Evolution of Bordetella pertussis in the acellular vaccine era in Norway, 1996 to 2019

被引:7
作者
Brandal, Lin T. [1 ,2 ]
Vestrheim, Didrik F. [1 ]
Bruvik, Torbjorn [1 ]
Roness, Ragnhild B. [1 ]
Bjornstad, Martha L. [1 ]
Greve-Isdahl, Margrethe [1 ]
Steens, Anneke [1 ]
Brynildsrud, Ola B. [1 ,3 ]
机构
[1] Norwegian Inst Publ Hlth, Oslo, Norway
[2] European Ctr Dis Prevent & Control ECDC, European Program Publ Hlth Microbiol Training EUP, Stockholm, Sweden
[3] Norwegian Univ Life Sci, As, Norway
关键词
Bordetella pertussis; Whooping cough; Whole genome sequencing; Evolution; Genomic variation; Vaccine-related antigens; GENOMIC EPIDEMIOLOGY; BOOSTER VACCINATION; UNITED-STATES; PERTACTIN; RESURGENCE; PARAPERTUSSIS; DIVERSITY; CHILDREN; IMMUNITY; STRAINS;
D O I
10.1007/s10096-022-04453-0
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
We described the population structure of Bordetella pertussis (B. pertussis) in Norway from 1996 to 2019 and determined if there were evolutionary shifts and whether these correlated with changes in the childhood immunization program. We selected 180 B. pertussis isolates, 22 from the whole cell vaccine (WCV) era (1996-1997) and 158 from the acellular vaccine (ACV) era (1998-2019). We conducted whole genome sequencing and determined the distribution and frequency of allelic variants and temporal changes of ACV genes. Norwegian B. pertussis isolates were evenly distributed across a phylogenetic tree that included global strains. We identified seven different allelic profiles of ACV genes (A-F), in which profiles A1, A2, and B dominated (89%), all having pertussis toxin (ptxA) allele 1, pertussis toxin promoter (ptxP) allele 3, and pertactin (prn) allele 2 present. Isolates with ptxP1 and prn1 were not detected after 2007, whereas the prn2 allele likely emerged prior to 1972, and ptxP3 before the early 1980s. Allele conversions of ACV genes all occurred prior to the introduction of ACV. Sixteen percent of our isolates showed mutations within the prn gene. ACV and its booster doses (implemented for children in 2007 and adolescents in 2013) might have contributed to evolvement of a more uniform B. pertussis population, with recent circulating strains having ptxA1, ptxP3, and prn2 present, and an increasing number of prn mutations. These strains clearly deviate from ACV strains (ptxA1, ptxP1, prn1), and this could have implications for vaccine efficiency and, therefore, prevention and control of pertussis.
引用
收藏
页码:913 / 924
页数:12
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