In May 2009 the National Institute of Allergy and Infectious Diseases hosted a workshop on serologic assays that support vaccine efficacy evaluations. The meeting promoted exchange of ideas among investigators from varying disciplines who are working on anti-infectious agent vaccines at different stages of development. The presentations and discussions at the workshop illustrated the challenges common across various pathogens with recurring themes: (1) A thorough understanding of the science regarding the pathogen and the host response to disease and immunization is fundamental to assay selection. (2) The intended use of the immunoassay data must be clearly defined to ensure appropriate specificity, accuracy, and precision; a laboratory must also commit resources to assure data quality and reliability. (3) During vaccine development, an immunoassay may evolve with respect to quality, purpose, and degree of standardization, and, in some cases, must be changed or replaced as data are accumulated. (4) Collaboration on standardized reagents and methods, harmonization efforts, and multidisciplinary teams facilitate consistent generation of quality data. This report provides guidance for effective development and utilization of immunoassays based on the lessons learned from currently licensed vaccines. Investigators are encouraged to create additional opportunities for scientific exchange, noting that the discussed themes are relevant for immunoassays used for other purposes such as therapeutics and diagnostics.
BACKGROUNDPneumococcal conjugate vaccines prevent invasive and noninvasive disease due to infection with vaccine serotypes. Pneumococcal conjugate vaccines also prevent nasopharyngeal acquisition of vaccine serotypes, although the mechanism is incompletely understood.METHODSAn efficacy trial of a 7-valent pneumococcal conjugate vaccine was conducted on the Navajo and White Mountain Apache reservations, located in the Southwestern United States; group C meningococcal conjugate vaccine was the control vaccine. Infants were randomized to receive 7-valent pneumococcal conjugate vaccine or group C meningococcal conjugate vaccine at 2, 4, 6, and 12 months of age. Immunogenicity and nasopharyngeal colonization studies were nested in the efficacy trial. We analyzed the correlation between serotype-specific serum IgG concentration at 7 and 13 months of age and nasopharyngeal acquisition of disease at 12 and 18 months of age, respectively. We adjusted for potential confounders using multivariate logistic regression.RESULTSAmong 203 subjects, we observed 60 acquisitions of vaccine-type pneumococci, including 19 acquisitions of serotype 19F (31.7%), and 17 acquisitions of serotype 23F (28.3%). Among recipients of 7-valent pneumococcal conjugate vaccine, increased serotype-specific serum IgG was associated with a reduction in nasopharyngeal acquisition of serotype 23F (relative risk, 0.53; 95% confidence interval, 0.31-0.93) but was not associated with a reduction in acquisition of serotype 19F (relative risk, 1.07; 95% confidence interval, 0.57-2.03). Among group C meningococcal conjugate vaccine recipients, serotype-specific serum IgG was not associated with a reduction in nasopharyngeal acquisition for either serotype.CONCLUSIONAn increase in serum antibody concentration was associated with reduced acquisition of serotype 23F pneumococcus (but not with reduced acquisition of serotype 19F pneumococcus) among recipients of 7-valent pneumococcal conjugate vaccine. Differences in antibody concentration, in the functional characteristics of antibody, or in antibody kinetics during infancy may account for differences in carriage protection.
Respiratory syncytial virus (RSV) is the major cause of lower respiratory tract infection in infants, young children and the elderly. Yet, the development of a vaccine to protect against RSV infection still remains an unmet need. At present, immune responses to experimental vaccines under investigation are usually evaluated by ELISA and/or by neutralization assays against RSV. However, both types of assays are generally performed somewhat differently at different laboratories. An important step towards standardization of serology is the use of a standard human reference serum enabling normalization of results generated within and between laboratories. To fill this need, we prepared and characterized a human reference serum against the A2 strain of respiratory syncytial virus. The serum represents a pool of more than 400 individual human sera obtained from commercial sources. The sera were screened and selected on the basis of individual RSV neutralization titers. A final neutralization titer of 973 (95% C.I., 884–1072) was assigned to the final reference serum pool after it was tested three times in the presence of 10% guinea pig complement and a titer of 286 (95% C.I., 243–337) was assigned to the serum when it was tested in the absence of an exogenous complement source. Sterilely reconstituted lyophilized aliquots of the serum exhibited a stable neutralization titer for at least 1 month at room temperature and at 4 °C, as well as after 5 weekly freeze-and-thaw cycles at −20 °C. In the lyophilized state, the neutralization titer of the lyophilized reagent was stable for at least 6 months, the last time point tested. Two additional smaller pools of serum with high and medium neutralization titers of 2692 and 575, respectively, were also produced in parallel for use as positive controls and were designated as control sera. The reference serum can be used to normalize neutralization and/or other RSV-specific assay results from different laboratories and the control sera can be used for quality control purposes or as part of a panel to test operator proficiency. Individual lyophilized aliquots of the reference and control sera may be obtained from the US National Institute of Allergy and Infectious Diseases (NIAID) Reference Reagent Repository.
BACKGROUND:Pneumococcal conjugate vaccines are important for the prevention of serious illness and death among infants. Factors associated with pneumococcal conjugate vaccine immunogenicity have not been explored. METHODS:Children <24 months of age received 2, 3, or 4 doses of 7-valent pneumococcal conjugate vaccine (PnCRM7) or control vaccine depending on age at enrollment. Serum samples were tested for serotype-specific antibodies by enzyme-linked immunosorbant assay. Multiple linear regression was used to determine predictors of immunogenicity. RESULTS:Among 315 PnCRM7-vaccinated subjects and 295 control subjects enrolled at <7 months of age, geometric mean concentrations (GMCs) of antibodies were significantly higher after dose 3 than after dose 2 for all serotypes except type 4. The proportion of subjects with antibody concentrations > or =5.0 micro g/mL was higher for all serotypes, but the proportion with concentrations > or =0.35 micro g/mL was higher only for types 6B and 23F. Three-dose and 2-dose regimens for those 7-11 and 12-23 months of age, respectively, were highly immunogenic. Increased maternal antibody concentrations were associated with reduced responses to dose 1 and 3 but not to dose 4 of PnCRM7. CONCLUSIONS:Maternal antibody is associated with a reduced infant response to PnCRM7 but does not interfere with immune memory. In infants, a third priming dose increases the antibody GMC and the proportion achieving an antibody concentration > or =5.0 micro g/mL but has little impact on the proportion achieving a concentration > or =0.35 micro g/mL.
ABSTRACTThe capsular polysaccharide ofNeisseria meningitidisserogroup W135 is expressed in bothO-acetyl-positive (OA+) andO-acetyl-negative (OA−) forms. This study investigates the impact of OA status (OA+versus OA−) on serological measurements of anti-W135 immunoglobulin G (IgG) antibodies in immunized adults. W135-specific serum antibody assignments were made for 28 postimmunization sera from adults by enzyme-linked immunosorbent assay using the meningococcal standard reference serum CDC1992. The established IgG concentration in micrograms per milliliter ([IgG]μg/ml) for CDC1992 against OA+antigen (16.2 μg/ml) was used as a reference to assign a concentration of 10.13 μg/ml IgG against OA−antigen by cross-standardization. Overall, the IgG assignments for these sera were higher against OA+antigen (geometric mean concentration [GMC] = 7.16 μg/ml) than against OA−antigen (GMC = 2.84 μg/ml). However, seven sera showed higher specific [IgG]μg/ml values against the OA+antigen than against the OA−antigen. These sera were also distinguished by the inability of fluid-phase OA−antigen to compete for antibody binding to OA+solid-phase antigen. Although there was no overall difference in functional activity measured by complement-mediated serum bactericidal assay (SBA) against OA+and OA−target bacteria (geometric mean titers of 9,642 and 9,045, respectively), three serum specimens showed a large difference in SBA antibody titers against OA+versus OA−W135 target bacteria, which may reflect different epitope specificities for these sera. Our data indicate that, for some sera, the agreement in anti-OA+versus anti-OA−W135 IgG assignments is serum specific and does not reflect the functional (killing) activity in vitro.
Children who had initially received three doses of either a nonavalent pneumococcal conjugate vaccine containing serotypes 1, 4, 5, 6B, 9V, 14, 18C, 19F, and 23F or placebo at 6, 10, and 14 weeks of age were bled at 9 and 18 months for determination of antibody concentrations. The children were then randomized to receive a booster dose of either the 9-valent pneumococcal conjugate vaccine or a 23-valent polysaccharide vaccine and antibody levels determined 1 month later. At 9 months, the geometric mean concentrations (GMCs) were significantly higher for all vaccine serotypes in vaccinated children compared with controls (means varied from 0.49 μg/ml for serotype 4 to 2.37 μg/ml for serotype 14). At 18 months, antibody concentrations remained significantly higher in vaccinated children (means varied from 0.19 μg/ml for serotype 4 to 1.1 μg/ml for serotype 14). In children who had received conjugate vaccine in infancy, the conjugate vaccine at 18 months produced a significant booster response for serotypes 1, 6B, 14, 19F, and 23F (means varied from 2.74 μg/ml for serotype 19F to 15.52 μg/ml for serotype 6B) and produced a comparable response to a first dose of conjugate at this age for serotypes 4, 5, 9V, and 18C. Boosting at 18 months with polysaccharide vaccine produced higher antibody concentrations to all serotypes in children who had previously received conjugate vaccine compared to children who had not received the conjugate vaccine in infancy. In conclusion, the 9-valent pneumococcal conjugate vaccine given in infancy elicits significant and long-lasting antibody responses which can be boosted with either the conjugate or polysaccharide vaccines.
ABSTRACT Weight-based immunoglobulin G (IgG), IgM, IgA, and total Ig antibody assignments were made to human antipneumococcal standard reference serum lot 89-S, also known as lot 89-SF, for Streptococcus pneumoniae capsular polysaccharide (PnPs) serotypes 2, 6A, 8, 9N, 10A, 11A, 12F, 15B, 19A, 17F, 20, 22F, and 33F, as well as for C-polysaccharide (C-Ps), extending the standard's usefulness for pneumococcal vaccine evaluation beyond the original serotype 1, 3, 4, 5, 6B, 7F, 9V, 14, 18C, 19F, and 23F assignments (S. A. Quataert, C. S. Kirch, L. J. Quackenbush Wiedl, D. C. Phipps, S. Strohmeyer, C. O. Cimino, J. Skuse, and D. V. Madore, Clin. Diagn. Lab. Immunol. 2 :590-597, 1995). The additional 14 assignments were determined using an equivalence of absorbance method with an anti-PnPs serotype 6B reference enzyme-linked immunosorbent assay (EIA). To assure accuracy, anti-PnPs EIA for serotype 14 antibodies, a previously assigned serotype, was performed concurrently. This method assures consistency of the new microgram-per-microliter assignments with previous antiserotype assignments to lot 89-S. The sum of the experimentally derived isotype assignments for anti-PnPs serotypes in lot 89-S agrees well with the separately determined total Ig assignment for each serotype. The lot 89-S assignments for serotypes 1, 5, 6B, 14, 18C, 19F, and 23F were used for pneumococcal conjugate vaccine clinical trial evaluation and to generate data in efficacy trials where serological correlates for protection have been proposed. The assignment of antibody concentrations to additional pneumococcal serotypes in this reference reagent facilitates the consistent and accurate comparison of serum antibody concentrations across clinical trials.
ABSTRACT Human sera collected from 28 consenting adult volunteers were used to define assay conditions for meningococcal vaccine clinical trial serology. Immunoassay parameters were optimized with these test sera and the standard reference serum, CDC1992. Coating conditions for serogroup Y and W135 polysaccharide antigens were found to influence the predicted serum immunoglobulin G (IgG) antibody concentrations. Sera that displayed IgG antibody binding profiles most unlike that of CDC1992 were influenced the most by coating conditions. Our results suggest that presentation of specific epitopes is influenced by antigen-coating concentrations for serogroup Y and W135 polysaccharides.
Streptococcus pneumoniae is a major human pathogen causing pneumonia, sepsis, meningitis, and otitis media ([12][1]). It causes infections most often in young children ([12][1]) and elderly adults ([1][2]) because their immune systems are either unprepared or unable to respond effectively to
Background. Children <6 months of age are at increased risk of pneumococcal disease. The early immunogenicity of conjugate vaccines therefore may be important to prevent disease in young children.Objectives. To determine the immunogenicity of a nonavalent pneumococcal conjugate vaccine after one dose, two doses and three doses and its impact on the antibody response to coadministered antigens.Methods. A total of 500 infants from Soweto were immunized at 6, 10 and 14 weeks of age with either placebo (n = 250) or 9-valent pneumococcal conjugate vaccine (n = 250) containing serotypes 1, 4, 5, 6B, 9V, 14,18C, 19F and 23F conjugated to CRM197 mutant diphtheria protein. Blood was taken for determination of serotype-specific IgG before the first dose and 1 month after each dose.Results. Before the first dose at 6 weeks of age >80% of infants had >0.15 mug/ml antibody to six of the nine antigens, >70% to serotypes 18C and 23F and >50% to serotype 4. Geometric mean concentrations (GMCs) after one dose ranged from 0.27 mug/ml for serotype 23F to 2.98 mug/ml for serotype 1; >90% of infants had serotype-specific antibody >0.15 mug/ml except for serotypes 23F (70%) and 6B (80%). After two doses GMCs ranged from 1.14 mug/ml for serotype 23F to 5.68 mug/ml for serotype 1; >95% of infants had serotype-specific antibody >0.15 mug/ml and >75% had >0.5 mug/ml for all nine serotypes. GMCs after three doses ranged from 2.73 mug/ml for serotype 23F to 6.18 mug/ml for serotype 5; >98% of infants had serotype-specific antibody >0.15 mug/ml and >92% had >0.5 mug/ml for all nine serotypes. Antibody concentrations after three doses were significantly higher to Haemophilus influenzae type bpolyribosylribitol phosphate vaccine in children who received pneumococcal conjugate vaccine, but they had lower antibodies to pertussis toxin than controls.Conclusions. A single dose of this pneumococcal conjugate vaccine produces a potentially protective antibody response to most serotypes in the majority of children in this population.
ABSTRACT The functional activities of serum samples from human infants immunized with a glycoconjugate vaccine for Neisseria meningitidis serogroup C were assessed in a complement-mediated antibody-dependent serum bactericidal assay (SBA) and in a neonate rat model of protection from bacteremia. Selective serum samples from individual human infants were combined to make a panel of 11 serum pools to obtain a sufficient volume for testing. Each pool was assayed (i) for the anti-N. meningitidis serogroup C capsular polysaccharide (PS) immunoglobulin G (IgG) concentration as determined by reactivity in a direct-binding enzyme-linked immunosorbent assay, (ii) for bactericidal activity against N. meningitidis serogroup C strain C11, and (iii) for the ability to reduce bacteremia after passive transfer into a neonate rat model. Representative serum samples from infants who were not previously immunized with any N. meningitidis serogroup C vaccine served as a negative control. The prepared serum pools ranged in antibody concentration from 0.18 to 17.31 μg of IgG specific for N. meningitidis serogroup C PS per ml. For this serum panel, a direct relationship between concentrations of anti-N. meningitidis serogroup C PS-specific IgG and serum SBA titers (r = 0.9960) was observed. Passive transfer to neonate rats demonstrated the ability of postimmunization serum samples to significantly reduce (≥2-log10 reduction compared to control animals) the level of bacteremia following a challenge. Of 79 neonate rats that received ≥0.031 μg of human infant anti-N. meningitidis serogroup C PS IgG, 75 (94.9%) had a ≥2-log10 reduction in bacteremia, whereas of the animals that received <0.031 μg of antigen-specific IgG, 10.3% (4 of 39 rats) showed a ≥2-log10 reduction in bacteremia. It was concluded that the anti-N. meningitidis serogroup C PS IgG antibody induced by this glycoconjugate vaccine had in vitro functional activity (as determined by a SBA) and also afforded protection against meningococcal bacteremia in an animal model.
Pneumococcal antibody levels surrounding systemic pneumococcal illness (SPI) were measured in children infected with human immunodeficiency virus (HIV). Archived serum samples were collected from 28 HIV-infected children who had 34 cases of SPI, caused by pneumococcal groups 4, 6, 9, 14, 19, and 23. Serum samples collected within 23 weeks before and 13 weeks after the SPI were assayed by ELISA for antipneumococcal polysaccharide (PnPs) IgG antibody to 6 representative pneumococcal serotypes. There was a wide range (0. 16-30.80 microg/mL) of pre-SPI anti-PnPs antibody levels to the presumed infecting serotypes, with a geometric mean level of 0.83 microg/mL (n=34). Seventy-six percent of the antibody values were <2.0 microg/mL, and 95% were <5.0 microg/mL. Homologous seroresponses (>/=4-fold rise in anti-PnPs antibody) were detected in only 4 (27%) of 15 paired serum samples. Heterologous, noninfecting group seroresponses were detected frequently (72%) in the paired serum samples from these 4 homologous group seroresponders.
OBJECTIVE:To determine the efficacy, safety and immunogenicity of the heptavalent CRM197 pneumococcal conjugate vaccine against invasive disease caused by vaccine serotypes and to determine the effectiveness of this vaccine against clinical episodes of otitis media. METHODS:The Wyeth Lederle Heptavalent CRM197 (PCV) was given to infants at 2, 4, 6 and 12 to 15 months of age in a double blind trial; 37,868 children were randomly assigned 1:1 to receive either the pneumococcal conjugate vaccine or meningococcus type C CRM197 conjugate. The primary study outcome was invasive disease caused by vaccine serotype. Other outcomes included overall impact on invasive disease regardless of serotype, effectiveness against clinical otitis media visits and episodes, impact against frequent and severe otitis media and ventilatory tube placement. In addition the serotype-specific efficacy against otitis media was estimated in an analysis of spontaneously draining ears. RESULTS:In the interim analysis in August, 1998, 17 of the 17 cases of invasive disease caused by vaccine serotype in fully vaccinated children and 5 of 5 of partially vaccinated cases occurred in the control group for a vaccine efficacy of 100%. Blinded case ascertainment was continued until April, 1999. As of that time 40 fully vaccinated cases of invasive disease caused by vaccine serotype had been identified, all but 1 in controls for an efficacy of 97.4% (95% confidence interval, 82.7 to 99.9%), and 52 cases, all but 3 in controls in the intent-to-treat analysis for an efficacy of 93.9% (95% confidence interval, 79.6 to 98.5%). There was no evidence of any increase of disease caused by nonvaccine serotypes. Efficacy for otitis media against visits, episodes, frequent otitis and ventilatory tube placement was 8.9, 7.0, 9.3 and 20.1% with P < 0.04 for all. In the analysis of spontaneously draining ears, serotype-specific effectiveness was 66.7%. CONCLUSION:This heptavalent pneumococcal conjugate appears to be highly effective in preventing invasive disease in young children and to have a significant impact on otitis media.
In a recent article, Mariani and collaborators ([2][1]) described a competitive enzyme-linked immunosorbent assay (ELISA) for the quantitation of serum antibodies to Haemophilus influenzae type b (Hib) which correlated very well with the traditional radioantigen binding assay (RABA) and a previously
OBJECTIVE:To compare the safety and immunogenicity of a 5-valent pneumococcal conjugate vaccine to a licensed 23-valent polysaccharide pneumococcal vaccine in HIV-infected and non-HIV-infected children > or = 2 years old. METHODS:Thirty HIV-infected and 30 non-HIV-infected children > or = 2 years old were randomized to receive either a 5-valent pneumococcal conjugate vaccine (PCV) or a 23-valent pneumococcal polysaccharide vaccine (PPV) intramuscularly. Children who received PCV initially were given PPV after 6 weeks. Sera were obtained before and at 6 and 12 weeks after the first vaccination to determine IgG pneumococcal antibody titers by enzyme-linked immunosorbent assay to the 5 serotypes represented in the PCV. RESULTS:Both vaccines were well-tolerated with no significant differences in the rates of fever (0 to 14%) or local reactions (0 to 40%) noted between PCV and PPV recipients. Pre-first vaccination geometric mean antibody titers (combined PCV and PPV recipients) to 3 of the 5 pneumococcal types tested were significantly lower in HIV-infected than in non-HIV-infected children (in microgram/ml: type 6B, 0.179 vs. 0.565; type 14, 0.026 vs. 0.060; type 23F, 0.025 vs. 0.119, respectively; P < 0.05). Fewer > or = 4-fold titer rises were observed in HIV vs. non-HIV-infected children whether they received PCV initially (60% vs. 79%, P < 0.05) or PPV (31% vs. 59%, P < 0.05). Also PCV elicited more > or = 4-fold titer rises compared with PPV in HIV-infected (60% vs. 31%, P < 0.05) and non-HIV-infected (79% vs. 59%, P < 0.05) children. No consistent antibody-boosting effect was noted in subjects who received PPV after PCV. CONCLUSIONS:We conclude that antibody responses to natural infection, PCV and particularly PPV are poorer in HIV-infected than in non-HIV-infected children. PCV is as safe as and more immunogenic than the currently licensed PPV among HIV-infected and non-HIV-infected children.
BACKGROUND:Streptococcus pneumoniae is the most common cause of invasive bacterial disease and otitis media in infants and young children. Licensed pneumococcal polysaccharide vaccines are not reliably immunogenic in children younger than 2 years of age; therefore pneumococcal glycoprotein conjugate vaccines are currently being evaluated for safety, immunogenicity and efficacy in various age groups.METHODS:During a 12-month period we determined the kinetics of pneumococcal IgG antibody in 60 children who received primary immunization with one dose of bivalent (serotypes 6A and 23F) pneumococcal polysaccharide-CRM197 vaccines at 18 to 30 months of age. To assess immunologic priming a subgroup of 20 subjects received secondary immunization with pneumococcal polysaccharide vaccine, including serotypes 6B and 23F, at 11 to 20 months after primary immunization. Pneumococcal-specific IgG subclass distributions were also evaluated in the subgroup.RESULTS:In the 12 months after primary immunization with glycoprotein conjugate vaccine, geometric mean pneumococcal IgG antibody concentrations to 6B and 23F serotypes remained stable. Pneumococcal polysaccharide vaccine induced a greater anamnestic response in children primed with glycoprotein conjugate vaccines (13- to 40-fold increases to geometric mean concentrations of 6 to 30 micrograms/ml for type 23F), than in those primed with polysaccharide (2- to 4-fold increases). A greater IgG response to pneumococcal serotype 23F than to 6B was observed with both primary and secondary immunization. The serotype-specific pneumococcal IgG antibody response was virtually restricted to the IgG1 subclass after primary immunization, but secondary immunization elicited antibodies of IgG1 and IgG2 subclasses.CONCLUSIONS:These glycoprotein conjugate vaccines appear to prime for anamnestic IgG antibody responses to subsequent immunization with polysaccharide vaccine, suggesting that the polysaccharide-CRM197 vaccine effectively induces a predominantly T cell-dependent immune response. The greater IgG response to 23F than to 6B indicates that pneumococcal serotype is a major determinant of immunogenicity of pneumococcal glycoprotein conjugate vaccines.
The mechanism of antibody-mediated reduction of Haemophilus influenzae type b (Hib) carriage was studied in the infant rat colonization model. Monoclonal Hib polysaccharide (PS) antibody (MAb) given intranasally or intraperitoneally and human secretory anti-Hib PS IgA given intranasally inhibited colonization by Hib during the entire follow-up period (2-48 h after challenge) but did not affect colonization by Hi, a noncapsulated variant of Hib. F(ab')2 fragments, prepared from the MAb or from human serum anti-Hib IgG reduced Hib colonization as efficiently as the uncleaved molecules. Complement depletion by cobra venom treatment had no effect on the antibody-mediated reduction of Hib colonization. These results indicate that Fc-mediated activities of immunoglobulins are not essential in the reduction of Hib colonization. Instead, antibodies to Hib most likely reduce colonization by a direct effect on growth of the bacteria or their adherence to the nasopharyngeal mucosa.