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Bacterial Vaccines and Serotype Replacement: Lessons from Haemophilus Influenzae and Prospects for Streptococcus Pneumoniae

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Date 1999 May 26
PMID 10341170
Citations 81
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Abstract

Conjugate vaccines have reduced the incidence of invasive disease caused by Haemophilus influenzae, type b (Hib), in industrialized countries and may be highly effective against Streptococcus pneumoniae. However, the serotype specificity of these vaccines has led to concern that their use may increase carriage of and disease from serotypes not included in the vaccine. Replacement has not occurred with the use of Hib vaccines but has occurred in trials of pneumococcal vaccines. Mathematical models can be used to elucidate these contrasting outcomes, predict the conditions under which serotype replacement is likely, interpret the results of conjugate vaccine trials, design trials that will better detect serotype replacement (if it occurs), and suggest factors to consider in choosing the serotype composition of vaccines.

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References
1.
Moxon E . The carrier state: Haemophilus influenzae. J Antimicrob Chemother. 1986; 18 Suppl A:17-24. DOI: 10.1093/jac/18.supplement_a.17. View

2.
Farley M, Stephens D, Brachman Jr P, Harvey R, Smith J, Wenger J . Invasive Haemophilus influenzae disease in adults. A prospective, population-based surveillance. CDC Meningitis Surveillance Group. Ann Intern Med. 1992; 116(10):806-12. DOI: 10.7326/0003-4819-116-10-806. View

3.
Schuchat A, Robinson K, Wenger J, Harrison L, Farley M, Reingold A . Bacterial meningitis in the United States in 1995. Active Surveillance Team. N Engl J Med. 1998; 337(14):970-6. DOI: 10.1056/NEJM199710023371404. View

4.
Reichler M, Allphin A, Breiman R, Schreiber J, Arnold J, McDougal L . The spread of multiply resistant Streptococcus pneumoniae at a day care center in Ohio. J Infect Dis. 1992; 166(6):1346-53. DOI: 10.1093/infdis/166.6.1346. View

5.
Barbour M . Conjugate vaccines and the carriage of Haemophilus influenzae type b. Emerg Infect Dis. 1996; 2(3):176-82. PMC: 2626802. DOI: 10.3201/eid0203.960303. View