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Nested RT-PCR method for the detection of European avian-like H1 swine influenza A virus 被引量:1
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作者 WEI Yan-di PEI Xing-yao +4 位作者 ZHANG Yuan YU Chen-fang SUN Hong-lei LIU Jin-hua PU Juan 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2016年第5期1095-1102,共8页
Swine influenza A virus(swine IAV) circulates worldwide in pigs and poses a serious public health threat, as evidenced by the 2009 H1N1 influenza pandemic. Among multiple subtypes/lineages of swine influenza A virus... Swine influenza A virus(swine IAV) circulates worldwide in pigs and poses a serious public health threat, as evidenced by the 2009 H1N1 influenza pandemic. Among multiple subtypes/lineages of swine influenza A viruses, European avian-like(EA) H1N1 swine IAV has been dominant since 2005 in China and caused infections in humans in 2010. Highly sensitive and specific methods of detection are required to differentiate EA H1N1 swine IAVs from viruses belonging to other lineages and subtypes. In this study, a nested reverse transcription(RT)-PCR assay was developed to detect EA H1 swine IAVs. Two primer sets(outer and inner) were designed specifically to target the viral hemagglutinin genes. Specific PCR products were obtained from all tested EA H1N1 swine IAV isolates, but not from other lineages of H1 swine IAVs, other subtypes of swine IAVs, or other infectious swine viruses. The sensitivity of the nested RT-PCR was improved to 1 plaque forming unit(PFU) m L^(-1) which was over 10~4 PFU m L^(-1) for a previously established multiplex RT-PCR method. The nested RT-PCR results obtained from screening 365 clinical samples were consistent with those obtained using conventional virus isolation methods combined with sequencing. Thus, the nested RT-PCR assay reported herein is more sensitive and suitable for the diagnosis of clinical infections and surveillance of EA H1 swine IAVs in pigs and humans. 展开更多
关键词 nested RT-PCR swine influenza A virus European avian-like h1 hA gene molecular diagnosis
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Antiviral activity of Basidiomycete mycelia against influenza type A(serotype H1N1) and herpes simplex virus type 2 in cell culture 被引量:5
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作者 Tetiana Krupodorova Svetlana Rybalko Victor Barshteyn 《Virologica Sinica》 SCIE CAS CSCD 2014年第5期284-290,共7页
In this study, we investigated the in vitro antiviral activity of the mycelia of higher mushrooms against influenza virus type A(serotype H1N1) and herpes simplex virus type 2(HSV-2), strain BH. All 10 investigated mu... In this study, we investigated the in vitro antiviral activity of the mycelia of higher mushrooms against influenza virus type A(serotype H1N1) and herpes simplex virus type 2(HSV-2), strain BH. All 10 investigated mushroom species inhibited the reproduction of influenza virus strain A/FM/1/47(H1N1) in MDCK cells reducing the infectious titer by 2.0–6.0 lg ID50. Four species, Pleurotus ostreatus, Fomes fomentarius, Auriporia aurea, and Trametes versicolor, were also determined to be effective against HSV-2 strain BH in RK-13 cells, with similar levels of inhibition as for influenza. For some of the investigated mushroom species—Pleurotus eryngii, Lyophyllum shimeji, and Flammulina velutipes—this is the first report of an anti-influenza effect. This study also reports the first data on the medicinal properties of A. aurea, including anti-influenza and antiherpetic activities. T. versicolor 353 mycelium was found to have a high therapeutic index(324.67), and may be a promising material for the pharmaceutical industry as an anti-influenza and antiherpetic agent with low toxicity. Mycelia with antiviral activity were obtained in our investigation by bioconversion of agricultural wastes(amaranth flour after CO2 extraction), which would reduce the cost of the final product and solve some ecological problems. 展开更多
关键词 antiviral activity Basidiomycetes mycelium InFLUEnZA A virus(h1n1) herpes simplex virus TYPE 2(hSV2)
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Influenza virus H1N1 induced apoptosis of mouse astrocytes and the effect on protein expression 被引量:5
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作者 Xu-Dong Pei Yu-Feng Zhai Huai-Hong Zhang 《Asian Pacific Journal of Tropical Medicine》 SCIE CAS 2014年第7期572-575,共4页
Objective:To investigate the effects of influenza A virus H1N1 infection on the proliferation and apoptosis of mouse astrocytes cells and its protein expression.Methods:After mouse astrocytes was infected with purifie... Objective:To investigate the effects of influenza A virus H1N1 infection on the proliferation and apoptosis of mouse astrocytes cells and its protein expression.Methods:After mouse astrocytes was infected with purified influenza A virus H1N1 in vitro,viral integration and replication status of the cells were detected by RT-PCR assay,cell proliferation and apoptosis was determined by MTT method and flow cytometry,respectively.Associated protein expression was delected by Western blotting.Results:Agarose gel electrophoresis showed H1N1 virus can infect astrocytes and can be copied.MTT staining showed H1N1 virus infection can inhibit the proliferation of mouse astrocytes,which makes cell viability decreased significantly.Flow cytometry showed that the proportion of Annein V staining positive vascular endothelial cells in the influenza A virus group was significantly higher than that in the control group.Western blot analysis showed after24 h and 32 h of infection,there were cells caspase-3 protein and the expression of its active form(lysed caspase-3 protein)increased.The proportion of Bax/Bcl-2 also increased.Conclusions:Influenza A virus can infect human vascular endothelial cells and proliferation and it can induce apoptosis of endothelial cells. 展开更多
关键词 Influenze virus h1n1 APOPTOSIS
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Cross-neutralizing Anti-hemagglutinin Antibodies Isolated from Patients Infected with Avian Influenza A(H5N1) Virus 被引量:3
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作者 SUN Ying CAO Yang +11 位作者 LI Zi BAI Tian ZHANG Hong HU Shi Xiong LI Fang Cai ZHAO Xiang CHEN Yong Kun LU Jian LIU Li Qi WANG Da Yan SHU Yue Long ZHOU Jian Fang 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2020年第2期103-113,共11页
Objective To recover broad-neutralizing monoclonal antibodies(Bn Abs)from avian influenza A(H5N1)virus infection cases and investigate their genetic and functional features.Methods We screened the Abs repertoires of e... Objective To recover broad-neutralizing monoclonal antibodies(Bn Abs)from avian influenza A(H5N1)virus infection cases and investigate their genetic and functional features.Methods We screened the Abs repertoires of expanded B cells circulating in the peripheral blood of H5N1 patients.The genetic basis,biological functions,and epitopes of the obtained Bn Abs were assessed and modeled.Results Two Bn Abs,2-12 D5,and 3-37 G7.1,were respectively obtained from two human H5N1 cases on days 12 and 21 after disease onset.Both Abs demonstrated cross-neutralizing and Ab-dependent cellular cytotoxicity(ADCC)activity.Albeit derived from distinct Ab lineages,i.e.,V^H1-69-D2-15-JH^4(2-12D5)and V^H1-2-D3-9-JH^5(3-32 G7.1),the Bn Abs were directed toward CR6261-like epitopes in the HA stem,and HA2 I45 in the hydrophobic pocket was the critical residue for their binding.Signature motifs for binding with the HA stem,namely,IFY in VH1-69-encoded Abs and LXYFXW in D3-9-encoded Abs,were also observed in 2-12D5 and 3-32 G7.1,respectively.Conclusions Cross-reactive B cells of different germline origins could be activated and re-circulated by avian influenza virus.The HA stem epitopes targeted by the Bn Abs,and the two Ab-encoding genes usage implied the VH1-69 and D3-9 are the ideal candidates triggered by influenza virus for vaccine development. 展开更多
关键词 V^h1-69 D3-9 Avian influenza A(h5n1)virus Cross-neutralizing Antibody
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Highly Pathogenic H5N1 Influenza Virus Infection in Migratory Birds 被引量:115
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作者 Jinhua Liu et al.College of Veterinary Medicine, China Agricultural University, Beijing 100094, China. 《中国实验动物学报》 CAS CSCD 2005年第S1期11-12,共2页
关键词 highly Pathogenic h5n1 Influenza virus Infection in Migratory Birds
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Gene Expression Profiles Comparison between 2009 Pandemic and Seasonal H1N1 Influenza Viruses in A549 Cells 被引量:2
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作者 XIAO-XING YANG NING DU JIAN-FANG ZHOU ZI LI MIN WANG JUN-FENG GUO DA-YAN WANG YUE-LONG SHU 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2010年第4期259-266,共8页
Objective To perform gene expression profiles comparison so that to identify and understand the potential differences in pathogenesis between the pandemic and seasonal A (H1N1) influenza viruses. Methods A549 cells ... Objective To perform gene expression profiles comparison so that to identify and understand the potential differences in pathogenesis between the pandemic and seasonal A (H1N1) influenza viruses. Methods A549 cells were infected with A/California/07/09 (H1N1) and A/GuangdongBaoan/51/08 (H1N1) respectively at the same MOI of 2 and collected at 2, 4, 8, and 24 h post infection (p.i.). Gene expression profiles of A549 cells were obtained using the 22 K Human Genome Oligo Array, and differentially expressed genes were analyzed at selected time points. Results Microarrays results indicated that both of the viruses suppressed host immune response related pathways including cytokine production while pandemic H1N1 virus displayed weaker suppression of host immune response than seasonal H1N1 virus. Observation on similar anti-apoptotic events such as activation of apoptosis inhibitor and down-regulation of key genes of apoptosis pathways in both infections showed that activities of promoting apoptosis were different in later stage of infection. Conclusion The immuno-suppression and anti-apoptosis events of pandemic H1N1 virus were similar to those seen by seasonal H1N1 virus. The pandemic H1N1 virus had an ability to inhibit biological pathways associated with cytokine responses, NK activation and macrophage recognition . 展开更多
关键词 Influenza A virus Pandemic h1n1 A549 Expression profiling array
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Integrated analysis of human influenza A(H1N1)virus infectionrelated genes to construct a suitable diagnostic model 被引量:1
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作者 WENBIAO CHEN KEFAN BI +2 位作者 JINGJING JIANG XUJUN ZHANG HONGYAN DIAO 《BIOCELL》 SCIE 2021年第4期885-899,共15页
The genome characteristics and structural functions of coding proteins correlate with the genetic diversity of the H1N1 virus,which aids in the understanding of its underlying pathogenic mechanism.In this study,analys... The genome characteristics and structural functions of coding proteins correlate with the genetic diversity of the H1N1 virus,which aids in the understanding of its underlying pathogenic mechanism.In this study,analyses of the characteristic of the H1N1 virus infection-related genes,their biological functions,and infection-related reversal drugs were performed.Additionally,we used multi-dimensional bioinformatics analysis to identify the key genes and then used these to construct a diagnostic model for the H1N1 virus infection.There was a total of 169 differently expressed genes in the samples between 21 h before infection and 77 h after infection.They were used during the protein-protein interaction(PPI)analysis,and we obtained a total of 1725 interacting genes.Then,we performed a weighted gene co-expression network analysis(WGCNA)on these genes,and we identified three modules that showed significant potential for the diagnosis of the H1N1 virus infection.These modules contained 60 genes,and they were used to construct this diagnostic model,which showed an effective prediction value.Besides,these 60 genes were involved in the biological functions of this infectious virus,like the cellular response to type I interferon and in the negative regulation of the viral life cycle.However,20 genes showed an upregulated expression as the infection progressed.Other 36 upregulated genes were used to examine the relationship between genes,human influenza A virus,and infection-related reversal drugs.This study revealed numerous important reversal drug molecules on the H1N1 virus.They included rimantadine,interferons,and shikimic acid.Our study provided a novel method to analyze the characteristic of different genes and explore their corresponding biological function during the infection caused by the H1N1 virus.This diagnostic model,which comprises 60 genes,shows that a significant predictive value can be the potential biomarker for the diagnosis of the H1N1 virus infection. 展开更多
关键词 human influenza A h1n1 virus GEnE Diagnosis model
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Novel H1N1 influenza A virus infection in a patient with acute rejection after liver transplantation 被引量:1
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作者 Jiang-Juan He,Sheng Yan,Min Zhang,Wei-Lin Wang and Shu-Sen Zheng Division of Hepatobiliary and Pancreatic Surgery, First Affiliated Hospital,Zhejiang University School of Medicine,Hangzhou 310003,China 《Hepatobiliary & Pancreatic Diseases International》 SCIE CAS 2010年第6期658-660,共3页
BACKGROUND:The 2009 H1N1 influenza A virus was first identified in April 2009 and rapidly evolved into a pandemic. Recipients of solid-organ transplants have a higher risk for severe infection because of immunosuppres... BACKGROUND:The 2009 H1N1 influenza A virus was first identified in April 2009 and rapidly evolved into a pandemic. Recipients of solid-organ transplants have a higher risk for severe infection because of immunosuppression.There are limited reports of 2009 H1N1 influenza in liver transplant recipients,especially in China. METHODS:We present a case of a 48-year-old male liver transplant recipient with 2009 H1N1 influenza A virus.He received therapy for acute rejection after transplantation and was confirmed with H1N1 virus infection. RESULTS:The patient was started on oseltamivir(75 mg, orally twice daily)and had a benign hospital course,with defervescence and resolution of symptoms within 72 hours. The follow-up chest radiograph after discharge was normal. CONCLUSIONS:The 2009 H1N1 influenza in this hospitalized transplant recipient was relatively mild,and prolonged viral shedding was not noted.Oseltamivir can be a valid measure in immunocompromised individuals. 展开更多
关键词 h1n1 influenza A virus liver transplantation acute rejection
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Cloning of M and NP Gene of H5N1 Avian Influenza Virus and Immune Efficacy of their DNA Vaccines 被引量:2
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作者 Po Tien 《中国病毒学》 CSCD 2007年第1期46-52,共7页
H5N1 鸟的流行性感冒病毒(A/chicken/Hubei/489/2004 ) 的 M 和 NP 基因被 RT-PCR 从病毒的 RNA 放大,并且分别地克隆向量进 pMD18-T。包含 M 基因(pHM6-m ) 或 NP 基因(pHM6-np ) 的表示 plasmid 然后被把 M 或 NP 基因插入到 pHM6 ... H5N1 鸟的流行性感冒病毒(A/chicken/Hubei/489/2004 ) 的 M 和 NP 基因被 RT-PCR 从病毒的 RNA 放大,并且分别地克隆向量进 pMD18-T。包含 M 基因(pHM6-m ) 或 NP 基因(pHM6-np ) 的表示 plasmid 然后被把 M 或 NP 基因插入到 pHM6 优核质表示向量构造;构造 plasmid 然后被定序。32 只 BALB/c 老鼠(6-week-old ) 在随机被划分成四个组。三组 BALB/c 老鼠被接种一次有 plasmid pHM6-m, plasmid pHM6-np 的 30 渭 g 或 plasmid pHM6-m (15 渭 g ) 和 pHM6-np (15 渭 g ) 的混合的任何一个 30 渭 g 的肌内的线路分别地。老鼠的一个另外的组作为控制与 100 渭 l PBS 被注射。二个星期以后,所有老鼠与相应 H5N1 鸟的流行性感冒病毒被质问,并且在下列 12 天内观察了。在 pHM6-m 组, pHM6-np 组和混合 plasmids 组的老鼠的幸存率分别地是 62.5% , 25.0% 和 50.0% 。结果证明有效保护能被 pHM6-m 或 pHM6-np 提供,但是 pHM6-m 比 pHM6-np 提供了更好保护的效果。关键词 H5N1 流行性感冒病毒 - M 基因 - NP 基因 - 克隆 - DNA 疫苗的 CLC 数字 S852.65 基础条款:国家基本科学才能训练资助(NSFC J0630648 ) 展开更多
关键词 h5n1 influenza virus M gene nP gene CLOnInG DnA vaccine
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In silico modification of oseltamivir as neuraminidase inhibitor of influenza A virus subtype H1N1
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作者 Usman Sumo Friend Tambunan Rizky Archintya Rachmania Arli Aditya Parikesit 《The Journal of Biomedical Research》 CAS CSCD 2015年第2期150-159,共10页
This research focused on the modification of the functional groups of oseltamivir as neuraminidase inhibitor against influenza A virus subtype H1N1.Interactions of three of the best ligands were evaluated in the hydra... This research focused on the modification of the functional groups of oseltamivir as neuraminidase inhibitor against influenza A virus subtype H1N1.Interactions of three of the best ligands were evaluated in the hydrated state using molecular dynamics simulation at two different temperatures.The docking result showed that AD3BF2 D ligand(N-[(1S,6R)-5-amino-5-{[(2R,3S,4S)-3,4-dihydroxy-4-(hydroxymethyl) tetrahydrofuran-2-yl]oxy}-4-formylcyclohex-3-en-1-yl]acetamide-3-(1-ethylpropoxy)-1-cyclohexene-1-carboxylate) had better binding energy values than standard oseltamivir.AD3BF2 D had several interactions,including hydrogen bonds,with the residues in the catalytic site of neuraminidase as identified by molecular dynamics simulation.The results showed that AD3BF2 D ligand can be used as a good candidate for neuraminidase inhibitor to cope with influenza A virus subtype H1N1. 展开更多
关键词 influenza A virus subtype(h1n1 InFLUEnZA OSELTAMIVIR molecular docking molecular dynamics simulation
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Construction and Immunogenicity of a Recombinant Adenovirus Expressing the HA Gene of H5N1 Subtype Swine Influenza Virus
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作者 WU Yun-pu QIAO Chuan-ling +4 位作者 YANG Huan-liang CHEN Yan ZHAN Xiao-guo XIN Xiao-guang CHEN Hua-lan 《畜牧兽医学报》 CAS CSCD 北大核心 2010年第S1期76-81,共6页
To construct a recombinant adenovirus shuttle plasmid pDC315-H5HA-EGFP,the HA gene of A/Swine/Fujian/1/2001(H5N1) was amplified by RT-PCR and then inserted into adenovirus shuttle plasmid pDC315.A replication-defectiv... To construct a recombinant adenovirus shuttle plasmid pDC315-H5HA-EGFP,the HA gene of A/Swine/Fujian/1/2001(H5N1) was amplified by RT-PCR and then inserted into adenovirus shuttle plasmid pDC315.A replication-defective recombinant adenovirus expressing the HA gene(rAd-H5HA-EGFP) was generated by co-transfecting the recombinant shuttle plasmid pDC315-H5HA-EGFP and the genomic plasmid pBHGlox△E1,E3Cre in HEK293 cells.The recombinant adenovirus was confirmed by PCR,RT-PCR and Western blot assay.These results demonstrated that HA protein was properly expressed by the rAd-H5HA-EGFP in HEK293 cells and had natural biological activities.The TCID<sub>50</sub> of the rAd-H5HA- EGFP was assessed to be 2.26×10<sup>10</sup>/mL after propagation and purification.Immunization of BALB/ c mice indicated that rAd-H5HA-EGFP induced HI antibodies and protected mice from replication of the challenge virus in their lungs. 展开更多
关键词 swine influenza virus h5n1 subtype hA gene recombinant adenovirus
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Therapeutic Trial of an Endothelin Receptor Agonist for the Highly Pathogenic Avian Influenza A/H5N1 Virus Infection in Chicks
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作者 Kazuhide Adachi Retno Damajanti Soejoedono +2 位作者 Ekowati Handharyani Marie Inai Yasuhiro Tsukamoto 《Health》 2014年第19期2553-2561,共9页
The rapid spread of the highly pathogenic A/H5N1 avian influenza virus among domestic birds and its transmission to humans has induced world-wide fears of a new influenza pandemic. A/H5N1 has infected over 300 people ... The rapid spread of the highly pathogenic A/H5N1 avian influenza virus among domestic birds and its transmission to humans has induced world-wide fears of a new influenza pandemic. A/H5N1 has infected over 300 people since 1997, and has shown a mortality rate of over 50%. The high mortality in human cases is thought to be enhanced by the excessive secretion of various endogenous factors, including cytokines and interleukins, stimulated by viral infections. Chickens infected with A/H5N1 viruses experience sudden death without showing severe clinical symptoms or inflammation. However, severe hemorrhage and congestion are seen in various tissues in sporadic chicken cases of A/H5N1-infections, especially in the pulmonary tissues, thus indicating that there is ischemia due to vascular abnormalities. Our previous studies have focused on the expression pattern of endothelin-1, which modulates the vascular tone via endothelin receptors. An Indonesian sporadic strain of A/H5N1 virus was intranasally administered to 10-day-old chicks, and the expression of endothelin was examined in the infected birds. All birds died within five days of inoculation, and had moderate inflammation accompanied by severe hemorrhage and congestion in the lungs. Immunohistochemical studies showed enhanced expression of endothelin-1 in the infected lungs. In addition, the real-time PCR analyses revealed that endothelin-1 and endothelin receptor A mRNA were significantly elevated in the birds with A/H5N1 infections. Subsequently, H5N1-infected birds were inoculated with bosentan hydrate, a competitive antagonist of endothelin receptors. Interestingly, the mortality rate of the infected birds was dramatically decreased in a dose-dependent manner by the administration of bosentan hydrate. The pathological lesions, including congestion and hemorrhage in the pulmonary tissues, were clearly inhibited. These findings are promising, and suggest that endothelin receptor antagonists are a potential treatment for the highly pathogenic avian flu. 展开更多
关键词 AVIAn InFLUEnZA virus A/h5n1 EnDOThELIn Receptor ChICKEn
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Evolution of an avian H5N1 influenza A virus escape mutant
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作者 Kamel M A Hassanin Ahmed S Abdel-Moneim 《World Journal of Virology》 2013年第4期160-169,共10页
AIM: To investigate the genetic constitution of an escape mutant H5N1 strain and to screen the presence of possible amino acid signatures that could differentiate it from other Egyptian H5N1 strains.METHODS: Phylogene... AIM: To investigate the genetic constitution of an escape mutant H5N1 strain and to screen the presence of possible amino acid signatures that could differentiate it from other Egyptian H5N1 strains.METHODS: Phylogenetic, evolutionary patterns and amino acid signatures of the genes of an escape mutant H5N1 influenza A virus isolated in Egypt on 2009 were analyzed using direct sequencing and multisequence alignments.RESULTS: All the genes of the escape mutant H5N1 strain showed a genetic pattern potentially related to Eurasian lineages. Evolution of phylogenetic trees of different viral genes revealed the absence of reassortment in the escape mutant strain while confirming close relatedness to other H5N1 Egyptian strains from human and avian species. A variety of amino acid substitutions were recorded in different proteins compared to the available Egyptian H5N1 strains. The strain displayed amino acid substitutions in different viral alleles similar to other Egyptian H5N1 strains without showing amino acid signatures that could differentiate the escape mutant from other Egyptian H5N1.CONCLUSION: The genetic characteristics of avian H5N1 in Egypt revealed evidence of a high possibility of inter-species transmission. No amino acid signatures were found to differentiate the escape mutant H5N1 strain from other Egyptian H5N1 strains. 展开更多
关键词 ChICKEn GEnOTYPInG h5n1 InFLUEnZA virus EVOLUTIOn
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The cloning of non-structural-1 (NS1) gene of H9N2 subtype of avian influenza virus in pGEX-4T-1 and pMAL-c2X plasmids and expression in <i>Escherichia coli</i>DH5<i>α</i>strain
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作者 Ramin Soleimani Mehdi Vasfi Marandi +1 位作者 Mohammad Bagher Hashemi-Soteh Farhid Hemmatzadeh 《Advances in Bioscience and Biotechnology》 2012年第3期283-289,共7页
Avian influenza is a viral contagious disease that affects poultry industry and human health. Vaccination has been considered as a preventive tool in the eradication of AI, but it causes some limitations including tra... Avian influenza is a viral contagious disease that affects poultry industry and human health. Vaccination has been considered as a preventive tool in the eradication of AI, but it causes some limitations including trade embargoes and interfering with serologic surveillance in differentiation between infected and vaccinated animals (DIVA strategy). Several distinct DIVA strategies have been presented to conquer these limitations. In this study, the open reading frame of NS1 gene of a H9N2 subtype of AI virus was amplified by polymerase chain reaction. After extraction and purification of NS1 gene from agarose gel, it was inserted into two different pGEX-4T-1 and pMAL-c2X plasmids and transferred in DH5α strain of Escherichia coli by using electroporation procedure. The E. coli colonies possessing recombinant NS1 gene were screened using PCR, restriction mapping and sequencing analysis. The expressed rNS1 protein was purified using affinity chromatography based on MBP (pMAL- c2X) and GST (pGEX-4T-1). The MBP-NS1 and GST- NS1 proteins on SDS-PAGE had bands with molecular weight of 68 and 52 kDa respectively. Western blotting with MBP-NS1 protein showed positive reaction using antisera obtained from chickens challenged with a H9N2 subtype strain. But, the most sera prepared from H9N2 vaccinated chickens were negative in WB. These findings indicated that the MBP-rNS1 protein of 26 kDa expressed by pMAL-c2X plasmid can be used in a DIVA for differentiation of AI infected and vaccinated chickens. 展开更多
关键词 Avian Influenza virus h9n2 Subtype Recombinant PROTEIn nOn-STRUCTURAL PROTEIn 1 DIVA
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Shiqi herbal tea reduces the susceptibility to H1N1 influenza virus in stressed mice
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作者 Guo Xie Zhuo Luo +7 位作者 Lu-Ping Tang Li-Hang Zhang Li-Hua Peng Ling Jin Hiroshi Kurihara Jin-Le Cheng Yi-Fang Li Rong-Rong He 《TMR Modern Herbal Medicine》 2021年第1期44-52,共9页
Objective:It is well known that stress plays a critical role in immune response and susceptibility to diseases.Among many stressors,restraint stress has been shown to suppress immune function and increase susceptibili... Objective:It is well known that stress plays a critical role in immune response and susceptibility to diseases.Among many stressors,restraint stress has been shown to suppress immune function and increase susceptibility to infections.In this study,we employed a restraint-mouse model to investigate the effect and preliminary mechanism of ShiQi herbal tea(SQHT),a traditional Chinese medicine,on H1N1 virus infection.Methods:Mice were exposed to restraint stress and infected with H1N1 influenza virus by intranasal inoculation.SQHT(936 and 1872 mg/kg/d)was orally administrated to mice for 7 days from the first day of restraint stress.The survival rate of mice in each group was monitored daily for 21 days.Histopathological changes,inflammatory cells infiltration,and virus titer in lungs were examined.For the study of mechanisms,we investigated whether SQHT could promote interferon-β(IFN-β)generation and interferon stimulated genes(ISG)expression.Results:Our results suggested that SQHT(936 mg/kg/d)significantly reduced H1N1-induced mortality,the level of complement C5a and lung tissue inflammation,and viral replication in restraint-stressed mice.Further results revealed that in restraint-stressed mice model,SQHT(936 mg/kg/d)administration markedly improved IFN-βgeneration,and increased MX1 and IFITM3 gene expression.Conclusion:Our study demonstrates that SQHT reduces restraint stress-induced susceptibility to H1N1 infection via improving IFN-βantiviral pathway,which provides a certain basis for the clinical use of SQHT to treat H1N1 infection. 展开更多
关键词 ShiQi herbal tea Restraint stress h1n1 virus C5A InTERFEROn SUSCEPTIBILITY
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对麻鸭不同致病力H5N1亚型禽流感病毒的鉴定 被引量:3
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作者 唐应华 吴培培 +3 位作者 彭大新 张评浒 龙进学 刘秀梵 《中国兽医杂志》 CAS 北大核心 2008年第3期12-13,共2页
关键词 h5n1亚型禽流感病毒 致病力 野生水禽 鉴定 麻鸭 virus AIV 相对稳定
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H1N1猪流感病毒广西分离株HA基因序列分析 被引量:3
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作者 颜健华 梁丹洁 +5 位作者 李春英 徐贤坤 胡巧云 孙翔翔 何奇松 熊毅 《南方农业学报》 CAS CSCD 北大核心 2013年第7期1196-1200,共5页
【目的】了解H1N1猪流感病毒广西分离株的分子特征,为广西猪流感疫情监控提供参考依据。【方法】采用RT-PCR对2011年分离获得的H1N1猪流感病毒广西分离株(A/swine/Guangxi/1/2011)的HA基因进行扩增,然后利用DNASTAR分析软件对测序基... 【目的】了解H1N1猪流感病毒广西分离株的分子特征,为广西猪流感疫情监控提供参考依据。【方法】采用RT-PCR对2011年分离获得的H1N1猪流感病毒广西分离株(A/swine/Guangxi/1/2011)的HA基因进行扩增,然后利用DNASTAR分析软件对测序基因片段进行整个阅读框架的核苷酸序列及其推导氨基酸序列同源性比对分析,并用MEGA4.0绘制遗传进化树。【结果】广西分离株HA基因长1701bp,编码566个氨基酸,核苷酸序列与经典SIV的同源性为88.0%~99.6%,与季节性H1N1人流感病毒的同源性为76.3%~77.3%,与欧洲类禽SIV分离株的同源性为72.9%~75.4%,与2009甲型H1N1流感病毒的同源性为99.2%~99.6%;从核苷酸遗传进化树可知,广西分离株与类禽H1N1流感病毒和人H1N1流感病毒分离株的亲缘关系较远,而与2009甲型H1N1流感病毒分离株的亲缘关系最近。广西分离毒株HA基因的裂解位点序列为IPSIQSR↓G,具有典型低致病性流感病毒的分子生物学特征;共有8个糖基化位点,其中6个位于HAl区,两个位于HA2区;广西分离株HA蛋白RBS位点的氨基酸同时具有人和猪流感病毒的特点。【结论】广西分离株(A/swine/Guangxi/1/2011)属于2009甲型H1N1流感病毒。 展开更多
关键词 猪流感病毒 甲型h1n1流感病毒 hA基因 序列分析 同源性
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IBV AH1-99分离株N基因的克隆及序列分析 被引量:2
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作者 何长生 魏建忠 +6 位作者 刘胜旺 詹松鹤 朱良强 江定丰 郑举 曹晋蓉 陈静 《动物医学进展》 CSCD 2008年第1期5-9,共5页
利用RT-PCR技术成功扩增出IBVAH1-99分离株的N基因全长cNDA,将其克隆到pMD18-T载体上。经酶切分析、PCR鉴定及核苷酸序列测定,成功获得该分离株N基因的重组质粒。序列分析结果表明,分离株N基因全长1230个核苷酸,编码409个氨基酸。... 利用RT-PCR技术成功扩增出IBVAH1-99分离株的N基因全长cNDA,将其克隆到pMD18-T载体上。经酶切分析、PCR鉴定及核苷酸序列测定,成功获得该分离株N基因的重组质粒。序列分析结果表明,分离株N基因全长1230个核苷酸,编码409个氨基酸。同部分IBV参考毒株相比,核苷酸同源性为85.8%-89.9%,氨基酸同源性为86.6%~91.0%,在进化关系树中,AH1—99与国内分离株X、LX4亲缘关系较近。 展开更多
关键词 鸡传染性支气管炎病毒 n基因 克隆 遗传变异分析
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妊娠合并甲型H_1N_1流感14例临床分析 被引量:1
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作者 赵有红 左坤 《实用妇产科杂志》 CAS CSCD 北大核心 2012年第3期194-196,共3页
目的:探讨妊娠合并甲型H1N1流感的临床特点、治疗及其结局。方法:对2009年11月2日至2009年12月2日我院救治的14例妊娠期感染H1N1流感孕妇的临床情况进行总结性分析。结果:14例孕妇住院3~21天,平均8.6天。4例继续妊娠,7例手术结束妊娠,... 目的:探讨妊娠合并甲型H1N1流感的临床特点、治疗及其结局。方法:对2009年11月2日至2009年12月2日我院救治的14例妊娠期感染H1N1流感孕妇的临床情况进行总结性分析。结果:14例孕妇住院3~21天,平均8.6天。4例继续妊娠,7例手术结束妊娠,1例引产,2例自娩。13例新生儿存活,1例死亡,存活新生儿中5例早产,无新生儿H1N1感染病例,无孕妇死亡病例。结论:妊娠期感染H1N1流感孕妇更容易出现呼吸困难症状,病理妊娠及妊娠合并内科疾病者更易成为危重症病例。而早期应用奥司他韦能有效促进病情恢复,并未发现有母儿不良结局。 展开更多
关键词 妊娠 甲型h1n1流感 奥司他韦
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HIF-1αpromotes virus replication and cytokine storm in H1N1 virus-induced severe pneumonia through cellular metabolic reprogramming
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作者 Xiaoxiao Meng Yong Zhu +5 位作者 Wenyu Yang Jiaxiang Zhang Wei Jin Rui Tian Zhengfeng Yang Ruilan Wang 《Virologica Sinica》 SCIE CAS CSCD 2024年第1期81-96,共16页
The mortality of patients with severe pneumonia caused by H1N1 infection is closely related to viral replication and cytokine storm.However,the specific mechanisms triggering virus replication and cytokine storm are s... The mortality of patients with severe pneumonia caused by H1N1 infection is closely related to viral replication and cytokine storm.However,the specific mechanisms triggering virus replication and cytokine storm are still not fully elucidated.Here,we identified hypoxia inducible factor-1α(HIF-1α)as one of the major host molecules that facilitates H1N1 virus replication followed by cytokine storm in alveolar epithelial cells.Specifically,HIF-1αprotein expression is upregulated after H1N1 infection.Deficiency of HIF-1αattenuates pulmonary injury,viral replication and cytokine storm in vivo.In addition,viral replication and cytokine storm were inhibited after HIF-1αknockdown in vitro.Mechanistically,the invasion of H1N1 virus into alveolar epithelial cells leads to a shift in glucose metabolism to glycolysis,with rapid production of ATP and lactate.Inhibition of glycolysis significantly suppresses viral replication and inflammatory responses.Further analysis revealed that H1N1-induced HIF-1αcan promote the expression of hexokinase 2(HK2),the key enzyme of glycolysis,and then not only provide energy for the rapid replication of H1N1 virus but also produce lactate,which reduces the accumulation of the MAVS/RIG-I complex and inhibits IFN-α/βproduction.In conclusion,this study demonstrated that the upregulation of HIF-1αby H1N1 infection augments viral replication and cytokine storm by cellular metabolic reprogramming toward glycolysis mainly through upregulation of HK2,providing a theoretical basis for finding potential targets for the treatment of severe pneumonia caused by H1N1 infection. 展开更多
关键词 h1n1 Severe pneumonia virus replication hypoxia inducible factor-1α GLYCOLYSIS
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