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1.
Virus Genes ; 59(3): 410-416, 2023 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-36781819

RESUMO

Avian influenza virus (AIV) infection can lead to severe economic losses in the poultry industry and causes a serious risk for humans. A rapid and simple test for suspected viral infection cases is crucial. In this study, a reverse transcription recombinase-aided amplification assay (RT-RAA) for the rapid detection of all AIV subtypes was developed. The reaction temperature of the assays is at 39 °C and the detection process can be completed in less than 20 min. The specificity results of the assay showed that this method had no cross-reaction with other main respiratory viruses that affect birds, including Newcastle disease virus (NDV) and infectious bronchitis virus (IBV). The analytical sensitivity at a 95% confidence interval was 102 RNA copies per reaction. In comparison with a published assay for reverse transcription quantitative real-time polymerase chain reaction (RT-qPCR), the κ value of the RT-RAA assay in 384 avian clinical samples was 0.942 (p < 0.001). The sensitivity and specificity of the RT-RAA assay for avian clinical sample detection was determined as 97.59% (95% CI 93.55-99.23%) and 96.79% (95% CI 93.22-98.59%), respectively. The RT-RAA assay for AIV in this study provided an effective and practicable tool for AIV molecular detection.


Assuntos
Vírus da Influenza A , Influenza Aviária , Animais , Humanos , Transcrição Reversa , Influenza Aviária/diagnóstico , Recombinases/genética , Recombinases/metabolismo , Vírus da Influenza A/genética , Aves/genética , Sensibilidade e Especificidade
2.
BMC Vet Res ; 19(1): 5, 2023 Jan 09.
Artigo em Inglês | MEDLINE | ID: mdl-36624468

RESUMO

BACKGROUND: Fowl adenovirus is of major concern to the poultry industry worldwidely. In order to monitor the prevalent status of Fowl adenovirus in China, a total of 1920 clinical samples from apparently healthy birds in the 25 sites of poultry flocks, Slaughterhouse and living bird markets from 8 provinces in eastern China were collected and detected by PCR, sequencing, and phylogenetic analysis. RESULTS: The epidemiological survey showed that Fowl adenoviruses were detected in living bird markets, and circulating in a variety of fowl species, including chickens, ducks, goose and pigeons. Among the 1920 clinical samples, 166 samples (8.65%) were positive in the fowl adenovirus PCR detection. In this study, totally all the 12 serotypes (serotypes of 1, 2, 3, 4, 5, 6, 7, 8A, 8B, 9, 10 and 11) fowl adenoviruses were detected, the most prevalent serotype was serotype 1. Phylogenetic analysis indicated that 166 FAdVs of 12 serotypes were divided into 5 fowl adenovirus species (Fowl aviadenovirus A, B, C, D, E). CONCLUSIONS: In the epidemiological survey, 8.65% of the clinical samples from apparently healthy birds were positive in the fowl adenovirus PCR detection. Totally all the 12 serotypes fowl adenoviruses were detected in a variety of fowl species, which provided abundant resources for the research of fowl adenoviruses in China. The newly prevalent FAdV serotypes provides valuable information for the development of an effective control strategy for FAdV infections in fowls.


Assuntos
Infecções por Adenoviridae , Aviadenovirus , Doenças das Aves Domésticas , Animais , Doenças das Aves Domésticas/epidemiologia , Infecções por Adenoviridae/epidemiologia , Infecções por Adenoviridae/veterinária , Epidemiologia Molecular , Filogenia , Galinhas , Aviadenovirus/genética , China/epidemiologia , Sorogrupo
3.
Virol J ; 19(1): 129, 2022 07 30.
Artigo em Inglês | MEDLINE | ID: mdl-35907986

RESUMO

BACKGROUND: The H5 subtype avian influenza virus (AIV) has caused huge economic losses to the poultry industry and is a threat to human health. A rapid and simple test is needed to confirm infection in suspected cases during disease outbreaks. METHODS: In this study, we developed a reverse transcription recombinase-aided amplification (RT-RAA) assay for the detection of H5 subtype AIV. Assays were performed at a single temperature (39 °C), and the results were obtained within 20 min. RESULTS: The assay showed no cross-detection with Newcastle disease virus or infectious bronchitis virus. The analytical sensitivity was 103 RNA copies/µL at a 95% confidence interval according to probit regression analysis, with 100% specificity. Compared with published reverse transcription quantitative real-time polymerase chain reaction assays, the κ value of the RT-RAA assay in 420 avian clinical samples was 0.983 (p < 0.001). The sensitivity for avian clinical sample detection was 97.26% (95% CI, 89.56-99.52%), and the specificity was 100% (95% CI, 98.64-100%). CONCLUSIONS: These results indicated that our RT-RAA assay may be a valuable tool for detecting H5 subtype AIV.


Assuntos
Vírus da Influenza A , Influenza Aviária , Animais , Aves , Humanos , Vírus da Influenza A/genética , Vírus da Influenza A/metabolismo , Influenza Aviária/diagnóstico , Recombinases/genética , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Transcrição Reversa , Sensibilidade e Especificidade
4.
Emerg Infect Dis ; 26(2)2020 Feb 17.
Artigo em Inglês | MEDLINE | ID: mdl-31855533

RESUMO

In China, influenza A(H7N9) virus appeared in 2013, then mutated into a highly pathogenic virus, causing outbreaks among poultry and cases in humans. Since September 2017, extensive use of the corresponding vaccine, H7-Re1, successfully reduced virus prevalence. However, in 2019, a novel antigenic variant emerged, posing considerable economic and public health threats.A.

5.
Virol J ; 16(1): 85, 2019 06 26.
Artigo em Inglês | MEDLINE | ID: mdl-31242907

RESUMO

BACKGROUND: Type A influenza viruses (IAVs) cause significant infections in humans and multiple species of animals including pigs, horses, birds, dogs and some marine animals. They are of complicated phylogenetic diversity and distribution, and analysis of their phylogenetic diversity and distribution from a panorama view has not been updated for multiple years. METHODS: 139,872 protein sequences of IAVs from GenBank were selected, and they were aligned and phylogenetically analyzed using the software tool MEGA 7.0. Lineages and subordinate lineages were classified according to the topology of the phylogenetic trees and the host, temporal and spatial distribution of the viruses, and designated using a novel universal nomenclature system. RESULTS: Large phylogenetic trees of the two external viral genes (HA and NA) and six internal genes (PB2, PB1, PA, NP, MP and NS) were constructed, and the diversity and the host, temporal and spatial distribution of these genes were calculated and statistically analyzed. Various features regarding the diversity and distribution of IAVs were confirmed, revised or added through this study, as compared with previous reports. Lineages and subordinate lineages were classified and designated for each of the genes based on the updated panorama views. CONCLUSIONS: The panorama views of phylogenetic diversity and distribution of IAVs and their nomenclature system were updated and assumed to be of significance for studies and communication of IAVs.


Assuntos
Evolução Molecular , Variação Genética , Vírus da Influenza A/genética , Filogenia , Sequência de Aminoácidos , Animais , Aves/virologia , Quirópteros/virologia , Cães/virologia , Genes Virais , Cavalos/virologia , Humanos , Suínos/virologia
6.
Virus Genes ; 54(4): 536-542, 2018 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-29744712

RESUMO

Next generation sequencing (NGS) is a powerful tool for the characterization, discovery, and molecular identification of RNA viruses. There were multiple NGS library preparation methods published for strand-specific RNA-seq, but some methods are not suitable for identifying and characterizing RNA viruses. In this study, we report a NGS library preparation method to identify RNA viruses using the Ion Torrent PGM platform. The NGS sequencing adapters were directly inserted into the sequencing library through reverse transcription and polymerase chain reaction, without fragmentation and ligation of nucleic acids. The results show that this method is simple to perform, able to identify multiple species of RNA viruses in clinical samples.


Assuntos
Biblioteca Gênica , Sequenciamento de Nucleotídeos em Larga Escala/métodos , Vírus de RNA/classificação , Vírus de RNA/isolamento & purificação , RNA Viral/genética , Animais , China , Cloaca/virologia , Fezes/virologia , Aves Domésticas , Vírus de RNA/genética , Reação em Cadeia da Polimerase Via Transcriptase Reversa/métodos , Traqueia/virologia
7.
Emerg Infect Dis ; 20(12): 2152-4, 2014 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-25418710

RESUMO

Subclinical infection of vaccinated chickens with a highly pathogenic avian influenza A(H5N2) virus was identified through routine surveillance in China. Investigation suggested that the virus has evolved into multiple genotypes. To better control transmission of the virus, we recommend a strengthened program of education, biosecurity, rapid diagnostics, surveillance, and elimination of infected poultry.


Assuntos
Infecções Assintomáticas , Galinhas/virologia , Vírus da Influenza A/classificação , Influenza Aviária/epidemiologia , Influenza Aviária/virologia , Animais , China/epidemiologia , Genótipo , Glicoproteínas de Hemaglutininação de Vírus da Influenza/genética , Vírus da Influenza A/genética , Vírus da Influenza A/imunologia , Filogenia , Vacinação
8.
Virus Genes ; 49(3): 493-6, 2014 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-25142163

RESUMO

Bovine influenza virus was first identified in the USA in 2013, and the virus represents a potential novel type of influenza viruses. However, the distribution and evolution of the virus remain unknown. We conducted a pilot survey of bovine influenza virus in China, and identified three bovine influenza viruses which are highly homogenous to the ones identified in the USA, suggesting that the bovine influenza virus likely circulates widely and evolves slowly in the world.


Assuntos
Doenças dos Bovinos/virologia , Infecções por Orthomyxoviridae/veterinária , Orthomyxoviridae/classificação , Orthomyxoviridae/isolamento & purificação , Animais , Bovinos , China , Análise por Conglomerados , Dados de Sequência Molecular , Orthomyxoviridae/genética , Infecções por Orthomyxoviridae/virologia , Filogenia , Análise de Sequência de DNA , Homologia de Sequência
9.
Avian Dis ; 58(2): 297-302, 2014 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-25055636

RESUMO

Multiple common avian infectious diseases (CAIDs), namely, avian infectious diseases excluding highly pathogenic avian influenza and Newcastle disease, such as avian salmonellosis and coccidiosis, cause huge economic loss in poultry production and are of great significance in public health. However, they are usually not covered in the systems for reporting of animal diseases. Consequently, the distribution of CAIDs is not clear in many countries. Here, we report a clinical survey of CAIDs in China based on clinical diagnosis of eight veterinary clinics in 2011 and 2012. This survey provided the distribution data of viral, bacterial, and parasitic CAIDs in different types of avian flocks, seasons, and regions, data that are of great value in the research, prevention, and control of poultry diseases. This survey suggested that avian colibacillosis, infectious serositis in ducks caused by Riemerella anatipestifer, avian salmonellosis, fowl cholera, avian mycoplasmosis, avian aspergillosis, coccidiosis, low pathogenic avian influenza, infectious bronchitis, infectious bursal disease, and infectious laryngotracheitis are likely to be prevalent in the poultry in China.


Assuntos
Anseriformes , Columbidae , Galliformes , Doenças das Aves Domésticas/epidemiologia , Animais , Doenças das Aves , Aves , China/epidemiologia , Feminino , Masculino , Doenças das Aves Domésticas/microbiologia , Doenças das Aves Domésticas/parasitologia , Doenças das Aves Domésticas/virologia , Estações do Ano
10.
Chin Sci Bull ; 58(26): 3183-3187, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-32214742

RESUMO

Dozens of human cases infected with H7N9 subtype avian influenza virus (AIV) have been confirmed in China since March, 2013. Distribution data of sexes, ages, professions and regions of the cases were analyzed in this report. The results showed that the elderly cases, especially the male elderly, were significantly more than expected, which is different from human cases of H5N1 avian influenza and human cases of the pandemic H1N1 influenza. The outbreak was rated as a Grade III (severe) outbreak, and it would evolve into a Grade IV (very severe) outbreak soon, using a method reported previously. The H7N9 AIV will probably circulate in humans, birds and pigs for years. Moreover, with the driving force of natural selection, the virus will probably evolve into highly pathogenic AIV in birds, and into a deadly pandemic influenza virus in humans. Therefore, the H7N9 outbreak has been assumed severe, and it is likely to become very or extremely severe in the future, highlighting the emergent need of forceful scientific measures to eliminate any infected animal flocks. We also described two possible mild scenarios of the future evolution of the outbreak.

12.
Arch Virol ; 157(1): 53-61, 2012 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-22002652

RESUMO

Budgerigar fledgling disease (BFD) and psittacine beak and feather disease (PBFD) are caused by avian polyomavirus (APV) and psittacine beak and feather disease virus (PBFDV), respectively. These diseases frequently infect psittacine birds and result in similar clinical manifestations. In this study, we observed the prevalence of PBFDV infection and a dual infection of APV and PBFDV in a budgerigar (Melopsittacus undulatus) in Mainland China for the first time. One PBFDV isolate and two APV isolates were harvested using chicken embryos. Genetic characterization and phylogenetic analysis of the complete genome of the two APV isolates revealed nucleotide similarity ranging from 99.0% to 99.6% to other sequences in GenBank, and a 14-bp insertion was observed in the genome of one APV isolate. The results of complete genome analysis of the PBFDV isolate showed nucleotide similarity ranging from 83.0% to 95.0% with other PBFDV sequences in GenBank. Genetic characterization and phylogenetic analysis of the APV and PBFDV strains isolated in this study indicated that the isolates from China were closely related to their Japanese counterparts. The results of this study will help to identify molecular determinants and will aid further research on the prevention and control of APV and PBFD infection.


Assuntos
Doenças das Aves/virologia , Infecções por Circoviridae/veterinária , Circovirus/genética , Circovirus/isolamento & purificação , Melopsittacus/virologia , Infecções por Polyomavirus/veterinária , Polyomavirus/genética , Polyomavirus/isolamento & purificação , Animais , Sequência de Bases , Doenças das Aves/epidemiologia , China/epidemiologia , Infecções por Circoviridae/virologia , Circovirus/classificação , Genoma Viral , Dados de Sequência Molecular , Filogenia , Polyomavirus/classificação , Infecções por Polyomavirus/epidemiologia , Infecções por Polyomavirus/virologia
13.
PLoS One ; 17(2): e0264308, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-35226672

RESUMO

Avian astroviruses (AAstVs) have caused major problem for poultry breeding industries in China in recent years, and the goose gout caused by goose astrovirus has produced particularly great economic losses. To better understand the prevalence and genetic diversity of AAstVs in China, 1210 poultry samples collected from eight provinces were tested with reverse transcription-polymerase chain reaction (RT-PCR) to detect AAstV infections in different poultry populations. Then, Open reading frames 2 (ORF2) was amplified by specific primers, and the genetic evolution was analyzed. Our surveillance data demonstrate the diversity of AAstVs in China insofar as we detected 17 AAstVs, including seven chicken astroviruses (CAstVs), five avian nephritis viruses (ANVs), two goose astroviruses (GoAstVs), two duck astrovirus (DAstVs), and one new AAstV belonging to Avastrovirus Group 3. The positive rate of AAstV infection was 1.40%. Host analysis showed that CAstVs and ANVs were isolated from chickens, DAstVs and GoAstVs were isolated from ducks. Host-species-specific AAstVs infections were also identified in numerous samples collected at each stage of production. This study provides further evidence to better understand the epidemiology of AAstVs in different species of poultry in China.


Assuntos
Infecções por Astroviridae/genética , Avastrovirus/genética , Galinhas/virologia , Patos/virologia , Gansos/virologia , Variação Genética , Genoma Viral , Doenças das Aves Domésticas , Animais , Filogenia , Doenças das Aves Domésticas/genética , Doenças das Aves Domésticas/virologia
14.
PLoS One ; 17(6): e0270708, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-35763505

RESUMO

In order to develop an appropriate method for high-throughput detection of avian metapneumovirus, a quadruple real-time reverse-transcription polymerase chain reaction assay was established with four pairs of specific primers and four specific probes based on the G or M gene of aMPV-A, aMPV-B, aMPV-C and aMPV-D. Its specificity and sensitivity were evaluated, and clinical samples were tested by the method. The results showed that all the four subgroups of avian metapneumovirus can be detected in the quadruple real-time RT-PCR assay simultaneously, with a detection limit of 100-1000 cRNA copies/reaction. The other common poultry viruses were negative. In the avian clinical sample detection, 39 out of 1920 clinical samples collected from 8 provinces were positive. Compared with published RT-PCR assays, the κ value of the quadruple real-time RT-PCR assay in 1920 avian clinical samples was 1.000 (P < 0.001). The established method could be used for the rapid detection of the four subgroups of avian metapneumovirus with high specificity and high sensitivity.


Assuntos
Metapneumovirus , Doenças das Aves Domésticas , Animais , Aves/genética , Metapneumovirus/genética , Doenças das Aves Domésticas/diagnóstico , Reação em Cadeia da Polimerase em Tempo Real/métodos , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Sensibilidade e Especificidade
15.
Virus Res ; 306: 198566, 2021 12.
Artigo em Inglês | MEDLINE | ID: mdl-34582833

RESUMO

Coronavirus disease 2019 (COVID-19), caused by Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), was first reported in Wuhan, China, and rapidly spread throughout the world. This newly emerging pathogen is highly transmittable and can cause fatal disease. More than 35 million cases have been confirmed, with a fatality rate of about 2.9% to October 9, 2020. However, the original and intermediate hosts of SARS-CoV-2 remain unknown. Here, 3160 poultry samples collected from 14 provinces of China between September and December 2019 were tested for SARS-CoV-2 infection. All the samples were SARS-CoV-2 negative, but 593 avian coronaviruses were detected, including 485 avian infectious bronchitis viruses, 72 duck coronaviruses, and 36 pigeon coronaviruses, with positivity rates of 15.35%, 2.28%, and 1.14%, respectively. Our surveillance demonstrates the diversity of avian coronaviruses in China, with higher prevalence rates in some regions. Furthermore, the possibility that SARS-CoV-2 originated from a known avian-origin coronavirus can be preliminarily ruled out. More surveillance of and research into avian coronaviruses are required to better understand the diversity, distribution, cross-species transmission, and clinical significance of these viruses.


Assuntos
Doenças das Aves/virologia , Infecções por Coronavirus/veterinária , Coronavirus/genética , Coronavirus/isolamento & purificação , Variação Genética , Animais , Doenças das Aves/epidemiologia , Galinhas/virologia , China/epidemiologia , Columbidae/virologia , Coronavirus/classificação , Infecções por Coronavirus/epidemiologia , Infecções por Coronavirus/virologia , Patos/virologia , Monitoramento Epidemiológico , Gansos/virologia , Filogenia , Doenças das Aves Domésticas/epidemiologia , Doenças das Aves Domésticas/virologia , SARS-CoV-2/genética , SARS-CoV-2/isolamento & purificação
16.
PeerJ ; 9: e10748, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-33717667

RESUMO

BACKGROUND: Avian paramyxoviruses (APMVs), also termed avian avulaviruses, are of a vast diversity and great significance in poultry. Detection of all known APMVs is challenging, and distribution of APMVs have not been well investigated. METHODS: A set of reverse transcription polymerase chain reaction (RT-PCR) assays for detection of all known APMVs were established using degenerate primers targeting the viral polymerase L gene. The assays were preliminarily evaluated using in-vitro transcribed double-stranded RNA controls and 24 known viruses, and then they were employed to detect 4,346 avian samples collected from 11 provinces. RESULTS: The assays could detect 20-200 copies of the double-stranded RNA controls, and detected correctly the 24 known viruses. Of the 4,346 avian samples detected using the assays, 72 samples were found positive. Of the 72 positives, 70 were confirmed through sequencing, indicating the assays were specific for APMVs. The 4,346 samples were also detected using a reported RT-PCR assay, and the results showed this RT-PCR assay was less sensitive than the assays reported here. Of the 70 confirmed positives, 40 were class I Newcastle disease virus (NDV or APMV-1) and 27 were class II NDV from poultry including chickens, ducks, geese, and pigeons, and three were APMV-2 from parrots. The surveillance identified APMV-2 in parrots for the first time, and revealed that prevalence of NDVs in live poultry markets was higher than that in poultry farms. The surveillance also suggested that class I NDVs in chickens could be as prevalent as in ducks, and class II NDVs in ducks could be more prevalent than in chickens, and class II NDVs could be more prevalent than class I NDVs in ducks. Altogether, we developed a set of specific and sensitive RT-PCR assays for detection of all known APMVs, and conducted a large-scale surveillance using the assays which shed novel insights into APMV epidemiology.

17.
J Gen Virol ; 91(Pt 10): 2491-6, 2010 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-20610668

RESUMO

To investigate the prevalence and evolution of the H5 subtype highly pathogenic avian influenza (HPAI) viruses circulating in poultry in China during 2007-2009, five molecular epidemiological surveys were carried out. A total of 21, 591 swab samples were collected, and from them 55 H5 HPAI viruses were isolated. None of the 55 viruses carried any known mutations, which can render the virus binding to human SAa2,6Gal receptors. The surveys indicated that live-bird markets, backyard flocks and slaughtering sites were at greater risk of being infected with the viruses during winter, and Clades 2.3.2, 2.3.4 and 7 of the viruses co-circulated in poultry in China during 2007-2009. Viruses within Clades 2.3.2 and 7 have become genetically distinguishable from the viruses isolated before 2007 and antigenically distinguishable from the vaccine strains used in China. Viruses within Clade 2.3.2 have been circulating widely in China and caused a new wave of cross-continental spreading from Asia to Europe.


Assuntos
Vírus da Influenza A/classificação , Vírus da Influenza A/genética , Influenza Aviária/epidemiologia , Influenza Aviária/virologia , Doenças das Aves Domésticas/epidemiologia , Doenças das Aves Domésticas/virologia , Animais , China/epidemiologia , Análise por Conglomerados , Vírus da Influenza A/isolamento & purificação , Epidemiologia Molecular , Dados de Sequência Molecular , Filogenia , Aves Domésticas , RNA Viral/genética , Análise de Sequência de DNA , Homologia de Sequência
18.
Transbound Emerg Dis ; 67(5): 1981-1990, 2020 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-32163661

RESUMO

Coronaviruses (CoVs) are found in humans and a wide variety of wild and domestic animals, and of substantial impact on human and animal health. In poultry, the genetic diversity, evolution, distribution and taxonomy of CoVs dominant in birds other than chickens remain enigmatic. In our previous study, we proposed that the CoVs dominant (i.e. mainly circulating) in ducks (DdCoVs) should represent a novel species, which was different from the one represented by the CoVs dominant in chickens (CdCoVs). In this study, we conducted a large-scale surveillance of CoVs in chickens, ducks, geese, pigeons and other birds (quails, sparrows and partridges) using a conserved RT-PCR assay. The surveillance demonstrated that CdCoVs, DdCoVs and the CoVs dominant in pigeons (PdCoVs) belong to different lineages, and they are all prevalent in live poultry markets and the backyard flocks in some regions of China. We further sequenced seven Coronaviridae-wide conserved domains in their replicase polyprotein pp1ab of seven PdCoVs and found that the genetic distances in these domains between PdCoVs and DdCoVs or CdCoVs are large enough to separate PdCoVs into a novel species, which were different from the ones represented by DdCoVs or CdCoVs within the genus Gammacoronavirus, per the species demarcation criterion of International Committee on Taxonomy of Viruses. This report shed novel insight into the genetic diversity, distribution, evolution and taxonomy of avian CoVs.

19.
Transbound Emerg Dis ; 67(4): 1463-1471, 2020 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-32065513

RESUMO

In recent decades, multiple subtypes (i.e. H9N2, H5N1 and H7N9) of avian influenza virus (AIV) have become widespread in China, which has caused enormous economic losses and posed considerable threats to public health. In this review, with the aim to provide insights into and guidelines for the control of AIV spread in China and globally in the future, we analysed the reasons why AIV has persisted in China based on socio-economic features, including poultry biosecurity, live bird markets, live bird transportation, wild birds, poultry waterfowl, poultry density, poultry population and infected birds. We also described the present status of the AIV subtypes H9, H5 and H7 in China to elucidate the effectiveness of the strategies currently employed in China (i.e. culling, mass vaccination and biosecurity improvement) to control the disease based on a literature review and our unpublished surveillance data collected over a 12-year period from 2007 to 2018. We then summarized the lessons to be learned from the control experience in China, including whether culling of infected birds is of limited value for disease control and whether improved biosecurity is a better option than culling and vaccination for the long-term control of AIV, and when the vaccine strain should be updated.


Assuntos
Surtos de Doenças/veterinária , Virus da Influenza A Subtipo H5N1/imunologia , Subtipo H7N9 do Vírus da Influenza A/imunologia , Vírus da Influenza A Subtipo H9N2/imunologia , Influenza Aviária/prevenção & controle , Vacinação em Massa/veterinária , Abate de Animais , Animais , Aves , China/epidemiologia , Guias como Assunto , Influenza Aviária/epidemiologia , Influenza Aviária/virologia , Aves Domésticas
20.
Transbound Emerg Dis ; 66(4): 1758-1761, 2019 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-30903740

RESUMO

H7N9 subtype avian influenza viruses (AIV) circulating in China over recent years have had an enormous impact on public health and economy. During the period between November 2016 and April 2017, an increase in human infections caused by these viruses was reported, with rapid emergence and spread of variants in China. Consequently, the government of China implemented a controversial vaccination strategy in September 2017. Here, we provide evidence of the prevalence of H7N9 AIVs in China based on systematic large-scale surveillance in poultry during 2013-2018. Emerging variants were confirmed as highly pathogenic in chickens using the intravenous pathogenicity index (IVPI) test. The currently available vaccine provided complete protection against the H7N9 HPAIV challenge in chickens. The collective findings clearly indicate that the vaccination strategy implemented not only significantly decreases the prevalence of H7N9 AIVs in poultry but also effectively prevents human infection with H7N9 viruses.


Assuntos
Monitoramento Epidemiológico/veterinária , Subtipo H7N9 do Vírus da Influenza A/isolamento & purificação , Subtipo H7N9 do Vírus da Influenza A/patogenicidade , Vacinas contra Influenza/administração & dosagem , Influenza Aviária/epidemiologia , Doenças das Aves Domésticas/epidemiologia , Vacinação/veterinária , Animais , Galinhas , China/epidemiologia , Columbidae , Patos , Gansos , Subtipo H7N9 do Vírus da Influenza A/imunologia , Influenza Aviária/prevenção & controle , Influenza Aviária/virologia , Doenças das Aves Domésticas/prevenção & controle , Doenças das Aves Domésticas/virologia , Prevalência , Virulência
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