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V Brade

Publications and source records attributed to V Brade.

At least 19 recordsLinked to original sources

Differences of two Borrelia burgdorferi strains in complement activation and serum resistance.

Complement activation and serum resistance of the Borrelia burgdorferi strains B31 (American strain) and PKo (European strain) were compared. In 25% (v/v) normal human serum (NHS) free of B. burgdorferi-specific antibodies the cells of the PKo strain were high activators of complement as indicated by rapid and strong C9 consumption, by deposition of up to 336763 C9 molecules per cell and by the formation of the terminal complement complex on the cell surface. By comparison, complement activation by the B31 strain was low with 5.4-fold less C9 deposited per cell. The addition of B. burgdorferi-specific antibodies to NHS either as purified IgG or heat-inactivated patient sera, had no influence on the results with both strains. After an incubation period of 2h at 37 degrees C in 25% (v/v) NHS most cells of the PKo strain had lost their viability as indicated by cell immobilization and failure to multiply in subcultures. In addition, extensive cell fragmentation and bleb formation were observed in the electron microscope. In contrast, the B31 strain remained alive and morphologically intact after the same incubation with NHS. We conclude from our results that complement activation and serum resistance are properties which differ considerably between isolated strains of B. burgdorferi.

Antibodies, Bacterial

Mechanism of YadA-mediated serum resistance of Yersinia enterocolitica serotype O3.

Complement activation via the alternative pathway was analyzed with isogenic strains of Yersinia enterocolitica serotype O3 differing in plasmid content (p- or p+ strains) or selective lack of YadA expression (YadA- strain). The p+ strain was serum resistant, even after antibody-enhanced complement activation. Serum sensitivity was observed with the p- and YadA- strains but was more pronounced in the p- strain. The p+ strain deposited less C5b-9(m) complexes on its surface than the p- and YadA- strains. No size difference, however, was detected with solubilized C5b-9(m) complexes obtained from resistant and sensitive strains. At the C3 level, it became evident that surface-bound C3b was degraded faster into iC3b on the p+ strain than on the p- and YadA- strains. Our results demonstrate that YadA inhibits complement activation at the C3 and C9 level. As a result, reduced amounts of C5b-9(m) are generated on the surface of YadA-bearing bacteria. In addition, YadA seems to protect against the lytic action of those C5b-9(m) complexes whose deposition could not be prevented.

Adhesins, Bacterial

T cell proliferation induced by Borrelia burgdorferi in patients with Lyme borreliosis. Autologous serum required for optimum stimulation.

The cellular immune response to Borrelia burgdorferi was studied in 24 patients with seropositive and seronegative Lyme borreliosis, 30 patients with arthritides of different origin (non-Lyme arthritides), and 20 normal blood donors. By far, the strongest T cell stimulation was induced by incubation with autologous serum; there was a significantly lower response or no response after incubation with allogeneic or heterologous sera. In patients with Lyme borreliosis, including seronegative patients, there was a strikingly elevated proliferation in response to whole B burgdorferi bacteria (mean 64,750 dpm) compared with that of normal donors (mean 19,700 dpm; P less than 0.0001) and especially that of non-Lyme arthritis patients (mean 11,600 dpm; P less than 0.0001). Levels of proliferation declined significantly in patients with Lyme borreliosis after successful antibiotic treatment. Parallel cultures using B burgdorferi and Treponema phagedenis as antigens showed that cells from patients with Lyme borreliosis responded significantly more to B burgdorferi than to T phagedenis, but this did not occur with cells from individuals with non-Lyme arthritides. There was no correlation between disease stages and proliferation values. These data indicate that lymphocyte proliferation assays may provide an important tool for the diagnosis of Lyme borreliosis, most notably in patients with arthritides and in those who are seronegative. Conversely, the lack of reactivity appears to be a strong indicator of the absence of active Lyme disease. It seems to be crucial, however, to use autologous sera in these assays.

Adolescent

Evasion of Yersinia enterocolitica serotype 03 from complement-mediated killing.

Using isogenic strains of Y. enterocolitica serotype 03 (isolate 75) differing in LPS side chains (S and R), plasmid content (p+ and p-) or selective failure of YOP1 expression (YOP1-) we observed comparable C9 consumption via the alternative pathway by all strains. Differences became apparent in the bactericidal assays in which the 75S p+ strain was resistant whereas the plasmid-negative S and R strains were killed. Increased but submaximal resistance was observed with the 75R p+ and 75S YOP1- strains indicating that LPS side chains and plasmid-encoded factors other than YOP1 also contribute to serum resistance. Deposition of C9 and terminal complement complex (TCC) formation were greatly reduced on the resistant 75S p+ strain compared to the sensitive 75S p- strain. The 75S YOP1- variant behaved like the 75S p- strain with respect to C9 deposition and TCC formation suggesting that YOP1 prevents terminal C activation. A comparison of TCC deposited on resistant and sensitive Y. enterocolitica revealed no differences with respect to their salt- and protease-resistance and their size. We conclude from our experiments that serum resistance of 75S p+ depends on several surface components YOP1 being the most important. The YOP1 protein clearly interferes with C9 deposition and TCC formation and thereby contributes to serum resistance of plasmid-positive, YOP1 expressing Y. enterocolitica.

Centrifugation, Density Gradient

[Fatal pneumococcal meningitis in a 1-year-old child with homozygous C2 deficiency].

The 1-year old girl died of recurrent bacterial meningitis. Streptococcus pneumoniae was isolated from the cerebrospinal fluid. The analysis of the immune system revealed only a defect of the complement system. The following results were obtained: 1. No function of the classical complement pathway. 2. Reduced function of the alternative complement pathway. 3. No functional C2 activity. 4. No C2 protein. The parents had half normal C2 titers. HLA typing was only possible for the parents with the following results: A1, A32(w19), B18, DR2, DRw11(5) (father) and A3, A10, B18, B7, DR2 (mother). These data are compatible with a B18, DR2 haplotype of the child which is found in most cases of homozygous C2 deficiency. Our patient list another example for the high risk of recurrent severe infectious diseases in persons with a total complement defect.

Complement C2

Influence of surface modulations by enzymes and monoclonal antibodies on alternative complement pathway activation by Yersinia enterocolitica.

Effector mechanisms resulting from alternative complement pathway (ACP) activation cannot act efficiently against Yersinia enterocolitica serotype O3, as indicated by poor C3 to C9 consumption and by survival in EGTA (ethyleneglycoldiaminetetraacetic acid) Mg-serum. These results were not influenced by the lack or presence of plasmid-encoded outer membrane proteins or lipopolysaccharides (LPS) with different amounts of side chains or by treatment of the bacteria with pronase or neuraminidase. Surface modulation of Y. enterocolitica with polyclonal immunoglobulin G or the immunoglobulin G fragments F(ab')2 and Fab always converted Y. enterocolitica to a high ACP activator, with strong C3 to C9 consumption and surface deposition of activated C3. Killing of Y. enterocolitica as a result of antibody-mediated ACP activation was observed only with bacteria grown at 22 degrees C but not with bacteria from 37 degrees C cultures. The expression of complement resistance in Y. enterocolitica grown at 37 degrees C was not influenced by the presence or absence of plasmids. Using different monoclonal antibodies (MAb), we found that MAb with LPS specificity mediated ACP activation, whereas MAb specific for different plasmid-encoded outer membrane proteins were ineffective, despite surface binding. These results suggest a major inhibitory role of LPS on ACP activation which was neutralized by LPS-specific antibodies.

Animals

[Serodiagnosis of Lyme borreliosis: antibody titer and specificity in the IFT and western blot].

Out of 334 sera from healthy persons from northern Bavaria 6% reacted positive in the indirect immunofluorescence test (IFT, titre greater than or equal to 1:64). The percentage of positive cases in patients with erythema chronicum migrans (ECM), meningoradiculitis (M. Bannwarth), or acrodermatitis chronica atrophicans (ACA) was 43, 83 and 78%, respectively. In other patients with less characteristic symptoms in which an infection with B. burgdorferi was suspected the number of positive cases was only about 20%. A positive IgM-IFT was most often associated with ECM and M. Bannwarth; however, even in these cases IgM was only found in 30%. The serodiagnosis of Lyme disease required simultaneous serum testing of T. pallidum antibodies (TPHA) to exclude a syphilis with cross-reacting antibodies. In cases with a positive B. burgdorferi-IFT and TPHA the final diagnosis of Lyme disease was possible on the basis of Western blot analysis. The prominent antigens detected by sera from patients with Lyme disease--but not with syphilis--had molecular weights of 18, 22, 41 and 60 K; IgM antibodies were mainly directed against the 22 K and 41 K antigens. The antigen pattern was not characteristic for different disease stages.

Acrodermatitis

[Congenital toxoplasmosis: value of modern IgM serodiagnosis is from the example of problem cases].

Congenital toxoplasmosis may be symptomatic or asymptomatic at the time of birth. In the latter case late manifestations may occur which can be avoided by early diagnosis and treatment. In comparison with the IgM-IFT we demonstrate the specificity and high sensitivity of a recently available immunosorbent agglutination assay (ISAGA) for the detection of IgM against toxoplasma. We also present evidence for the high diagnostic value of the ISAGA in cases where congenital toxoplasmosis is suspected. Based on the presented data we propose a pattern of diagnostic methods for the diagnosis or exclusion of congenital toxoplasmosis in newborns.

Antibodies, Protozoan

[Congenital toxoplasmosis with delayed immune response in children. Diagnostic problems].

A newborn, delivered at term, developed a rapidly increasing hydrocephalus with intracranial calcifications and seizures during the first week of life. Clinical suspicion of congenital toxoplasmosis was at first not confirmed serologically (serum titer in the immunofluorescence test [IFT] of 1:1024 and complement-fixation reaction [CFR] of 1:40 equalling those of the mother; IgM-IFT being negative and the IFT and CFR titers significantly falling within two weeks). But in the further course of the disease the diagnosis of congenital toxoplasmosis was confirmed: 1. Microscopic tachyzoits in CSF when aged six weeks; 2. positive IgM-IFT in serum and CSF from the seventh weeks onwards; 3. steep IFT titer rise in serum and CSF from the 16th week onwards. This case demonstrates that with delayed immune response in the infected child only serial serological tests will exclude or confirm the diagnosis of congenital toxoplasmosis.

Antibodies, Bacterial

Inactivation of C3a by a monocarboxypeptidase present in culture supernatants of stimulated guinea pig peritoneal macrophages.

Hog C3a, as well as its derivative C3a-desArg were not found to act cytotoxically on starch gel-induced guinea pig peritoneal macrophages. Likewise, neither peptide significantly modified the secretion of N-acetyl-beta-D-glucosaminidase from these cells. However, C3a rapidly lost its spasmogenic activity during incubation in serum-free macrophage cultures and less rapidly in cellfree supernatants collected from cultured macrophages. The following results indicate that C3a is converted into its spasmogenically inactive derivative C3a-desArg by a macrophage-derived monocarboxypeptidase. The inactivated C3a product does not differ from native C3a in sodium dodecyl sulfate-polyacrylamide gel electrophoresis; it elutes from CM cellulose in the same position as purified C3a-desArg; and it is devoid of the carboxyl-terminal arginyl residue of C3a, but still contains the carboxyl-terminal sequence of C3a-desArg as determined by analysis after treatment with carboxypeptidases B or Y. Furthermore, inactivation of C3a in supernatants of macrophage cultures is completely blocked by the specific carboxypeptidase inhibitors guanidinopropylsuccinic acid and 2-mercaptomethyl-3-guanidinoethylthiopropanoic acid in final concentrations of 10 mM and 2.1 mM, respectively. The monocarboxypeptidase is apparently supplied by biosynthesis of new material but is not stored as a preformed enzyme because cycloheximide markedly inhibits its expression.

Acetylglucosaminidase

Lipopolysaccharides as complement inhibitors by complex formation with the purified third complement component (C3).

Lipopolysaccharides (LPS) from different bacteria in smooth or rough form (Y. enterocolitica, Y. pseudotuberculosis, E. coli, S. typhimurium, S. marcescens) strongly inhibited hemolytic C3 in incubation mixtures with purified C3. LPS from a core deficient mutant was still reactive, whereas lipid A no longer affected C3 activity. The physical state of LPS was critical for its effect on C3. Strand-like LPS structures formed by Ca++-induced aggregation of solubilized LPS, as shown by electron microscopy, demonstrated the highest reactivity with C3. Inhibition of hemolytic C3 was found to be due to complex formation between LPS and C3 by a hydrophobic reaction. The binding capacity of 1 microgram LPS-R and LPS-S was as high as 125 ng C3 and 56 ng C3, respectively. The C3b fragment required different reaction conditions for maximal binding. The strong binding capacity of LPS for the complement component C3 raises the possibility that LPS act as inhibitors of complement by interruption of the reaction cascade at local infectious sites with gram-negative bacteria.

Centrifugation, Density Gradient

C3 activation by a new factor B-dependent enzyme detected in culture supernatant from guinea-pig peritoneal macrophages.

Culture supernatants (c.s.) collected from thioglycollate-elicited macrophages were concentrated and incubated with purified C3. In this reaction mixture loss of haemolytic C3 according to classical enzyme kinetics was observed. As revealed by SDS-PAGE, c.s.-catalysed fragmentation of the C3 alpha-chain occurred. The cleavage products were identified by size and function as C3a and C3b. The apparent molecular weight of this C3-activating enzyme in c.s. was approximately 220,000 according to ultracentrifugation studies. This large enzyme showed the following characteristics: it had no activity against C5; it was inhibited by EDTA; Mg2+ was required for its optimal function; its half-life at 37 degrees was approximately 35 min; it was completely inhibited by anti-B IgG. Thus, we were able to detect a C3-activating enzyme in c.s. containing B but differing otherwise from a preformed C3 convertase of the alternative pathway. The exact component composition of this new enzyme is under further investigation.

Animals

[Complement: function. Biological significance and clinical aspects (author's transl)].

The term complement comprises approximately twenty serum proteins. Activation of these components can be started by antigen-antibody complexes or even without the participation of antibodies. The activated complement proteins bring about a number of important biological actions. They produce vigorous local inflammatory reactions, exert phagocytosis--increase effects, destroy microbial and animal cells and affect the immune response to antigen stimulus. Congenital lack of individual complement components may considerably impair the antimicrobial defense or even be the cause of excessive inflammatory reactions. The activation of complement may also have harmful effects on the organism.

Angioedema

Requirements for the solubilization of immune aggregates by complement. The role of the classical pathway.

In this paper we examine the role of the classical pathway in the complement-mediated solubilization of immune precipitates (CRA). Serum reagents were depleted of the alternative pathway components properdin and factor D. Both depleted reagents lack CRA although they have almost intact hemolytic activity. Also, immune complexes were not solubilized when incubated with high concentrations of the classical pathway components (C1, C4, C2, and C3. We conclude that CRA is not mediated by the classical pathway alone. Activation of the classical pathway by the immune aggregates greatly enhances CRA. The effect of the classical pathway is to deposit C3b on the antigen-antibody lattice and promote the assembly of a lattice-associated, properdin-dependent C3-convertase. Although C3, C4, and properdin were detected on complexes solubilized by serum in the presence of Ca++ and Mg++, only C3 and properdin were found on the complexes when Ca++ had been chelated by ethylene glycol-bis-(beta-aminoethyl ether), N,N'-tetraacetic acid. In both situations the aggregates were capable of converting C5 in the fluid phase. However, no C5 was found on the solubilized complexes. These findings suggest that in contrast to nascent C3b and C4b, nascent C5-9 lacks binding affinity for immune aggregates.

Antigen-Antibody Complex

Biosynthesis of pro-C3, a precursor of the third component of complement.

A precusor of the third component of complement, pro-C3, was detected in studies of cell-free synthesis and intracellularly in homogenates of liver tissue cultures. The molecular weight of pro-C3 was indistinguishable from that of intact native C3 secreted in vitro by liver or peritoneal macrophages, but its structure was different. Pro-C3 is a single polypeptide chain, whereas C3 secreted by cells in culture consists of two polypeptide chains (mol wt 120,000 and 76,000) linked by disulfide bonds.

Animals