热带病与寄生虫学 ›› 2026, Vol. 24 ›› Issue (3): 153-158.doi: 10.20199/j.issn.1672-2302.2026.03.005

• 蚊媒传染病防控专题 • 上一篇    下一篇

2025年南宁市青秀区基孔肯雅热疫情特征与应急处置分析

韦振明1(), 周清1(), 庞嬿1, 梁春香1, 陆路1, 梁浩2(), 黄虞远2()   

  1. 1 南宁市青秀区疾病预防控制中心(南宁市青秀区卫生监督所)广西南宁 530022
    2 广西医科大学公共卫生学院(广西艾滋病防治研究重点实验室)
  • 收稿日期:2026-01-21 出版日期:2026-06-20 发布日期:2026-07-31
  • 通信作者: 梁浩,E-mail: lianghao@gxmu.edu.cn;黄虞远,E-mail: huang2023@sr.gxmu.edu.cn
  • 作者简介:韦振明,男,本科,主任医师,研究方向:疾病预防与控制。E-mail: 56669347@qq.com|周清,女,本科,副主任医师,研究方向:疾病预防与控制。E-mail: 120719430@qq.com;韦振明与周清同为第一作者
  • 基金资助:
    中国博士后科学基金项目(2023MD744190);广西自然科学基金青年科学基金项目(2025GXNSFBA069180)

Epidemiological characteristics and emergency response to Chikungunya fever in Qingxiu District, Nanning, 2025

WEI Zhenming1(), ZHOU Qing1(), PANG Yan1, LIANG Chunxiang1, LU Lu1, LIANG Hao2(), HUANG Yuyuan2()   

  1. 1 Qingxiu District Center for Disease Control and Prevention (Qingxiu District Health Inspection Center), Nanning 530022, Guangxi Zhuang Autonomous Region, China
    2 School of Public Health, Guangxi Medical University (Guangxi Key Laboratory for AIDS Prevention and Control Research)
  • Received:2026-01-21 Online:2026-06-20 Published:2026-07-31
  • Contact: LIANG Hao, E-mail: lianghao@gxmu.edu.cn;HUANG Yuyuan, E-mail: huang2023@sr.gxmu.edu.cn

摘要:

目的 分析2025年南宁市青秀区基孔肯雅热疫情特征和应急处置情况,为城市蚊媒传染病防控提供依据。方法 从中国疾病预防控制信息系统中收集2025年8月11日至11月6日报告的现住址为青秀区的基孔肯雅热确诊病例信息,结合现场调查与处置资料,分析病例三间分布、诊疗情况、聚集性情况及溯源结果等流行特征,总结病例搜索与管控、媒介调查与消杀等应急处置工作情况。结果 2025年南宁市青秀区累计报告基孔肯雅热病例341例,其中本地病例287例(占84.16%);输入病例54例(占15.84%)。发病高峰集中于8—10月(333例,占97.65%),呈双峰分布。本地病例主要集中于主城区建政、南湖和新竹三个街道,共计243例(占84.67%)。本地病例男女性别比为1.05∶1,60岁及以上居多(75例,占26.13%),职业以干部职员最多(60例,占20.91%);输入病例男女性别比为1.57∶1,20~39岁居多(18例,占33.33%),职业以学生最多(13例,占24.07%)。主动就医方式发现的病例最多(314例,占92.08%),首诊症状以关节疼痛最为常见(145例,占42.52%),临床表现同时具备发热、皮疹、关节疼痛三联征病例占29.33%(100/341)。报告病例中有284例(占83.28%)可追溯到明确时空暴露史或与确诊病例存在流行病学关联;共识别聚集性疫情15起,均为社区传播,涉及本地病例162例(占47.51%)。溯源调查显示,建政街道石油小区为本次疫情早期传播的重要风险区域。病毒全基因组测序显示13株病毒之间同源性较高,与广东省病毒序列相似性均在99.00%以上。对核心区490个小区开展入户摸排,有效入户率为89.32%(50 678/56 740),排查发现高风险人员1 961人,阳性检出率为1.38%(27/1 961)。媒介调查显示,部分核心区疫点首次布雷图指数(Breteau index, BI)值超过安全阈值,经处置后95.48%疫点BI值降至安全水平。白纹伊蚊为优势蚊种,未检出埃及伊蚊。全区累计对444处重点区域开展持续消杀,消杀面积达2 150.96万m2结论 2025年青秀区基孔肯雅热疫情以社区聚集性本地传播为主,并与广东省输入病例存在高度关联。早期输入源未能明确识别,提示需提高医疗机构症候群监测敏感性,并将主动病例搜索、孳生地治理和精准媒介控制作为城市基孔肯雅热防控重点。

关键词: 基孔肯雅热, 本地病例, 输入病例, 监测, 暴发, 流行特征

Abstract:

Objective To analyze the epidemiological characteristics and emergency response of Chikungunya fever epidemic in Qingxiu District, Nanning City in 2025, so as to provide evidence for the prevention and control of mosquito-borne infectious diseases in urban areas. Methods The data of confirmed Chikungunya fever cases with current residential address in Qingxiu District reported between August 11 and November 6, 2025 were retrieved through the Chinese Disease Prevention and Control Information System. Combined with data from field investigations and response efforts, we analyzed the epidemiological characteristics of the cases, including their spatial-temporal-personal distribution, diagnosis and treatment status, clustering patterns, and source-tracing results, and summarized the implementation of emergency response measures such as case search and management, vector surveillance, and mosquito vector control. Results A total of 341 Chikungunya fever cases were reported in Qingxiu District in 2025, including 287 indigenous cases (84.16%) and 54 imported cases (15.84%). The incidence peaked between August and October (n=333; 97.65%) with a bimodal distribution. Geographically, indigenous cases were predominantly clustered in the three subdistricts of Jianzheng, Nanhu and Xinzhu in the downtown area (n=243; 84.67%). The male-female sex ratio of indigenous cases was 1.05∶1, with the majority aged 60 years and above (n=75; 26.13%), and administrative staff constituted the leading occupational group (n=60; 20.91%). Among imported cases, the male-female sex ratio was 1.57∶1, dominated by patients aged 20-39 years (n=18; 33.33%), and students ranked first by occupation (n=13; 24.07%). Most cases were identified via voluntary medical consultation (n=314; 92.08%). Joint pain served as the most common initial symptom at first consultation (n=145; 42.52%), and 29.33%(100/341) of patients presented with the classic triad of fever, rash and arthralgia. Among all confirmed cases, 284 (83.28%) had verifiable spatiotemporal exposure history or epidemiological links to confirmed patients. Fifteen community-based clustered outbreaks were identified, all resulting from community transmission, involving 162 indigenous cases (47.51%). Source-tracing confirmed Shiyou Residential Quarter in Jianzheng Subdistrict as a critical high-risk site for the early transmission of this epidemic. During emergency response, whole-genome sequencing of viruses revealed high homology among the 13 isolated viral strains, with sequence similarities over 99.00% when compared with the viral strains circulating in Guangdong Province. Household screening was implemented across 490 residential compounds within the core epidemic zones, which achieved an effective household rate of 89.32% (50 678 /56 740). A total of 1 961 high-risk individuals were screened, with a positive detection rate of 1.38% (27/1 961). Vector surveillance indicated that the initial Breteau index (BI) at some epidemic foci in the core area exceeded the safety threshold, and the BI values of 95.48% of theaffected sites fell below the safety threshold after targeted interventions. Aedes albopictus was identified as the dominant mosquito species, and no Aedes aegypti was found. Sustained disinfection and vector control efforts were carried out at 444 priority sites across the whole district, which covered a total area of 21.509 6 million square meters. Conclusion Chikungunya fever epidemic in Qingxiu District in 2025 was featured by community-clustered indigenous transmission and closely linked to imported cases from Guangdong Province. Failure in timely identification of early importation sources suggests that it is essential to improve the sensitivity of hospital-based syndrome surveillance. Meanwhile, active case finding, breeding site elimination and targeted vector control should be prioritized as core strategies for prevention and control of Chikungunya fever in urban areas.

Key words: Chikungunya fever, Indigenous cases, Imported cases, Surveillance, Outbreak, Epidemiological characteristics

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