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Protection against Pasteurella pneumotropica during infection with Angiostrongylus cantonensis.

Lung infections of specific-pathogen-free rats were studied to determine cross-immunity between infections with Pasteurella pneumotropica and Angiostrongylus cantonensis. Rats were found to have differences in mortality due to pneumonic infections with P pneumotropica and A cantonensis and to coinfections of P pneumotropica and A cantonensis. Single infections of P pneumotropica were not dosage-dependent in their lethality for specific-pathogen-free rats. The mortality of coinfection with P pneumotropica and A cantonensis was significantly lower than that of a monoinfection with P pneumotropica, demonstrating a cross-protective phenomenon.

Angiostrongylus↗

Immunogenicity and cross-reactivity of syngeneic murine melanomas.

Non-melanoma skin cancers induced in mice by chemical carcinogens or ultraviolet radiation are often antigenic but rarely induce cross-protective immunity when tested by in vivo transplantation methods. We wished to determine whether melanocytic skin tumors behave similarly or whether they exhibit cross-reactive antigens in vivo. Three melanomas induced in C3H/HeNCr(MTV-) mice by initiation with ultraviolet radiation and promotion with croton oil or initiation with 7,12-dimethyl-benz[a]anthracene and promotion with 12-O-tetradecanoyl-phorbol-13-acetate or croton oil plus ultraviolet radiation were tested for immunogenicity and cross-reactivity in vivo. The three melanomas were highly immunogenic, and all induced some degree of protection against the other melanomas. Non-melanoma skin cancers induced by the same carcinogens were less immunogenic and did not immunize against the melanomas. We conclude that unlike other skin cancers, melanocytic tumors induced by chemical carcinogens and ultraviolet radiation are highly cross-reactive in vivo and thus represent a unique subset of murine skin cancers.

9,10-Dimethyl-1,2-benzanthracene↗

Adoptive immunity in mice challenged with L1210/DTIC clones.

New antigenic specificities, not detectable on parental cells, have been induced by many investigators in mouse lymphomas by treatment with the antitumor agent 5(3,3-dimethyl-1-triazeno)imidazole-4-carboxamide (DTIC). The antigens are transmissible, after withdrawal of the drug treatment, as an inheritable character. The mechanism of induction, the molecular nature, and the number of the new antigenic specificities have not been completely elucidated. Four clones from murine leukemia L1210 isolated and expanded in vitro were treated in vivo with DTIC and the new sublines were studied in detail. The four drug-treated sublines studied exhibited strong immunogenicity since they were rejected by syngeneic animals. Immunosuppressed animals challenged with 10(7) A/DTIC or P/DTIC cells were reciprocally protected by the adoptive transfer of spleen cells from donors that had rejected a lethal challenge of A/DTIC or P/DTIC clone. In a similar fashion, the adoptive transfer of spleen cells obtained from animals that had rejected the Q/DTIC or the R/DTIC clones protected immunosuppressed mice challenged with Q/DTIC or R/DTIC cells. No antitumor activity was observed in cross-protective schedules other than those indicated. It was been concluded that (a) the L1210 leukemia line does not have antigenic cells, (b) four DTIC-treated clone sublines were rejected by compatible hosts, and (c) two mutually exclusive sets of antigens were expressed in four antigenic clone sublines.

Animals↗

The influence of reovirus sigma C protein diversity on vaccination efficiency.

Avian reovirus (ARV) is a disease agent that causes economic losses in the poultry industry. The available vaccines do not confer full protection. One possible reason is the existence in the field of many virulent serotypes with no cross protection. Several ARV strains have been isolated in Israel in the last few years. In this study, we investigated the diversity of the sigma C protein of ARV because this is the most variable protein in the virus and it induces the production of neutralizing antibodies. Sigma C from two virulent isolates was sequenced, cloned, and expressed. The protein sequence differed from the attenuated vaccine strain (strain 1133) but was similar to a U.S. virulent strain (strain 1733). Those differences led to a change in the antigenic index of the protein, mainly at three sites. Sera of infected birds in a field trial and of birds in a controlled experiment vaccinated with the recombinant sigma C protein showed high titers in enzyme-linked immunosorbent assay to the recombinant protein and lower titers to the attenuated vaccine strain. This means that sigma C can be used as a diagnostic tool for the detection of antibodies relevant for protection and in the future as a subunit vaccine. The results of this study highlight the need to reconsider vaccinations against ARV in terms of the strains to be used and of the method of identifying protective antibodies transferred to progeny.

Amino Acid Sequence↗

Classification and actual antigenic composition of Salmonellae.

The synthesis by Enterobacteriaceae grown on artificial media of proteins, with a diversity of specificities previously found with the help of antiprotein sera, is confirmed with antibacterial sera prepared with species belonging to different serogroups. An earlier recognition of the existence of these materials was hindered by the devised schemes of classification and the claims relating 'O' factors to the bacterial polysaccharides. The synthesis, on artificial media, of mixtures of heterologous proteins by all the analysed species is no proof that their behaviour in vivo is identical; notwithstanding their high amounts in the mixtures, few of the heterologous proteins are involved in cross-protection of a host against its natural pathogen.

Animals↗

Synthetic double-stranded RNA poly(I:C) combined with mucosal vaccine protects against influenza virus infection.

The mucosal adjuvant effect of synthetic double-stranded RNA polyriboinosinic polyribocytidylic acid [poly(I:C)] against influenza virus was examined under intranasal coadministration with inactivated hemagglutinin (HA) vaccine in BALB/c mice and was shown to have a protective effect against both nasal-restricted infection and lethal lung infection. Intranasal administration of vaccine from PR8 (H1N1) with poly(I:C) induced a high anti-HA immunoglobulin A (IgA) response in the nasal wash and IgG antibody response in the serum, while vaccination without poly(I:C) induced little response. Intracerebral injection confirmed the safety of poly(I:C). In addition, we demonstrated that administration of poly(I:C) with either A/Beijing (H1N1) or A/Yamagata (H1N1) vaccine conferred complete protection against PR8 challenge in this mouse nasal infection model, suggesting that poly(I:C) possessed cross-protection ability against variant viruses. To investigate the mechanism of the protective effect of poly(I:C), mRNA levels of Toll-like receptors and cytokines were examined in the nasal-associated lymphoid tissue after vaccination or virus challenge. Intranasal administration of HA vaccine with poly(I:C) up-regulated expression of Toll-like receptor 3 and alpha/beta interferons as well as Th1- and Th2-related cytokines. We propose that poly(I:C) is a new effective intranasal adjuvant for influenza virus vaccine.

Administration, Intranasal↗

Efficacy of HSV-1 ISCOM vaccine in the guinea-pig model of HSV-2 infection.

The capability of a herpes simplex virus (HSV)-1 ISCOM vaccine to protect against intravaginal HSV-2 challenge infection in guinea-pigs is described. The protective efficacy of the HSV-1 ISCOM vaccine is compared with that of a purified, aqueous HSV-1 antigen preparation administered using a similar immunization schedule. The results show that female guinea-pigs immunized with two doses of HSV-1 ISCOM vaccine, each consisting of 20 micrograms of protein given 2 weeks apart responded with high ELISA and neutralization antibody titres, and are almost completely protected against the clinical effects of intravaginal challenge with 10(5.2) TCID50 of HSV-2. This cross-protection is significantly greater than that observed in guinea-pigs immunized with a single dose of HSV-1 ISCOM vaccine, two doses of aqueous HSV-1 antigen preparation or two doses of a mock ISCOM vaccine. However, none of the vaccine preparations completely prevented HSV-2 replication following challenge. Western blot and radioimmunoprecipitation of sera from immunized guinea-pigs show the HSV-1 ISCOM vaccine preparation to contain the major HSV-1 glycoproteins. These findings are discussed in relation to the value and potential use of HSV-1 ISCOM vaccine in humans.

Animals↗

Prevention of disease in ferrets fed an inactivated whole cell Campylobacter jejuni vaccine.

Ferrets were used to demonstrate the potential of a killed whole cell vaccine prepared from Campylobacter jejuni to protect against disease. C. jejuni strain 81-176 was grown in BHI broth, formalin-fixed, and resuspended in PBS to a concentration of 10(10) cells per ml. This vaccine (CWC) or live organisms were delivered orally with a nasogastric tube into anesthetized animals treated to reduce gastric acidity and intestinal motility. When 5x10(10) CFU of the vaccine strain (Lior serotype 5) or one of two other serotypes, CGL-7 (Lior 4) or BT44 (Lior 9), was used to challenge the ferrets, all of the animals developed a mucoid diarrhea. If the animals had been challenged with 5x10(9) CFU of the homologous strain 1 month before challenge with 10(10) CFU, 80-100% protection against disease was seen. This protection was also obtained after an initial exposure to the 81-176 strain followed by challenge with either of the heterologous strains. CWC was used to see if protection demonstrated with the live organisms could be produced with the non-living preparation. When 10(9) cells of CWC was given as two doses 7 days apart with or without 25mug of a coadministered mucosal adjuvant, LT(R192G), only 40-60% of the animals were protected. If the regimen was changed to four doses given 48h apart, 80% of the animals were free of diarrhea after subsequent challenge. Increasing the number of cells in the four dose regimen to 10(10) cells did not improve protection. Animals given four doses of 10(10) cells combined with LT(R192G) were subsequently challenged with 10(10) cells of the homologous strain or the heterologous strain CGL-7. The CWC protected against both strains. Serum IgG antibody titers determined by ELISA showed little increase following the CWC four dose vaccination regimen, compared to animals given one dose of the live organism. On subsequent challenge, however, both CWC vaccinated and live-challenged ferrets showed comparable antibody titer increases above those obtained following the initial challenge or vaccination. Western blots were used to show that the immunodominant antigen in vaccinated animals was a 45kDa protein, while in ferrets challenged with live organisms the immunodominant antigen was a 62kDa protein. These data show that the CWC can be used to protect against disease caused by Campylobacter. They also show that protection and serum IgG responses do not depend upon the use of the mucosal adjuvant and that cross protection among some of the major serotypes of Campylobacter responsible for human disease is possible.

Animals↗

Conservation of the 15-kilodalton lipoprotein among Treponema pallidum subspecies and strains and other pathogenic treponemes: genetic and antigenic analyses.

The 15-kDa lipoprotein of Treponema pallidum is a major immunogen during natural syphilis infection in humans and experimental infection in other hosts. The humoral and cellular immune responses to this molecule appear late in infection as resistance to reinfection is developing. One therefore might hypothesize that this antigen is important for protective immunity. This possibility is explored by using both genetic and antigenic approaches. Limited or no cross-protection has been demonstrated between the T. pallidum subspecies and strains or between Treponema species. We therefore hypothesized that if the 15-kDa antigen was of major importance in protective immunity, it might be a likely site of antigenic diversity. To explore this possibility, the sequences of the open reading frames of the 15-kDa gene have been determined for Treponema pallidum subsp. pallidum (Nichols and Bal-3 strains), T. pallidum subsp. pertenue (Gauthier strain), T. pallidum subsp. endemicum (Bosnia strain), Treponema paraluiscuniculi (Cuniculi A, H, and K strains), and a little-characterized simian isolate of Treponema sp. (Fribourg-Blanc strain). No significant differences in DNA sequences of the genes for the coding region of the 15-kDa antigen were found among the different species and subspecies studied. In addition, all organisms showed expression of the 15-kDa antigen as determined by monoclonal antibody staining. The role of the 15-kDa antigen in protection against homologous infection with T. pallidum subsp. pallidum Nichols was examined in rabbits immunized with a purified recombinant 15-kDa fusion protein. No alteration in chancre development was observed in immunized, compared to unimmunized, rabbits, and the antisera induced by the immunization failed to enhance phagocytosis of T. pallidum subsp. pallidum by macrophages in vitro. These results do not support a major role for this antigen in protection against syphilis infection.

Animals↗

The pspC gene of Streptococcus pneumoniae encodes a polymorphic protein, PspC, which elicits cross-reactive antibodies to PspA and provides immunity to pneumococcal bacteremia.

PspC is one of three designations for a pneumococcal surface protein whose gene is present in approximately 75% of all Streptococcus pneumoniae strains. Under the name SpsA, the protein has been shown to bind secretory immunoglobulin A (S. Hammerschmidt, S. R. Talay, P. Brandtzaeg, and G. S. Chhatwal, Mol. Microbiol. 25:1113-1124, 1997). Under the name CbpA, the protein has been shown to interact with human epithelial and endothelial cells (C. Rosenow et al., Mol. Microbiol. 25:819-829, 1997). The gene is paralogous to the pspA gene in S. pneumoniae and was thus called pspC (A. Brooks-Walter, R. C. Tart, D. E. Briles, and S. K. Hollingshead, Abstracts of the 97th General Meeting of the American Society for Microbiology 1997). Sequence comparisons of five published and seven new alleles reveal that this gene has a mosaic structure, and modular domains have contributed to gene diversity during evolution. Two major clades exist: clade A alleles are larger and contain an extra module that is shared with many pspA alleles; clade B alleles are smaller and lack this pspA-like domain. All alleles have a proline-rich domain and a choline-binding repeat domain that show 0% divergence from similar domains in the PspA protein. Immunization of a rabbit with a recombinant clade B PspC molecule produced antiserum that cross-reacted with both PspC and PspA from 15 pneumococcal isolates. The cross-reactive antibodies afforded cross-protection in a mouse model system. Mice immunized with PspC were protected against challenge with a strain that expressed PspA but not PspC. The PspA- and PspC-cross-reactive antibodies were directed to the proline-rich domain present in both molecules.

Amino Acid Sequence↗

A PE protein expressed by Mycobacterium avium is an effective T-cell immunogen.

Infection of mice with Mycobacterium avium or immunization with a novel PE gene expressed by M. avium (MaPE) showed that a dominant T-cell immune response was elicited. Immunization with an MaPE DNA vaccine protected mice against an aerosol challenge with Mycobacterium tuberculosis, suggesting that mycobacteria express PE antigens with cross-protective T-cell epitopes.

Amino Acid Sequence↗

Immunity to Hantavirus challenge in Meriones unguiculatus induced by vaccinia-vectored viral proteins.

Vaccinia virus recombinants were constructed that incorporated genomic sequences coding for the nucleoprotein (N) and glycoproteins (G1 and G2) of the hantavirus R22 strain isolated from a rat in China, and designated as RNV and RMV9, respectively. The proteins expressed by RNV and RMV9 were identified by radioimmunoprecipitation and indirect immunofluorescence assay using a panel of monoclonal antibodies and polyclonal immune sera, and were found to be antigenically indistinguishable from authentic R22 viral proteins. Both RNV and RMV9 elicited an anti-R22 antibody response in Mongolian gerbils (Meriones unguiculatus) with titers ranging from 6,400 to 12,800 by enzyme-linked immunosorbent assay, but only RMV9 produced neutralizing antibodies to R22 virus (titer 1:200) and Hantaan (HTN) virus (titer 1:20). The ability of these recombinants to protect Mongolian gerbils against challenge with R22 and HTN viruses was examined. The RMV9 recombinant induced a complete protective immune response against challenge with 10(4) plaque-forming units (PFU) of both R22 and HTN viruses, while RNV induced partial protection against a challenge with the homologous R22 virus and the heterologous HTN virus at a dose of 10(3) PFU. Our data show that the common antigenic sites responsible for eliciting a protective response are located mainly on hantavirus glycoproteins, and that the nucleoprotein may also confer partial cross-protection that presumably involves cell-mediated as well as humoral mechanisms.

Animals↗

Serial inoculation of sheep with two bluetongue virus types.

Groups of sheep inoculated with bluetongue virus type 4 were challenged at various intervals after inoculation (from seven to 70 days) with bluetongue virus type 3. Examination of the clinical and serological response showed that animals were protected from challenge with a second bluetongue virus for up to 14 days after the inoculation of the first virus type. An adoptive transfer experiment in monozygotic sheep involving both antibody and T lymphocytes was carried out. Only partial protection was observed against heterologous virus challenge, indicating that although the T cell response has a cross-protective component, antibody is not involved. These observations indicate that current vaccination procedures should be reappraised, particularly in terms of revaccination with multiple bluetongue virus type.

Animals↗

Induction of group 17 specific antibodies by pneumococcal type 17F and 17A polysaccharide vaccines.

Pneumococcal capsular polysaccharide group 17 contains two distinct serotypes, 17F and 17A. Pneumococcal group 17 is present in the licensed 23 valent polysaccharide vaccines. One such vaccine contains type 17A, while the other vaccine contains type 17F. The purpose of these studies was to determine the extent of cross-protection that could be expected, as both type 17F and 17A cause disease. The antibody responses of one group of adults to a vaccine containing type 17F was compared to that of another group that received a type 17A containing vaccine. By ELISA the 17A vaccine induced more cross-reactive antibodies. Opsonophagocytic antibodies are a good predictor of protection and both vaccines induced antibodies opsonic for both 17F and 17A. We conclude that either 17F or 17A will provide similar protection against group 17 disease.

Antibodies, Bacterial↗

A single dose of an ISCOM influenza vaccine induces long-lasting protective immunity against homologous challenge infection but fails to protect Cynomolgus macaques against distant drift variants of influenza A (H3N2) viruses.

Since the production of influenza vaccines is complicated by the continuous variation of these viruses, it would be desirable to develop vaccines that induce cross-protective immunity against influenza virus strains that circulate in subsequent winter epidemics. We have recently demonstrated that antibodies induced after vaccination with an immune stimulating complex (ISCOM)-based vaccine exhibited a certain degree of cross-reactivity with other influenza virus strains. In the present study, ISCOM-based vaccines were evaluated retrospectively by testing the protective immunity induced by ISCOM prepared with the membrane glycoproteins of A/Philippines/2/82 against the more recent strain A/Netherlands/18/94 in monkeys with or without a history of prior infection with an A/Philippines/2/82-like virus. It was found that the monkeys immunized with the A/Philippines/2/82 ISCOM were not protected from challenge infection with A/Netherlands/18/94. On the other hand, vaccination of monkeys which experienced a prior infection with an influenza A/Philippines/2/82-like virus, with a single dose of ISCOM vaccine induced long-lasting protective immunity against challenge infection with the homologous virus A/Netherlands/18/94.

Animals↗

Preclinical immunoprophylactic and immunotherapeutic efficacy of antisera to capsular polysaccharide-tetanus toxoid conjugate vaccines of Vibrio vulnificus.

Vibrio vulnificus is an oyster-associated bacterial pathogen that causes life-threatening fulminating septicemia and necrotizing wound infections in humans. The capsular polysaccharide of V. vulnificus (VvPS) is critical for virulence. Previously we showed that active immunization of mice with a VvPS-tetanus toxoid (VvPS-TTa) conjugate vaccine conferred significantly higher protection against subsequent lethal challenge than immunization with VvPS alone. In the current study, we examined the utility of immunoprophylaxis or immunotherapy with hyperimmune antisera elicited by VvPS-TTa and VvPS-TTb conjugate vaccines prepared by different synthetic schemes. First we demonstrated that the Ribi adjuvant significantly enhanced the murine antibody response (P < or = 0.02) to both conjugates. Subsequently, high-titered polyclonal antisera were raised to VvPS-TTa and VvPS-TTb conjugate vaccines by using Ribi adjuvant or Freund's adjuvants. Antisera were observed to have protective effects when administered before and after acute lethal infection. All animals receiving prophylactic antisera intraperitoneally 24 h before lethal challenge with homologous carbotype 1 were protected, while 73 to 100% of control mice succumbed. Immunotherapy was also effective, with survival rates of 60 to 73% seen among mice when antisera were administered 2 h after bacterial challenge, at a time when symptoms of infection were already apparent. The protective effect of capsular antiserum appeared to be serotype specific. Antisera to the, carbotype 1 VvPS-TTa vaccine did not confer cross-protection against lethal challenge with carbotype 2 V. vulnificus despite partial structural similarity and a weak serological cross-reaction between the two carbotypes. Immune globulins induced by a potential multivalent VvPS conjugate vaccine composed of clinically prevalent carbotypes may have utility in the management of V. vulnificus infections and deserve further evaluation.

Animals↗

Protection against influenza virus infection by intranasal vaccine with surf clam microparticles (SMP) as an adjuvant.

A safe and effective adjuvant is necessary to enhance mucosal immune responses for the development of an inactivated intranasal influenza vaccine. The present study demonstrated the effectiveness of surf clam microparticles (SMP) derived from natural surf clams as an adjuvant for an intranasal influenza vaccine. The adjuvant effect of SMP was examined when co-administered intranasally with inactivated A/PR8 (H1N1) influenza virus hemagglutinin vaccine in BALB/c mice. Administration of the vaccine with SMP induced a high anti-PR8 haemagglutinin (HA)-specific immunoglobulin A (IgA) response in the nasal wash and immunoglobulin G (IgG) response in the serum, resulting in protection against both nasal-restricted infection and lethal lung infection by A/PR8 virus. In addition, administration of SMP with A/Yamagata (H1N1), A/Beijing (H1N1), or A/Guizhou (H3N2) vaccine conferred complete protection against A/PR8 virus challenge in the nasal infection model, suggesting that SMP adjuvanted vaccine can confer cross-protection against variant influenza viruses. The use of SMP is suggested as a new safe and effective mucosal adjuvant for nasal vaccination against influenza virus infection.

Adjuvants, Immunologic↗

Evolution of canine parvovirus--a need for new vaccines?

Canine parvovirus (CPV) is a new virus, which is continuing to evolve, giving rise to new antigenic types and virus mutants that spread through the dog population. The most successful mutants, from an evolutionary perspective, appear to be selected by improved binding to the CPV receptor, the canine transferrin receptor, and by an extended host range, which for the newer antigenic types now includes both the dog and the cat. The new viruses also show antigenic differences that can be defined by binding of certain monoclonal antibodies; they also differ in their reactivity in virus neutralisation tests, using immune sera raised against the various antigenic types. These differences may influence the susceptibility of young animals to infection at the time when the level of maternally derived antibody decreases to the minimum protective titre. This minimum protective titre may vary depending on the infecting virus type. There is, however, a high degree of cross-protection between the virus types and the true relevance of the differences in neutralisation titer is currently not known.

Animals↗