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Biomedical subjects

A B Bjornson

Publications and source records attributed to A B Bjornson.

At least 19 recordsLinked to original sources

Serotype-specific immunoglobulin G antibody responses to pneumococcal polysaccharide vaccine in children with sickle cell anemia: effects of continued penicillin prophylaxis.

OBJECTIVES: (1) To determine serotype-specific IgG antibody responses to reimmunization with pneumococcal polysaccharide vaccine at age 5 years in children with sickle cell anemia and (2) to determine whether continued penicillin prophylaxis had any adverse effects on these responses. STUDY DESIGN: Children with sickle cell anemia, who had been treated with prophylactic penicillin for at least 2 years before their fifth birthday, were randomly selected at age 5 years to continue penicillin prophylaxis or to receive placebo treatment. These children had been immunized once or twice in early childhood with pneumococcal polysaccharide vaccine and were reimmunized at the time of randomization. RESULTS: Serotype-specific IgG antibody responses to reimmunization varied according to pneumococcal serotype but in general were mediocre or poor; the poorest response was to serotype 6B. The antibody responses were similar in subjects with continued penicillin prophylaxis or placebo treatment, and in subjects who received one or two pneumococcal vaccinations before reimmunization. The occurrence of pneumococcal bacteremia was associated with low IgG antibody concentrations to the infecting serotype. CONCLUSIONS: Reimmunization of children with sickle cell anemia who received pneumococcal polysaccharide vaccine at age 5 years induces limited production of serotype-specific IgG antibodies, regardless of previous pneumococcal vaccine history. Continued penicillin prophylaxis does not interfere with serotype-specific IgG antibody responses to reimmunization.

Adult↗

The pentameric structure of IgM is necessary to enhance opsonization of Bacteroides thetaiotaomicron and Bacteroides fragilis via the alternative complement pathway.

Studies were conducted to investigate the mechanisms by which natural IgM antibodies act together with the alternative complement pathway to promote opsonization and adherence of encapsulated Bacteroides thetaiotaomicron and Bacteroides fragilis to polymorphonuclear leukocytes (PMN). A model system consisting of the six isolated proteins of the alternative pathway was used. A comparison of the opsonic effects of pentameric and monomeric forms of isolated normal IgM demonstrated that, although the monomeric form bound to Bacteroides as effectively as the pentameric form and promoted complement deposition to the same extent, it was unable to enhance alternative pathway-dependent opsonization and adherence of Bacteroides to PMN. When opsonization was performed in two steps with pentameric IgM added either before or after alternative pathway components, a marked enhancement of adherence to PMN was observed only in the former case, suggesting IgM must act prior to complement to be effective. Electron microscopic studies demonstrated that, when added with complement, pentameric IgM, but not monomeric IgM, stabilized the bacterial capsule to the dehydration in dimethylformamide used for embedding in Lowicryl K4M. A strong correlation was observed between capsular stability and ability to be bound by PMN. The results suggest that pentameric IgM alters the structure of capsular components, perhaps through crosslinking, and this is in turn facilitates interaction of C3bi and C3b with CR3 and CR1, their respective receptors on PMN.

Adult↗

The alternative complement pathway promotes IgM antibody-dependent and -independent adherence of Bacteroides to polymorphonuclear leukocytes through CR3 and CR1.

Natural immunoglobulin M (IgM) antibodies act synergistically with the alternative complement pathway to promote opsonization and adherence of Bacteroides thetaiotaomicron and Bacteroides fragilis to polymorphonuclear leukocytes (PMNs). This study characterizes the PMN receptors involved in adherence of Bacteroides opsonized by the alternative pathway and determines the effect of natural IgM antibodies on receptor involvement and on the molecular form of C3 deposited on the bacteria. A model system consisting of the six isolated proteins of the alternative pathway with or without supplemental isolated normal IgM was used for opsonization, and results were compared to those obtained with serum. The results demonstrate that the alternative pathway promotes adherence of Bacteroides to PMNs through complement receptors 1 and 3 (CR3), and epitopes in CR3 besides those mediating iC3b binding do not participate. The results also demonstrate that natural IgM antibodies do not influence the character of the ligands or receptors involved in this interaction.

Antibodies, Monoclonal↗

Down-regulation of chemotaxis of polymorphonuclear leukocytes following thermal injury involves two distinct mechanisms.

Thermal injury induces a depression of major effector functions of polymorphonuclear leukocytes (PMNL) that contributes to the increased susceptibility to bacterial infection associated with severe injury. In a study on chemotactic alterations in PMNL induced by thermal injury in a well-characterized guinea pig model, a concomitant reduction in the chemotactic response of PMNL to zymosan-activated serum (ZAS) and FMLP was seen early after thermal injury in temporal association with the previously reported bactericidal defect and depression of superoxide anion production. Unlike the bactericidal defect, the chemotactic alterations were not directly linked to the marked elevation of intracellular cAMP in PMNL associated with thermal injury. Two mechanisms (adaptation and desensitization) were shown to be involved in the reduction of chemotactic responses of PMNL to FMLP and ZAS, respectively. Adaptation appears to be a protective response of PMNL to thermal injury unassociated with receptor down-regulation.

Analysis of Variance↗

Circulating factors contribute to elevation of intracellular cyclic-3',5'-adenosine monophosphate and depression of superoxide anion production in polymorphonuclear leukocytes following thermal injury.

We have previously demonstrated that bactericidal activity and superoxide anion (O2-) production are depressed concomitantly in polymorphonuclear leukocytes (PMNs) following thermal injury in a guinea pig model, and the bactericidal defect is related to elevation of intracellular cyclic-3',5'-adenosine monophosphate (cAMP). The purpose of the present investigation was to determine the relationship between elevation of intracellular cAMP and depression of O2- production in PMNs following thermal injury and determine the involvement of circulating factors in the development of these alterations. The kinetics of O2- production and dose responses to formylmethionyl-leucyl-phenylalanine (fMLP) and phorbol myristate acetate (PMA) were depressed in peripheral PMNs following thermal injury in this experimental model. Sera obtained during the period of PMN dysfunction induced depression of O2- production in response to fMLP and elevation of intracellular cAMP in normal PMNs. Pretreatment of normal PMNs with nonsteroidal anti-inflammatory drugs (NSAID; indomethacin or piroxicam) inhibited the elevation of intracellular cAMP mediated by sera from the injured animals but had no effect on the depression of O2- production observed under similar conditions. Treatment of PMNs from injured animals with NSAID under conditions known to reduce the cAMP content of the cells and correct the bactericidal defect did not normalize O2- production. Studies utilizing sera from two thermally injured patients confirmed findings in the guinea pig model of serum-mediated elevation of intracellular cAMP and depression of O2- production in normal PMNs and effects observed with NSAID. These results suggest that circulating factors contribute to the elevation of intracellular cAMP and depression of O2- production in PMNs following thermal injury. Whereas the increase in intracellular cAMP may be involved in the depression of O2- production, our results suggest that there is not a direct link between these alterations.

Animals↗

Complement is activated in the upper respiratory tract during influenza virus infection.

The purpose of this pilot study was to determine whether complement is activated in the upper respiratory tract during experimental influenza virus infection in human volunteers. Seven subjects were challenged with influenza A/Bethesda/1/85 (H3N2), and four subjects received placebo. C3a and C5a concentrations were measured by radioimmunoassay in nasal lavage fluids before challenge and for 8 days after challenge. A significant increase (p less than 0.05) in C3a and C5a concentrations was demonstrated in lavage fluids from subjects who developed influenza illness as compared with uninfected control subjects and infected subjects who remained asymptomatic. Maximal levels of C3a and C5a were detected during the recovery phase of illness. These results suggest that complement is activated in the airway in response to influenza illness.

Adult↗

Bactericidal defect of neutrophils in a guinea pig model of thermal injury is related to elevation of intracellular cyclic-3',5'-adenosine monophosphate.

PG of the E series inhibit major effector functions of polymorphonuclear leukocytes (PMN) by elevating intracellular cAMP. The present study investigated the involvement of this mechanism in the bactericidal defect of PMN induced by thermal injury in a guinea pig model. Peripheral and peritoneal exudate PMN harvested from thermally injured guinea pigs at 1 or 2 days postburn had decreased bactericidal activity against Pseudomonas aeruginosa and a marked increase in cAMP content. Production of PGE1 by these cells in the absence of exogenous PMN activators was also increased. Treatment of PMN in vitro or in vivo with nonsteroidal anti-inflammatory drugs (indomethacin, ibuprofen, and piroxicam) restored bactericidal activity to normal and concomitantly reduced cAMP content and PGE1 production. A concomitant reduction in cAMP content and PGE1 production was also observed as bactericidal activity of PMN returned to normal under natural conditions during 4 to 7 days postburn. The enhancement of PMN bactericidal activity mediated by NSAID was fully counteracted by purified PGE1, theophylline, and by cAMP itself. These results suggest that the bactericidal defect of PMN induced by thermal injury is related to elevation of cAMP and that PGE1 plays a significant role in this phenomenon.

Alprostadil↗

Nonsteroidal anti-inflammatory drugs correct the bactericidal defect of polymorphonuclear leukocytes in a guinea pig model of thermal injury.

We conducted studies to determine the effects of parenteral therapy with indomethacin, ibuprofen, and piroxicam on key immunologic and hematologic alterations induced by thermal injury. Drugs (10-20 mg/kg) or placebo were administered intramuscularly to thermally injured guinea pigs at 3 h postburn and then daily for nine days postburn. All three drugs inhibited production of 6-keto prostaglandin F1 alpha and thromboxane B2 in wound fluid and concomitantly restored the bactericidal activity of polymorphonuclear leukocytes (PMNLs) against Pseudomonas aeruginosa to normal. Indomethacin also increased the proliferative response of splenic lymphocytes to concanavalin A; however, ibuprofen and piroxicam had no effect on this response. None of the drugs affected the extent of systemic complement consumption, thrombocytopenia, leukocytosis, or leukopenia in the injured animals. These results suggest that the PMNL bactericidal defect induced by thermal injury is preventable or reversible and that the mechanisms responsible for this defect are inhibitable by nonsteroidal anti-inflammatory drugs.

6-Ketoprostaglandin F1 alpha↗

Opsonization of bacteroides by the alternative complement pathway reconstructed from isolated plasma proteins.

Opsonization of clinical isolates of B. fragilis and B. thetaiotaomicron with the six isolated proteins of the alternative complement pathway under physiological conditions resulted in considerable C3 deposition on the bacterial surfaces. The time course of C3 deposition was similar to that observed in EGTA-serum; however, the magnitude of C3 deposition was twofold greater in EGTA-serum. Opsonization of the bacteria with the isolated alternative pathway proteins failed to promote adherence, uptake, or killing by polymorphonuclear leukocytes, whereas opsonization of the bacteria with EGTA-serum facilitated these events. The difference in opsonic capacity of isolated proteins and EGTA-serum was not related to the quantitative difference in C3 deposition, because repeated opsonization of the bacteria with isolated proteins resulting in C3 deposition comparable to that observed in EGTA-serum only minimally increased adherence of the bacteria to polymorphonuclear leukocytes. SDS-PAGE and autoradiographic analysis of C3 extracted from bacteria opsonized with isolated proteins or EGTA-serum using methylamine and SDS demonstrated that the predominant form of C3 bound by ester bonds under both sets of conditions was iC3b. A low molecular weight C3 cleavage fragment was detected in extracts from bacteria opsonized with isolated proteins, but it accounted for only a minor fraction of the bound C3. The results of our study demonstrate that the early phase of opsonization involving activation of the alternative pathway by B. fragilis and B. thetaiotaomicron and resultant C3 deposition on the bacterial surfaces does not require auxiliary serum factors, but the effector phase of opsonization of these bacteria involving recognition of bacteria-bound C3 by polymorphonuclear leukocytes and the induction of phagocytosis and intracellular killing is dependent on such factors. Natural IgM antibodies serve as auxiliary factors is opsonization of B. thetaiotaomicron by the alternative pathway, whereas additional serum factors are required for alternative pathway-mediated opsonization of B. fragilis.

Animals↗

Direct evidence that decreased serum opsonization of Streptococcus pneumoniae via the alternative complement pathway in sickle cell disease is related to antibody deficiency.

Two approaches were used to demonstrate that reduction in serum opsonization of Streptococcus pneumoniae via the alternative complement pathway in children with sickle cell disease is related to a deficiency of antibodies to pneumococcal capsular polysaccharide. First, opsonization of S. pneumoniae mediated by the alternative pathway in patients' sera was restored to normal by addition of the purified IgG or IgM fraction of goat antiserum to capsular polysaccharide of the homologous serotype. Secondly, IgG antibody titers to capsular polysaccharide in patients' sera correlated significantly with alternative pathway-mediated opsonization; the correlation between titers of IgM anticapsular antibodies and opsonization approached statistical significance. The sum of the IgG and IgM anticapsular antibody titers correlated most significantly with opsonization. Our results suggest that reduction in alternative pathway-mediated opsonization in sera from children with sickle cell disease is related to low levels of both IgG and IgM anticapsular antibodies.

Anemia, Sickle Cell↗

Temporal relationships among immunologic alterations in a guinea pig model of thermal injury.

Temporal relationships among various humoral and cellular alterations of host defense mechanisms were investigated in a guinea pig model of thermal injury during three weeks after burning. Reduction in serum concentration of C3 and fixation of C3 on Pseudomonas aeruginosa, presence of activated C3 in plasma, and elevations in levels of 6-ketoprostaglandin F1 alpha and thromboxane B2 in wound fluid were observed at 3-6 hr after burning. These alterations were accompanied by reduction in intrinsic bactericidal activity of polymorphonuclear neutrophils (PMNs) against P. aeruginosa, suppression of bactericidal activity of PMNs by serum, and decreased blood clearance of P. aeruginosa. All parameters returned to normal values by seven to nine days after burning. Proliferative responses of splenic lymphocytes to T cell mitogens were depressed at four days after burning and were maximally reduced at eight days. These data support the concept that there is a continuum of immunologic alterations resulting from thermal injury and that consumption of complement and increase in arachidonic acid metabolism are early events.

Animals↗

Lack of a requirement for the Fc region of IgG in restoring pneumococcal opsonization via the alternative complement pathway in sickle cell disease.

Children with sickle cell disease have reduced serum opsonization of Streptococcus pneumoniae. Our previous studies have suggested that opsonization mediated by both the alternative and classic complement pathways is reduced because of a deficiency of IgG antibodies to pneumococcal capsular polysaccharide. This study compares the ability of purified IgG (fractionated from goat antiserum to pneumococcal capsular polysaccharide) and F(ab')2 fragments of the IgG preparation to restore alternative pathway-mediated opsonization of S. pneumoniae to sera from patients with sickle cell disease. Both the whole IgG preparation and F(ab')2 fragments of this preparation restored opsonization to normal levels and concomitantly increased alternative pathway-mediated deposition of C3 onto the pneumococci to a supranormal level. These results suggest that enhancement of opsonization is mediated by the F(ab')2 region of IgG antibody to capsular polysaccharide and is associated with an increase in complement deposition on the bacterial surface.

Adolescent↗

Relation between serum opsonic activity for Streptococcus pneumoniae and complement function in sickle cell disease.

Opsonic activity for Streptococcus pneumoniae mediated by the alternative and classic complement pathways and concomitant binding of activated C3 to the bacteria were measured in sera from children with sickle cell disease and normal siblings of similar age. Uptake of radiolabeled serotypes 7F, 10A, 15B, and 24F by normal human polymorphonuclear leukocytes and intracellular killing were the parameters used to assess opsonization. C3 fixation was quantitated by radioimmunoassay under conditions identical to those used for opsonic measurements. Both classic and alternative pathway-mediated opsonic activities were significantly reduced in a subset of patients. These alterations were associated with reduction in C3 fixation by way of the classic pathway and normal C3 fixation by way of the alternative pathway. The data implicate auxiliary serum factors rather than an intrinsic defect in the complement system in the opsonic alterations. Retrospective data were suggestive of an increased incidence of pneumococcal bacteremia occurring in association with reduction in opsonic activity.

Adolescent↗

Relative roles of burn injury, wound colonization, and wound infection in induction of alterations of complement function in a guinea pig model of burn injury.

Stimuli involved in induction of alterations of the complement system and production of circulating inhibitor(s) of phagocytic function of polymorphonuclear neutrophils following burn injury were investigated using a guinea pig model of scald burn injury. The activity of C1-C9, assessed by measurement of total hemolytic complement, was found to increase primarily in response to burn injury per se, whereas reduction in the activity of the alternative complement pathway was shown to develop in association with natural colonization and local burn wound infection with bacterial pathogens. Invasive burn wound infection induced experimentally with Staphylococcus aureus, Pseudomonas aeruginosa, or Candida albicans exacerbated this latter abnormality, caused consumption of C1-C9 activity, and was associated with appearance of serum factors that depressed phagocytosis of Escherichia coli 075 by peritoneal polymorphonuclear neutrophils. Thus injury and coexistent infection both play important roles in induction of humoral alterations of host defense associated with burn injury.

Animals↗

Quantitative variability in requirements for opsonization of strains within the Bacteroides fragilis group.

Requirements for opsonization of various strains within the species Bacteroides fragilis, Bacteroides thetaiotaomicron, Bacteroides vulgatus, and Bacteroides distasonis were investigated. The minimal concentration of normal human serum that facilitated maximal uptake by human peripheral leukocytes of 14C-labeled strains ranged from 5% to 80%. Heated (56 C at 30 min) serum produced less uptake than untreated serum, suggesting that complement was required for opsonization. Using human serum depleted of C4 by immunoadsorption as the source of opsonins, predominant utilization of the alternative complement pathway during opsonization was established. Acidic polyanionic exopolymer on the strains was also assessed by ruthenium red staining, electron microscopy, and India ink wet mounts. Strains of the species B thetaiotaomicron, B vulgatus, and B fragilis possessed exopolymer, and a unique configuration of this material was observed on two strains that resisted opsonization. Utilization of classical and/or alternative complement pathway activity during opsonization was not related to the presence of exopolymer.

Bacteroides fragilis↗

Reduction in alternative complement pathway mediated C3 conversion following burn injury.

Studies were performed to further investigate an abnormality of the alternative complement pathway associated with burn injury. C3 conversion by inulin and cobra venom factor was measured in serial serum samples from 18 burned patients and in the sera from 25 normal controls. C3 conversion by both activating substances in the patients' sera was significantly decreased during 50 days postburn in comparison to C3 conversion in the normal sera. The most marked reduction in C3 conversion occurred in patients with large full-thickness injuries and infectious complications. However, the abnormality was not more severe in patients with pneumonia and bacteremia in comparison to patients with bacteremia only. It was also not predictive of fatal outcome resulting from infectious complications. Preliminary evidence was presented to suggest that the abnormality is caused by a serum inhibitor, which has an affinity for cellulose and/or is inactivated by it.

Adolescent↗