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Small (Weinheim an der Bergstrasse, Germany), ISSN 1613-6810, 06/2014, Volume 10, Issue 12, pp. 2390 - 2397
Avian influenza viruses (AIV) with good adaptation and various mutations have threatened both human and animals’ health... 
luminescence resonance energy transfer | upconversion | nanoparticles | avian influenza virus detection | GOLD NANOPARTICLES | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | HUMAN INFECTION | CYANIDE ANIONS | ASSAY | HEMAGGLUTININ | NANOPHOSPHORS | MATERIALS SCIENCE, MULTIDISCIPLINARY | NANOCRYSTALS | CHEMISTRY, PHYSICAL | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | LABEL-FREE DETECTION | DNA | PCR | Fluorescence Resonance Energy Transfer - instrumentation | Humans | Influenza A virus - genetics | Luminescence | Influenza A Virus, H7N2 Subtype - isolation & purification | Hemagglutinin Glycoproteins, Influenza Virus - genetics | Time Factors | Sensitivity and Specificity | Biosensing Techniques - instrumentation | Influenza, Human - diagnosis | Gold | Influenza A Virus, H7N1 Subtype - isolation & purification | Limit of Detection | Influenza A Virus, H7N9 Subtype - isolation & purification | Metal Nanoparticles - chemistry | Influenza A Virus, H7N7 Subtype - isolation & purification | Birds | Influenza A virus - isolation & purification | Influenza A Virus, H7N3 Subtype - isolation & purification | Animals | Influenza, Human - genetics | Influenza in Birds - virology | Biosensing Techniques - methods | Fluorescence Resonance Energy Transfer - methods | Influenza A Virus, H7N9 Subtype - genetics | Influenza A Virus, H7N7 Subtype - genetics | Influenza A Virus, H7N1 Subtype - genetics | Influenza A virus - classification | Influenza A Virus, H7N2 Subtype - genetics | Influenza A Virus, H7N3 Subtype - genetics | Influenza in Birds - diagnosis | Avian influenza | Thiols | Wildlife conservation | Detectors | Lectins | Avian influenza viruses | Fluorescence | Health aspects | Nanoparticles | Influenza | Upconversion | Health | Oligonucleotides | Biosensors | Energy transfer | Erbium
Journal Article
Science (American Association for the Advancement of Science), ISSN 1095-9203, 2012, Volume 336, Issue 6088, pp. 1534 - 1541
Highly pathogenic avian influenza A/H5N1 virus can cause morbidity and mortality in humans but thus far has not acquired the ability to be transmitted by aerosol or respiratory droplet... 
Receptors | Inoculation | Experimental infection | Disease transmission | Pandemics | REPORTS | Viruses | Orthomyxoviridae | Ferrets | Genetic mutation | Amino acid substitution | particle size | Influenza virus A H5N1 | antiviral resistance | hemagglutination test | virus replication | virus transmission | site directed mutagenesis | virus particle | Influenza virus A | animal experiment | nose smear | review | animal tissue | virus isolation | DNA modification | nonhuman | sequence analysis | amino acid substitution | priority journal | ferret | A VIRUS | TO-PERSON TRANSMISSION | MEDIATED SELECTION | H5N1 VIRUS | HEMAGGLUTININ | MULTIDISCIPLINARY SCIENCES | HOST | INFECTION | MODEL | RECEPTOR SPECIFICITY | PATHOGENIC AVIAN INFLUENZA | Immune Sera | Reassortant Viruses - pathogenicity | Influenza A Virus, H5N1 Subtype - physiology | Poultry | Receptors, Virus - metabolism | Air Microbiology | Humans | Virulence | Molecular Sequence Data | Influenza A Virus, H5N1 Subtype - genetics | Virus Shedding | Hemagglutinin Glycoproteins, Influenza Virus - immunology | Hemagglutinin Glycoproteins, Influenza Virus - genetics | Respiratory System - virology | Female | Influenza, Human - virology | Oseltamivir - pharmacology | Disease Models, Animal | Hemagglutinin Glycoproteins, Influenza Virus - chemistry | Reverse Genetics | Antiviral Agents - pharmacology | Mutagenesis, Site-Directed | RNA Replicase - genetics | Viral Proteins - chemistry | Sialic Acids - metabolism | Viral Proteins - genetics | Influenza, Human - epidemiology | Containment of Biohazards | Influenza A Virus, H5N1 Subtype - drug effects | Influenza in Birds - epidemiology | Influenza, Human - transmission | Hemagglutinin Glycoproteins, Influenza Virus - metabolism | Animals | Orthomyxoviridae Infections - transmission | Virus Replication | RNA Replicase - chemistry | Influenza in Birds - virology | Influenza A Virus, H5N1 Subtype - pathogenicity | Mutation | Serial Passage | Orthomyxoviridae Infections - virology | Amino Acid Substitution | Avian influenza | Diseases and pests | Physiological aspects | Development and progression | Research | Animal diseases | Amino acids | Avian flu | Small mammals | Index Medicus | Polymerase | Human | Proteins | Influenza | Droplets | Genetic modification
Journal Article
PloS one, ISSN 1932-6203, 2018, Volume 13, Issue 7, p. e0199260
The genotypes of the H9N2 avian influenza viruses have changed since 2013 when almost all H9N2 viruses circulating in chickens in China were genotype 57 (G57... 
A VIRUS | REPLICATION | EVOLUTION | HEMAGGLUTININ | SUBTYPES | PHYLOGENETIC ANALYSIS | MULTIDISCIPLINARY SCIENCES | POULTRY | CHICKENS | INFECTION | H7N9 | Influenza A Virus, H10N8 Subtype - genetics | Humans | Neuraminidase - genetics | Antigens, Viral - genetics | Influenza A Virus, H5N1 Subtype - classification | Influenza A Virus, H5N1 Subtype - genetics | Hemagglutinin Glycoproteins, Influenza Virus - immunology | Influenza in Birds - immunology | Phylogeny | Influenza A Virus, H7N9 Subtype - classification | Influenza A Virus, H10N8 Subtype - classification | Hemagglutinin Glycoproteins, Influenza Virus - genetics | Influenza A Virus, H7N9 Subtype - immunology | Influenza A Virus, H9N2 Subtype - immunology | Neuraminidase - immunology | Neuraminidase - chemistry | Influenza, Human - virology | Poultry Diseases - epidemiology | Influenza A Virus, H10N8 Subtype - immunology | Amino Acid Sequence | Hemagglutinin Glycoproteins, Influenza Virus - chemistry | Gene Expression | Influenza A Virus, H9N2 Subtype - genetics | Antigens, Viral - chemistry | Influenza, Human - epidemiology | Glycosylation | Influenza in Birds - epidemiology | China - epidemiology | Poultry Diseases - virology | Polymorphism, Genetic | Antigens, Viral - immunology | Animals | Influenza A Virus, H5N1 Subtype - immunology | Chickens | Influenza in Birds - virology | Poultry Diseases - immunology | Influenza A Virus, H9N2 Subtype - classification | Influenza A Virus, H7N9 Subtype - genetics | Evolution, Molecular | Influenza, Human - immunology | Avian influenza viruses | Genotype | Genetic aspects | Research | Health aspects | Epidemics | Veterinary colleges | Divergence | Pandemics | Poultry | Genes | Branches | Amino acids | Viruses | Avian flu | Proteins | Antigenicity | Influenza | Airborne infection | HA protein | Genotypes | Binding sites
Journal Article
Science (American Association for the Advancement of Science), ISSN 1095-9203, 2011, Volume 333, Issue 6044, pp. 843 - 850
Current flu vaccines provide only limited coverage against seasonal strains of influenza viruses... 
Influenza A virus | RESEARCH ARTICLES | Vaccination | Cardiopulmonary resuscitation | Antibodies | Viruses | Orthomyxoviridae | Infections | Epitopes | H3N2 subtype influenza A virus | Crystal structure | FUSION | HEMAGGLUTININ | RECOGNITION | AVIAN INFLUENZA | SUBTYPES | MULTIDISCIPLINARY SCIENCES | PH | VACCINATION | MONOCLONAL-ANTIBODIES | PEPTIDE | SEASON | Orthomyxoviridae Infections - prevention & control | Antibody Specificity | Humans | Molecular Sequence Data | Antigens, Viral - genetics | Crystallography, X-Ray | Neutralization Tests | Hemagglutinin Glycoproteins, Influenza Virus - immunology | Hemagglutinin Glycoproteins, Influenza Virus - genetics | Epitopes - immunology | Antibodies, Neutralizing - immunology | Conserved Sequence | Influenza A Virus, H7N7 Subtype - immunology | Influenza A virus - immunology | Influenza, Human - therapy | Antibodies, Monoclonal - immunology | Amino Acid Sequence | Hemagglutinin Glycoproteins, Influenza Virus - chemistry | Models, Molecular | Antigens, Viral - chemistry | Antibodies, Monoclonal - isolation & purification | Influenza A Virus, H3N2 Subtype - immunology | Antibodies, Viral - isolation & purification | Antibodies, Neutralizing - isolation & purification | Antigens, Viral - immunology | Animals | Influenza Vaccines - immunology | Antibodies, Viral - immunology | Protein Conformation | Mice | Influenza A Virus, H7N7 Subtype - genetics | Mutation | Binding Sites, Antibody | Influenza, Human - prevention & control | Orthomyxoviridae Infections - immunology | Influenza, Human - immunology | Influenza viruses | Influenza vaccines | Crystals | Monoclonal antibodies | Physiological aspects | Research | Properties | Structure | Vaccines | Influenza | Public health | Virology | fusion | peptide | avian influenza | hemagglutinin | recognition | monoclonal-antibodies | season | vaccination | subtypes
Journal Article
by Aubin, Jean-Thierry and Azebi, Saliha and Balish, Amanda and Banks, Jill and Bhat, Niranjan and Bright, Rick A and Brown, Ian and Buchy, Philippe and Burguiere, Ana-Maria and Chen, Hua-Ian and Cheng, Peter and Cox, Nancy J and Crosier, Alice and Curns, Aaron and Cuvelier, Frédèrique and Deng, Guohua and Desheva, Julia and Desvaux, Stéphanie and Diep, Nguyen Hong and Donis, Ruben O and Douglas, Alan and Dowell, Scott F and Dung, Nguyen Tien and Edwards, Lindsay and Fukuda, Keiji and Garten, Rebecca and Govorkova, Elena and Gregory, Victoria and Hampson, Alan and Hanh, Nguyen Thi Hong and Harper, Scott and Hay, Alan and Hoffmann, Erich and Hulse, Diane and Imai, Masaki and Itamura, Shigeyuki and Jadhao, Samadhan and Jeannin, Patricia and Kang, Chun and Katz, Jackie and Kim, Jae-Hong and Klimov, Alexander and Kwon, Yong-Kuk and Lee, Chang-Won and Lien, Phuong Song and Li, Yanbing and Lim, Wilina and Lin, Yi Pu and Lindstom, Stephen and Loftin, LaMorris and Mabry, Jan and Mai, Le Quynh and Maines, Taronna and Manuguerra, Jean-Claude and Mase, Masaji and Matsuoka, Yumi and McCarron, Margaret and Medina, Marie-Jo and Nguyen, Doan and Ninomiya, Ai and Obuchi, Masatsugu and Odagiri, Takato and Peiris, Malik and Perdue, Michael L and Reynes, Jean-Marc and Robertson, James and Rousseaux, Claudine and Saito, Takehiko and Sangkitporn, Somchai and Shaw, Michael and Simmerman, James M and Slomka, M and Smith, Catherine and Sorn, San and Spackman, Erica and Stöhr, Klaus and Suarez, David L and Sung, Haan Woo and Swayne, David E and Tardy-Panit, Maryse and Tashiro, Masato and Thawatsupha, Pranee and Tumpey, Terrence and Uyeki, Timothy and Van Tu, Phan and Van Der Werf, Sylvie and Vong, Sirenda and Webby, Richard and Webster, Robert and Wood, John and Xu, Xiyan and Yi, Guan and Zhang, Wenging and World Hlth Org Global Influenza Pr and World Health Organization Global Influenza Program Surveillance Network and The World Health Organization Global Influenza Program Surveillance Network
Emerging infectious diseases, ISSN 1080-6040, 10/2005, Volume 11, Issue 10, pp. 1515 - 1521
An outbreak of highly pathogenic avian influenza A (H5N1) has recently spread to poultry in 9 Asian countries... 
A VIRUS | SYSTEM | INFECTIOUS DISEASES | TRANSMISSION | RESCUE | HEMAGGLUTININ | 8 PLASMIDS | GENERATION | IMMUNOLOGY | REVERSE GENETICS | VACCINES | OSELTAMIVIR | Antiviral Agents - therapeutic use | Poultry | Humans | Influenza, Human - epidemiology | Influenza A Virus, H5N1 Subtype - classification | Influenza A Virus, H5N1 Subtype - drug effects | Influenza A Virus, H5N1 Subtype - genetics | Influenza in Birds - epidemiology | Phylogeny | Poultry Diseases - virology | Hemagglutinin Glycoproteins, Influenza Virus - genetics | Genetic Variation | Asia - epidemiology | Phenotype | Animals | Chickens | Influenza in Birds - virology | Influenza, Human - virology | Neuraminidase - antagonists & inhibitors | Influenza Vaccines | Influenza, Human - drug therapy | Poultry Diseases - epidemiology | Evolution, Molecular | Avian influenza | Causes of | Health aspects | Influenza in Birds | Influenza A Virus, H5N1 Subtype | Emerging diseases | Life Sciences | Animal biology | Antiviral Agents | Hemagglutinin Glycoproteins, Influenza Virus | Virology | Human health and pathology | Microbiology and Parasitology | Infectious diseases | Veterinary medicine and animal Health | Asia | Influenza, Human | Neuraminidase | Poultry Diseases | Adamantane | hemagglutinin | M2 protein | Avian | Research | NA protein | Influenza A Virus | Oseltamivir | molecular Evolution | virology | Influenza
Journal Article
PloS one, ISSN 1932-6203, 2009, Volume 4, Issue 12, pp. e8072 - e8072
Human disease caused by highly pathogenic avian influenza (HPAI) H5N1 can lead to a rapidly progressive viral pneumonia leading to acute respiratory distress syndrome... 
A H5N1 | PATHOGENESIS | CELLS | SUPPRESSOR | INTERFERON | ACTIVATION | INHIBITION | MULTIDISCIPLINARY SCIENCES | CYTOKINE SIGNALING-1 | TRANSCRIPTION | KAPPA-B | Influenza A Virus, H1N1 Subtype - immunology | Reproducibility of Results | Oligonucleotide Array Sequence Analysis | Monocytes - cytology | Humans | Cells, Cultured | Birds - virology | Up-Regulation - genetics | Gene Expression Profiling | Influenza in Birds - immunology | Interferon Type I - immunology | Reverse Transcriptase Polymerase Chain Reaction | Down-Regulation - genetics | Host-Pathogen Interactions - immunology | Animals | Macrophages - virology | Host-Pathogen Interactions - genetics | Time Factors | Influenza A Virus, H5N1 Subtype - immunology | Influenza in Birds - virology | Influenza, Human - virology | Seasons | Macrophages - immunology | Influenza, Human - immunology | Avian influenza | Acute respiratory distress syndrome | Genes | Swine influenza | Avian influenza viruses | Interferon | Biological response modifiers | Comparative analysis | Macrophages | Gene expression | Animal models | Pandemics | Pathogenesis | Viruses | Inflammatory response | Activation | Infections | Kinases | Avian flu | Pathways | Alveoli | Cytokines | Inflammation | Tumor necrosis factor-α | Epithelium | Biological activity | DNA microarrays | Respiratory distress syndrome | Lungs | Influenza | Apoptosis | Up-Regulation | Influenza in Birds | Down-Regulation | Birds | Influenza A Virus, H5N1 Subtype | Interferon Type I | Virology | Host-Pathogen Interactions | Life Sciences | Microbiology and Parasitology | Monocytes | Influenza, Human | Influenza A Virus, H1N1 Subtype
Journal Article
Virology, ISSN 0042-6822, 2016, Volume 501, pp. 176 - 182
Abstract Avian influenza (AI) viruses circulating in wild birds pose a serious threat to public health... 
Infectious Disease | Virus-like particle | Vaccine | VLP | Avian flu | Influenza | Recombinant | STRAINS | INTRANASAL VACCINATION | RESPONSES | VIROLOGY | POULTRY | FERRETS | MICE | H10N8 | BIRDS | VACCINES | Neuraminidase - administration & dosage | Influenza Vaccines - administration & dosage | Influenza in Birds - prevention & control | Neuraminidase - genetics | Influenza A Virus, H5N2 Subtype - genetics | Influenza A Virus, H5N1 Subtype - genetics | Hemagglutinin Glycoproteins, Influenza Virus - immunology | Influenza in Birds - immunology | Immunity | Hemagglutinin Glycoproteins, Influenza Virus - genetics | Influenza A Virus, H9N2 Subtype - immunology | Neuraminidase - immunology | Influenza A Virus, H5N2 Subtype - immunology | Influenza A Virus, H7N3 Subtype - immunology | Influenza A Virus, H9N2 Subtype - genetics | Hemagglutinin Glycoproteins, Influenza Virus - administration & dosage | Poultry Diseases - virology | Animals | Influenza Vaccines - immunology | Influenza Vaccines - genetics | Influenza A Virus, H5N1 Subtype - immunology | Chickens | Poultry Diseases - prevention & control | Influenza in Birds - virology | Poultry Diseases - immunology | Antibodies, Viral - immunology | Influenza A Virus, H7N3 Subtype - genetics | Avian influenza | Antigens | Enzymes | Analysis | Vaccination | Avian influenza viruses | Birds | Health aspects | Influenza vaccines | Public health | PUBLIC HEALTH | IMMUNITY | PARTICLES | SAFETY | INFLUENZA | ANTIGENS | CHICKENS | ELECTRON MICROSCOPY | HYDROGEN 5 | 60 APPLIED LIFE SCIENCES | HYDROGEN 7 | ENZYME ACTIVITY | INFLUENZA VIRUSES | ENZYMES | HEMAGGLUTININS | Virus-Like Particle
Journal Article
Cell host & microbe, ISSN 1931-3128, 2016, Volume 20, Issue 6, pp. 810 - 821
Constant surveillance of live poultry markets (LPMs) is currently the best way to predict and identify emerging avian influenza viruses (AIVs... 
genesis | prevalence | live poultry markets | H5N6 avian influenza | resassortment | evolution | birds | human infection | HUMAN INFECTION | H7N9 VIRUS | MICROBIOLOGY | SHORT READ ALIGNMENT | HONG-KONG | ORIGIN | LIVE POULTRY MARKETS | VIROLOGY | H9N2 | A(H5N6) VIRUS | A VIRUSES | MIGRATORY BIRDS | PARASITOLOGY | Public Health | Prevalence | Humans | Chickens - virology | Geographic Mapping | Influenza A Virus, H5N1 Subtype - genetics | Influenza A Virus, H9N2 Subtype - pathogenicity | Phylogeny | RNA, Viral - genetics | Genes, Viral - genetics | Poultry - virology | Base Sequence | Influenza A Virus, H7N9 Subtype - pathogenicity | Hemagglutinins | Influenza, Human - virology | Agriculture | Genome, Viral | Influenza A Virus, H5N8 Subtype - pathogenicity | Influenza A Virus, H9N2 Subtype - genetics | Influenza A Virus, H5N8 Subtype - classification | Ducks - virology | Columbidae - virology | Genotype | Influenza, Human - epidemiology | Geese - virology | Influenza in Birds - epidemiology | China - epidemiology | Animals | Epidemiological Monitoring | Influenza in Birds - virology | Neuraminidase | Reassortant Viruses | Influenza A Virus, H5N1 Subtype - pathogenicity | Influenza A Virus, H5N8 Subtype - genetics | Influenza A Virus, H7N9 Subtype - genetics | Cities | Influenza A Virus, H5N8 Subtype - isolation & purification | Evolution, Molecular | Virus diseases | Avian influenza | Cladistic analysis | Analysis | Lectins | Avian influenza viruses | Health aspects
Journal Article
2005, ISBN 1402034393, vii, 152
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