonstrated.

Alanine Transaminase↗

Fever in goldfish is induced by pyrogens but not by handling.

Six goldfish, Carassius auratus, weighing 2.5 to 4 g were placed individually in an aquarium with two communicating chambers. One chamber was thermostatted at 34 degrees C, the other at 37 degrees C. In control Session a, without external intervention, fish selected the cooler chamber most of the time and stayed only 4.8 +/- 1.1 min/2 h at 37 degrees C. In Session b, infectious fever was assayed: pyrogen (Salmonella typhosa LPS, or human interleukin-2) was injected intracranially and fish stayed 44.7 +/- 15.3 min/2 h at 37 degrees C. In Session c, behavioral stress was achieved by chasing the fish with a net, catching it, handling it out of water, and injecting 10 microL of saline intracranially. Fish stayed 2.7 +/- 1.0 min/2 h at 37 degrees C. Analysis of variance showed that stay at 37 degrees C was significantly longer in Session b than a and c, and that Sessions a and c were not significantly different from one another. This result confirms the existence of behavioral fever, but does not support the hypothesis of fever in fish after handling.

Acclimatization↗

Fever in uremia: production of leukocytic pyrogen by chronic dialysis patients.

Uremic patients frequently have low baseline temperatures and a blunted febrile response to infection. We investigated the first step in the generation of a febrile response, the production of leukocytic pyrogen (LP) by blood monocytes, in 12 patients on chronic hemodialysis, five patients on continuous ambulatory peritoneal dialysis (CAPD), and 17 control subjects. No significant differences were found in the amount of LP produced by hemodialysis patients, CAPD patients, and control subjects. Uremic serum did not decrease LP production by monocytes from control subjects. Hemodialysis patients who were consistently hypothermic (mean oral predialysis temperature less than or equal to 35.6 degrees F) produced as much LP as those with more normal oral temperatures (mean oral predialysis temperature greater than or equal to 36.8 degrees F). Decreased production of LP does not explain the blunted febrile response noted in patients with chronic renal failure.

Adult↗

Penicillin and clindamycin differentially inhibit the production of pyrogenic exotoxins A and B by group A streptococci.

Streptococcal pyrogenic exotoxins A (SPE-A) and B (SPE-B) have been implicated in the pathogenesis of serious group A streptococcal infections including streptococcal toxic shock-syndrome. Current antibiotics used for the treatment of these infections are penicillin and clindamycin. The effects of sub- and suprainhibitory concentrations of penicillin and clindamycin were evaluated in 14 isolates of Streptococcus pyogenes that were fully susceptible to both antibiotics. Clindamycin was superior to penicillin in reducing the production of SPE-A and SPE-B by invasive and non-invasive Dutch group A streptococcal isolates in vitro.

Bacterial Proteins↗

Mutational effects on protein folding stability and antigenicity: the case of streptococcal pyrogenic exotoxin A.

The influence of mutationally induced changes in protein folding on development of effective neutralizing antibodies during vaccination remains largely unexplored. In this study, we probed how mutational substitutions of streptococcal pyrogenic exotoxin A (SPEA), a model bacterial superantigen, affect native conformational stability and antigenicity. Stability changes for the toxin variants were determined using circular dichroism and fluorescence measurements, and scanning calorimetry. Self-association was assayed by dynamic light scattering. Inactivated SPEA proteins containing particular combinations of mutations elicited antibodies in HLA-DQ8 transgenic mice that neutralized SPEA superantigenicity in vitro, and protected animals from lethal toxin challenge. However, a highly destabilized cysteine-free mutant of SPEA did not provide effective immunity, nor did an irreversibly denatured version of an otherwise effective mutant protein. These results suggest that protein conformation plays a significant role in generating effective neutralizing antibodies to this toxin, and may be an important factor to consider in vaccine design.

Animals↗

The production of pyrogenic exotoxins by group A streptococci.

Lancefield group A streptococci isolated from recent outbreaks and sporadic cases of scarlet fever were restricted to the following M types 1, 3, 4, 6, 12, 18, 22 and 66. These strains were examined for the presence of streptococcal pyrogenic exotoxins (SPE) types A, B and C by isoelectric focusing in polyacrylamide gels and by immunoprecipitation in agar gels. SPE B was produced by 70% of the strains and SPE C by 40%. SPE A could not be detected in these strains. In contrast, SPE type A was found in 4 of 10 strains, held by the NCTC, that had been isolated before 1940 from patients with scarlet fever. Nine of 12 recent isolates from patients with sore throat uncomplicated by a rash produced SPE C and 4 of these also produced SPE B.

Bacterial Proteins↗

Homogeneous interferon-inducing 22K factor is related to endogenous pyrogen and interleukin-1.

In vitro stimulation of mononuclear cells from human peripheral blood with mitogens causes the release of factors (monokines and lymphokines) which possess distinct biological activities. One such factor, termed 22K, can induce production of human beta-interferon (HuIFN-beta) in cultured human fibroblasts, thereby rendering these cells resistant to virus infection. Here we report the complete purification and partial sequencing (39 N-terminal amino acids) of this factor, whose relative molecular mass was estimated by SDS-polyacrylamide gel electrophoresis to be 17,000 (17K). In addition to an antiviral effect, the pure protein exhibits several other biological activities. Most significantly, intravenous (i.v.) injection of the factor in rabbits caused fever and granulopenia at doses of 0.1-1 microgram per kg, effects which we attribute to a monokine called endogenous pyrogen (EP). In vitro, the protein was scored as positive in a LAF (lymphocyte-activating factor) assay at 0.1-1 ng ml-1. LAF and EP are considered to be members of one family of monokines, called interleukin-1 (IL-1). For this reason, and also because the amino-acid sequence of the 22K factor is at least partially homologous to a complementary DNA-derived IL-1 sequence, we postulate that the 22K factor also belongs to the IL-1 family.

Animals↗

Analysis of the interaction between the bacterial superantigen streptococcal pyrogenic exotoxin A (SpeA) and the human T-cell receptor.

Streptococcus pyogenes that produces the bacterial superantigen streptococcal pyrogenic exotoxin A (SpeA) is associated with outbreaks of streptococcal toxic shock syndrome (STSS) in the United States and Europe. SpeA stimulates V beta 2.1, 12.2, 14.1, and 15.1-positive T cells, and the lymphokine production from the activated T cells is believed to result in the symptoms associated with STSS. The T-cell receptor (TCR)-SpeA interaction is crucial for superantigenic activity, and studies were undertaken to determine regions of both SpeA and the TCR involved in the formation of MHC/SpeA/TCR complexes. Previously, recombinant toxins encoded by speA alleles 1, 2, and 3 as well as toxins resulting from 19 distinct point mutations in speA1 were generated. Here, these 22 toxin forms were incubated with human peripheral blood mononuclear cells (PBMCs), and the percentages of T-cell blasts bearing V beta chains 2.1, 12.2, and 14.1 were quantified by flow cytometry. The analysis indicates that the residues of SpeA needed for a productive TCR interaction differ for each V beta chain examined. An amino acid substitution at only one site significantly affected the toxin's ability to stimulate V beta 2.1-expressing T cells, three individual amino acid substitutions resulted in significant loss of ability to stimulate V beta 12.2-expressing T cells, and substitution at 13 individual sites significantly affected the ability to stimulate V beta 14.1-expressing T cells. To elucidate the regions of the V beta chains that interacted with SpeA, synthetic peptides representative of the human V beta 12.2 complementary-determining regions (CDRs) 1, 2, and 4 were used to block the SpeA-mediated proliferation of human PBMCs. The CDR1, CDR2 and CDR4 peptides were each able to block proliferation, with the activity of CDR1 > CDR2 > CDR4. Combinations of CDR1 peptide with CDR2 or CDR4 peptides allosterically enhanced the ability of each to block proliferation, suggesting SpeA has distinct binding sites for the CDR loops.

Alleles↗