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Cross-immunity between Haemonchus contortus and Trichostrongylus colubriformis in sheep.

Cross-protective immunity between the nematode parasites, Haemonchus contortus and Trichostrongylus colubriformis, was examined in sheep vaccinated with irradiated larvae of either species. Secondary immunological responsiveness stimulated in this manner protected only against challenge infection with the species used for vaccination. Significant cross-protective immunity was not observed. Titres of serum antibody to an extract of adult but not infective larval T. colubriformis reflected the specificity for protective immunity. Immediate hypersensitivity skin reactions to nematode extracts did not reflect the antigen-specificity for protective immunity.

Animals↗

Controversies in the use of passive immunotherapy for bacterial infections in the critically ill patient.

Several preparations of standard immunoglobulins for intravenous use have been tested as adjunctive therapy for bacterial infections in premature neonates and in critically ill adults after major surgery, trauma, and burn. The use of intravenous immunoglobulins in these settings is controversial because the efficacy and cost-effectiveness of this treatment are still not definitively established. Specific preparations of immunoglobulins against Pseudomonas aeruginosa for intramuscular administration have shown promising efficacy, and preparations for intravenous administration are now under investigation. Cross-protection against a wide range of gram-negative infections has been attempted by the administration of antiserum to the core glycolipid of lipopolysaccharide prepared from volunteers immunized with the J5 mutant of Escherichia coli 0111. Treatment with this preparation improved the survival rate of patients with gram-negative bacteremia and, when administered prophylactically to high-risk surgical patients, prevented shock and death related to gram-negative infections. The mechanism of protection of the J5 antiserum is not clearly understood because of our inability to measure the actual protective antibody in polyclonal J5 antiserum. Thus, the preparation of readily available cross-protective hyperimmune immunoglobulins is hampered because there is presently no method of selecting appropriate donors or high-titered plasma pools.

Bacterial Infections↗

Cross-immunity and antigenic relationships among five strains of Mycoplasma gallisepticum in young Leghorn chickens.

Five strains of Mycoplasma gallisepticum (MG) were tested for their cross-protection, virulence, and antigenic relationship in young leghorn chickens. Chickens vaccinated at 1 day of age by eye drop with the F or R strain of MG had good protection against aerosol challenge with the F, R, or S-6 strain at 4 weeks postvaccination. Chickens vaccinated at 1 day of age with the 503 or 730 strain had only partial protection against challenge with R, F, or S-6; the degree of cross-protection was related to the virulence of the vaccine strain used. In the hemagglutination-inhibition test, serum from chickens with single infection (vaccination and/or challenge with only one strain) with the F, S-6, or R strain reacted strongly with antigens prepared from S-6 and A5969 and reacted weakly with 730 and 503 antigens. Chickens with a single infection with the 503 or 730 strain reacted only with antigen prepared from the homologous strain. Serum from chickens with a two-strain mixed infection had a wider spectrum of HI activities. In the serum-plate-agglutination test, serum from chicken infected with the S-6, F, or R strain reacted with all antigens. Chickens infected with the 503 or 730 strain reacted more strongly with the homologous antigen. Antigen prepared from the S-6 strain of MG detected antibodies against the 503 and 730 strains more efficiently than did antigen prepared from the A5969 strain.

Animals↗

Candidate vaccine antigens and genes in Pasteurella multocida.

Pasteurella multocida is the causative agent of fowl cholera and other diseases of production animals. Isolates are classified into five groups based on capsular antigens and into 16 serotypes based on LPS antigens. Strains causing fowl cholera are most frequently designated A:1, A:3 or A:4. Whole cell bacterins can provide some degree of protection, but only against the homologous LPS serotype. There is good evidence that cross-protective antigens are expressed only under in vivo conditions. Empirically derived, live, attenuated vaccines can protect against heterologous serotypes, but because the basis for attenuation is undefined, reversion to virulence is not uncommon. Work in our laboratory is aimed at using a variety of approaches to identify potential protective antigens or virulence genes to be used as candidates for attenuating mutations or as the basis for vaccine antigen delivery systems. The gene encoding an outer membrane protein, Oma87, which is a homologue of the D15 protective antigen of Haemophilus influenzae, was cloned and sequenced. Rabbit antiserum prepared against recombinant Oma87 could passively protect mice against infection. Type 4 fimbriae form the basis of vaccines against ovine footrot and bovine keratoconjunctivitis. We have identified type 4 fimbriae on the surface of P. multocida, purified the fimbrial subunit protein, PtfA, and determined its N-terminal amino acid sequence. Subsequent cloning of the ptfA gene and its inactivation will now be used to assess the importance of type 4 fimbriae in virulence. There has long been anecdotal evidence for the importance of capsule in virulence, but unequivocal genetic evidence for such a role is lacking. We have cloned and characterised the capsule biosynthetic locus in P. multocida A:1 and identified four bex genes involved in capsule transport and genes encoding enzymes involved in the biosynthesis and transfer of the N-acetyl glucosamine and glucuronic acid components of the capsule. It has been suggested that the low concentration of available iron in vivo acts as an environmental cue for expression of cross-protective antigens. Accordingly, we have cloned and characterised the gene encoding transferrin binding protein, Tbpl, so that its role in immunity and virulence can be investigated. Although P. multocida is not normally considered haemolytic, we have observed haemolysis under anaerobic conditions. Standard library construction and screening resulted in the identification of the mesA gene which encodes an esterase enzyme resulting in a haemolytic phenotype under anaerobic conditions. Virulence studies with mesA- mutants were performed to assess its role in pathogenesis. Using a promoterless phoA gene vector system, the cloning of proteins homologous to known surface proteins of other species as well as proteins unique to P. multocida, allowing their potential as vaccine components to be assessed.

Amino Acid Sequence↗

Immunity targeting common core antigens of gram-negative bacteria.

Antibodies against common gram-negative core antigens can provide protection against environmental, commensual, and contagious bacteria that cause life-threatening gram-negative sepsis/endotoxemia. Cross-protective immunity may be effective against many common livestock diseases, including neonatal coliform septicemia, coliform mastitis, septic metritis, and severe enteritis. The greatest potential benefit of cross-protective immunity may be realized in the reduction of ill-thrift and mortality of neonates. The use of active and passive immunization against core antigens common to gram-negative bacteria has been successful in human beings, laboratory animals, and livestock. Protection has been observed following challenge with either heterologous endotoxin or unrelated, live, virulent gram-negative bacteria.

Animals↗

Immunological and serological diversity of Neisseria gonorrhoeae: identification of new immunotypes and highly protective strains.

Gonococci, irrespective of serotype or immunotype, varied significantly in their capacity to induce immunity in animal models, and in vitro serological relatedness did not always insure in vivo cross-protection. By using a serum bactericidal assay followed by in vivo cross-protection studies, new immunotypic strains which were highly protective were identified from cultures isolated in different geographical areas and from patients with various clinical manifestations. Beta-lactamase production and gonococcal immunotype did not appear as related characteristics in that certain penicillin-sensitive strains were highly effective in immunizing animals against infection with beta-lactamase producers. The findings of this study emphasize the importance of using appropriate biological tests and strains for the investigation of gonococcal immunity and vaccine development. Immunization with a combination of a few major gonococcal immunotypic immunogens may provide substantial protection against the majority of penicillin-sensitive and beta-lactamase-producing gonococci. Investigation of isolated immunotypic immunogens is in progress.

Animals↗

Effects of ultraviolet light on free and peptide-bound pyridinoline and deoxypyridinoline cross-links. Protective effect of acid pH against photolytic degradation.

Little is known about the photodegradation of pyridinoline (Pyd) and deoxypyridinoline (Dpd), which are two mature cross-links stabilizing collagen within extracellular matrix. In this study, highly purified free Pyd and Dpd cross-links have been degraded by irradiation with ultraviolet light and we have shown that photolysis varies with the pH value. Assessment of photolysis in basic (pH 9) and neutral (pH 7) solutions by high-performance liquid chromatography as well as by UV absorbance measurement indicates that both cross-links are degraded after a 24 h UV exposure, while in acidic solution (pH 3) only Dpd is photolysed, suggesting that acid pH provides major protection against Pyd photolysis. Photodegradation products have been studied by amino-acid and mass spectral analysis. Both methods confirm the lack of Pyd degradation in acid pH. Furthermore, amino-acid analysis allows us to identify hydroxylysine and lysine as a result of Pyd and Dpd photolysis, respectively, indicating that the mechanism of photodegradation involves the cleavage of the pyridinium ring on each side of the quaternary nitrogen. Finally, we have also studied the photolysis of different molecular species of type I collagen peptides, obtained by digestion with collagenase of demineralized turkey bone. Our results indicate that even when they are part of the structure of collagen peptide, Pyd and Dpd can be photolysed. However, we have shown that the larger the peptide is, the smaller are the effects of UV irradiation.

Amino Acids↗

Protective humoral response against pneumococcal infection in mice elicited by recombinant bacille Calmette-Guérin vaccines expressing pneumococcal surface protein A.

Pneumococcal surface protein A (PspA), a cell-surface protein present on all strains of pneumococci, has been shown to elicit protective antibody responses in mice in the absence of capsular polysaccharide. Whereas PspA is polymorphic, considerable cross-reactivity and cross-protection have been demonstrated among PspA proteins of pneumococci exhibiting different capsular and PspA serotypes. A gene segment encoding the nonrepetitive variable NH2-terminal portion of PspA has been cloned into three distinct recombinant Bacille Calmette-Guérin (rBCG) vectors, allowing for expression of PspA as a cytoplasmic or secreted protein, or a chimeric exported membrane-associated lipoprotein. All rBCG-PspA strains elicited comparable anti-PspA ELISA titers, ranging from 10(4) to 10(5) (reciprocal titers) in both BALB/c and C3H/HeJ mice. However, protective responses were observed only in animals immunized with the rBCG-PspA vaccines expressing PspA as a secreted protein or chimeric exported lipoprotein. In addition, anti-PspA immune sera elicited by the rBCG vaccines passively protected X-linked immunodeficient mice from lethal challenge with the highly virulent, encapsulated WU2 strain of Streptococcus pneumoniae and two additional virulent strains exhibiting heterologous PspA and capsular serotypes. These studies confirm previous PspA immunization studies showing cross-protection against heterologous serotypes of S. pneumoniae and demonstrate a potential for rBCG-based PspA vaccines to elicit protective humoral responses against pneumococcal disease in humans.

Animals↗

Trials of live influenza A recombinants in man during natural antigenic change in 1971-1976.

A long-term study is described of human trials with live recombinants derived from A/PR/8/34 (H0 N1) and successive virulent H3 N2 viruses. A/PR/8/34 was noninfectious for man and the H3 N2 strains all induced similar influenza-like illness. In each recombinant experiment, some of the progeny were adequately attenuated and potentially immunogenic. In addition, there appeared to be evidence of probable cross-protection against viruses with related but non-identical haemagglutinins. However, the degree of cross-protection depended upon the time interval between the appearance of the epidemic and vaccine viruses. Recombinants of A/PR/8/34 and a human Hsw1 strain of low virulence did not function satisfactorily, and it seemed that the suitability of A/PR/8/34 as a 'master' parent depended upon the presence of standard genetic properties in the wild parents. The replacement of A/PR/8/34 with the partially virulent virus, X-31 (H3 N2), produced a live vaccine which was infectious but poorly antigenic. A universal master strain for live influenza vaccine recombinants is probably not yet a practical possibility.

Adolescent↗

Shaping the phylogenetic tree of influenza by cross-immunity.

Cross-immunity among related strains can account for the selection producing the slender phylogenetic tree of influenza A and B in humans. Using a model of seasonal influenza epidemics with drift (Andreasen, 2003. Dynamics of annual influenza A epidemics with immuno-selection. J. Math. Biol. 46, 504-536), and assuming that two mutants arrive in the host population sequentially, we determine the threshold condition for the establishment of the second mutant in the presence of partial cross-protection caused by the first mutant and their common ancestors. For fixed levels of cross-protection, the chance that the second mutant establishes increases with rho the basic reproduction ratio and some temporary immunity may be necessary to explain the slenderness of flu's phylogenetic tree. In the presence of moderate levels of temporary immunity, an asymmetric situation can arise in the season after the two mutants were introduced and established: if the offspring of the new mutant arrives before the offspring of the resident type, then the mutant-line may produce a massive epidemic suppressing the original lineage. However, if the original lineage arrives first then both strains may establish and the phylogenetic tree may bifurcate.

Animals↗

Stress response of Listeria monocytogenes isolated from cheese and other foods.

The responses to pH and sodium chloride of four strains of Listeria monocytogenes isolated from Portuguese cheese, with a sodium chloride concentration of about 2% (w/v) and a pH value from 5.1 to 6.2, were studied. Two isolates from meat and two clinical isolates related to food-borne listeriosis, in which the implicated food product had about 2-3.5% (w/v) sodium chloride, also were studied. The effect of temperature on pH and sodium chloride sensitivity was also determined. The results show that natural isolates vary in response to these stresses and the data were often at variance with previously published data. Strains varied in sensitivity to low pH and to high sodium chloride concentration but the cheese isolates tended to be more resistant. A lower temperature was associated with a decrease in resistance to low pH and to sodium chloride. All strains showed an acid tolerance response induction when grown at pH 5.5 and although the time required for maximum induction of the response varied between strains, 2 h of acid adaptation, at least, was necessary which is longer than previously reported. Some strains showed an osmotolerance response after incubation in 3.5% (w/v) sodium chloride. Osmoadaptation, in addition to inducing an osmotolerance response, also induced cross-protection against acid shock conditions (pH 3.5). The acid tolerance response also induced a cross-protection against osmotic shock conditions (20% (w/v) sodium chloride). In some cases there was a relationship between the degree of resistance and adaptation, but usually the behaviour of a particular strain was independent of the conditions from which it was isolated.

Adaptation, Physiological↗

Mechanisms of heterosubtypic immunity to lethal influenza A virus infection in fully immunocompetent, T cell-depleted, beta2-microglobulin-deficient, and J chain-deficient mice.

Immunity that is cross-protective between different influenza A virus subtypes (termed heterosubtypic immunity) can be demonstrated readily in some animals but only rarely in humans. Induction of heterosubtypic immunity in humans by vaccines would provide public health benefit, perhaps offering some protection against pandemics or other new influenza A strains. Therefore, we studied mechanisms mediating heterosubtypic immunity in mice. Immunization with either A/H1N1 or A/H3N2 virus protected mice against mortality following heterosubtypic challenge while providing modest reductions in lung virus titers. No cross-protection was seen with distantly related type B influenza virus. Depletion of CD4+ or CD8+ T cells or both around the time of challenge had no significant effect on survival, indicating that these cells are not required at the effector stage. beta2-microglobulin knockout mice could be protected readily against heterosubtypic challenge, confirming that class I-restricted T cells are not required. In beta2-microglobulin -/- mice, depletion of CD4+ T cells partially abrogated heterosubtypic immunity, showing that they play a role in these mice. Passive transfer of Abs to naive recipients protected against subsequent challenge with homologous but not heterosubtypic virus. Because a role for secretory Abs has been suggested, we studied dependence on the J chain, which is required for polymeric Ig receptor-mediated IgA transport. J chain knockout mice were readily protected by heterosubtypic immunity, indicating that polymeric Ig receptor-mediated transport is not required. Better understanding of heterosubtypic immunity should be valuable in analyzing new vaccines, including peptide and DNA vaccines, intended to induce broadly cross-reactive immunity.

Animals↗

Immunization with reverse-genetics-produced H5N1 influenza vaccine protects ferrets against homologous and heterologous challenge.

BACKGROUND: Multiple cases of transmission of avian H5N1 influenza viruses to humans illustrate the urgent need for an efficacious, cross-protective vaccine. METHODS: Ferrets were immunized with inactivated whole-virus vaccine produced by reverse genetics with the hemagglutinin (HA) and neuraminidase genes of A/HK/213/03 virus. Ferrets received a single dose of vaccine (7 or 15 microg of HA) with aluminum hydroxide adjuvant or 2 doses (7 microg of HA each) without adjuvant and were challenged with 10(6) 50% egg infectious doses of A/HK/213/03, A/HK/156/97, or A/Vietnam/1203/04 virus. RESULTS: One or 2 doses of vaccine induced a protective antibody response to the vaccine strain. All immunization regimens completely protected ferrets from challenge with homologous wild-type A/HK/213/03 virus: no clinical signs of infection were observed, virus replication was significantly reduced (P<.05) and was restricted to the upper respiratory tract, and spread of virus to the brain was prevented. Importantly, all vaccinated ferrets were protected against lethal challenge with the highly pathogenic strain A/Vietnam/1203/04. The 2-dose schedule induced higher levels of antibodies that were cross-reactive to antigenically distinct H5N1 viruses. CONCLUSIONS: H5N1 vaccines may stimulate an immune response that is more cross-protective than what might be predicted by in vitro assays and, thus, hold potential for being stockpiled as "initial" pandemic vaccines.

Animals↗

[Immunogenicity and protective capacity of leptospiral whole-cell monovalent serogroup Ballum vaccines in hamsters].

Leptospira serogroup Ballum is at present the first cause of human leptospirosis in Cuba. Killed whole-cell vaccines were formulated with two clinical isolates of Leptospira interrogans serogroup Ballum using aluminum hydroxide as adjuvant. Agglutinins levels induced by each vaccine in hamsters were estimated by microscopic agglutination test and specific IgG activities were quantified by a whole cell-based enzyme-linked immunosorbent assay. Homologous and cross protective capacity against lethal and sublethal infection were determined in vaccinated animals by challenge with 100 and 10,000 LD50 of five virulent strains belonging to serogroups Ballum, Canicola, Icterohaemorrhagiae and Pomona. Both monovalent serogroup Ballum vaccines were immunogenic and induced complete homologous protection in the animal model. Cross-protection was only significant in one of the two vaccines against challenge with 100 LD50 of serogroup Canicola. The results of this study demonstrate the high immunogenicity and protective capacity in hamsters of whole-cell monovalent vaccines formulated with two vaccine candidate strains belonging to the most prevalent serogroup of Leptospira in Cuba.

Animals↗

Enhanced survival in Pseudomonas aeruginosa septicemia associated with high levels of circulating antibody to Escherichia coli endotoxin core.

We studied the relationship between serum antibodies to the cross-reactive endotoxin core of Escherichia coli and survival following Pseudomonas aeruginosa septicemia. Core glycolipid was purified from the outer cell membrane of a uridine diphosphate galactose 4-epimerase-deficient rough mutant E. coli (J5 strain), characterized, and used as the antigen in a quantitative enzyme-linked immunosorbent assay (ELISA) to measure core-specific IgG and IgM antibodies. 43 patients with Pseudomonas septicemia, among whom there was a mortality of 42%, were evaluated. Core-specific antibody concentrations in acute sera ranged from 1 to 49 micrograms/ml in the case of IgG and from 1 to 200 micrograms/ml for IgM. Core-specific antibodies of both isotypes were higher in patients who survived compared with those who succumbed to their septicemias (mean, microgram/ml +/- SEM, 26 +/- 3 vs. 14 +/- 4, P = 0.005 for IgG, and 55 +/- 12 vs. 18 +/- 5, P = 0.009 for IgM). Although total IgG levels were also higher in acute sera from survivors compared with nonsurvivors (mean, mg/dl +/- SEM, 1,120 +/- 99 vs. 694 +/- 119, P = 0.004), total IgM levels were virtually identical in the two groups (146 +/- 23 vs. 148 +/- 48, P = 0.52). Conversely, patients with core-specific IgG levels greater than 10 micrograms/ml at the onset of septicemia had better survival than those with levels less than 10 micrograms/ml (79 vs. 14%, P less than 0.001), and patients with core-specific IgM levels greater than 30 micrograms/ml had better survival than those with levels less than 30 micrograms/ml (81 vs. 44%, P = 0.01). In comparison, patients with total IgG levels greater than 1,000 mg/dl also had better survival than those with levels less than 1,000 mg/dl (82 vs. 42%, P = 0.01), while those with total IgM levels greater than 150 mg/dl showed somewhat less improvement in survival compared with those with levels less than 150 mg/dl (71 vs. 50%, P = 0.12). Core-specific IgM was highly correlated with core-specific IgG (r = 0.52), but not with type-specific anti-lipopolysaccharide (r = 0.13) or anti-toxin A (r = 0.12) antibodies, or with total IgG (r = 0.28) or IgM (r = 0.31). In contrast, core-specific IgG correlated somewhat more closely with type-specific antibodies (r = 0.36), and with total IgG (r = 0.51) and IgM (r = 0.52). Stepwise linear discriminant analysis indicated that type-specific antibody levels were the best predictor of outcome, among those antibodies examined, followed by anti-core IgM. Although anti-core IgG, anti-toxin A, and total IgG levels all correlated individually with survival, none augmented the prognostic power of type-specific antibodies in combination with anti-core IgM, which together predicted outcome accurately 73.5% of the time. Host factors not significantly associated with anti-core antibody levels included rapidly fatal underlying disease, age, sex, leukopenia, and prior treatment with cytotoxic drugs. In contrast, prior steroid therapy was associated with low levels of both core-specific IgG and IgM (P < 0.05). These data suggest cross-protective activity against P. aeruginosa septicemia of naturally occurring antibodies to the endotoxin core of E. coli. Anti-core antibodies, particularly of the IgM isotype appear to augment the more specific protective immunity engendered by antibodies to the O-specific side chains of Pseudomonas lipopolysaccharides. This cross-protective immunity likely applies to other Gram-negative pathogens as well.

Antibodies, Anti-Idiotypic↗

Immunity to Salmonella typhimurium infection in C3H/HeJ and C3H/HeNCrlBR mice: studies with an aromatic-dependent live S. typhimurium strain as a vaccine.

Immunization with avirulent Salmonella typhimurium strain SL3235, a smooth, aroA- derivative, was shown to induce high levels of resistance to challenge with virulent S. typhimurium in innately hypersusceptible C3H/HeJ mice and inherently resistant C3H/HeNCrlBR mice. Strain SL3235 is one of a class of avirulent aroA- derivatives made from various strains and species of Salmonella that are being considered as vaccine candidates for cattle and humans. This paper supports their efficacy and potential utility in this regard. In C3H/HeJ mice, immunity against over 1,000 50% lethal doses of virulent S. typhimurium was evident as early as 3 days after immunization and persisted for at least 7 months. Further, the vaccine was effective over a broad spectrum of doses, ranging from 10(4) to 10(6) organisms. Infection with SL3235 led to marked splenomegaly in both mouse strains. The relationship of splenomegaly to the growth kinetics and colonization by SL3235 in the spleens of infected C3H/HeJ and C3H/HeNCrlBR mice was followed. SL3235 initially multiplied slowly in the spleens of both mouse strains and then was rapidly cleared. Less multiplication was seen in the resistant C3H/HeNCrlBR mice than in C3H/HeJ mice. Maximum splenomegaly occurred after clearance of the organism had begun. Protection against virulent S. typhimurium persisted after virtually all of the SL3235 vaccine strain had been cleared from the spleen. Cross-protection against Listeria monocytogenes was evident, but had a later onset, waned by 21 days, and was not detectable by 1 month after vaccination. Demonstration of this cross-protection is consistent with the interpretation that SL3235 induces cellular immunity. One-week immune spleen cells adoptively transferred anti-S. typhimurium and anti-L. monocytogenes immunity. T cell-enriched fractions were ineffective in adoptive transfer, as were spleen cells taken 2 weeks or later after immunization. Protective capacity was in the adherent cell fraction and seemed to be associated with macrophages. Evidence for induction of a population of sensitized T cells was obtained by using a peritoneal exudate T-lymphocyte proliferation assay on peritoneal T lymphocytes collected 1 to 3 months after SL3235 infection.

Animals↗

Contagious ecthyma virus-vaccination failures.

Cross-protection experiments were undertaken to investigate reasons for contagious ecthyma (CE) virus-vaccination failures. Vaccination with sheep-passaged or with cell culture-passaged virus did not protect lambs against development of lesions after challenge inoculation with sheep-passaged virus. However, lesions which developed after challenge exposure with sheep-passaged CE virus healed significantly faster than did those induced by the initial vaccination with sheep-passaged virus (P less than 0.001). A significant decrease in the healing time was not observed for lambs initially vaccinated with cell culture-passaged CE virus after challenge exposure with sheep-passaged virus (P greater than 0.05). Protection was evident when lambs were challenge inoculated with the less virulent cell culture-passaged virus and cross-protection between the ST and CSL isolates was detected. This study indicated that complete protection even against homologous strain challenge was not achieved. Antigenic differences between vaccinal and field strains appeared an unlikely cause of vaccination failures. It also is evident that cell culture-propagated CE virus preparations are less effective for vaccination purposes than are those propagated in sheep.

Animals↗