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Biomedical subjects

A Fomsgaard

Publications and source records attributed to A Fomsgaard.

At least 55 records · Page 3Linked to original sources

Effect of a human IgG preparation rich in antibodies to a wide range of lipopolysaccharides on gram-negative bacterial sepsis in burned mice.

A human intravenous IgG preparation (Anti-LPS IgG) rich in antibodies to different lipopolysaccharides (LPS) and a normal human intravenous IgG (NIgG) were investigated for their ability to confer passive immunity. Both preparations were given at the time of infection (prophylaxis) or during sepsis (therapy) to burned mice with lethal infection induced by various clinically relevant gram-negative bacteria. When given at the time of infection both IgG preparations (5 mg/mouse) inhibited lethality induced by some bacteria (Pseudomonas aeruginosa serogroup G and B), but not others (Serratia marcescens, Klebsiella pneumonia, Proteus mirabilis), indicating a protection by by strain-specific antibodies. However, no significant protection was seen when mice were treated during sepsis. The range of specific antibody titers to the whole live bacteria and heat-killed (LPS-preserved) bacteria in the NIgG paralleled that of Anti-LPS IgG; however, the magnitude of the antibody titers did not accurately reflect the protective capacity in vivo. Thus, the exact specificity of the protective antibodies is still unknown. The protective effect of both IgG preparations was dose-dependent; at low IgG doses (0.5 mg/mouse) better protection was obtained with Anti-LPS IgG, whilst at higher doses (> or = 1 mg/mouse) both preparations exhibited identical effects. Low doses of either IgG preparation in combination with subtherapeutic doses of piperacillin significantly enhanced early survival (day 2 for NIgG and day 2 + 3 for Anti-LPS IgG) against P. aeruginosa, but the protective effect waned thereafter. We conclude that a strain-specific antibacterial effect in a compromised mouse infection model can be obtained by early passive immunization with human IgG from large plasma pools. It is suggested that Anti-LPS IgG or NIgG may be of benefit in some cases of gram-negative sepsis when administered as prophylaxis together with proper antibiotic treatment.

Animals↗

Antigenic analysis of Pseudomonas aeruginosa and Pseudomonas cepacia GroEL proteins and demonstration of a lipopolysaccharide-associated GroEL fraction in P. aeruginosa.

Quantitative crossed immunoelectrophoresis was used to evaluate the antigenic similarity of Pseudomonas aeruginosa and Pseudomonas cepacia GroEL proteins. We found that the two proteins showed 75% identity. By using a panel of monoclonal antibodies against the P. aeruginosa GroEL protein, we identified 10 monoclonal antibodies which cross-reacted with the P. cepacia GroEL protein and 21 monoclonal antibodies which recognized type-specific epitopes on the P. aeruginosa GroEL protein. In crossed immunoelectrophoresis two different fractions of GroEL reactive material could be resolved. These fractions showed a reaction of partial identity. Examination of the two immunoprecipitates by Western blotting, showed that both fractions consisted of anti-60 kDa GroEL reactive protein. One fraction, in addition, contained LPS with a characteristic 'ladder' reaction in modified Western blotting. We therefore conclude that this fraction represents a complex between LPS and GroEL.

Antibodies, Monoclonal↗

Induction of oxidative burst response in human neutrophils by immune complexes made in vitro of lipopolysaccharide and hyperimmune serum from chronically infected patients.

Purified lipopolysaccharide (LPS) from Pseudomonas aeruginosa was used as an antigen for immune complex (IC) formation in vitro together with hyperimmune sera from chronically P. aeruginosa-infected patients with cystic fibrosis (CF). P. aeruginosa LPS by itself did not induce an oxidative burst in human neutrophil granulocytes (PMN)s measured by chemiluminescence (CL). This was also the case using hyperimmune CF serum alone. In contrast, P. aeruginosa LPS together with CF serum did induce a CL response. The CL responses varied depending on the sera used for IC formation, and were reduced when protein A preabsorbed sera were used. PEG precipitation of the ICs from the mixture increased the CL response. These findings indicate that the CL responses induced by the mixture of P. aeruginosa LPS and CF serum were due to IC formation and an Fc-mediated stimulation of the PMNs. It is concluded that ICs made from sera of chronically infected CF patients and purified P. aeruginosa LPS are biologically active in terms of activating PMNs, and may contribute to the lung tissue damage seen in this group of patients.

Antibodies, Bacterial↗

Cloning and sequences of primate CD4 molecules: diversity of the cellular receptor for simian immunodeficiency virus/human immunodeficiency virus.

To study the interaction between the primate lentiviruses simian immunodeficiency virus (SIV) and human immunodeficiency virus (HIV) and the CD4 receptor we have cloned and sequenced the CD4 molecule from six non-human primate species: African green monkeys (three subspecies: sabeus, pytherethrus, aethiops), sooty mangabeys, patas monkeys, chimpanzees, rhesus macaques, and pig-tail macaques. Molecular cDNA clones representing CD4 mRNA were generated from total RNA from peripheral blood mononuclear cells (PBMC) by polymerase chain reaction (PCR) amplification including reverse transcriptase in initial reactions followed by two rounds of nested amplifications. Primer sequences were selected from regions conserved among human and rodent CD4 genes. Alignments of deduced amino acid sequences revealed interesting findings. First, all of the primate CD4 molecules were about 90% identical to the human CD4 sequence except the chimpanzee (98%). Second, two macaques or two African green monkey subspecies were as distanly related as the human versus chimpanzee sequences. Third, relatedness of CD4 sequences could not be predicted on the basis of geographic origin (Asian vs. African). Finally, upon sequencing several clones from individual monkeys, a low degree of sequence variation (nucleotide substitutions, deletions, and insertions) was found within the same animal, and in case of sooty mangabeys two distict populations of CD4 molecules were present within three of four individuals. The distinguishing features involved eight amino acid changes, including a single lysine deletion relative to a primate consensus sequence in the first complementary-determing region of V1J1. These two CD4 populations were present also at the genomic DNA level and may arrive from the two chromosomal alleles, suggesting the existence of distinct sooty mangabey subspecies. Overall, the V1J1 and to a lesser extent V2J2 were the most variable regions among the sequences examined. By construction and expression in mammalian cell lines of CD4 chimeras in which these regions of the human CD4 were replaced by those of the African green monkey and pig-tail macaques, a higher molecular mass of the CD4 chimeras were obtained in sodium dodecyl sulfate-polyacrylamide gel electrophoresis suggesting that the additional N-linked glycosylation sites present in these monkey CD4 are also used.

Amino Acid Sequence↗

Immunosuppressive effects induced by the polysaccharide moiety of some bacterial lipopolysaccharides.

The immunomodulatory properties of several lipopolysaccharides (LPS) derived from clinical isolates of Pseudomonas aeruginosa, Branhamella catarrhalis, and Bordetella pertussis were evaluated for their capacity to influence the magnitude of the antibody response to type III pneumococcal polysaccharide (SSS-III), which is known to be regulated by suppressor and amplifier T cells (Ts and Ta, respectively). The administration of LPS, two days after immunization resulted in a significant increase in the antibody response. Such enhancement may be due mainly to the ability of the lipid A moiety of LPS to abolish the negative effects of activated Ts, thereby enabling Ta function to be more fully expressed; however, B cell mitogenicity of the LPS molecule also may be involved. By contrast, treatment with LPS at the time of immunization with SSS-III induces significant suppression of the SSS-III-specific antibody response; such suppression is not induced by LPS or lipid A derived from Escherichia coli and Salmonella minnesota, and is independent of the capacity of LPS to activate B cells polyclonally, an activity generally attributed to the lipid A fraction of LPS. Studies conducted with the LPS of P. aeruginosa indicated that the suppression induced is T cell dependent and mediated by the polysaccharide (PS) fraction of LPS; it appears to be due-at least in part-to the capacity of PS to expand or increase the size of the precursor pool of Ts, activated in response to SSS-III. The significance of these findings to the pathogenesis of certain gram-negative infections is discussed.

Animals↗

Polyacrylamide gel electrophoresis analysis of lipopolysaccharide from Pseudomonas aeruginosa growing planktonically and as biofilm.

Lipopolysaccharide (LPS, endotoxin) was extracted from biofilm and planktonically grown monoagglutinable (1118) and polyagglutinable (258 and 15703) strains of Pseudomonas aeruginosa isolated from cystic fibrosis patients with chronic pulmonary infections. Analysis by polyacrylamide gel electrophoresis (PAGE) followed by immune-detection of LPS fractions showed an S-form appearance of strain 1118 and 258 with three distinct clusters of high molecular weight bands, whereas 15703 appeared semi-rough. LPS of semi-rough cells grown planktonically and as biofilm showed a very similar PAGE pattern; however, the core/lipid A R-LPS fraction was more prominent in biofilm-LPS than in planktonic-LPS extracted from the S-form bacteria (1118 and 258). The apparent change in LPS sub-unit components of the bacteria when grown as biofilm may reflect changes in the outer membrane structure that contribute to the altered physico-chemical properties of biofilm bacteria in foreign-device associated infections and chronic P. aeruginosa lung infection in cystic fibrosis patients.

Bacteriological Techniques↗

Antibody responses to lipid A, core, and O sugars of the Pseudomonas aeruginosa lipopolysaccharide in chronically infected cystic fibrosis patients.

Enzyme-linked immunosorbent assays were developed separately for the three main parts of the Pseudomonas aeruginosa lipopolysaccharide (LPS) molecule, namely, lipid A, core, and O polysaccharide. Anti-lipid A, anticore, and anti-O polysaccharide antibodies were measured in serum samples from 12 patients with cystic fibrosis (CF) in a longitudinal study covering the period before P. aeruginosa infection was established through at least 5 years of chronic infection. The serum antibody response to all parts of the P. aeruginosa LPS molecule increased during the course of chronic infection. The increase in anti-lipid A antibodies was specific for P. aeruginosa lipid A, since no increase in anti-Escherichia coli lipid A antibodies was seen. Immunoglobulin G, A, and M (IgG, IgA and IgM) antibodies were all involved in the specific systemic response to P. aeruginosa lipid A, core, and the O polysaccharides. IgG and IgA levels in particular increased during the course of infection and were significantly higher than the antibody increase seen with age in a healthy control group. The local immune response in the lungs was investigated by measuring IgG, IgA, and IgM antibodies to the separate parts of the P. aeruginosa LPS molecule in sputum samples from 18 CF patients with at least a 5-year history of chronic P. aeruginosa infection. Antibodies detected in sputum were mainly anti-lipid A and anti-O polysaccharide antibodies of the IgG and IgA isotypes. Very high IgA anti-lipid A titers were detected in sputum samples from some CF patients.

Adolescent↗

Immunoglobulin allotypes and IgG subclass antibody response to Pseudomonas aeruginosa antigens in chronically infected cystic fibrosis patients.

Chronic Pseudomonas aeruginosa lung infection is the leading cause of death in patients with cystic fibrosis (CF). Poor prognosis correlates with a high number of anti-pseudomonas precipitins and with high levels of IgG2 and IgG3 anti-pseudomonas antibodies. Reports of several highly significant associations between certain Gm (genetic markers of IgG on human chromosome 14) and Km (k-type light chain determinants on chromosome 2) phenotypes and immune responsiveness to various antigens suggest that allotype-linked immune response genes do exist in man. Furthermore correlation between Gm types and IgG subclass levels has been reported. A group of 143 CF patients were investigated (31 non-infected and 112 chronic infected). The IgG subclass antibodies to three different P. aeruginosa antigens (P. aeruginosa standard antigen (St-Ag), alginate and LPS) were determined. Immunoglobulin allotypes were determined by haemagglutination inhibition. Samples were typed for G1m(1,2,3, and 17), G2m(23), G3m(5,21), and Km(1,3). Statistical analysis of our data demonstrate that IgG3 anti-pseudomonas antibody levels and Gm markers are related. IgG3 antibody levels to all investigated P. aeruginosa antigens are significantly higher in sera homozygous for Gm(3;5), somewhat lower in heterozygous sera, and significantly lower in sera homozygous for Gm(1,2,17;21). We suggest that genetic differences between the patients may explain the present differences in subclass patterns.

Antibodies, Bacterial↗

Lipopolysaccharide is present in immune complexes isolated from sputum in patients with cystic fibrosis and chronic Pseudomonas aeruginosa lung infection.

Sputum samples from seven patients with cystic fibrosis and chronic P. aeruginosa lung infection were investigated for immune complexes by PEG precipitation and in two different complement binding assays. All seven patients were immune complex positive. The components involved in immune complex formation were identified by SDS-PAGE and immunoblotting. We found P. aeruginosa lipopolysaccharide as a major antigen. Both core and O-specific saccharide antigens could be demonstrated. IgG and IgA were the immunoglobulins involved, with IgG2 as the dominating IgG subclass. Lipopolysaccharide has a number of biological activities and its presence in sputum may have consequences for the pathogenesis of lung disease in cystic fibrosis.

Antigen-Antibody Complex↗

Relationship between chemical composition and biological function of Pseudomonas aeruginosa lipopolysaccharide: effect on human neutrophil chemotaxis and oxidative burst.

There are conflicting data on the effect of bacterial lipopolysaccharides (LPS) on the function of human neutrophils. The present study was designed to examine the relationship between chemical composition and the modulatory effect of LPS on human neutrophil function. LPS was extracted from five strains of Pseudomonas aeruginosa isolated from cystic fibrosis patients by the hot phenol-water method. Chemical characterization included neutral sugars, amino components, and fatty acids. Neutrophils isolated from peripheral blood of healthy individuals were preincubated with different concentrations of LPS. After preincubation, the chemotaxis and chemiluminescence of neutrophils to various stimuli were determined. It was shown that LPS from different strains did not exert the same degree of regulatory effect on neutrophil functions. LPS from strain 174-O:9 exerted the most pronounced effect on neutrophil function seen as inhibition of neutrophil chemotaxis toward the chemotactic peptide f-Met-Leu-Phe and zymosan-activated serum (ZAS) and priming of the cells for less than or equal to 8-fold enhancement of chemiluminescence response to f-Met-Leu-Phe. Conversely, LPS from strain 1118-O:3 had no effect on neutrophil chemotaxis and a slight effect on chemiluminescence. The major differences in chemical composition of the LPS from these two strains are in the rhamnose and heptose content of the O side chain and in the alanine content of the core region. These data indicate that chemical composition of the LPS molecule may play an important role in biological activity of LPS.

Chemotaxis, Leukocyte↗

A highly divergent proviral DNA clone of SIV from a distinct species of African green monkey.

Simian immunodeficiency viruses from African green monkeys (SIVagm) are the most genetically heterogeneous type of non-human primate lentivirus. To further examine the extent of genetic divergence within the SIVagm type, we generated and sequenced a biologically active proviral DNA clone representing a lentivirus isolated from a distinct African green monkey species (grivet). Overall, this clone (gri-1/lambda II) was highly divergent from previously characterized SIVagm clones. Specifically, the difference between gri-1/lambda II and other SIVagm clones approximated the difference between the caprine arthritis encephalitis virus and visna virus (two biologically and genetically distinct ruminant lentiviruses). Our data suggest that lentiviruses from African green monkeys may have evolved in concert with speciation of the genus and support the concept that SIVagm may be the oldest primate lentivirus type in existence.

Amino Acid Sequence↗

Effect of physical exercise on in vitro production of interleukin 1, interleukin 6, tumour necrosis factor-alpha, interleukin 2 and interferon-gamma.

The present study was designed to examine the effect of physical exercise on production of interleukin-1 (IL-1), interleukin-6 (IL-6), tumour necrosis factor-alpha (TNF-alpha), interleukin-2 (IL-2) and interferon-gamma (IFN-gamma). Ten young, healthy volunteers underwent 60-min bicycle exercise at 75% of maximal oxygen uptake (VO2max). Blood samples were collected before and during the last minutes of exercise, as well as 2 h and 24 h later. Blood mononuclear cells (BMNC) were stimulated in vitro with either bacterial lipopolysaccharide or phytohaemagglutinin, and the supernatants were tested for the above-mentioned cytokines using bioassays as well as ELISA techniques. The production of IL-6 increased significantly 2 h after exercise, furthermore the production of IL-1 alpha and IL-1 beta was enhanced, although only borderline significant. TNF-alpha, IL-2 and IFN-gamma did not fluctuate in relation to exercise. The increased amounts of IL-1 and IL-6 in the supernatants generated from a fixed number of BMNC are most likely explained by the increased percentage and absolute number of blood monocytes 2 h after exercise. IL-2 and IFN-gamma are mainly produced by CD4+ and CD16+ cells. During exercise the CD4+ subset decreases, while the CD16+ subset increases. The finding of unchanged production of IL-2 and IFN-gamma was therefore expected.

Adult↗

Comparative immunochemistry of lipopolysaccharides from Branhamella catarrhalis strains.

Lipopolysaccharides (LPS) were extracted and purified from the type strain and from a clinical isolate of Branhamella catarrhalis. Chemical analysis revealed the presence of glucose, galactose, and glucosamine in different molar proportions in the LPS from these two isolates, whereas there was no difference between the two isolates in the ratios of ketodeoxyoctonate, phosphate, and the fatty acids C12, 3-OH-C12, and 3-OH-C11 present. Heptose or 3-OH-C14 was not detectable in either preparation. LPS from both strains appeared semirough according to sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis, presenting a core polysaccharide plus one repeating unit. Immunoblotting, passive hemolysis, and hemolysis inhibition assays using anti-LPS antibodies from immunized rabbits demonstrated cross-reactivity between the LPS preparations; however, antigenic dissimilarities were also found, suggesting that more than one serotype may exist. The lipid A isolated from the two LPS was serologically identical and exhibited cross-reactivity with lipid A of members of the family Enterobacteriaceae. The B. catarrhalis LPS were biologically active, causing lethality in D-galactosamine-sensitized C57/BL6 mice and inducing Limulus amoebocyte lysate gelation.

Animals↗

Haemophilus influenzae potentiates basophil histamine release possibly by its endotoxins.

Haemophilus influenzae and its extracellular products (EP) did not release histamine in leukocyte suspensions from normal individuals. However, the EP were found to enhance basophil histamine release triggered by anti-IgE and by the calcium ionophore A23187. Experiments with EP indicate that it is the content of endotoxins which is responsible for the potentiating effect. Removal of endotoxin from the EP thus completely abolished the potentiating effect, whereas inactivation of its protease and proteins by heat-treatment or by proteinase K did not change the potentiation. A reinforcement of mediator release by the extracellular products of H. influenzae might play a pathophysiological role in chronic obstructive pulmonary disease.

Basophils↗

Endotoxin from Haemophilus influenzae enhances IgE-mediated and non-immunological histamine release.

Haemophilus influenza and its extracellular products (EP) did not release histamine from basophil leukocytes in cell suspensions from normal individuals, patients with chronic bronchitis or patients allergic to either house dust mite, grass pollen, cat dander or to their own bacteria. However, the EP was found to enhance their basophil histamine release. IgE-mediated histamine release was examined by stimulation of the cells with anti-IgE or the specific allergens, and non-immunological histamine release by stimulating the cells with the calcium ionophore A23187 or Staphylococcus aureus. In all the experiments EP caused a significant increase in the histamine release. When H. influenzae endotoxins were removed from the EP, the potentiating effect of EP was completely abolished, whereas heating (80 degrees C, 30 min) or treatment of EP with proteinase did not influence the potentiating effect. These results indicate that H. influenzae endotoxin potentiates histamine release caused by IgE-mediated reactions or by non-immunological mechanisms.

Adult↗

Quantitation and biological activities of native tumour necrosis factor from LPS-stimulated human monocytes.

Human mononuclear cells (MNC) were stimulated in culture with LPS to produce tumour necrosis factor (TNF). The natural tumour necrosis factor (nTNF) was quantitated by ELISA and immunoblotting using rabbit antibodies to human recombinant TNF (rTNF) and the biotin-avidin-peroxidase system. Biologically active nTNF was determined by its cytotoxic activity for actinomycin-D treated mouse fibroblasts and by its lethal effect in D-galactosamine sensitized endotoxin-resistant mice. Two different LPS preparations (Salmonella abortus equi and Pseudomonas aeruginosa) induced the formation of comparable amounts of nTNF. MNC from different donors, however, showed large variations in their ability to produce nTNF. The amount of nTNF induced in response to LPS could be enhanced by priming the MNC with interferon. The amounts of nTNF determined by ELISA generally correlated well with the activity of the nTNF in the two biological assays. On a weight basis, the lethal activity of nTNF in D-galactosamine treated mice was very similar to that of human rTNF. Immunoblotting revealed a single band of nTNF with the same molecular weight (17 kD) as human rTNF. The lethality induced by nTNF was inhibited by rabbit anti-human rTNF antibodies.

Animals↗

Modification of the silver staining technique to detect lipopolysaccharide in polyacrylamide gels.

A silver staining method used routinely for detecting bacterial lipopolysaccharide (LPS) in sodium dodecyl sulfate-polyacrylamide gels (C. Tsai and E. Frasch, Anal. Biochem. 119:115-119, 1982) appeared to be inappropriate for visualizing certain LPS preparations. It did not stain S-form fractions of polyagglutinable Pseudomonas aeruginosa LPS or several partly deacylated (alkali-treated) S-form LPS after sodium dodecyl sulfate-polyacrylamide gel electrophoresis. However, these LPS preparations could be detected by anti-LPS sera after electroblotting onto nitrocellulose, thereby confirming their integrity and presence in the polyacrylamide gel. This is because LPS fractions containing a low number of fatty acids are washed out of the gel during the initial fixing step (40% ethanol-4% acetic acid, overnight). By omitting this fixing step, which was originally developed for detecting proteins, and by increasing the LPS oxidation time (from 5 to 20 min), we restored the ability to detect LPS fractions that otherwise would not be stained. These modifications did not affect the detection of other S- and R-form LPSs. Thus, differences in the number of fatty acids present in polyagglutinable P. aeruginosa LPS may result in a selective loss of fatty acid-deficient S-form LPS in these apparent R-form LPS preparations. This modified procedure provides a fast, simple, and sensitive way to analyze LPS in polyacrylamide gels despite the number of acyl groups present.

Electrophoresis, Polyacrylamide Gel↗

Simian immunodeficiency viruses from African green monkeys display unusual genetic diversity.

African green monkeys are asymptomatic carriers of simian immunodeficiency viruses (SIV), commonly called SIVagm. As many as 50% of African green monkeys in the wild may be SIV seropositive. This high seroprevalence rate and the potential for genetic variation of lentiviruses suggested to us that African green monkeys may harbor widely differing genotypes of SIVagm. To investigate this hypothesis, we determined the entire nucleotide sequence of an infectious proviral molecular clone of SIVagm (155-4) and partial sequences (long terminal repeat and Gag) of three other distinct SIVagm isolates (90, gri-1, and ver-1). Comparisons among the SIVagm isolates revealed extreme diversity at the nucleotide and amino acid levels. Long terminal repeat nucleotide sequences varied up to 35% and Gag protein sequences varied up to 30%. The variability among SIVagm isolates exceeded the variability among any other group of primate lentiviruses. Our data suggest that SIVagm has been in the African green monkey population for a long time and may be the oldest primate lentivirus group in existence.

Amino Acids↗