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Open AccessJournal ArticleDOI

A DNA vaccine induces SARS coronavirus neutralization and protective immunity in mice

TLDR
Gene-based vaccination for the SARS-CoV elicits effective immune responses that generate protective immunity in an animal model, and induces T cell and neutralizing antibody responses, as well as protective immunity, in a mouse model.
Abstract
Public health measures have successfully identified and contained outbreaks of the severe acute respiratory syndrome (SARS) coronavirus (SARS-CoV), but concerns remain over the possibility of future recurrences. Finding a vaccine for this virus therefore remains a high priority. Here, we show that a DNA vaccine encoding the spike (S) glycoprotein of the SARS-CoV induces T cell and neutralizing antibody responses, as well as protective immunity, in a mouse model. Alternative forms of S were analysed by DNA immunization. These expression vectors induced robust immune responses mediated by CD4 and CD8 cells, as well as significant antibody titres, measured by enzyme-linked immunosorbent assay. Moreover, antibody responses in mice vaccinated with an expression vector encoding a form of S that includes its transmembrane domain elicited neutralizing antibodies. Viral replication was reduced by more than six orders of magnitude in the lungs of mice vaccinated with these S plasmid DNA expression vectors, and protection was mediated by a humoral but not a T-cell-dependent immune mechanism. Gene-based vaccination for the SARS-CoV elicits effective immune responses that generate protective immunity in an animal model.

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Journal ArticleDOI

COVID-19 infection: Origin, transmission, and characteristics of human coronaviruses

TL;DR: The approaches for developing effective vaccines and therapeutic combinations to cope with this viral outbreak are discussed and the emergence and pathogenicity of COVID-19 infection and previous human coronaviruses severe acute respiratory syndrome coronavirus (SARS-CoV) and middle east respiratory virus (MERS- coV) is analyzed.
Journal ArticleDOI

The severe acute respiratory syndrome.

TL;DR: The concerted and coordinated response that contained SARS is a triumph for global public health and provides a new paradigm for the detection and control of future emerging infectious disease threats.
Journal ArticleDOI

Chloroquine is a potent inhibitor of SARS coronavirus infection and spread

TL;DR: Chloroquine is effective in preventing the spread of SARS CoV in cell culture and the indirect immunofluorescence assay described herein represents a simple and rapid method for screening SARS-CoV antiviral compounds.
Journal ArticleDOI

The spike protein of SARS-CoV — a target for vaccine and therapeutic development

TL;DR: Recent advances in the development of vaccines and therapeutics based on the S protein are highlighted, which plays key parts in the induction of neutralizing-antibody and T-cell responses, as well as protective immunity, during infection with SARS-CoV.
Journal ArticleDOI

Severe acute respiratory syndrome

TL;DR: The concerted and coordinated response that contained SARS is a triumph for global public health and provides a new paradigm for the detection and control of future emerging infectious disease threats.
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