PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Cross Protection”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

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

At least 487 records · Page 27Linked to original sources

Similarities and disparities between core-specific and O-side-chain-specific antilipopolysaccharide monoclonal antibodies in models of endotoxemia and bacteremia in mice.

We have previously described cross-reactive antilipopolysaccharide (anti-LPS), or anti-endotoxin, monoclonal antibodies (MAbs) which provide cross-protection in several systems of endotoxin bioactivity. The protective effects of the murine cross-reactive MAb WN1 222-5 (immunoglobulin G2a(kappa) [IgG/2a(kappa)]) and of its chimerized version, SDZ 219-800 [human IgG1(kappa)], have now been evaluated in lethality models against LPS from three different serotypes and in bacterial infection models. We confirmed the protective activity of the two MAbs in D-galactosamine-sensitized mice challenged with LPS of other E. coli serotypes (O18, O127, and O111). The protective effect correlated with the suppression of tumor necrosis factor formation. Furthermore, WN1 222-5 enhanced bacterial clearance of intravenously administered E. coli O111 bacteria, thus protecting mice from death. However, the MAbs were unable to provide protection in a peritonitis model (intraperitoneal inoculation). Our study, therefore, shows that LPS cross-reactive antibodies are capable of mediating cross-protection against LPS and bacteria but that the selected models have a clear influence on the results.

Animals↗

[Structure of the O-specific polysaccharides and the protective activity of the lipopolysaccharides in Pseudomonas aeruginosa of 7 immunotypes (after Fisher)].

The structure of O-specific polysaccharides and the protective activity of lipopolysaccharides (LPS) obtained from seven P. aeruginosa immunotypes (according to Fisher's classification) have been studied. The structure of O-specific polysaccharides, immunotypes 2, 3, 4, 5 and 6, is identical to that of polysaccharides of serotypes 011; 0(2a), 2c; 01; 010a, 10b; 07a, 7d respectively. No structural analogs of O-polysaccharide characteristic of immunotypes 1 and 7 have been detected among serotypes classified according to the scheme of Lányi-Bergan-Akatova-Smirnova. The specific character of O-polysaccharides is confirmed by the results of the passive hemagglutination inhibition test, but the data of the passive hemagglutination test indicate that LPS of different immunotypes are antigenically related. As revealed in experiments on the active immunization of mice, LPS of seven immunotypes possess more or less pronounced cross protective properties. The causes of the cross protective activity observed in experiments with these LPS are discussed.

Animals↗

Do stresses encountered during the smoked salmon process influence the survival of the spoiling bacterium Shewanella putrefaciens?

The influence of different treatments (i.e. cold, NaCl, phenol and anaerobiosis) encountered during the smoked salmon process was studied by analysing the survival capacity of two Shewanella putrefaciens strains (CIP 69.29 and J13.1). Our results indicated that only the salt stress was critical for the survival of S. putrefaciens. Nevertheless, both strains of S. putrefaciens grown at low temperatures developed a cross-protection to a lethal NaCl treatment. To our knowledge, this is the first report showing that growth at low temperatures induces cross-protection towards NaCl challenge. Moreover, we observed a significant sensitization by moderate salt concentration to a phenol treatment. From our combined data, we propose that control of S. putrefaciens proliferation could take place during the smoked salmon process rather than during storage of the final product.

Anaerobiosis↗

Reactivity of sera from sheep immunised with individual outer membrane proteins of Bacteroides nodosus against heterologous bacterial strains.

In order to identify those bacterial antigens which might be involved in immunity against ovine footrot, antisera were raised in sheep to 6 proteins in the outer membrane complex (OMC) of one strain of Bacteroides nodosus. Examination of the specificity of these antisera by Western blotting, crossed immunoelectrophoresis (XIEP) and IEP, revealed that they recognized the homologous OMC protein, but did not precipitate either undenatured pili or OMC, nor could they agglutinate the homologous bacteria. In contrast, anti-OMC and anti-pili sera could precipitate OMC or pili respectively, and agglutinate whole bacteria. Subsequent analysis of these sera against 5 strains of B. nodosus from different serogroups revealed that Proteins 1, 3 and 4 had a similar antigenic structure in all strains examined. The reactivity of anti-pili sera was restricted to homologous bacteria whereas anti-pilin sera (raised against denatured pili) also reacted with pilin from 2 of 3 heterologous strains. However, none of the patterns of staining or absorption of any of these sera matched the spectrum of cross-protection afforded by vaccination of sheep with B. nodosus strain 198 cells. The results question the role of individual OMC proteins in cross-protective immunity and may imply that interactions between several bacterial components are involved in the phenomenon.

Agglutination Tests↗

Evaluation of safety, immunogenicity and efficacy of an attenuated rotavirus vaccine, RIX4414: A randomized, placebo-controlled trial in Latin American infants.

BACKGROUND: A live attenuated monovalent rotavirus vaccine RIX4414 was developed with a human strain of G1P1A P[8] specificity to reduce the rotavirus burden in children. METHODS: A double blind, randomized, placebo-controlled study evaluated the efficacy, immunogenicity, safety and reactogenicity of 2 oral doses of RIX4414 (10(4.7), 10(5.2) or 10(5.8) focus-forming units) at 2 and 4 months coadministered with routine vaccinations and oral poliovirus vaccine given for study purposes at least 14 days apart. The 2155 infants (1618 vaccine/537 placebo) enrolled in Brazil, Mexico and Venezuela were followed until 1 year of age. RESULTS: Antirotavirus IgA seroconversion rates 2 months after dose 2 ranged between 61% (10(4.7) ffu group) and 65% (10(5.8) ffu group), and most of the infants had seroprotective levels of antibodies to coadministered routine vaccinations. The reactogenicity profile of RIX4414 was similar to that of the placebo, and no vaccination-related serious adverse events were reported. Protective efficacy against severe and any rotavirus gastroenteritis from 15 days post-dose 2 was highest in the 10(5.8) ffu group [86%; 95% confidence interval (95% CI), 63-96% and 70% (95% CI 46-84%), P < 0.001, 2-sided Fisher's exact test]. The efficacy against hospitalization was 79% (95% CI 48-92%) for pooled vaccine groups. Multiple rotavirus serotypes [G1 (50%), G9 (40%), G2, G3 and G4] were identified from gastroenteritis stools (enzyme-linked immunosorbent assay and reverse transcription-polymerase chain reaction) during the study period. For severe gastroenteritis caused by G9 serotypes, the protection reached 77% (95% CI 18-96%) in the 10(5.8) ffu group, providing proof of concept that the monovalent G1P1A P[8] human rotavirus vaccine elicits cross-protection against the G9 strain. A reduction in any and severe rotavirus gastroenteritis was already observed at post-dose 1 (period: day of dose 1 to 14 days post-dose 2) in vaccinees compared with placebo recipients. CONCLUSIONS: Two doses of RIX4414 are highly efficacious, providing cross-protection (G1 and G9 strains, prevalent during this study) and early protection against any and severe rotavirus gastroenteritis and hospitalization to infants in Latin America.

Administration, Oral↗

Severe acute respiratory syndrome vaccine development: experiences of vaccination against avian infectious bronchitis coronavirus.

Vaccines against infectious bronchitis of chickens (Gallus gallus domesticus) have arguably been the most successful, and certainly the most widely used, of vaccines for diseases caused by coronaviruses, the others being against bovine, canine, feline and porcine coronaviruses. Infectious bronchitis virus (IBV), together with the genetically related coronaviruses of turkey (Meleagris gallopovo) and ring-necked pheasant (Phasianus colchicus), is a group 3 coronavirus, severe acute respiratory syndrome (SARS) coronavirus being tentatively in group 4, the other known mammalian coronaviruses being in groups 1 and 2. IBV replicates not only in respiratory tissues (including the nose, trachea, lungs and airsacs, causing respiratory disease), but also in the kidney (associated with minor or major nephritis), oviduct, and in many parts of the alimentary tract--the oesophagus, proventriculus, duodenum, jejunum, bursa of Fabricius, caecal tonsils (near the distal end of the tract), rectum and cloaca (the common opening for release of eggs and faeces), usually without clinical effects. The virus can persist, being re-excreted at the onset of egg laying (4 to 5 months of age), believed to be a consequence of the stress of coming into lay. Genetic lines of chickens differ in the extent to which IBV causes mortality in chicks, and in respect of clearance of the virus after the acute phase. Live attenuated (by passage in chicken embryonated eggs) IBV strains were introduced as vaccines in the 1950s, followed a couple of decades later by inactivated vaccines for boosting protection in egg-laying birds. Live vaccines are usually applied to meat-type chickens at 1 day of age. In experimental situations this can result in sterile immunity when challenged by virulent homologous virus. Although 100% of chickens may be protected (against clinical signs and loss of ciliary activity in trachea), sometimes 10% of vaccinated chicks do not respond with a protective immune response. Protection is short lived, the start of the decline being apparent 9 weeks after vaccination with vaccines based on highly attenuated strains. IBV exists as scores of serotypes (defined by the neutralization test), cross-protection often being poor. Consequently, chickens may be re-vaccinated, with the same or another serotype, two or three weeks later. Single applications of inactivated virus has generally led to protection of <50% of chickens. Two applications have led to 90 to 100% protection in some reports, but remaining below 50% in others. In practice in the field, inactivated vaccines are used in laying birds that have previously been primed with two or three live attenuated virus vaccinations. This increases protection of the laying birds against egg production losses and induces a sustained level of serum antibody, which is passed to progeny. The large spike glycoprotein (S) comprises a carboxy-terminal S2 subunit (approximately 625 amino acid residues), which anchors S in the virus envelope, and an amino-terminal S1 subunit (approximately 520 residues), believed to largely form the distal bulbous part of S. The S1 subunit (purified from IBV virus, expressed using baculovirus or expressed in birds from a fowlpoxvirus vector) induced virus neutralizing antibody. Although protective immune responses were induced, multiple inoculations were required and the percentage of protected chickens was too low (<50%) for commercial application. Remarkably, expression of S1 in birds using a non-pathogenic fowl adenovirus vector induced protection in 90% and 100% of chickens in two experiments. Differences of as little as 5% between the S1 sequences can result in poor cross-protection. Differences in S1 of 2 to 3% (10 to 15 amino acids) can change serotype, suggesting that a small number of epitopes are immunodominant with respect to neutralizing antibody. Initial studies of the role of the IBV nucleocapsid protein (N) in immunity suggested that immunization with bacterially expressed N, while not inducing protection directly, improved the induction of protection by a subsequent inoculation with inactivated IBV. In another study, two intramuscular immunizations of a plasmid expressing N induced protective immunity. The basis of immunity to IBV is not well understood. Serum antibody levels do not correlate with protection, although local antibody is believed to play a role. Adoptive transfer of IBV-infection-induced alphabeta T cells bearing CD8 antigen protected chicks from challenge infection. In conclusion, live attenuated IBV vaccines induce good, although short-lived, protection against homologous challenge, although a minority of individuals may respond poorly. Inactivated IBV vaccines are insufficiently efficacious when applied only once and in the absence of priming by live vaccine. Two applications of inactivated IBV are much more efficacious, although this is not a commercially viable proposition in the poultry industry. However, the cost and logistics of multiple application of a SARS inactivated vaccine would be more acceptable for the protection of human populations, especially if limited to targeted groups (e.g. health care workers and high-risk contacts). Application of a SARS vaccine is perhaps best limited to a minimal number of targeted individuals who can be monitored, as some vaccinated persons might, if infected by SARS coronavirus, become asymptomatic excretors of virus, thereby posing a risk to non-vaccinated people. Looking further into the future, the high efficacy of the fowl adenovirus vector expressing the IBV S1 subunit provides optimism for a live SARS vaccine, if that were deemed to be necessary, with the possibility of including the N protein gene.

Animals↗

Relationship between stress response toward bile salts, acid and heat treatment in Enterococcus faecalis.

Stress tolerance and cross-protection in Enterococcus faecalis ATCC19433 were examined after exposure to bile salts, acid or heat shock. Bile salts and heat adapted cells demonstrated induced homologous tolerance and cross-resistance. No cross-protection of heat adapted cells against acid stress is observed and pretreatment with bile salts even sensitized the cells to this challenge. Whole-cell protein extract analysis revealed that each treatment induced a battery of stress proteins. Some of these polypeptides are induced by more than one treatment. The greatest overlap is observed between bile salts and heat treatments. Eighteen stress proteins, including DnaK and GroEL, are common between these stresses.

Bile Acids and Salts↗

Pathotypical and genotypical characterization of strains of Newcastle disease virus isolated from outbreaks in chicken and goose flocks in some regions of China during 1985-2001.

Twenty-nine strains of Newcastle disease virus (NDV) isolated from outbreaks in chicken and goose flocks in several regions of China during 1985-2001 were characterized pathotypically and genotypically. All except one of these strains were velogenic. For genotyping, phylogenetic tree analysis (nt 47-420), restriction site mapping (nt 334-1682) and residue substitution analysis (residues 4-124) of the F gene were performed using sequences of our isolates and sequences of selected NDV strains from GenBank. The results revealed that most of these newly characterized strains belonged to six novel genetic groups that were designated as VIf, VIg, VIIc, VIId, VIIe and IX. The genotype IX viruses, to which the China challenge strain F48E8 used for vaccine evaluation belonged, were found only in China and still induced sporadic infections in certain areas. Isolates belonging to group VIf and VIg were distinct from previously reported members of genotype VI, with genetic distance from 2.5 to 12.1%. Subgenotype VIIc, VIId and VIIe viruses, which were distributed in clusters in the phylogenetic tree distinct from members of subgenotypes VIIa and VIIb, were responsible for disease outbreaks in chicken and goose flocks and circulated predominantly in southern China in recent years. Finally, cross-protective testing showed that specific-pathogen free (SPF) chickens vaccinated with La Sota vaccines can be fully protected against challenge by strains from genetic groups VIb, VIg, VIId and IX, indicating that the antigenic differences between strains of various genotypes are insufficient to change the cross-protection conferred by the commonly used vaccine.

Amino Acid Sequence↗

Tacaribe virus: a new alternative for Argentine hemorrhagic fever vaccine.

Tacaribe virus is know to protect guinea pigs and primates against lethal challenge with Junín virus. A long-term study on the effect of Tacaribe virus infection in the guinea pig was carried out to determine the extent of cross-protection and whether antigen and/or viral persistence and tissue damage could be detected in immune animals. Viral titers, antigen expression in organs, and histologic lesions were sequentially searched for up to 540 days postinfection (pi). Neutralizing antibodies (Abs) and cross-protection to Junín virus were evaluated up to 660 days pi. Tacaribe virus titers and antigen peaked at 7-10 days pi to become undetectable after 30 days pi, except for a transient viral recovery from salivary gland. Virus was undetectable by coculture at 365 and 540 days pi. No immunoglobulins or C3 deposits were detected by immunofluorescence in brain or kidney at any stage, and histologic lesions were absent throughout. Anti-Tacaribe and anti-Junín neutralizing Abs were detected up to 660 days and full protection against challenge was achieved at 365 and 540 days, declining to 33% at 660 days pi. The results warrant consideration of Tacaribe virus as potential heterologous vaccine against Argentine hemorrhagic fever.

Animals↗

Interaction of Listeria monocytogenes and influenza in an animal model.

This study was designed to investigate the effects of viruses in the pathogenesis of Listeria monocytogenes. The organisms used in this study were: Listeria monocytogenes Type 1 isolated from a local fatal case; Mouse adapted influenza A/PR8/34 (HONI); Streptococcus pneumoniae Group B (U.M. Med. Ctr.) and poliovirus Type 2 MEF--G3M2. Balb-C mice were inoculated intraperitoneally with one LD50 of Listeria monocytogenes. Ten days later, the survivors were challenged intransally with 10 LD50 of influenza virus and observed for 14 days. Another set of Balb-C mice was inoculated intranasally with one LD50 of influenza virus and the survivors challenged 14 days later intraperitoneally with 10 LD50 of Listeria monocytogenes. Controls consisted of similar inoculation and challenge methods in mice using Streptococcus pneumoniae and polio virus with Listeria monocytogenes and influenza virus. Cross protection was observed only between Listeria monocytogenes and influenza virus. Cellular immunity may play a role in this interaction. This findings seem to agree with reports from others who showed cross protection between Listeria monocytogenes and other intracellular bacteria and parasites.

Administration, Intranasal↗

Molecular characterization of a common 48-kilodalton outer membrane protein of Actinobacillus pleuropneumoniae.

Previous studies have shown that a vaccine prepared from outer membranes of Actinobacillus pleuropneumoniae serotype 5 can elicit protective immunity in swine against challenge with either serotype 5 or serotype 1. These results suggest the presence of common subcapsular surface antigens, such as outer membrane proteins, that contribute to cross-protective immunity. We have identified a 48-kDa outer membrane protein that is common to all 12 capsular serotypes of A. pleuropneumoniae but is not present in the outer membranes of related species of gram-negative swine pathogens. This protein is immunogenic in swine infected with either A. pleuropneumoniae serotype 5 or 1A, as well as in swine vaccinated with A. pleuropneumoniae serotype 5 outer membranes. This 48-kDa protein is readily detected in outer membranes produced by sucrose density gradient centrifugation, but it is sarcosyl soluble and therefore not found in outer membranes prepared by detergent treatment. The gene encoding the 48-kDa outer membrane protein has been cloned from A. pleuropneumoniae serotype 5 and and has been designated aopA, for Actinobacillus outer membrane protein A. The gene is 1,347 bp in length and encodes a protein, designated AopA, of 449 amino acids with a predicted molecular weight of 48,603. Southern blot analysis under high-stringency conditions showed that strains of all 12 serotypes of A. pleuropneumoniae contain DNA homologous to this gene, as do strains of two closely related species, Actinobacillus suis and Pasteurella multocida. Whether antibodies against the AopA antigen contribute to cross-protective immunity against A. pleuropneumoniae infection remains to be determined.

Actinobacillus Infections↗

The bovine cytotoxic T cell: MHC restriction and antigen-specificity.

The analysis of the immune mechanisms operative against the bovine intracellular protozoan parasite Theileria parva resulted in the identification and characterisation of the bovine cytotoxic T lymphocyte (CTL) and its important role in protection against this parasite. By the use of polyclonal and monoclonal antibodies specific for bovine MHC antigens and lymphocyte populations and the use of MHC-haplotyped animals it was possible to demonstrate the MHC restriction and antigen-specificity of the Theileria-specific cytotoxicity. In cross-protection studies with different parasite stocks or strains, a consistent correlation could be observed between the strain specificity of the CTL and the in vivo cross-protection. Moreover, the in vitro generation of CTL lines and clones and the development of a standardised technique for analysing the frequency of parasite-specific CTL precursors in cattle immunised with Theileria parva, enabled the identification of parameters influencing the parasite strain specificity of the cytotoxic response. Not only the immunising parasite but also the bovine MHC haplotype of the respective immunised animal influenced whether the Theileria-specific CTL were strain-specific or cross-reactive between strains. These results have important implications for the identification of cross-reactive CTL epitopes of the parasite in the development of subunit vaccines for outbred animals.

Animals↗

The influence of immunizing dose size and schedule on immunity to subsequent challenge with antigenically distinct strains of Eimeria maxima.

Eimeria maxima, the most immunogenic of the Eimeriidae that infect the chicken, is characterized by the presence of antigenic diversity within field isolates. In priming/challenge experiments immunity to homologous infection is essentially complete while immunity against challenge by a heterologous strain is often only partial. The phenotype "escape from immune protection" is known to be influenced by both host and parasite genotypes but the impact of varied immunization dose and schedule remains poorly documented. In this manuscript we report that an immunizing dose between 99.99%) protective immunity against challenge by 100 oocysts of a homologous strain. In contrast, complete immunity against a heterologous strain was never observed, although increasing the immunizing dose size did frequently reduce oocyst production arising from subsequent heterologous challenge. Differences in cross-protective immunizing capacity between two strains of E. maxima were evident as the H strain consistently stimulated a more potent protective immune response than the W strain. Similarly, increasing the number of immunizing doses of the E. maxima W strain (but not the H strain) increased immune protection against subsequent heterologous challenge. When combined with previously published data the results described here suggest that the E. maxima genome encodes a pool of antigens that are capable of stimulating an immune response cross-protective against more than one strain. These antigens supplement a separate restricted pool of antigens that are capable of stimulating stronger, but strain-specific, protective immune responses.

Animals↗

[Meningococcus B serosubtypes causing invasive disease in Cantabria [Spain] and agreement with the Cuban vaccine strain].

OBJECTIVE: To determine the serosubtypes of meningococcus B causing invasive disease in Cantabria and the percentage of agreement with the Cuban vaccine strain, VA-MENGOC-BC. METHODS: We performed a retrospective review of all cases of invasive disease due to meningococcus B declared through the Diseases of Mandatory Reporting System between 1st January 1998 and 28th February 2003. The bacteriological isolates of the "Marqués de Valdecilla" University Hospital, and the serosubtyping performed in the Majadahonda reference laboratory (Madrid, Spain) were also analyzed. RESULTS: Of the 117 declared cases, serosubtype was identified in 79 (67.5%). The agreement with the Cuban vaccine strain was 67%, 71% and 76% in the age groups of newborn to 19 years, 18 months to 19 years, and 4 to 19 years, respectively. When strains with cross-protection were included, these percentages increased to 83%, 83% and 84%, respectively, in the same age groups. CONCLUSIONS: The percentage of agreement between the Cuban vaccine strain and heterologous strains with cross-protection was high. Therefore, this vaccine could be useful in Cantabria.

Bacterial Capsules↗

Immunity induced shortly after DNA vaccination of rainbow trout against rhabdoviruses protects against heterologous virus but not against bacterial pathogens.

It was recently reported that DNA vaccination of rainbow trout fingerlings against viral hemorrhagic septicaemia virus (VHSV) induced protection within 8 days after intramuscular injection of plasmid DNA. In order to analyse the specificity of this early immunity, fish were vaccinated with plasmid DNA encoding the VHSV or the infectious haematopoietic necrosis virus (IHNV) glycoprotein genes and later challenged with homologous or heterologous pathogens. Challenge experiments revealed that immunity established shortly after vaccination was cross-protective between the two viral pathogens whereas no increased survival was found upon challenge with bacterial pathogens. Within two months after vaccination, the cross-protection disappeared while the specific immunity to homologous virus remained high. The early immunity induced by the DNA vaccines thus appeared to involve short-lived non-specific anti-viral defence mechanisms.

Aeromonas↗

Heterologous strain immunity in bovine babesiosis using a culture-derived soluble Babesia bovis immunogen.

The cross-protective capacity of culture-derived soluble immunogens against heterologous Babesia bovis strains from different geographical locations of Latin America was examined. Susceptible yearling cattle were either immunized with immunogens derived from Venezuelan or Mexican strains, or were administered a multi-component immunogen containing antigens of the Australian, Mexican and Venezuelan strains. Cattle were challenged with virulent B. bovis organisms of the Argentinian, Colombian, Ecuadorean, Mexican and Venezuelan strains. The major parameters used to evaluate cross-protection were the following: presence, level and duration of parasitemia; maximal PCV reduction; level and duration of fever; determination of fibrinogen and cryofibrinogen; homologous and heterologous antibody levels; and net gains in body weight. Results showed good protection with a Venezuelan B. bovis immunogen after homologous and heterologous challenge exposures. A low degree of cross-immunity was observed when cattle vaccinated with the Mexican immunogen were challenged with each of the heterologous strains.

Animals↗