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2025, 01, v.41 59-70
城市生活污水中腺病毒浓度与病例腺病毒感染的初步研究
基金项目(Foundation): 上海市卫生健康委员会卫生行业临床研究专项(项目号:202240094),题目:致病性人腺病毒与人群感染特征研究; 上海市加强公共卫生体系建设三年行动计划(2023-2025年)(项目号:GWVI-3),题目:超大城市生物安全关键能力和公共卫生实验室网络一体化建设;上海市加强公共卫生体系建设三年行动计划(2023-2025年)重点学科(项目号:GWVI-11.1-02-传染病学),题目:重大传染病早期预警预测、聚集性疫情传播动力学模型、动态监测、干预技术等; 上海市浦东新区卫生健康委员会学科建设计划(项目号:PWZxk2022-25),题目:浦东新区卫生系统重点学科-免疫预防学~~
邮箱(Email): qchu@pdcdc.sh.cn;alexpan0804@163.com;
DOI: 10.13242/j.cnki.bingduxuebao.004645
摘要:

了解上海市浦东新区不同来源样本中腺病毒的检出情况,初步探讨城市生活污水中腺病毒浓度与病例腺病毒感染的关系。收集2023年7月1日-2024年6月30日上海市浦东新区污水处理厂、监测哨点医院的急性呼吸道感染和急性胃肠道感染样本,用微流体芯片检测污水中的腺病毒和急性呼吸道感染样本中的呼吸道腺病毒,通过实时荧光PCR方法检测腹泻样本中的胃肠道腺病毒。利用不同浓度梯度腺病毒标准品检测结果制作浓度梯度曲线,计算污水样本中腺病毒浓度并与病例检出结果进行分析。研究期间共采集临床样本5097份,其中急性呼吸道感染样本3995份,检出呼吸道腺病毒阳性样本116份,检出率为2.90%(116/3995),急性胃肠道感染样本1102份,检出胃肠道腺病毒阳性样本21份,检出率为1.91%(21/1102)。污水样本357份,检出呼吸道腺病毒342份,检出率为95.80%(342/357),胃肠道腺病毒检出310份,检出率为86.83%(310/357)。城市生活污水中的呼吸道腺病毒和胃肠道腺病毒浓度范围分别在1.09×105拷贝/L~2.20×107拷贝/L和2.58×105拷贝/L~7.10×107拷贝/L。污水中胃肠道腺病毒的浓度与病例中胃肠道腺病毒检出率呈现正相关。城市生活污水中的腺病毒浓度与病例检出率之间存在相关性。可以利用污水监测对病例监测进行补充。

Abstract:

To investigate the detection of adenovirus in samples from different sources in Pudong New District, Shanghai in China, and to preliminarily explore the relationship between adenovirus concentration in urban domestic sewage and adenovirus infection in related population. Samples of acute respiratory tract infection and acute gastrointestinal infection were collected from Shanghai Pudong New District, Shanghai in China sewage treatment plant and monitoring sentinel hospital from July 1, 2023 ~ June 30, 2024. Adenovirus in sewage and in acute respiratory infection samples were detected by microfluidic chip, and gastrointestinal adenovirus in diarrhea samples was detected by real-time fluorescence PCR. The concentration gradient curves were prepared using the detection results of adenovirus standards with different concentration gradients, and the adenovirus concentrations in sewage samples were calculated and analyzed with the results of case detection. A total of 5097clinical samples were collected. In 3995 samples of acute respiratory tract infection. 116 samples were positive of respiratory adenovirus, with a detection rate of 2.90%(116/3995). In 1102 samples of acute gastrointestinal infection, 21 positive of gastrointestinal adenovirus were detected, with a detection rate of 1.91%(21/1102).Of the 357 sewage samples, 342 were positive of respiratory adenovirus, with a detection rate of 95.80%(342/357); and 310 gastrointestinal adenovirus positive samples were detected, with a detection rate of 86.83%(310/357). The concentrations of respiratory adenovirus and gastrointestinal adenovirus in urban domestic sewage were 1.09×105 copies/L~2.20×107 copies/L and 2.58×105 copies/L~7.10×107 copies/L, respectively. The concentration of gastrointestinal adenovirus in sewage was positively correlated with the detection rate of gastrointestinal adenovirus in patients. There is a correlation between adenovirus concentration in urban domestic sewage and case detection rate. Case surveillance can be supplemented by sewage surveillance.

参考文献

[1] Huang S, Wang H, Li L, et al. Molecular epidemiology and phylogenetic analyses of human adenovirus in pediatric patients with acute respiratory infections from Hangzhou during COVID-19 pandemic[J]. Front Pediatr, 2023, 11:1237074. DOI:10. 3389/fped. 2023. 1237074.

[2] Grand RJ. Pathogenicity and virulence of human adenovirus F41:possible links to severe hepatitis in children[J]. Virulence, 2023, 14(1):2242544. DOI:10. 1080/21505594. 2023. 2242544.

[3] Lamson Bs DM, Kajon AE, Shudt M, et al. Molecular typing and whole genome next generation sequencing of human adenovirus 8 strains recovered from four 2012outbreaks of keratoconjunctivitis in New York State[J].J Med Virol, 2018, 90(9):1471-1477. DOI:10. 1002/jmv. 25223.

[4] Khales P, Razizadeh MH, Ghorbani S, et al. Human adenoviruses in children with gastroenteritis:a systematic review and meta-analysis[J]. BMC Infect Dis, 2024, 24(1):478. DOI:10. 1186/s12879-024-09386-x.

[5]季霄雷,郭陈,孙怡华,等.南通地区腺病毒41型遗传变异及进化特征分析[J].病毒学报,2023, 39(6):1596-1606. DOI:10. 13242/j.cnki.bingduxuebao. 004426.

[6]周莎,张海龙,陈龙,等. 2022年深圳市5株肠道腺病毒41型(HAdV-41)的分子特征分析[J].病毒学报,2023, 39(6):1578-1585. DOI:10. 13242/j. cnki.bingduxuebao. 004408.

[7] Lynch JP, Kajon AE. Adenovirus:epidemiology,global spread of novel types, and approach to treatment[J]. Semin Respir Crit Care Med, 2021, 42(6):800-821. DOI:10. 1055/s-0041-1733802.

[8] Allayeh AK, Al-Daim SA, Ahmed N, et al. Isolation and genotyping of adenoviruses from wastewater and diarrheal samples in Egypt from 2016 to 2020[J].Viruses, 2022, 14(10):2192. DOI:10. 3390/v14102192.

[9] Elmahdy EM, Ahmed NI, Shaheen MNF, et al.Molecular detection of human adenovirus in urban wastewater in Egypt and among children suffering from acute gastroenteritis[J]. J Water Health, 2019, 17(2):287-294. DOI:10. 2166/wh. 2019. 303.

[10]Owliaee I, Khaledian M, Mahmoudvand S, et al.Global investigation of the presence of adenovirus in different types of water resources:a systematic review[J]. Virusdisease, 2024, 35(1):55-65. DOI:10. 1007/s13337-023-00857-4.

[11]van Heerden J, Ehlers MM, Heim A, et al.Prevalence, quantification and typing of adenoviruses detected in river and treated drinking water in South Africa[J]. J Appl Microbiol, 2005, 99(2):234-242.DOI:10. 1111/j. 1365-2672. 2005. 02617. x.

[12]应丽红,戴晓爱,章国宝,等.某游泳池腺病毒感染暴发疫情的调查及病原学检测[J].中国卫生检验杂志,2021, 31(3):364-367.

[13]Mena KD, Gerba CP. Waterborne adenovirus[M]//Reviews of Environmental Contamination and Toxicology. New York, NY:Springer New York,2008:1-35. DOI:10. 1007/978-0-387-09647-6_4.

[14]胡限,曾赛珍,张兵,等.八例儿童重症腺病毒肺炎死亡病例分析[J].中国小儿急救医学,2019, 26(10):758-763.DOI:10. 3760/cma. j. issn. 1673-4912. 2019. 10. 009.

[15]Tambini G, Andrus JK, Marques E, et al. Direct detection of wild poliovirus circulation by stool surveys of healthy children and analysis of community wastewater[J]. J Infect Dis, 1993, 168(6):1510-1514. DOI:10. 1093/infdis/168. 6. 1510.

[16]Ivanova OE, Yarmolskaya MS, Eremeeva TP, et al.Environmental surveillance for poliovirus and other enteroviruses:long-term experience in Moscow,Russian federation, 2004-2017[J]. Viruses, 2019, 11(5):424. DOI:10. 3390/v11050424.

[17]Nakamura T, Hamasaki M, Yoshitomi H, et al.Environmental surveillance of poliovirus in sewage water around the introduction period for inactivated polio vaccine in Japan[J]. Appl Environ Microbiol, 2015, 81(5):1859-1864. DOI:10. 1128/AEM. 03575-14.

[18]Brouwer AF, Eisenberg JNS, Pomeroy CD, et al.Epidemiology of the silent polio outbreak in Rahat,Israel, based on modeling of environmental surveillance data[J]. Proc Natl Acad Sci USA, 2018, 115(45):E10625-E10633. DOI:10. 1073/pnas. 1808798115.

[19]Huang Y, Zhou N, Zhang S, et al. Norovirus detection in wastewater and its correlation with human gastroenteritis:a systematic review and meta-analysis[J]. Environ Sci Pollut Res Int, 2022, 29(16):22829-22842. DOI:10. 1007/s11356-021-18202-x.

[20]Kazama S, Masago Y, Tohma K, et al. Temporal dynamics of norovirus determined through monitoring of municipal wastewater by pyrosequencing and virological surveillance of gastroenteritis cases[J]. Water Res,2016, 92:244-253. DOI:10. 1016/j.watres. 2015. 10. 024.

[21]Wang H, Neyvaldt J, Enache L, et al. Variations among viruses in influent water and effluent water at a wastewater plant over one year as assessed by quantitative PCR and metagenomics[J]. Appl Environ Microbiol, 2020, 86(24):e02073-20. DOI:10. 1128/AEM. 02073-20.

[22]袁洋,张露,李竹雲,等. 2019—2023年上海市浦东新区12岁以下儿童急性呼吸道感染的检测情况分析[J].上海预防医学,2024, 36(4):342-347. DOI:10. 19428/j. cnki. sjpm. 2024. 23526.

[23]潘丽峰,傅慧琴,崔琪奇,等.上海市浦东新区引起腹泻的腺病毒分子流行病学特征[J].职业与健康,2019, 35(2):176-179, 184. DOI:10. 13329/j. cnki.zyyjk. 2019. 0050.

[24]Feng Y, Li N, Duan L, et al. Cryptosporidium genotype and subtype distribution in raw wastewater in Shanghai, China:evidence for possible unique Cryptosporidium hominis transmission[J]. J Clin Microbiol, 2009, 47(1):153-157. DOI:10. 1128/JCM. 01777-08.

[25]Liu J, Kibiki G, Maro V, et al. Multiplex reverse transcription PCR Luminex assay for detection and quantitation of viral agents of gastroenteritis[J]. J Clin Virol, 2011, 50(4):308-313. DOI:10. 1016/j.jcv. 2010. 12. 009.

[26]Lim MCY, Wang YF, Huang SW, et al. High incidence of mammalian orthoreovirus identified by environmental surveillance in Taiwan[J/OL]. PLoS One, 2015, 10(11):e0142745. DOI:10. 1371/journal. pone. 0142745.

[27]Amdiouni H, Faouzi A, Fariat N, et al. Detection and molecular identification of human adenoviruses and enteroviruses in wastewater from Morocco[J]. Lett Appl Microbiol, 2012, 54(4):359-366. DOI:10. 1111/j. 1472-765X. 2012. 03220. x.

[28]Sun S, Shi Y, Tong HI, et al. Effective concentration,recovery, and detection of infectious adenoviruses from environmental waters[J]. J Virol Methods, 2016, 229:78-85. DOI:10. 1016/j. jviromet. 2016. 01. 002.

[29]Adefisoye MA, Nwodo UU, Green E, et al.Quantitative PCR detection and characterisation of human adenovirus, rotavirus and hepatitis A virus in discharged effluents of two wastewater treatment facilities in the eastern cape, South Africa[J]. Food Environ Virol, 2016, 8(4):262-274. DOI:10. 1007/s12560-016-9246-4.

[30]Gr?ndahl-Rosado RC, Yarovitsyna E, Trettenes E, et al. A one year study on the concentrations of norovirus and enteric adenoviruses in wastewater and A surface drinking water source in Norway[J]. Food Environ Virol, 2014, 6(4):232-245. DOI:10. 1007/s12560-014-9161-5.

[31]Rigotto C, Victoria M, Moresco V, et al. Assessment of adenovirus, hepatitis A virus and rotavirus presence in environmental samples in Florianopolis, South Brazil[J]. J Appl Microbiol, 2010, 109(6):1979-1987.DOI:10. 1111/j. 1365-2672. 2010. 04827. x.

[32]Perez A, Lively JY, Curns A, et al. Respiratory virus surveillance among children with acute respiratory illnesses—new vaccine surveillance network, United States, 2016–2021[J]. MMWR Morb Mortal Wkly Rep, 2022, 71(40):1253-1259. DOI:10. 15585/mmwr. mm7140a1.

[33]Li ZJ, Zhang HY, Ren LL, et al. Etiological and epidemiological features of acute respiratory infections in China[J]. Nat Commun, 2021, 12(1):5026. DOI:10. 1038/s41467-021-25120-6.

[34]Wang LP, Zhou SX, Wang X, et al. Etiological,epidemiological, and clinical features of acute diarrhea in China[J]. Nat Commun, 2021, 12(1):2464. DOI:10. 1038/s41467-021-22551-z.

[35]de Francesco MA, Pollara C, Gargiulo F, et al.Circulation of respiratory viruses in hospitalized adults before and during the COVID-19 pandemic in Brescia,Italy:a retrospective study[J]. Int J Environ Res Public Health, 2021, 18(18):9525. DOI:10. 3390/ijerph18189525.

[36]牛丹丹,朱贞,许文波,等.中国不同患者人腺病毒检出率Meta分析[J].中华实验和临床病毒学杂志,2020, 34(3):316-321. DOI:10. 3760/cma. j.cn112866-20200312-00061.

[37]Shaheen MNF, Elmahdy EM. Seasonal prevalence and detection of enteric and respiratory viruses in wastewater and hospitalized children with acute gastroenteritis[J].Curr Microbiol, 2024, 81(10):337. DOI:10. 1007/s00284-024-03841-3.

[38]Shaheen MNF, Ahmed N, Rady Badr K, et al.Detection and quantification of adenovirus,polyomavirus, and papillomavirus in urban sewage[J]. J Water Health, 2024, 22(2):401-413. DOI:10. 2166/wh. 2024. 322.

[39]Chai X, Liu S, Liu C, et al. Surveillance of SARS-CoV-2 in wastewater by quantitative PCR and digital PCR:a case study in Shijiazhuang City, Hebei Province, China[J]. Emerg Microbes Infect, 2024, 13(1):2324502.DOI:10. 1080/22221751. 2024. 2324502.

基本信息:

DOI:10.13242/j.cnki.bingduxuebao.004645

中图分类号:R511.8;X832

引用信息:

[1]杨泽,杨晨光,傅慧琴,等.城市生活污水中腺病毒浓度与病例腺病毒感染的初步研究[J].病毒学报,2025,41(01):59-70.DOI:10.13242/j.cnki.bingduxuebao.004645.

基金信息:

上海市卫生健康委员会卫生行业临床研究专项(项目号:202240094),题目:致病性人腺病毒与人群感染特征研究; 上海市加强公共卫生体系建设三年行动计划(2023-2025年)(项目号:GWVI-3),题目:超大城市生物安全关键能力和公共卫生实验室网络一体化建设;上海市加强公共卫生体系建设三年行动计划(2023-2025年)重点学科(项目号:GWVI-11.1-02-传染病学),题目:重大传染病早期预警预测、聚集性疫情传播动力学模型、动态监测、干预技术等; 上海市浦东新区卫生健康委员会学科建设计划(项目号:PWZxk2022-25),题目:浦东新区卫生系统重点学科-免疫预防学~~

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