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Rna Virus Collection

EDITORS COMMENTSRNA viruses are a diverse group of infectious agents that have captured the attention of scientists and researchers worldwide

Background imageRna Virus Collection: HIV particle

HIV particle, computer artwork. HIV (human immunodeficiency virus) causes AIDS (acquired immune deficiency syndrome)

Background imageRna Virus Collection: Norovirus particles, TEM

Norovirus particles, TEM
Norovirus particles. Coloured transmission electron micrograph (TEM) of norovirus particles

Background imageRna Virus Collection: Influenza virus, computer artwork

Influenza virus, computer artwork
Influenza virus. Computer artwork of an influenza (flu) virus. The virus consists of a core of RNA (ribonucleic acid) genetic material surrounded by a protein coat

Background imageRna Virus Collection: Influenza virus particles, TEM

Influenza virus particles, TEM
Influenza virus particles, coloured transmission electron micrograph (TEM). This virus is the cause of the respiratory disease influenza (flu) in humans and other animals

Background imageRna Virus Collection: Hepatitis C viruses, TEM

Hepatitis C viruses, TEM
Hepatitis C viruses. Coloured transmission electron micrograph (TEM) of hepatitis C virus particles (green) infecting cultured liver cells (purple)

Background imageRna Virus Collection: Rotavirus particle, artwork

Rotavirus particle, artwork
Rotavirus particle. Cut-away artwork showing the structure of the rotavirus icosahedral capsid (protein coat)

Background imageRna Virus Collection: Rhinovirus and antibody, molecular model C015 / 7139

Rhinovirus and antibody, molecular model C015 / 7139
Rhinovirus. Molecular model of the antigen-binding fragment (Fab) from a strongly neutralising antibody bound to a human rhinovirus 14 (HRV-14) particle

Background imageRna Virus Collection: HIV infected macrophage, SEM C018 / 8598

HIV infected macrophage, SEM C018 / 8598
HIV infected macrophage. Coloured ion-abrasion scanning electron micrograph (IA-SEM) of a macrophage white blood cell infected with human immunodeficiency virus (HIV, red)

Background imageRna Virus Collection: Rhinovirus and antibody, molecular model C015 / 7138

Rhinovirus and antibody, molecular model C015 / 7138
Rhinovirus. Molecular model of the antigen-binding fragment (Fab) from a strongly neutralising antibody bound to a human rhinovirus 14 (HRV-14) particle

Background imageRna Virus Collection: Viral recognition by antibodies, artwork C013 / 4722

Viral recognition by antibodies, artwork C013 / 4722
Viral recognition by antibodies. Computer artwork of rabies (family Rhabdoviridae) virus particles (virions, pink) being identified by monoclonal antibodies (Y-shaped, blue)

Background imageRna Virus Collection: Infectious bronchitis virus (IBV), TEM

Infectious bronchitis virus (IBV), TEM
Infectious bronchitis virus (IBV) particles, coloured transmission electron micrograph (TEM). This virus is a member of the coronavirus family

Background imageRna Virus Collection: L-A virus, artwork

L-A virus, artwork
L-A virus, computer artwork. This virus infects yeast cells

Background imageRna Virus Collection: Coxsackievirus, artwork

Coxsackievirus, artwork
Coxsackievirus, computer artwork

Background imageRna Virus Collection: Flock House virus, artwork

Flock House virus, artwork
Flock House virus, computer artwork. This is an insect virus that is also able to replicate in plant and yeast cells

Background imageRna Virus Collection: Equine rhinitis A virus, artwork

Equine rhinitis A virus, artwork
Equine rhinitis A virus capsid, computer artwork. This virus causes respiratory disease in horses

Background imageRna Virus Collection: Echovirus particle, artwork

Echovirus particle, artwork
Echovirus particle, computer artwork. This common human pathogen infects the gastrointestinal tract

Background imageRna Virus Collection: Melon necrotic spot virus, artwork

Melon necrotic spot virus, artwork
Melon necrotic spot virus, computer artwork

Background imageRna Virus Collection: Feline calicivirus, artwork

Feline calicivirus, artwork
Feline calicivirus, computer artwork

Background imageRna Virus Collection: Cocksfoot mottle virus, artwork

Cocksfoot mottle virus, artwork
Cocksfoot mottle virus, computer artwork. This virus infects a number of plants including cocksfoot grass (Dactylis glomerata)

Background imageRna Virus Collection: Fungal partitivirus, artwork

Fungal partitivirus, artwork
Fungal partitivirus, computer artwork

Background imageRna Virus Collection: Mengo encephalomyocarditis virus, artwork

Mengo encephalomyocarditis virus, artwork
Mengo encephalomyocarditis virus, computer artwork. This virus causes inflammatory and degenerative disease in cardiac and skeletal muscle, and the central nervous system of pigs

Background imageRna Virus Collection: Budding HIV particles, SEM C018 / 8599

Budding HIV particles, SEM C018 / 8599
Budding HIV particles. Coloured scanning electron micrograph (SEM) of human immunodeficiency virus (HIV) particles (yellow) budding from the surface of a T lymphocyte from the H9 cell line

Background imageRna Virus Collection: H1N1 swine flu virus, TEM C018 / 8602

H1N1 swine flu virus, TEM C018 / 8602
H1N1 swine flu virus. Coloured transmission electron micrograph (TEM) of swine influenza (flu) virus particles (virions, yellow)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0954

Avian influenza virus, artwork F007 / 0954
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0955

Avian influenza virus, artwork F007 / 0955
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0953

Avian influenza virus, artwork F007 / 0953
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0951

Avian influenza virus, artwork F007 / 0951
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0949

Avian influenza virus, artwork F007 / 0949
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0952

Avian influenza virus, artwork F007 / 0952
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0947

Avian influenza virus, artwork F007 / 0947
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0948

Avian influenza virus, artwork F007 / 0948
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0945

Avian influenza virus, artwork F007 / 0945
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0944

Avian influenza virus, artwork F007 / 0944
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0942

Avian influenza virus, artwork F007 / 0942
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0943

Avian influenza virus, artwork F007 / 0943
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0938

Avian influenza virus, artwork F007 / 0938
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0939

Avian influenza virus, artwork F007 / 0939
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Avian influenza virus, artwork F007 / 0940

Avian influenza virus, artwork F007 / 0940
Avian flu virus, computer artwork. A virus is a tiny pathogenic particle comprising genetic material enclosed in a protein coat. The coat contains surface proteins (spikes)

Background imageRna Virus Collection: Coronavirus, artwork F007 / 0229

Coronavirus, artwork F007 / 0229
Human coronavirus. Computer artwork of a Human coronavirus particle

Background imageRna Virus Collection: Coronavirus, artwork F007 / 0222

Coronavirus, artwork F007 / 0222
Human coronavirus. Computer artwork of a Human coronavirus particle

Background imageRna Virus Collection: Coronavirus, artwork F007 / 0220

Coronavirus, artwork F007 / 0220
Human coronavirus. Computer artwork of a Human coronavirus particle

Background imageRna Virus Collection: Coronavirus, artwork F007 / 0211

Coronavirus, artwork F007 / 0211
Human coronavirus. Computer artwork of a Human coronavirus particle

Background imageRna Virus Collection: Genetic evolution of flu virus, artwork C017 / 0786

Genetic evolution of flu virus, artwork C017 / 0786
Genetic evolution of influenza (flu) virus

Background imageRna Virus Collection: Retroviral intasome molecule F006 / 9705

Retroviral intasome molecule F006 / 9705
Retroviral intasome molecule. Molecular model of an intasome from a retrovirus complexed with host cell DNA (deoxyribonucleic acid)

Background imageRna Virus Collection: Retroviral intasome molecule F006 / 9706

Retroviral intasome molecule F006 / 9706
Retroviral intasome molecule. Molecular model of an intasome from a retrovirus complexed with host cell DNA (deoxyribonucleic acid)

Background imageRna Virus Collection: Human poliovirus, molecular model F006 / 9289

Human poliovirus, molecular model F006 / 9289
Human poliovirus particle. Molecular model of the capsid of the human poliovirus. The capsid is a protein coat that encloses the viruss genetic information (genome), stored as RNA (ribonucleic acid)

Background imageRna Virus Collection: Rabies virus particle, artwork C016 / 9158

Rabies virus particle, artwork C016 / 9158
Rabies virus particle, computer artwork

Background imageRna Virus Collection: Measles virus particle, artwork C016 / 9329

Measles virus particle, artwork C016 / 9329
Measles virus particle, computer artwork

Background imageRna Virus Collection: Rabies virus particle, artwork C016 / 9157

Rabies virus particle, artwork C016 / 9157
Rabies virus particle, computer artwork

Background imageRna Virus Collection: HIV particles, artwork C016 / 9141

HIV particles, artwork C016 / 9141
HIV particles, computer artwork. HIV (human immunodeficiency virus) causes AIDS (acquired immune deficiency syndrome)

Background imageRna Virus Collection: Polio virus particles, TEM C016 / 9436

Polio virus particles, TEM C016 / 9436
Poliovirus particles. Coloured transmission electron micrograph (TEM) of poliovirus particles (round). Poliovirus infects children causing the disease poliomyelitis, or infantile paralysis

Background imageRna Virus Collection: Rift Valley fever virus particle, artwork C016 / 9160

Rift Valley fever virus particle, artwork C016 / 9160
Rift Valley fever virus particle, computer artwork

Background imageRna Virus Collection: Rabies virus particles artwork C016 / 9159

Rabies virus particles artwork C016 / 9159
Rabies virus particles, computer artwork

Background imageRna Virus Collection: Rabies virus particle, artwork C016 / 9155

Rabies virus particle, artwork C016 / 9155
Rabies virus particle, computer artwork

Background imageRna Virus Collection: Polio virus particle, artwork C016 / 9606

Polio virus particle, artwork C016 / 9606
Polio virus particle, computer artwork. Each virus consists of a protein coat (capsid, blue) surrounding a core of RNA (ribonucleic acid, yellow) genetic material

Background imageRna Virus Collection: Rubella virus particles, artwork C016 / 9332

Rubella virus particles, artwork C016 / 9332
Rubella virus particles, computer artwork. Each particle consists of an RNA (ribonucleic acid) core, surrounded by a protein capsid and a lipoprotein envelope

Background imageRna Virus Collection: Polio virus particles, TEM C016 / 9437

Polio virus particles, TEM C016 / 9437
Poliovirus particles. Coloured transmission electron micrograph (TEM) of poliovirus particles (orange). Poliovirus infects children causing the disease poliomyelitis, or infantile paralysis

Background imageRna Virus Collection: Rabies virus particle, artwork C016 / 9156

Rabies virus particle, artwork C016 / 9156
Rabies virus particle, computer artwork

Background imageRna Virus Collection: HIV particles, artwork C016 / 9142

HIV particles, artwork C016 / 9142
HIV particles, computer artwork. HIV (human immunodeficiency virus) causes AIDS (acquired immune deficiency syndrome)

Background imageRna Virus Collection: Polio virus particle, artwork C016 / 9607

Polio virus particle, artwork C016 / 9607
Polio virus particle, computer artwork. Each virus consists of a protein coat (capsid, red) surrounding a core of RNA (ribonucleic acid, purple) genetic material

Background imageRna Virus Collection: Measles virus particle, TEM C015 / 7160

Measles virus particle, TEM C015 / 7160
Measles virus particle, coloured transmission electron micrograph (TEM)

Background imageRna Virus Collection: Measles virus particle, TEM C015 / 7161

Measles virus particle, TEM C015 / 7161
Measles virus particle, coloured transmission electron micrograph (TEM)

Background imageRna Virus Collection: Bird flu research C015 / 8803

Bird flu research C015 / 8803
Bird flu research. Researcher harvesting influenza type a H7N9 viruses from cultures grown in eggs. This virus first emerged in the human population in China, in March 2013

Background imageRna Virus Collection: Avian influenza virus, TEM C015 / 8800

Avian influenza virus, TEM C015 / 8800
Avian influenza virus, type A strain H7N9, coloured transmission electron micrograph (TEM). This virus first emerged in the human population in China, in March 2013

Background imageRna Virus Collection: Measles virus particle, TEM C015 / 7162

Measles virus particle, TEM C015 / 7162
Measles virus particle, coloured transmission electron micrograph (TEM)

Background imageRna Virus Collection: Bird flu diagnostic kit C015 / 8805

Bird flu diagnostic kit C015 / 8805
Bird flu diagnostic kit. Reagents for diagnosing influenza type a H7N9 infection in humans. This virus first emerged in the human population in China, in March 2013

Background imageRna Virus Collection: Measles virus particle, TEM C015 / 7159

Measles virus particle, TEM C015 / 7159
Measles virus particle, coloured transmission electron micrograph (TEM)

Background imageRna Virus Collection: Avian influenza virus, TEM C015 / 8799

Avian influenza virus, TEM C015 / 8799
Avian influenza virus, type A strain H7N9, coloured transmission electron micrograph (TEM). This virus first emerged in the human population in China, in March 2013

Background imageRna Virus Collection: Bird flu research C015 / 8804

Bird flu research C015 / 8804
Bird flu research. Researcher measuring harvested influenza type a H7N9 viruses grown in the lab. This virus first emerged in the human population in China, in March 2013

Background imageRna Virus Collection: Avian influenza virus, TEM C015 / 8797

Avian influenza virus, TEM C015 / 8797
Avian influenza virus, type A strain H7N9, coloured transmission electron micrograph (TEM). This virus first emerged in the human population in China, in March 2013

Background imageRna Virus Collection: Measles virus particle, TEM C015 / 7164

Measles virus particle, TEM C015 / 7164
Measles virus particle, coloured transmission electron micrograph (TEM)

Background imageRna Virus Collection: Measles virus particle, TEM C015 / 7163

Measles virus particle, TEM C015 / 7163
Measles virus particle, coloured transmission electron micrograph (TEM)

Background imageRna Virus Collection: Budding HIV particles, TEM C018 / 0125

Budding HIV particles, TEM C018 / 0125
Budding HIV particles

Background imageRna Virus Collection: Influenza virus, illustration C018 / 0735

Influenza virus, illustration C018 / 0735
Influenza virus. Illustration of an influenza (flu) virus particle (virion)

Background imageRna Virus Collection: Budding HIV particles, TEM C018 / 0124

Budding HIV particles, TEM C018 / 0124
Budding HIV particles. Coloured transmision electron micrograph (TEM) of human immunodeficiency virus (HIV) particles (gren) budding from the surface of a T lymphocyte (orange) from the H9 cell line

Background imageRna Virus Collection: Budding HIV particles, TEM C018 / 0123

Budding HIV particles, TEM C018 / 0123
Budding HIV particles. Coloured transmision electron micrograph (TEM) of human immunodeficiency virus (HIV) particles (blue) budding from the surface of a T lymphocyte (red) from the H9 cell line

Background imageRna Virus Collection: Budding HIV particles, TEM C018 / 0127

Budding HIV particles, TEM C018 / 0127
Budding HIV particles

Background imageRna Virus Collection: Budding HIV particles, TEM C018 / 0126

Budding HIV particles, TEM C018 / 0126
Budding HIV particles. Coloured transmision electron micrograph (TEM) of human immunodeficiency virus (HIV) particles (pink) budding from the surface of a T lymphocyte (blue) from the H9 cell line

Background imageRna Virus Collection: Enterovirus particle C014 / 4900

Enterovirus particle C014 / 4900
Enterovirus particle. Computer artwork of an enterovirus particle (virion), showing the structure of the capsid (outer shell)

Background imageRna Virus Collection: Enterovirus capsid proteins structure C014 / 4897

Enterovirus capsid proteins structure C014 / 4897
Enterovirus capsid proteins structure. Computer artwork showing how the four component proteins (VP1 to VP4) of an enterovirus particle (virion) interlock to form the capsid (outer shell)

Background imageRna Virus Collection: Enterovirus capsid proteins structure C014 / 4896

Enterovirus capsid proteins structure C014 / 4896
Enterovirus capsid proteins structure. Computer artwork showing how the four component proteins (VP1 to VP4) of an enterovirus particle (virion) interlock to form the capsid (outer shell)

Background imageRna Virus Collection: Enterovirus particle C014 / 4898

Enterovirus particle C014 / 4898
Enterovirus particle. Computer artwork of an enterovirus particle (virion), showing the structure of the capsid (outer shell)

Background imageRna Virus Collection: Human poliovirus, molecular model

Human poliovirus, molecular model
Human poliovirus particle. Computer model of the capsid of the human poliovirus. The capsid is a protein coat that encloses the viruss genetic information (genome), stored as RNA (ribonucleic acid)

Background imageRna Virus Collection: Enterovirus particles C014 / 4899

Enterovirus particles C014 / 4899
Enterovirus particles. Computer artwork of enterovirus particles (virion)



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EDITORS COMMENTS

RNA viruses are a diverse group of infectious agents that have captured the attention of scientists and researchers worldwide. From the intricate structure of HIV particles to the menacing Norovirus particles observed under a transmission electron microscope (TEM), these tiny entities hold immense significance in our understanding of viral diseases. Influenza, one of the most well-known RNA viruses, has been depicted through computer artwork, showcasing its complex architecture and highlighting its ability to mutate rapidly. TEM images further reveal the true face of influenza virus particles, resembling miniature spheres with spikes protruding from their surface. Hepatitis C viruses also fall into this category, as revealed by TEM imaging. These minute structures can wreak havoc on liver cells and cause chronic infections if left untreated. The artistic representation of rotavirus particle emphasizes its distinctive wheel-like shape, which is responsible for causing severe diarrhea in young children. Molecular models depicting rhinovirus alongside antibodies shed light on potential therapeutic strategies against common colds caused by this RNA virus. Similarly, an SEM image showcases an HIV-infected macrophage - a key player in spreading this deadly virus throughout the body. The captivating artwork capturing infectious bronchitis virus (IBV) highlights how RNA viruses can affect not only humans but also animals like poultry. L-A virus and Coxsackievirus are two more examples that demonstrate the wide range of hosts susceptible to RNA viral infections. As we delve deeper into studying these enigmatic entities known as RNA viruses, we uncover their remarkable adaptability and ability to exploit host cells for replication. Understanding their mechanisms will undoubtedly pave the way for novel treatments and preventive measures against these relentless adversaries that continue to challenge human health globally.

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