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1.
We report the serological evidence of low‐pathogenic avian influenza (LPAI) H9N2 infection in an occupational poultry‐exposed population and a general population. A serological survey of an occupational poultry‐exposed population and a general population was conducted using a haemagglutinin‐inhibiting (HI) assay in Shanghai, China, from January 2008 to December 2010. Evidence of higher anti‐H9 antibodies was found in serum samples collected from poultry workers. During this period, 239 H9N2 avian influenza viruses (AIVs) were isolated from 9297 tracheal and cloacal paired specimens collected from the poultry in live poultry markets. In addition, a total of 733 influenza viruses were isolated from 1569 nasal and throat swabs collected from patients with influenza‐like symptoms in a sentinel hospital, which include H3N2, H1N1, pandemic H1N1 and B, but no H9N2 virus was detected. These findings highlight the need for long‐term surveillance of avian influenza viruses in occupational poultry‐exposed workers.  相似文献   

2.
Outbreaks of H7N9 avian influenza in humans in 5 provinces and 2 municipalities of China have reawakened concern that avian influenza viruses may again cross species barriers to infect the human population and thereby initiate a new influenza pandemic. Evolutionary analysis shows that human H7N9 influenza viruses originated from the H9N2, H7N3 and H11N9 avian viruses, and that it is as a novel reassortment influenza virus. This article reviews current knowledge on 11 subtypes of influenza A virus from human which can cause human infections.  相似文献   

3.
通过血凝抑制(HI)和鸡胚中和试验(VN)证实,本实验室制备的抗禽流感H9M2单抗11A5和11B2株可特异性地抑制H9亚型禽流感病毒的血凝特性,而与禽流感H5和H7亚型以及其他具有血凝性感染禽类的病毒(如新城疫等)不反应。两株单抗腹水HI效价均达到15Log2。中和试验表明:上述两株单抗均可有效抑制H9N2病毒在SPF鸡胚中的增殖,使病毒失去血凝活性.测得11A5和11B2株腹水对H9N2禽流感病毒的半数保护量分别为10^-3.35和10^-4.58。该单抗的研制成功对于进一步建立快速鉴别诊断禽流感H9亚型病毒具有重要意义。  相似文献   

4.
Avian influenza A H5N6 virus is a highly contagious infectious agent that affects domestic poultry and humans in South Asian countries. Vietnam may be an evolutionary hotspot for influenza viruses and therefore could serve as a source of pandemic strains. In 2015, two novel reassortant H5N6 influenza viruses designated as A/quail/Vietnam/CVVI01/2015 and A/quail/Vietnam/CVVI03/2015 were isolated from dead quails during avian influenza outbreaks in central Vietnam, and the whole genome sequences were analyzed. The genetic analysis indicated that hemagglutinin, neuraminidase, and polymerase basic protein 2 genes of the two H5N6 viruses are most closely related to an H5N2 virus (A/chicken/Zhejiang/727079/2014) and H10N6 virus (A/chicken/Jiangxi/12782/2014) from China and an H6N6 virus (A/duck/Yamagata/061004/2014) from Japan. The HA gene of the isolates belongs to clade 2.3.4.4, which caused human fatalities in China during 2014–2016. The five other internal genes showed high identity to an H5N2 virus (A/chicken/Heilongjiang/S7/2014) from China. A whole-genome phylogenetic analysis revealed that these two outbreak strains are novel H6N6-like PB2 gene reassortants that are most closely related to influenza virus strain A/environment/Guangdong/ZS558/2015, which was detected in a live poultry market in China. This report describes the first detection of novel H5N6 reassortants in poultry during an outbreak as well as genetic characterization of these strains to better understand the antigenic evolution of influenza viruses.  相似文献   

5.
禽流感病毒(avian influenza virus,AIV)是一种重要的人兽共患病病原,严重制约养禽业的健康发展,并对公共卫生安全构成极大威胁。其中,H5(H5N1、H5N2、H5N6、H5N8等)和H7N9亚型高致病性禽流感病毒(highly pathogenic avian influenza virus,HPAIV)引起的高致病性禽流感(highly pathogenic avian influenza,HPAI)对我国养禽业危害巨大。通过实施强制免疫,疫情得到了控制,但在禽群中仍散状暴发,并出现多种新型病毒,防控形势依然严峻。本文总结了截至2021年9月我国禽类暴发H5和H7N9亚型HPAI的所有官方公布的疫情暴发事件以及监测数据,分析了其流行特点,以期为禽流感的预警和防控提供参考。  相似文献   

6.
《Veterinary microbiology》2015,175(2-4):369-373
From January 2010 to January 2012, we collected sera samples from 700 stray cats living in close proximity to poultry farms or poultry markets in 4 provinces in China. A number of cats had evidence of avian and canine influenza virus infection: avian H9N2 [24 by HI ≥1:20 and 16 by microneutralization (MN) assay ≥1:80]; avian H5N1 (9 by HI ≥1:20 and 3 by MN assay ≥1:80) and canine H3N2 (32 by HI ≥1:20 and 18 by MN ≥1:80). Bivariate analyses revealed that cats sampled near live poultry markets and cats with influenza-like-illness were at increased risk of having elevated antibody titers by HI against avian H9N2, avian H5N1, or canine H3N2 viruses. Hence, cats may play a very important role in the ecology of novel influenza viruses and periodic epidemiological surveillance for novel influenza infections among stray cats could serve as an early warning system for human threats.  相似文献   

7.
Continuously emergence of human infection with avian influenza A virus poses persistent threat to human health, as illustrated in H5N1, H7N9 and recent surge of H9N2 infections. Long‐term prevalence of H9N2 avian influenza A virus in China and adjacent regions favours the interspecies transmissions from avian to human. Establishment of multiple genotypes of H9N2 variants in this region contributes to the emergence of novel H7N9 and H10N8 viruses which caused human fatalities. Recent increasing human infection with H9N2 virus in China highlights the necessity to closely monitor the interspecies transmission events. Available human H9N2 sequences revealed that Y280/G9 lineage was responsible for the most of human cases. Presence of adaptive mutations beyond the human‐like receptor binding was indicative of the capacity of readily infecting new hosts without prior adaptation. Moreover, enlarged host range of H9N2 virus in this region substantially increased the transmission among mammals. Meanwhile, serological surveys implied human was more susceptible to H9N2 infection, compared with panzootic H5 and H7 subtype avian influenza virus. Thus, control at the source will be the ultimate and effective option for H9N2 pandemic preparedness. This review comprehensively summarized recent updates on H9N2 human infections, aiming to shed light on the prevention strategies against this strain with pandemic potential.  相似文献   

8.
H9N2亚型禽流感病毒(Avian influenza virus,AIV)属于低致病性AIV,但因其分布广泛、传播迅速,可引起感染家禽生产性能下降,给家禽业带来了极大的经济损失。H9N2亚型AIV在感染家禽过程中可引起严重的免疫抑制,使家禽极易继发上呼吸道细菌、消化道细菌等感染,从而导致H9N2亚型AIV致病力增强,细菌黏附定植能力增强,家禽死亡率显著升高。另外,H9N2亚型AIV还能与禽传染性支气管炎病毒、禽传染性法氏囊病病毒、新城疫病毒等发生混合感染,病毒入侵时有可能出现协同作用或颉颃作用,从而相互促进或抑制病毒的复制和排毒;H9N2亚型AIV还极易发生突变或与其他亚型流感病毒在混合感染时发生基因重组产生感染人的新亚型毒株,给人类健康和公共卫生安全带来重大威胁。作者综述了H9N2亚型AIV与其他病原混合感染的研究进展,通过阐述H9N2亚型AIV与细菌或病毒混合感染的协同或颉颃作用,以期为临床上H9N2亚型AIV混合感染的防治提供参考。  相似文献   

9.
低致病性禽流感主要是由H9N2亚型禽流感病毒所引起,近几年在世界上许多国家都暴发了H9N2亚型禽流感疫情.研究表明,H9N2亚型禽流感病毒在陆禽中至少可分为北美和欧亚两个种系,该病毒在自然环境中很容易发生变异,通过混合基因组分而形成不同的病毒亚型.H9N2亚型禽流感病毒已经能传播至哺乳动物,包括猪和人类,从而引发对其是...  相似文献   

10.
2013年2月以来,华东地区被一场突如其来的"疫情"笼罩,后确诊为人感染H7N9禽流感病毒。由于被冠以“H7N9禽流感”,致使全国养禽业损失惨重。截至2013年上半年,受H7N9流感疫情影响,在短短3个月的时间内,养殖场户直接经济损失超过600亿元。最近,世界卫生组织(WHO)、世界动物卫生组织(OIE)和联合国粮农组织(FAO)等三家国际组织专家就“H7N9禽流感”名称会商,建议媒体使用“H7N9流感”或“H7N9病毒”的名称,这样更客观、准确。文章提出,对待类似情况,一定要本着科学、严谨的态度,不要因为人为的原因,造成不必要的损失,增加疾病控制的难度。  相似文献   

11.
On 31 March 2013, the National Health and Family Planning Commission announced that human infections with influenza A (H7N9) virus had occurred in Shanghai and Anhui provinces, China. H7N9 cases were later detected in Jiangsu and Zhejiang provinces. It was estimated that the virus first spread northward along the route taken by migratory birds and then spread to neighbouring provinces with the sale of poultry. Epidemiological studies were carried out on samples from the external environment of infected cases, transmission routes, farmers markets and live poultry markets. Phylogenetic study of viral sequences from human and avian infections in Zhejiang showed that those from Shanghai and Jiangsu provinces along Taihu Lake were highly homologous with those from the external environment. This suggests that avian viruses carried by waterfowl combined with the virus carried by migratory birds, giving rise to avian influenza virus H7N9, which is highly pathogenic to humans. It is possible that the virus was transmitted by local wildfowl to domestic poultry and then to humans, or spread further by means of trading in wholesale poultry markets. As the weather has turned warm, and with measures adopted to terminate poultry trade and facilitate health communication, the epidemic in the first half of the year has been kept under control. However, the infection source in the triangular area around Taihu Lake still remains. The H7N9 epidemic will probably hit the area later in the year and next spring when the migratory birds return and may even spread to other areas. Great importance should therefore be attached to the wildfowl in Taihu Lake as the repository and disseminator of the virus: investigation and study of this population is essential.  相似文献   

12.
中国于2013年底首次发现H10N8亚型禽流感病毒(AIV)能感染人并致死的病例,而在此之前从未有过关于H10N8亚型病毒能感染人的报道,目前也未在其他国家监测到H10N8亚型AIV感染人的病例。与H7N9亚型AIV相似,H10N8亚型AIV在家禽中致病性很弱,可一旦感染人能表现出很强的致病性。感染了H10N8亚型AIV的患者病情恶化快、死亡率高、对人的健康危害很大,但至今尚无有效的防制手段。目前还不太清楚H10N8亚型AIV是通过何种途径传播给人的,今后H10N8亚型AIV是否会在人群中引发新的疫情暴发是人们普遍关心的问题。文章简要介绍了H10N8亚型AIV的特点及研究现状。  相似文献   

13.
H9N2亚型禽流感病毒自1994年在中国首次发现以来,一直在家禽中流行,其导致的产蛋下降和发病死亡给养禽业发展带来严重危害。以前的研究发现中国的H9N2亚型禽流感病毒在进化过程中形成多个基因型,其表面抗原蛋白血凝素基因(HA)可被划分为以A/chicken/Beijing/1/94、A/quail/Hong Kong/G1/97(G1)和A/chicken/Heilongjiang/35/01等为代表的3个亚群,神经氨酸酶基因(NA)可被划分为以A/chicken/Beijing/1/94、A/quail/Hong Kong/G1/97(G1)和A/chicken/Hong Kong/G9/97(G9)等为代表的3个亚群。其中类G1病毒的HA基因只在香港分离株中出现。本研究对我国2003年~2004年从禽类中分离的H9N2亚型禽流感病毒血凝素(HA)和神经氨酸酶(NA)基因进行测定和遗传演化分析,结果表明其中11株病毒的HA基因属于CK/BJ/1/94群系,NA基因属于CK/BJ/1/94或DK/HK/G9/97群系,并首次发现两株病毒含有类G1病毒HA和NA基因,而且这些类G1病毒具有不同的抗原性以及人流感病毒的受体结合位点。本研究结果提示应对H9N2病毒的防治及其公共卫生意义予以高度重视。  相似文献   

14.
In this study, we describe the isolation and characterization of previously unreported Y280-lineage H9N2 viruses from two live bird markets in Korea in June 2020. Genetic analysis revealed that they were distinct from previous H9N2 viruses circulating in Korea and had highest homology to A/chicken/Shandong/1844/2019(H9N2) viruses. Their genetic constellation showed they belonged to genotype S, which is the predominant genotype in China since 2010, where genotype S viruses have infected humans and acted as internal gene donors to H5 and H7 zoonotic influenza viruses. Active surveillance and control measures need to be enhanced to protect the poultry industry and public health.  相似文献   

15.
从福州市某活禽市场采集的鸡泄殖腔棉拭子样品中分离出1株病毒,经血凝抑制试验(HI)和聚合酶链反应(PCR)方法鉴定为H9N2亚型禽流感病毒。在GenBank基因库中对该病毒株的3个基因片段的测序结果进行BLAST比对分析表明,3个基因片段均属于H9N2亚型禽流感病毒的基因。HA基因遗传进化分析表明,该病毒分离株与代表株DK/HK/Y280/97处于同一分支,与上海的鸡源分离株A/chicken/Shanghai/06/2015(H9N2)同源性最高,同源性为99.5%。  相似文献   

16.
13株H9N2亚型禽流感病毒HA基因变异分析   总被引:1,自引:0,他引:1  
为了从分子水平上掌握我国H9亚型禽流感的病原变异情况和流行规律,本研究汇集近年来从我国部分省市养殖场分离的13株H9N2亚型禽流感毒株,采用RT-PCR技术对其HA基因进行扩增、克隆和测序,并对所得全序列进行同源性和遗传进化分析。结果显示,13株病毒的HA基因在遗传进化树中均属于欧亚分支中的类Y280-like亚分支,与A/DK/HK/Y280/97的HA基因核苷酸序列同源性为92.2%~97.6%,与中国最早的分离株A/Chicken/Beijing/1/94(简称BJ94)相距较远,初步说明H9亚型禽流感病毒随着流行时间而发生了遗传分化。推测的HA糖基化位点的氨基酸序列12株病毒均与上述亚系相似,但有一株病毒由于一个核苷酸的变异,缺失了HA上218~220位的一个潜在的糖基化位点。  相似文献   

17.
采用RT-PCR对3株H9N2亚型禽流感病毒基因组进行扩增,测序后再利用DNAStar和MEGA 4对所得到的序列和部分具有代表性的参考序列进行遗传演化及分子特点分析,旨在从分子水平探讨华南地区H9N2亚型禽流感病毒的流行特点,为该病的综合防控提供依据。结果表明,3个分离株CK/GD/162/03、Francolin/GD/298/05与CK/GD/A8/10分别属于B34、B47和B54基因型;3个分离株HA基因未发生明显的变异,符合我国大陆H9N2亚型AIV HA基因的遗传进化特点,但内部基因出现不同程度重组且部分基因与人源高致病性H5N1亚型AIV同源性很高;CK/GD/162/03、Francolin/GD/298/05两株分离株具有宿主多样性。因此,对华南地区H9N2亚型AIV进行监控及分子流行病学调查具有重要意义。  相似文献   

18.
《Veterinary microbiology》2015,175(2-4):356-361
Highly pathogenic avian influenza A(HPAI) H5N1 viruses pose a serious pandemic threat due to their virulence and high mortality in humans, and their increasingly expanding host range and significant ongoing evolution could enhance their human-to-human transmissibility. Recently, various reassortant viruses were detected in different domestic poultry, with the HA gene derived from the A/goose/Guangdong/1/96-like (Gs/GD-like) lineage and the NA gene from influenza viruses of other subtypes. It is reported that some natural reassortant H5N5 highly pathogenic avian influenza viruses were isolated from poultry in China. And their HA genes were belonged to a new clade 2.3.4.4. We evaluated the receptor binding property and transmissibility in guinea pigs of these reassortant H5N5 HPAIVs. The results showed that these viruses bound to both avian-type (α-2,3) and human-type (α-2,6) receptors. In addition, we found that one of these viruses, 031, not only replicated but also transmitted efficiently in guinea pigs. Therefore, such reassortant influenza viruses may pose a pandemic threat.  相似文献   

19.
H9亚型禽流感在我国家禽中广泛流行,给养禽业造成巨大经济损失的同时,也严重威胁着公共卫生安全。H9亚型禽流感病毒(avian influenza virus,AIV)具有高度遗传变异性,导致流行株和疫苗株之间抗原匹配性差,从而影响疫苗的临床保护效果,急需研发一种高效、具有交叉保护性的通用型H9亚型禽流感疫苗。马赛克疫苗是针对遗传多样性病原体设计,通过整合所有抗原序列获得一条抗原表位覆盖最广泛的嵌合蛋白,并制备疫苗。本研究参考mosaic疫苗设计原则,设计、优化并合成了一条H9亚型禽流感病毒的mosaic血凝素(hemagglutinin,HA)基因序列,采用反向遗传操作技术,以H1N1亚型流感病毒PR8株为骨架,以mosaic H9HA序列替换PR8株的HA片段,获得重组病毒rPR8-HAm/H9。将其制备为灭活疫苗并免疫SPF雏鸡,监测抗体水平、攻毒保护效果,评价其交叉保护效果。结果表明,重组病毒rPR8-HAm/H9灭活疫苗免疫SPF雏鸡,可诱导机体产生较高水平的HI抗体和中和抗体,可显著抑制攻毒后病毒的脱落,对H9N2 AIV JM0305株的攻毒保护率为80%。rPR8-HAm/H9灭活疫苗可以对异源H9N2 AIV JM0305株产生较好的交叉攻毒保护,为研发基于马赛克技术的禽流感通用疫苗提供了前期基础。  相似文献   

20.
Influenza A virus has caused huge damage to human health and poultry production worldwide, but its global transmission patterns and influencing factors remain unclear. Here, by using the Nearest Genetic Distance Approach with genetic sequences data, we reconstructed the global transmission patterns of 4 most common subtypes of influenza A virus (H1N1, H3N2, H5N1, and H7N9) and analyzed associations of transmission velocity of these influenza viruses with environmental factors. We found that the transmission patterns of influenza viruses and their associations with environmental factors were closely related to their host properties. H1N1 and H3N2, which are mainly held by humans, are transmitted between regions at high velocity and over long distances, which may be due to human transportation via airplane; while H5N1 and H7N9, which are mainly carried by animals, are transmitted locally at short distances and at low velocity, which may be facilitated by poultry transportation via railways or high ways. H1N1 and H3N2 spread faster in cold seasons, while H5N1 spread faster in both cold and warm seasons, and H7N9 spread faster in wet seasons. H1N1, H3N2, and H5N1 spread faster in places with both high and low human densities. Our study provided novel insights into the global transmission patterns, processes, and management strategies for influenza under accelerated global change.  相似文献   

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