Junin Virus Candid 1

Junin virus Candid 1 is a live attenuated vaccine strain developed to prevent Argentine hemorrhagic fever, a severe infection caused by Junin virus. Its reduced virulence permits limited replication that presents viral antigens to the immune system, stimulating neutralizing antibodies and cellular immune responses without causing typical disease in vaccine recipients. In immunology and infection research, Candid 1 supports the study of arenavirus immunity, vaccine attenuation, and protective immune responses, while vaccination programs use it to reduce illness in endemic regions. Its development illustrates how attenuation can transform a pathogenic virus into an effective preventive tool.

Junin Virus Candid 1 - Related Videos

Research

JoVE Journal - Biology

Vaccinia Virus Infection & Temporal Analysis of Virus Gene Expression: Part 1

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Cited by 2 •

2009

Protocol for Vaccinia infection of HeLa cells and analysis of host and viral gene expression. Part 1 of 3.

Transient Expression in Red Beet of a Biopharmaceutical Candidate Vaccine for Type-1 Diabetes

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Cited by 3 •

2019

Here, we present a protocol to produce an oral vaccine candidate against Type 1 diabetes in an edible plant.

Ex Vivo Infection of Murine Epidermis with Herpes Simplex Virus Type 1

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Cited by 15 •

2015

The skin is one target tissue of the human pathogen herpes simplex virus type 1 (HSV-1). To explore the invasion route of HSV-1 into tissue, we established an ex vivo infection model of murine epidermal sheets which represent the outermost layer of skin.

Highly Sensitive Assay for Measurement of Arenavirus-cell Attachment

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Cited by 1 •

2016

The first step in the arenavirus life cycle is attachment of viral particles to host cells. We report a quantitative (q)RT-PCR-based assay for ultrasensitive detection and quantitation of arenavirus attachment events.

Education

JoVE Core - Biology

What are Viruses?

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2019

Overview A virus is a microscopic infectious particle that consists of an RNA or DNA genome enclosed in a protein shell. It is not able to reproduce on its own: it can only make more viruses by entering a cell and using its cellular machinery. When a virus infects a host cell, it removes its protein coat and directs the host’s machinery to transcribe and translate its genetic material. The hijacked cell assembles the replicated components into thousands of viral progeny, which can rupture and...

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