Investigation and analysis on an outbreak of norovirus infection in a health school in Guangdong Province, China

诺如病毒 爆发 攻击率 流行病学 基因分型 传输(电信) 基因型 分离(微生物学) 医学 病毒学 环境卫生 生物 人口学 微生物学 内科学 遗传学 社会学 电气工程 基因 工程类
作者
Yucheng Xu,Yuanzhao Zhu,Zhao Lei,Jia Rui,Zeyu Zhao,Shengnan Lin,Yao Wang,Jingwen Xu,Xingchun Liu,Meng Yang,Hongsheng Chen,Xuemei Pan,Wentao Lu,Yuzhong Du,Hui Li,Ling Fang,Meng Zhang,Lina Zhou,Fen Yang,Tianmu Chen
出处
期刊:Infection, Genetics and Evolution [Elsevier BV]
卷期号:96: 105135-105135 被引量:5
标识
DOI:10.1016/j.meegid.2021.105135
摘要

Our objective was to describe the epidemiological features of an outbreak of norovirus infection in a health school in Guangdong province, China, to identify the cause of such a large scale outbreak of norovirus among older students, to simulate the transmission dynamics, and to evaluate the effect of intervention measures of GII.17 [P17] genotype norovirus infection. We identified all cases during the outbreak. Descriptive epidemiological, analytical epidemiological and hygiene survey methods were used to described the outbreak epidemic course and identify the cause of the outbreak of norovirus infection. We also used dynamical model to simulate the transmission dynamics of norovirus infection and evaluate the effect of intervention measures. Norovirus genotyping was assigned to the newly obtained strains, with a maximum likelihood phylogenetic analysis conducted. There were 360 cases of 42 classes in five grades with a 12.99% attack rate. Proportionally, more students were in contact with sick students and vomit in the suspected case group than the control group (χ2 = 5.535, P = 0.019 and χ2 = 5.549, P = 0.019, respectively). The basic reproduction number was 8.32 before and 0.49 after the intervention. Dynamical modeling showed that if the isolation rate was higher or case isolation began earlier, the total attack rate would decrease. Molecular characterization identified the GII.17 [P17] genotype in all stains obtained from the health school, which were clustered with high support in the phylogenetic tree. This was an outbreak of norovirus infection caused by contact transmission. The main reasons for the spread of the epidemic were the later control time, irregular treatment of vomit and no case isolation. The transmission dynamics of contact transmission was high, more efficient control measures should be employed.
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