|
|
|
| Characteristics of pathogens among severe acute respiratory infection cases in Tianjin Municipality |
| LIU Xiaochang1, GUO Liru1, YANG Jie1, WU Mingkun1, KONG Mei1, ZHANG Peng1, LI Xiaoyan1,2
|
1. Tianjin Center for Disease Control and Prevention, Tianjin 300011, China; 2. School of Public Health, Tianjin Medical University, Tianjin 300070, China |
|
|
|
|
Abstract Objective To analyze the infection characteristics of pathogens among cases with severe acute respiratory infection (SARI) in Tianjin Municipality, so as to provide the evidence for developing regional SARI prevention and control strategies. Methods Sputum or throat swab specimens were collected from SARI cases at six sentinel hospitals for respiratory pathogen surveillance in Tianjin Municipality from January 2024 to December 2025. A multiplex real-time PCR nucleic acid detection kit for respiratory pathogens was used to detect 14 types of SARI pathogens. Descriptive analysis was conducted to explore pathogen detection status, as well as temporal and age distribution characteristics. Results A total of 3 402 specimens were collected, with 1 456 pathogen-positive samples and positive detection rate of 42.80%. More positive samples were detected from October to December, with 205, 232 and 274 positive samples accounting for 38.90%, 44.87% and 51.02%, respectively. Mycoplasma pneumoniae, Haemophilus influenzae and Streptococcus pneumoniae had relatively high positive detection rates of 10.58%, 9.88% and 6.61%, respectively. The top three pathogens ranked by positive detection rate for single infection were Mycoplasma pneumoniae, influenza A virus and Haemophilus influenzae, while the top four pathogen combinations ranked by positive detection rate for mixed infection were Haemophilus influenzae combined with Mycoplasma pneumoniae, Haemophilus influenzae combined with Streptococcus pneumoniae, respiratory syncytial virus combined with Streptococcus pneumoniae, and Haemophilus influenzae combined with influenza A virus. The 0-<6 years and 6-<18 years age groups exhibited relatively high pathogen positive detection rates of 61.14% and 59.97%, respectively. Conclusions The predominant pathogens among SARI patients in Tianjin Municipality were Mycoplasma pneumoniae, Haemophilus influenzae and Streptococcus pneumoniae. The risk of pathogen infection was higher in autumn and winter and among population aged 0-<18 years.
|
|
Received: 27 February 2026
Revised: 26 May 2026
Published: 27 July 2026
|
|
|
|
|
|
[1] World Health Organization.Global epidemiological surveillance standards for influenza[M].Geneva:WHO,2014. [2] GBD 2016 Lower Respiratory Infections Collaborators.Estimates of the global,regional,and national morbidity,mortality,and aetiologies of lower respiratory infections in 195 countries,1990-2016:a systematic analysis for the Global Burden of Disease Study 2016[J].Lancet Infect Dis,2018,18(11):1191-1210. [3] Nair H,Nokes D J,Gessner B D,et al.Global burden of acute lower respiratory infections due to respiratory syncytial virus in young children:a systematic review and meta-analysis[J].Lancet,2010,375(9725):1545-1555. [4] Li Z J,Zhang H Y,Ren L L,et al.Etiological and epidemiological features of acute respiratory infections in China[J/OL].Nat Commun,2021,12[2026-05-26].http://doi.org/10.1038/s41467-021-25120-6. [5] Ruuskanen O,Lahti E,Jennings L C,et al.Viral pneumonia[J].Lancet,2011,377(9773):1264-1275. [6] 范佳鑫,夏汝杰,周晓梅,等.2024—2025年成都某医院急性呼吸道感染主要病原体的流行病学特征[J].临床荟萃,2025,40(7):602-607. [7] 尤凤凤,施新焕,刘泽芬,等.2022—2024年大理州某医院急性呼吸道感染病原体流行特征[J].中华医院感染学杂志,2026,36(5):784-789. [8] 蒋惟,陈火英,胡航宇,等.2023—2024年桂北地区某医院急性呼吸道感染病原体流行特征分析[J].疾病预防控制通报,2025,40(6):42-48. [9] 杜青青,雷霞,姜晓峰,等.2023—2024年内蒙古自治区急性呼吸道病原体流行病学特征分析[J].中国国境卫生检疫杂志,2025,48(5):530-535. [10] 孙娜娜,宋明辉,谢江,等.2023—2025年三亚地区某医院七种呼吸道病原体检测及流行病学特征[J].中华医院感染学杂志,2026,36(1):89-93. [11] Du H,Li J,et al.Respiratory pathogen profiles of patients:Beijing municipality,China,November 2023-April 2024[J].China CDC Wkly,2025,7(4):113-120. [12] Lowen A C,Mubareka S,Steel J,et al.Influenza virus transmission is dependent on relative humidity and temperature[J].PLoS Pathog,2007,3(10):1470-1476. [13] Shaman J,Pitzer V E,Viboud C,et al.Absolute humidity and the seasonal onset of influenza in the continental United States[J/OL].PLoS Biol,2010,8(2)[2026-05-26].http://doi.org/10.1371/journal.pbio.1000316. [14] Waites K B,Talkington D F.Mycoplasma pneumoniae and its role as a human pathogen[J].Clin Microbiol Rev,2004,17(4):697-728. [15] Williams D J,Shah S S.Community-acquired pneumonia in the conjugate vaccine era[J].J Pediatric Infect Dis Soc,2012,1(4):314-328. [16] Li Y,Wang X,Blau D M,et al.Global,regional,and national disease burden estimates of acute lower respiratory infections due to respiratory syncytial virus in children younger than 5 years in 2019:a systematic analysis[J].Lancet,2022,399(10340):2047-2064. [17] 杨艳娜,李敏,杨阳,等.一起学校肺炎支原体P1-Ⅱ型感染暴发疫情的流行病学调查[J].预防医学,2024,36(4):342-344. |
|
|
|