• Title/Summary/Keyword: avian influenza

검색결과 224건 처리시간 0.027초

Impact of inland waters on highly pathogenic avian influenza outbreaks in neighboring poultry farms in South Korea

  • Ahmad, Saleem;Koh, Kyeyoung;Yoo, Daesung;Suh, Gukhyun;Lee, Jaeil;Lee, Chang-Min
    • Journal of Veterinary Science
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    • 제23권3호
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    • pp.36.1-36.14
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    • 2022
  • Background: Since 2003, the H5 highly pathogenic avian influenza (HPAI) subtype has caused massive economic losses in the poultry industry in South Korea. The role of inland water bodies in avian influenza (AI) outbreaks has not been investigated. Identifying water bodies that facilitate risk pathways leading to the incursion of the HPAI virus (HPAIV) into poultry farms is essential for implementing specific precautionary measures to prevent viral transmission. Objectives: This matched case-control study (1:4) examined whether inland waters were associated with a higher risk of AI outbreaks in the neighboring poultry farms. Methods: Rivers, irrigation canals, lakes, and ponds were considered inland water bodies. The cases and controls were chosen based on the matching criteria. The nearest possible farms located within a radius of 3 km of the case farms were chosen as the control farms. The poultry farms were selected randomly, and two HPAI epidemics (H5N8 [2014-2016] and H5N6 [2016-2017]) were studied. Conditional logistic regression analysis was applied. Results: Statistical analysis revealed that inland waters near poultry farms were significant risk factors for AI outbreaks. The study speculated that freely wandering wild waterfowl and small animals contaminate areas surrounding poultry farms. Conclusions: Pet birds and animals raised alongside poultry birds on farm premises may wander easily to nearby waters, potentially increasing the risk of AI infection in poultry farms. Mechanical transmission of the AI virus occurs when poultry farm workers or visitors come into contact with infected water bodies or their surroundings. To prevent AI outbreaks in the future, poultry farms should adopt strict precautions to avoid contact with nearby water bodies and their surroundings.

Screening of Antiviral Medicinal Plants against Avian Influenza Virus H1N1 for Food Safety

  • Lee, Jang-Hyun;Van, Nguyen Dinh; Ma, Jin-Yeul;Kim, Young-Bong;Kim, Soo-Ki;Paik, Hyun-Dong
    • 한국축산식품학회지
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    • 제30권2호
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    • pp.345-350
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    • 2010
  • Various extracts from 30 medicinal plants were evaluated for their antiviral activity against influenza virus A/Puerto Rico/8/34 (H1N1) and cytotoxicity in MDCK cell culture. The plant material (30 g) was extracted with methanol (300 mL) at room temperature for 24 h, after which the methanolic extracts were filtered, evaporated, and subsequently lyophilized. Evaluation of the potential antiviral activity was conducted by a viral replication inhibition test. Among these medicinal plants, Tussilago farfara, Brassica juncea, Prunus armeniaca, Astragalus membranaceus, Patrinia villosa, and Citrus unshiu showed marked antiviral activity against influenza virus A/H1N1 at concentrations ranging from 0.15625 mg/mL to 1.25 mg/mL, 0.3125 mg/mL to 10 mg/mL, 5 mg/mL to 10 mg/mL, 0.625 mg/mL to 10 mg/mL, 0.625 mg/mL to 10 mg/mL, and 0.3125 mg/mL to 5 mg/mL, respectively. The extracts of Tussilago farfara showed cytotoxicity at concentrations greater than 2.5 mg/mL, whereas the other five main extracts showed no cytotoxicity at concentrations of 10 mg/mL. Taken together, the present results indicated that methanolic extracts of the six main plants might be useful for the treatment of influenza virus H1N1.

역학과 유전학적 데이터를 이용한 한국에서 2014년 발생한 H5N8 조류독감 전염경로의 유추 (Inferring transmission routes of avian influenza during the H5N8 outbreak of South Korea in 2014 using epidemiological and genetic data)

  • 최상철
    • 미생물학회지
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    • 제54권3호
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    • pp.254-265
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    • 2018
  • 최근 양계업에 막대한 피해를 끼치는 조류독감은 한국에서 수천억원의 거대한 경제적 손실을 초래하였다. 병원균의 전염경로를 파악할 수 있다면 막대한 손해를 끼치는 생물학적 피해의 확산을 막고 일부 지역으로 제한하는데 큰 도움이 될 것이다. 병원균 DNA 서열의 계통학적인 분석을 통하여 감염된 숙주들을 방향성이 있는 연결선으로 연관짓는 전염 계통수를 얻을 수 있다. 지난 10여년간 유전적 데이터뿐만 아니라 역학 데이터를 이용한 전염 계통수 추론의 방법론적 발전이 이루어졌다. 이에, 본 연구에서는 전염 계통수 추론 방법을 이용하여 지난 2014년 한국에 발병한 고병원성 조류독감 H5N8에서 유래한 DNA 서열을 재분석하였다. 당시, H5N8 바이러스는 전라북도에서 시작하여 지역적으로 접해있는 4개의 지역으로 확산되어 나갔던 것으로 알려져 있다. 전염 계통수를 추론하는 베이지언 통계 방법인 Markov chain Monte Carlo를 반복적으로 시행하고 이를 종합하여 철새 외래종과 국내종 조류 숙주들의 전염 계통수를 추정하였다. 비록 연결선의 불확실성은 높았으나 추정된 전염 계통수를 통하여 당시 H5N8 바이러스는 전라북도에서 시작하고 충청남도를 거쳐 경기도로 퍼져나간 것을 확인할 수 있었다. 사육하는 오리와 같은 국내종 조류는 전염 계통수의 말단 노드에 위치하는 것으로 추정되었다. 이러한 결과를 통하여 야생 철새종이 2014년 한국의 H5N8 조류독감의 감염 매개자로 주된 역할을 하였다는 것을 재확인하였다.

Cytokine-cytokine receptor interactions in the highly pathogenic avian influenza H5N1 virus-infected lungs of genetically disparate Ri chicken lines

  • Vu, Thi Hao;Hong, Yeojin;Truong, Anh Duc;Lee, Jiae;Lee, Sooyeon;Song, Ki-Duk;Cha, Jihye;Dang, Hoang Vu;Tran, Ha Thi Thanh;Lillehoj, Hyun S.;Hong, Yeong Ho
    • Animal Bioscience
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    • 제35권3호
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    • pp.367-376
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    • 2022
  • Objective: The highly pathogenic avian influenza virus (HPAIV) is a threat to the poultry industry as well as the economy and remains a potential source of pandemic infection in humans. Antiviral genes are considered a potential factor for HPAIV resistance. Therefore, in this study, we investigated gene expression related to cytokine-cytokine receptor interactions by comparing resistant and susceptible Ri chicken lines for avian influenza virus infection. Methods: Ri chickens of resistant (Mx/A; BF2/B21) and susceptible (Mx/G; BF2/B13) lines were selected by genotyping the Mx dynamin like GTPase (Mx) and major histocompatibility complex class I antigen BF2 genes. These chickens were then infected with influenza A virus subtype H5N1, and their lung tissues were collected for RNA sequencing. Results: In total, 972 differentially expressed genes (DEGs) were observed between resistant and susceptible Ri chickens, according to the gene ontology and Kyoto encyclopedia of genes and genomes pathways. In particular, DEGs associated with cytokine-cytokine receptor interactions were most abundant. The expression levels of cytokines (interleukin-1β [IL-1β], IL-6, IL-8, and IL-18), chemokines (C-C Motif chemokine ligand 4 [CCL4] and CCL17), interferons (IFN-γ), and IFN-stimulated genes (Mx1, CCL19, 2'-5'-oligoadenylate synthase-like, and protein kinase R) were higher in H5N1-resistant chickens than in H5N1-susceptible chickens. Conclusion: Resistant chickens show stronger immune responses and antiviral activity (cytokines, chemokines, and IFN-stimulated genes) than those of susceptible chickens against HPAIV infection.

신종 인플루엔자 대유행에 대한 우리나라의 대응방안 (The Preparedness Plan for Influenza Pandemic)

  • 이덕형;박기동
    • Journal of Preventive Medicine and Public Health
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    • 제38권4호
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    • pp.386-390
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    • 2005
  • Influenza A viruses periodicall y cause worldwide epidemics, or pandemics, with high rates of illness and death. A pandemic can occur at any time, with the potential to cause serious illness, death and social and economic disruption throughout the world. Historic evidence suggests that pandemics occurred three to four times per century. In the last century there were three influenza pandemics. The circumstances still exist for a new influenza virus with pandemic potential to emerge an d spread. The unpredictability of the timing of the next pandemic is underlined by the occurrence of several large outbreaks of highly pathogenic avian influenza since the early 1980s. In 1999, the World Health Organization published the Influenza pandemic plan. The role of WHO and guidelines for national and regional planning. And in 2005, WHO revised the global influenza preparedness plan for new national measures before and during pandemics. This document outlines briefly the Korean Centers for Disease Control's plan for responding to an influenza pandemic. According to the new pandemic phases of WHO, we set up the 4 national levels of preparedness and made guidelines for preventing and control the epidemics in each phase. And also we described the future plans to antiviral stockpiles and pandemic vaccine development.

인플루엔자 연관 폐렴 (Influenza Associated Pneumonia)

  • 김재열
    • Tuberculosis and Respiratory Diseases
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    • 제70권4호
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    • pp.285-292
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    • 2011
  • After an outbreak of H1N1 influenza A virus infection in Mexico in late March 2009, the World Health Organization raised its pandemic alert level to phase 6, and to the highest level in June 2009. The pandemic H1N1/A influenza was caused by an H1N1 influenza A virus that represents a quadruple reassortment of two swine strains, one human strain, and one avian strain of influenza. After the first case report of H1N1/A infection in early May 2009, South Korea was overwhelmed by this new kind of influenza H1N1/A pandemic, which resulted in a total of 700,000 formally reported cases and 252 deaths. In this article, clinical characteristics of victims of H1N1/A influenza infection, especially those who developed pneumonia and those who were cared for in the intensive care unit, are described. In addition, guidelines for the treatment of H1N1/A influenza virus infection victims in the ICU, which was suggested by the Korean Society of Critical Care Medicine, are introduced.

2014년 전북에서 발생한 H5N8에 관한 증례 보고 (Clinical characteristics of highly pathogenic avian influenza virus (H5N8) in Jeonbuk province of Korea, 2014)

  • 정재명;김철민
    • 한국동물위생학회지
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    • 제38권1호
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    • pp.61-64
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    • 2015
  • Highly pathogenic avian influenza (HPAI) occurred in the breeder duck farms in Jeonbuk of in Korea on January to February 2014. Clinically, the most ducks showed various signs from depression, dropped egg production and feed consumption to even, death. The most commonly gross changes were hepatomegaly, splenomegaly, petechial and ecchymotic hemorrhage on the liver surface, a white stripe on the cardiac muscle, multifocal hemorrhagic foci in pancreas, and severely hemorrhagic embryos. The most significant signs of H5N8 virus was supposed to specific on ducks. The viral antigen was mainly detected in the endothelium of blood vessels of various organs and tissues, peripheral nerves, and neuronal cells. Based on the above results, we identified that HPAI H5N8 induced systemic infection in the adult breeder ducks.