1.Management of an imported family cluster of dengue fever cases in Shanghai, 2024
Lei SHEN ; Dongsheng REN ; Mingyi CAI ; Zhixiang TENG ; Qi SHEN ; Qingyuan XU ; Xiaofen NI
Shanghai Journal of Preventive Medicine 2026;38(2):170-174
ObjectiveTo investigate and manage an imported dengue fever (DF) outbreak in Shanghai in 2024, to summarize the experience and lessons learned from the on-site management, and to provide a reference basis for future prevention and control of DF. MethodsEpidemiological investigation and case search were carried out for an imported DF outbreak in Shanghai, 2024. Real-time fluorescence polymerase chain reaction (RT-PCR) was used to detect dengue virus nucleic acid in the serum samples from cases. Meanwhile, emergency vector surveillance and mosquito control measures were carried out in the affected areas, and the effectiveness of the management was evaluated. ResultsAccording to the epidemiological investigation, it was confirmed that this epidemic was a family cluster of imported DF, with both cases infected in Thailand and developed symptoms successively after returning to Shanghai. Laboratory testing identified the pathogens as dengue virus serotype-3 (DENV-3). In the core and precautionary area, ultra-low-volume space spraying and residual spraying were combined to kill adult mosquitoes, and at the same time, comprehensive cleaning and elimination of mosquito breeding sites was carried out. After 2 weeks, the Breteau Index (BI) in the core area decreased from 20 to 5, and the mosquito net trap index decreased from 2 mosquitoes (net·hour)-1 to 0.67 mosquitoes (net·hour)-1. Continuous implementation of mosquito control measures kept the BI and net trap index below the safety thresholds [BI<5 and mosquito net trap index <2 mosquitoes (net·hour)-1] both in the core and precautionary area. ConclusionEarly diagnosis and isolation of patients, combined with rapid suppression of the density of vector Aedes mosquitoes, are the key measures to prevent the transmission of imported DF cases.
2.Analysis of an outbreak of influenza A in a primary school in Jing an District, Shanghai
NI Xiaofen, CHEN Hong, ZHOU Zhou, CAI Mingyi, YAO Huijie
Chinese Journal of School Health 2023;44(4):602-605
Objective:
To investigate the epidemiological data of an outbreak of influenza A in a primary school in Shanghai, to provide reference for targeted prevention and control measures.
Methods:
A field epidemiological method was used to investigate and collect the data of influenza A outbreak in a primary school in Jing an District from November 8 to December 6, 2022, through on site follow up and telephone return visit to health teachers and cases. The distribution characteristics of the epidemic were analyzed by descriptive epidemiology.
Results:
The first case developed symptoms of cough, sore throat, and fever on the morning of November 8th 2022, with a maximum body temperature of 38.6 ℃. Later, the clinical diagnosis was influenza A. The total number of influenza like cases reported in this outbreak is 99, including 92 students and 7 teachers. The total incidence rate was 9.45%. The clinical symptoms of all cases were fever, sore throat, and cough; 27 cases of influenza A were diagnosed by hospital rapid diagnostic reagents. The second grade students had the highest case incidence rate(24.46%), and there was a statistically significant difference in case incidence rates among students of different grades ( χ 2=48.28, P <0.01). The case incidence rate on the second floor was the highest (23.47%), and there was a statistically significant difference between the case incidence rates on different floors ( χ 2=52.38, P < 0.01 ). Etiological testing showed that the influenza virus causing this outbreak was type A H3N2 virus.
Conclusion
This outbreak is a campus cluster outbreak caused by influenza A (H3N2) virus. The health and education departments should strengthen cooperation to effectively implement prevention and control measures of infectious diseases, and timely identify the source of infection and cut off the transmission route.
3.Experience and enlightenment from undertaking the special competition for radiation monitoring
Yu ZHANG ; Lei WANG ; Yongfu MA ; Chunyan GUO ; Xiaofen WANG ; Shiying NI
Chinese Journal of Radiological Health 2022;31(3):336-339
Environmental monitoring technologies competition can effectively improve the comprehensive quality and technical skills of technical personnel by means of professional theory exams and on-site practical assessment. In view of the undertaking work of the Second National Competition of Professional and Technical Personnel in Ecology and Environment Monitoring (special competition for radiation monitoring), this paper summarized the experience and gains in the aspects of preliminary preparation, field implementation, achievement generation, etc., analyzed the problems in national radiation environmental monitoring through the achievements of the special competition for radiation monitoring, and put forward recommendations for the next step, in order to provide reference for undertaking similar major events in the future and provide ideas and directions for national radiation environmental monitoring.
4.Effects of tetrandrine onβ-glucan induced RAW264 .7 cells proliferation
Lanfang GUO ; Xiaoqing CHENG ; Huiyan NI ; Xiaofen XU ; Ping WEN
International Journal of Laboratory Medicine 2014;(19):2577-2578
Objective To observe effects of tetrandrine on β-glucan induced RAW 264 .7 cells proliferation .Methods RAW 264 .7 cells model was established .Four methyl thiazol tetrazolium(MTT) was used to detect the effects of different concentrations of tetrandrine on the proliferation of RAW264 .7 cells .The levels of interleukin(IL)-6 ,tumor necrosis factor-α(TNF-α) ,prostaglan-din E2 (PGE2 ) and IL-10 in the culture supernatant were measured by enzyme linked immunosorbent assay(ELISA) .Results MTT results showed that the growth curves of different concentrations of tetrandrine on RAW264 .7 cells had biphasic affections .ELISA results suggested that tetrandrine could inhibit the IL-6 ,TNF-α,PGE2 expressions and promote IL-10 expression .Conclusion Effects of tetrandrine onβ-glucan induced RAW264 .7 cells proliferation are relative to inhibition of IL-6 ,TNF-α,PGE2 expressions and promotion of IL-10 expression .


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