Objective. To determine the safety and immunogenicity of heptavalent pneumococcal saccharide vaccine (serotypes 4, 6B, 9V, 14, 18C, 19F, 23F) individually conjugated to CRM197 (PNCRM7), administered at 2, 4, 6, and 12 to 15 months of age.Design. Two hundred twelve healthy 2-month-old infants were equally randomized to receive four consecutive doses of PNCRM7 or an investigational meningococcal group C conjugate vaccine, which served as a control. Concomitantly administered routine vaccines were oral polio vaccine and combined diphtheria toxoid, tetanus toxoid, and whole cell pertussis vaccine/Haemophilus influenzae type b vaccine consisting of capsular oligosaccharides conjugated to CRM197 (DTP/HbOC) at 2, 4, and 6 months, and either measles-mumps-rubella vaccine or HbOC at 12 to 15 months. Active safety surveillance was conducted for 3 days after each dose. Antibody concentrations to each of the 7 pneumococcal serotypes were measured by enzyme-linked immunosorbent assay prevaccination, after doses two and three, prebooster, and postbooster.Results. Significantly fewer children experienced local reactions at the PNCRM7 injection site than at the DTP/HbOC site. There was no increase in the incidence or severity of local reactions at the PNCRM7 site with increasing doses of vaccine. Mild to moderate postvaccination fever was common in both the PNCRM7 and control vaccine groups, however DTP/HbOC was administered concurrently. All 7 vaccine serotypes were immunogenic. The kinetics of the immune responses were serotype-specific. After three doses of PNCRM7, between 92% to 100% of children had ≥0.15 μg/mL of antibody, and 51% to 90% achieved a level of ≥1 μg/mL against specific serotypes. A booster dose of PNCRM7 resulted in a brisk anamnestic response to all 7 vaccine serotypes, demonstrating effective stimulation of T-cell memory by the primary series of vaccinations.Conclusion. Primary immunization followed by a booster dose of PNCRM7 seemed to be acceptably safe and resulted in significant rises in antibody to all 7 serotypes.Implications. Studies to assess vaccine efficacy of PNCRM7 for prevention of systemic disease, nasopharyngeal colonization, and acute otitis media are in progress. If PNCRM7 proves to be protective, there is the potential to prevent up to 85% of invasive pneumococcal disease occurring in US children.
Six pentavalent pneumococcal conjugate vaccines (Pn-CRM197) were evaluated among 400 infants. The vaccines differed in saccharide chain length (oligosaccharide [OS] or polysaccharide [PS]) and saccharide quantity (0.5, 2, or 5 microg). Subjects were randomized into groups 1-6 (Pn-CRM197 recipients) or 7 (controls) for immunization at 2, 4, and 6 months of age. Pn-CRM197 were well tolerated and elicited mean antibody concentrations that exceeded those in controls for all 5 capsular serotypes. PS formulations were generally more immunogenic than their OS counterparts. For PS vaccines, a dose-response was documented (5 microg > 2 microg > 0.5 microg), but the differences between the 5- and 2-microg formulations were insignificant. The mean anti-PRP antibody concentration was significantly higher among Pn-CRM197 recipients. It is concluded that PS vaccines are more immunogenic than OS vaccines. The improved immunogenicity from Haemophilus type b oligosaccharide conjugate (HbOC) vaccine when given with Pn-CRM197 suggests that a decreased dose of HbOC vaccine may be sufficient to elicit protection.
SAFETY AND IMMUNOGENICITY OF 3 DOSES OF A 5-VALENT PNEUMOCOCCAL CONJUGATE VACCINE (PCV) IN HIV AND NON HIV-INFECTED CHILDREN ▴ 1037
Because most childhood invasive pneumococcal disease occurs before the age of 2 years, the development of a pneumococcal vaccine that is immunogenic in infants is a priority. We assessed the safety and serum antibody responses to two dose levels of three bivalent pneumococcal capsular polysaccharide (CPS)-protein conjugate vaccines incorporating the poorly immunogenic serotypes 6A and 23F. The conjugate vaccines differed in CPS size and chemical linkage, but all used a nontoxic cross-reactive mutant diphtheria toxin (CRM197) as the protein carrier. 118 young children 18 to 30 months of age received a single immunization with one of the three glycoconjugates or with licensed pneumococcal vaccine. Sera were obtained before and 1 month after immunization and analyzed by enzyme-linked immunosorbent assay for serotype-specific antibody titers. The 23F CPS was more immunogenic than the 6A CPS in all vaccine formats. The most immunogenic 23F conjugate vaccine consisted of native CPS directly linked to the carrier protein; smaller CPS or the use of a six-carbon linker did not appear to enhance immunogenicity in these young children. Conjugation of two pneumococcal CPSs is associated with an increase in immunogenicity, and the characteristics of the CPS and of the CPS-protein linkage appear to influence the antibody response.
Twenty-six children (aged 18-36 months) previously hospitalized for respiratory syncytial virus (RSV) infection were randomized to receive 50 mug of an RSV subunit vaccine composed primarily of F glycoprotein or saline placebo by intramuscular injection. Serum was obtained at entry and at 1 and 6 months after vaccination for detection of antibody to F glycoprotein and G glycoprotein of subtypes A (Ga) or B (Gb) and of neutralizing antibody (nAb). At 1 month, by comparing the baseline values, vaccinees had statistically significant increases in geometric mean antibody titer (GMT) of more than fourfold to F (P = .0001), Ga (P = .0001), Gb (P = .003), and nAb (P = .009). No differences in GMT were observed between F protein vaccine and placebo recipients at entry, nor between placebo recipients at entry and 1 month. RSV infections were identified in 7 placebo recipients (4 by both viral identification and seroconversion, 3 by seroconversion alone). No vaccine recipient had RSV infection documented in the 6 months after vaccination (P = .003). There were no significant vaccine-related side effects, and no evidence of enhanced respiratory illnesses was observed. The subunit F protein vaccine appears safe and immunogenic and may prevent infection in healthy children primed by prior RSV infection.