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Biomedical subjects

H M Etlinger

Publications and source records attributed to H M Etlinger.

At least 19 recordsLinked to original sources

Netwhat?

The hallmark of an antibody response is considered to be its specificity for the immunogen. Nonetheless, most antibody elicited by an immunogen has been reported to be unreactive with it. We have evaluated specificity by characterizing the primary antibody response of mice to heat-aggregated human gamma-globulin with four approaches: (a) quantification of antibody-producing cells; (b) hybridoma analysis; (c) in situ antigen binding and (d) analysis of secreted antibody. The results show that the nonspecific component of this response is negligible. These observations suggest that such a component is not a basic feature of the antibody response and it is discussed that nonantigen-specific antibody may arise from a variety of causes many of which are artifactual.

Animals

Carrier sequence selection--one key to successful vaccines.

The trend towards epitopic vaccines has brought with it the problem of ensuring carrier function, a role previously filled by carrier sequences of the attenuated organism. Here, Howard Etlinger proposes the use of carrier epitopes, derived from vaccines already in use and selected for their ability to activate only helper T-cell responses, in the administration of B-cell-specific epitopic vaccines.

Amino Acid Sequence

Antibody responses to a synthetic peptide-based malaria vaccine candidate: influence of sequence variants of the peptide.

A synthetic peptide (Asn-Ala-Asn-Pro)3, representing a protective sequence from the sporozoite stage of Plasmodium falciparum, conjugated to tetanus toxoid has undergone clinical testing. Although some protection was obtained, anti-parasite responses were generally low. In attempting to improve the anti-parasite protein antibody response, we evaluated the efficacy of tetanus toxoid conjugates containing seven sequence variants of the peptide. Most of the conjugates tested in both mice and monkeys elicited anti-peptide antibodies with fine specificity differences, although there was a broad degree of cross-reactivity. In general, each conjugate tested evoked similarly high anti-sporozoite antibody responses in both species and, thus, based on antibody titer no evidence for a superior vaccine candidate was obtained. The biological activity of one antiserum actually increased the penetration of sporozoites into human liver cells. In contrast, antisera against the other conjugates inhibited sporozoite penetration, but to a similar degree. Based on these two criteria, none of the other conjugates would appear to be better vaccine candidates than the original conjugate. The lack of concordance between anti-peptide or anti-sporozoite titers and inhibitory activity in the case of one antiserum indicates that these two measures of antibody cannot always be used for predicting anti-sporozoite activity.

Amino Acid Sequence

Overcoming inhibition of antibody responses to a malaria recombinant vaccinia virus caused by prior exposure to wild type virus.

Pre-injection of mice with vaccinia virus inhibited the subsequent antibody response to a recombinant polypeptide expressed by vaccinia virus. The inhibition was overcome following additional challenges with recombinant vaccinia virus. This suggests that a potential disadvantage in vaccinia-immune individuals can be circumvented and may be outweighed by the advantages of the vector.

Animals

Model using a peptide with carrier function for vaccination against different pathogens.

It has been shown that pre-immunization with a protein can inhibit the antibody response to a new B-cell sequence which is coupled to the protein (epitope-specific suppression). By utilizing a peptide with carrier function from the protein, rather than the entire protein, the antibody response to the new B-cell sequence is enhanced in protein-primed mice. The present results extend this observation by showing that mice which have been pre-immunized with a protein followed by a B-cell sequence linked to a carrier peptide from the protein produce an enhanced antibody response to a new B-cell sequence linked to the same carrier peptide sequence. This indicates that it would be possible to reuse a carrier peptide sequence coupled with newly defined protective B-cell epitopes in a given individual to achieve immunity against new pathogens.

Adjuvants, Immunologic

Ability of recombinant or native proteins to protect monkeys against heterologous challenge with Plasmodium falciparum.

To circumvent problems associated with polymorphic vaccine candidates for Plasmodium falciparum malaria, we evaluated recombinant proteins representing sequences from relatively high conserved regions of the precursor to the major merozoite surface proteins, gp190, for their ability to protect Saimiri monkeys against malaria challenge. Recombinant proteins represented amino acid residues 147 to 321 (p190-1) or 147 to 321 and 1060 to 1195 (p190-3), and their efficacy was compared with that of native gp190 and its processed products. All antigens were derived from P. falciparum K1, a Thai isolate, while the challenge strain was Palo Alto (from Uganda, Africa), which contains, with the exception of the N-terminal 375 amino acids, which are almost identical to the K1 sequence, essentially the MAD-20 allelic form of gp190. By 12 days following challenge, each control monkey required drug treatment. Three monkeys injected with p190-3 required therapy, while one cleared the parasites without therapy. Two monkeys injected with p190-1 received therapy on day 14, while the remaining two cleared the parasites without therapy. Of four animals injected with native gp190, because of health reasons unrelated to malaria, one was not challenged with parasites and one was removed from the study 8 days after challenge when its parasitemia was 1.1% (parasitemias in control animals ranged from 4.3 to 9%); the remaining two cleared the parasites after maximum parasitemias of 0.45 and 0.53%. The highest levels of antiparasite antibody were produced by animals immunized with native gp190. There was a significant correlation between monkeys which did not require drug treatment and antiparasite antibody. These results may suggest that native gp190 and/or its processed products can provide excellent protection against heterologous challenge and that antibody is important for protection. The challenge for vaccine development is to identify the protective sequence(s).

Amino Acid Sequence

Use of prior vaccinations for the development of new vaccines.

There is currently a need for vaccine development to improve the immunogenicity of protective epitopes, which themselves are often poorly immunogenic. Although the immunogenicity of these epitopes can be enhanced by linking them to highly immunogenic carriers, such carriers derived from current vaccines have not proven to be generally effective. One reason may be related to epitope-specific suppression, in which prior vaccination with a protein can inhibit the antibody response to new epitopes linked to the protein. To circumvent such inhibition, a peptide from tetanus toxoid was identified that, when linked to a B cell epitope and injected into tetanus toxoid-primed recipients, retained sequences for carrier but not suppressor function. The antibody response to the B cell epitope was enhanced. This may be a general method for taking advantage of previous vaccinations in the development of new vaccines.

Amino Acid Sequence

Assessment in humans of a synthetic peptide-based vaccine against the sporozoite stage of the human malaria parasite, Plasmodium falciparum.

Eleven volunteers were injected with an anti-malaria (Plasmodium falciparum) sporozoite vaccine candidate consisting of a synthetic peptide, Ac-Cys-(NANP)3, coupled to tetanus toxoid (TT) and adsorbed to aluminum hydroxide. Two of the volunteers had no previously known exposure to TT. Eight volunteers made detectable antipeptide, anticircumsporozoite protein or antisporozoite antibodies, whose titers increased after multiple injections in four individuals. The maximum antisporozoite titer obtained in an immunofluorescence assay was 1280. In those individuals who produced antipeptide antibody, the overall correlation between IgG anti-Ac-Cys-(NANP)3 antibody in enzyme-linked immunosorbent assay and IgG antisporozoite reactivity in immunofluorescence was highly significant. However, the fine specificity of antibody varied among volunteers with two individuals producing mostly antipeptide antibody. Anti-TT antibody responses increased in all volunteers with the exception of that person who had the highest pretrial anti-TT titer; this individual was one of the two pre-TT-immunized volunteers who failed to produce anti-Ac-Cys-(NANP)3 or sporozoite antibody. For the two non-TT preimmunized volunteers, one produced an antisporozoite fluorescence titer of 320; the other made no detectable antibody against either Ac-Cys-(NANP)3 or sporozoites during a primary response. For the three volunteers monitored, after the first injection, significant T cell proliferative responses to (NANP)3 were observed, which increased up to 4 wk after immunization, when a second injection was given. Responsiveness then declined to background levels and did not reappear after further immunizations. In contrast, a marked TT-specific proliferation was observed for the duration of the study.

Adult

Genetic restriction of the murine humoral response to a recombinant Plasmodium vivax circumsporozoite protein.

The antibody response of inbred and congenic strains of mice immunized with a recombinant Plasmodium vivax circumsporozoite protein was investigated. Only mice of the H-2k and H-2a haplotypes developed antibodies that react with P. vivax sporozoite in an indirect immunofluorescence assay and with the recombinant protein in enzyme-linked immunosorbent assay. Congenic recombinant strains were used to map Ir gene control to the I-Ak locus. A similar pattern of genetic restriction was found when congenic strains were immunized with a carrier-free synthetic peptide corresponding to the repeat region of the P. vivax circumsporozoite protein. The results suggest that the ability of T helper cells to recognize a T cell epitope(s) in the repeat region of the P. vivax circumsporozoite protein is genetically restricted.

Animals

Assessment in mice of a synthetic peptide-based vaccine against the sporozoite stage of the human malaria parasite, P. falciparum.

The anti-P. falciparum sporozoite vaccine consisting of the synthetic peptide, Ac-Cys-(NANP)3, conjugated to the protein tetanus toxoid (TT), [Ac-Cys-(NANP)3]25-TT, is currently undergoing human trials. The purpose of the present study was to assess various immunological parameters of this vaccine in mice, which have practical implications in humans. Two injections of [Ac-Cys-(NANP)3]25-TT adsorbed to Al(OH)3 were required to elicit a high antibody response against both Ac-Cys-(NANP)3 and TT. The vaccine initiated equivalent Ac-Cys-(NANP)3 priming for a secondary IgG response in 1-week-old and adult mice. Immunization of female mice with TT or [Ac-Cys-(NANP)3]23-TT prior to mating resulted in offspring that passively received anti-Ac-Cys-(NANP)3 and/or anti-TT antibody and that had reduced secondary responses to Ac-Cys-(NANP)3 and TT. Tertiary challenge with vaccine could substantially overcome such inhibition. Preimmunization of adult mice with TT resulted in a specific inhibition of the anti-Ac-Cys-(NANP)3 antibody response that disappeared following tertiary challenge with the vaccine. The conjugate initiated an antibody response against Ac-Cys-(NANP)3 and TT in mice of 16 different genotypes; only very low T-cell proliferative responses to (NANP)3 were observed for some of these strains. Mice injected with (NANP)3 coupled to protein demonstrated a secondary response to Ac-Cys-(NANP)3 when challenged with (NANP)3 on a heterologous carrier, indicating that B-cell priming alone may be sufficient for a secondary antibody response. These results demonstrate that the vaccine has favourable and unfavourable characteristics in mice; the potential for both exists in humans.

Aging

T15 dominance in BALB/c mice is not controlled by environmental factors.

The effects of the environment on the expression of T15 in the in vivo anti-PC response of BALB/c mice were analyzed. T15 dominance in young BALB/c mice was independent of the expression of T15 dominance in either parent, because the offspring of parental mice that were suppressed for T15 production presented antibody responses dominated by the T15 idiotype. Also, dominant T15 expression was independent of living microorganisms; mice raised in conventional, specific pathogen-free or germfree conditions mounted similar T15 dominant antibody responses. Furthermore, T15 expression was independent of the conventional diet, because mice raised on a synthetic diet produced T15-dominant antibody responses. Moreover, mice that received a synthetic diet under germfree conditions also produced T15 dominant antibody responses. Thus, the generation of T15 dominance in BALB/c mice appears to be independent of environmental factors and within the context of the present and earlier results, originates at the level of B cell-mediated clonal selection/regulation, genetic mechanisms concerning Ig gene rearrangement and expression and/or the fine specificity of the combining site for antigen on the B cell.

Animals

Is the antibody response specific?

Introduction of heterologous immunoglobulin (Ig) or red blood cells into mice results in an increased production of Ig and immunogen-reactive antibody. Since the increase in both total Ig and specific antibody is similar, it is concluded that the antibody response is specific. This result, which contrasts with those of previous studies in which the production of large amounts of nonspecific Ig was reported, suggests that in vivo T-dependent B cell activation and differentiation to plasma cells requires the presence of immunogen and linked recognition.

Age Factors

Complement activation by female protein, the hamster homologue of human C-reactive protein.

The capacity of Syrian hamster female protein (FP), a phosphorylcholine (PC)-binding pentraxin, to activate complement was tested in an in vitro system consisting of PC-coupled sheep red blood cells and guinea pig serum as the complement (C) source. FP was demonstrated to fix complement as reflected by hemolysis. Such hemolysis was eliminated by heat treatment (56 degrees C, 30 min) of guinea pig serum and inhibited by PC chloride but not dinitrophenyl lysine. The inability of C4-deficient guinea pig serum to provide lytic activity indicated that lysis proceeded through the classical hemolytic pathway.

Acute-Phase Proteins

Maturation of the lymphoid system. I. Induction of tolerance in neonates with a T-dependent antigen that is an obligate immunogen in adults.

A/J mice displayed a striking ontogenetic difference in the capacity to respond to DNP-Ficoll, a T-independent antigen, and to aggregated human gamma-globulin (AHGG), a T-dependent antigen. Thus, whereas responses to DNP-Ficoll of 4-day-old mice were similar in magnitude to those of adult animals, responses to AHGG did not become pronounced until mice were some 30 to 40 days of age. The inability of young animals to respond to AHGG was reflective of a negative consequence of lymphocyte/antigen interaction, since such mice became specifically unresponsive to subsequent challenges with AHGG. Unresponsiveness induced by neonatal injection of AHGG lasted 50 to 60 days, in contrast to that induced by deaggregated HGG, which persisted some 100 days longer. The unresponsive state induced by injection of neonates with AHGG maintained itself upon adoptive transfer and did not appear to be linked to suppressive factors associated with either serum or lymphoid cells for its maintenance. Finally, AHGG was also shown to be capable of inducing unresponsiveness in neonatal, athymic mice. These results demonstrate that AHGG, the normally immunogenic form of HGG in adult mice, can serve as an effective tolerogen when administered into a neonatal environment.

Aging

Maturation of the lymphoid system. II. Characterization of the cellular levels of unresponsiveness induced in neonates by a T-dependent antigen that is an obligate immunogen in adults.

It has previously shown that AHGG, a form of HGG that is highly immunogenic in euthymic adult mice, is capable of inducing specific unresponsiveness when injected into neonatal animals. This report extends this finding and indicates that such a neonatal treatment results in the induction of tolerance in T as well as B cells. Furthermore, a similar conclusion was reached regarding specific T lymphocyte function in animals treated as neonates with OVA. The ability of LPS to modulate responses of neonatal animals to AHGG or DHGG was also examined. It appeared that such mice were not susceptible to the adjuvant effects of LPS until the 4th week of life. Furthermore, LPS was incapable of inhibiting the unresponsiveness induced in mice by either DHGG or AHGG until the 3rd or 4th week of life.

Animals

Studies on the question of conventional immunoglobulin on thymocytes from primitive vertebrates. I. Presence of anti-carbohydrate antibodies in rabbit anti-trout Ig sera.

An unexpected cross-reactivity between trout immunoglobulin (Ig) and keyhole limpet hemocyanin (KLH) was observed. Rabbit antisera to KLH were capable of binding to radioiodinated trout Ig and, conversely, antitrout Ig reacted with KLH. The cross-reactive antibodies were not found in preimmune sera and did not arise because of a common contaminant in the two immunizing preparations. The molecular basis of the cross-reactivity was found to reside in the carbohydrate moieties. Isolated glycopeptides from KLH and trout Ig were efficient inhibitors of the cross-reactivity. Furthermore, L-fucose was capable of inhibiting the cross-reactivity, whereas other monosaccharides tested did not. Absorption of anti-KLH with trout Ig and anti-trout Ig with KLH effectively removed the cross-reactive antibodies and only slightly affected the titer to their respective homologous antigens. Antibodies with specificity for L-fucose were isolated from anti-KLH and anti-trout Ig sera by passage over affinity columns and elution with the monosaccharide.

Absorption