Colony blot assay: a useful method to detect multiple pneumococcal serotypes within clinical specimens

The efficacy of pneumococal conjugate vaccines in young children may be complicated by serotype replacement. We developed a colony blot assay which enables the identification of re-colonization with novel serotypes (replacement), overgrowth by minor co-colonizing serotypes or suppression of previous...

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Published inFEMS immunology and medical microbiology Vol. 41; no. 3; pp. 259 - 264
Main Authors Bogaert, D, Veenhoven, R.H, Sluijter, M, Sanders, E.A.M, de Groot, R, Hermans, P.W.M
Format Journal Article
LanguageEnglish
Published Oxford, UK Elsevier B.V 01.07.2004
Blackwell Publishing Ltd
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Oxford University Press
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Abstract The efficacy of pneumococal conjugate vaccines in young children may be complicated by serotype replacement. We developed a colony blot assay which enables the identification of re-colonization with novel serotypes (replacement), overgrowth by minor co-colonizing serotypes or suppression of previously predominant vaccine serotype strains as a result of vaccination. This method allows the identification of multiple serotypes in a single specimen in a ratio of 1:1000. In order to demonstrate the potential of our method, we investigated the consecutive nasopharyngeal samples of 26 children who had shown a shift in pneumococcal colonization after conjugate vaccination. Mixed colonization was found once in 15 pre-vaccination samples and four times in 26 post-vaccination samples. In the remaining children `true replacement' had presumably occurred. Hence, we conclude that the colony blot assay is an easy to apply method, which allows the identification of different pneumococcal serotypes within single clinical specimens.
AbstractList The efficacy of pneumococal conjugate vaccines in young children may be complicated by serotype replacement. We developed a colony blot assay which enables the identification of re-colonization with novel serotypes (replacement), overgrowth by minor co-colonizing serotypes or suppression of previously predominant vaccine serotype strains as a result of vaccination. This method allows the identification of multiple serotypes in a single specimen in a ratio of 1:1000. In order to demonstrate the potential of our method, we investigated the consecutive nasopharyngeal samples of 26 children who had shown a shift in pneumococcal colonization after conjugate vaccination. Mixed colonization was found once in 15 pre-vaccination samples and four times in 26 post-vaccination samples. In the remaining children `true replacement' had presumably occurred. Hence, we conclude that the colony blot assay is an easy to apply method, which allows the identification of different pneumococcal serotypes within single clinical specimens.
Abstract The efficacy of pneumococal conjugate vaccines in young children may be complicated by serotype replacement. We developed a colony blot assay which enables the identification of re-colonization with novel serotypes (replacement), overgrowth by minor co-colonizing serotypes or suppression of previously predominant vaccine serotype strains as a result of vaccination. This method allows the identification of multiple serotypes in a single specimen in a ratio of 1:1000. In order to demonstrate the potential of our method, we investigated the consecutive nasopharyngeal samples of 26 children who had shown a shift in pneumococcal colonization after conjugate vaccination. Mixed colonization was found once in 15 pre-vaccination samples and four times in 26 post-vaccination samples. In the remaining children ‘true replacement’ had presumably occurred. Hence, we conclude that the colony blot assay is an easy to apply method, which allows the identification of different pneumococcal serotypes within single clinical specimens.
Author Veenhoven, R.H
Sanders, E.A.M
Sluijter, M
Hermans, P.W.M
Bogaert, D
de Groot, R
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Issue 3
Keywords Replacement
Unmasking
Multiple serotypes
Vaccination
Streptococcus pneumoniae
Streptococcaceae
Immunology
Microbiology
Bacteria
Micrococcales
Method
Serotype
Detection
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Snippet The efficacy of pneumococal conjugate vaccines in young children may be complicated by serotype replacement. We developed a colony blot assay which enables the...
Abstract The efficacy of pneumococal conjugate vaccines in young children may be complicated by serotype replacement. We developed a colony blot assay which...
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SubjectTerms Assaying
Bacteriology
Biological and medical sciences
Carrier State - microbiology
Child
Child, Preschool
Children
Colonies
Colonization
Conjugates
Culture Media
Fundamental and applied biological sciences. Psychology
Human papillomavirus
Humans
Immunization
Immunoblotting - methods
Infant
Microbiology
Miscellaneous
Multiple serotypes
Nasopharynx - microbiology
Otitis Media - microbiology
Otitis Media - prevention & control
Pneumococcal Infections - microbiology
Pneumococcal Infections - prevention & control
Pneumococcal Vaccines - administration & dosage
Replacement
Serotypes
Serotyping
Streptococcus infections
Streptococcus pneumoniae
Streptococcus pneumoniae - classification
Streptococcus pneumoniae - isolation & purification
Unmasking
Vaccination
Vaccines
Vaccines, Conjugate - administration & dosage
Title Colony blot assay: a useful method to detect multiple pneumococcal serotypes within clinical specimens
URI https://dx.doi.org/10.1016/j.femsim.2004.03.013
https://onlinelibrary.wiley.com/doi/abs/10.1016%2Fj.femsim.2004.03.013
https://www.ncbi.nlm.nih.gov/pubmed/15196576
https://www.proquest.com/docview/2307185354
https://search.proquest.com/docview/18014634
https://search.proquest.com/docview/72022415
Volume 41
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