Emergence and spread of MT28 ptxP3 allele macrolide-resistant Bordetella pertussis from 2021 to 2022 in China

基因分型 百日咳博德特菌 可变数串联重复 聚合酶链反应 生物 微生物学 多位点序列分型 病毒学 百日咳毒素 基因型 遗传学 基因 细菌 G蛋白 受体
作者
Pan Fu,Jinlan Zhou,Jianhua Meng,Zhiwei Liu,Yaxier Nijiati,Leiyan He,Chunling Li,Saige Chen,Aimin Wang,Gangfeng Yan,Guoping Lü,Lijun Zhou,Xiaowen Zhai,Chuanqing Wang
出处
期刊:International Journal of Infectious Diseases [Elsevier]
卷期号:128: 205-211 被引量:11
标识
DOI:10.1016/j.ijid.2023.01.005
摘要

Abstract

Objectives

To reveal the clinical and molecular characteristics of Bordetella pertussis (BP) prevalent in Shanghai, China.

Methods

A total of 9430 children with suspected pertussis from 2021 to 2022 were included, and nasopharyngeal swab samples were collected for polymerase chain reaction detection, culture, antimicrobial susceptibility testing, and 23S rRNA gene A2047G detection. BP strains were typed using multilocus variable-number tandem-repeat analysis and virulence genotyping.

Results

Of 9430 cases, 5.1% and 1.6% were confirmed by polymerase chain reaction and culture, respectively. Infants (aged <1 year) accounted for 24.7% and presented much more severe symptoms than noninfants. Pertussis was most frequently detected in infants aged 0-6 months (11.3∼14.0%) and children aged >6-10 years (10.8∼21.7%). Macrolide-resistant BP (MRBP) accounted for 89.3%, and all carried the A2047G mutation. There were six multilocus variable-number tandem-repeat analysis types (MTs), including MT28 (62.0%), MT195 (20%), MT27 (10.0%), MT104 (4.7%), MT55 (2.7%), and MT32 (0.7%). BP strains with pertussis toxin (ptx)P3/(pertactin) prn2/ptxC2/ptxA1/(fimbrial proteins) fim2-1/fim3-1, including MT27, MT28, and MT32, accounted for 72.7%, among which MT27 and MT32 were macrolide-sensitive BP, whereas most (94.6∼100%) of MT28 were MRBP. Strains harboring ptxP1/prn1/ptxC1/ptxA1/fim2-1/fim3-1, including MT55, MT104, and MT195, belonged to macrolide-sensitive BP.

Conclusion

The emergence and spread of MT28 ptxP3-MRBP was first reported in China, highlighting the importance of continuous surveillance of ptxP3-MRBP to prevent its potential circulation.
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