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Source: http://localtechwire.com/business/local_tech_wire/biotech/story/4025780/
SARS breakthrough? UNC-CH team helps recreate variant of deadly virus
Posted: Today at 10:22 a.m.
Chapel Hill, N.C. ? UNC-Chapel Hill scientists working with colleagues at Vanderbilt have recreated a variant of the SARS virus that caused an epidemic in 2003.
The artificial synthesis of the severe acute respiratory syndrome, or SARS, virus found in bats could help researchers develop a vaccine and related treatments for future SARS outbreaks, according to the researchers involved.
"Only three other teams of researchers have synthetically reconstructed a virus,? said Ralph Baric, an epidemiologist at the UNC Gillings School of Global Public Health. ?In this case we reconstructed the likely progenitor of the SARS-CoV epidemic.
"The bat SARS virus is about four times larger than any other virus that has been synthesized to date. It will allow us to test the pathways in which the virus emerges and understand the ways that animal coronaviruses move from one species to another."
The National Academy of Sciences Early Edition?s Proceedings will publish a report about the research.
Baric, a graduate of North Carolina State University, is also principal investigator of a project designed to develop a single-dose vaccine for respiratory diseases that is easy to store as well as administer. In April, Baric?s lab was one of five designated as a ?Gillings Innovation Lab,? receiving additional funding from Quintiles Transational founder and chairman Dennis Gillings. The vaccine would be delivered through the respiratory system rather than through needles.
SARS is believed to have originated in bats and later ?jumped? to humans, Baric said.
The SARS epidemic spread to more than 20 countries across four continents after breaking out in Asia. It killed 774 people after affecting some 8,000 indivudals.
"Although the strains associated with the 2002-2003 epidemic no longer circulate in humans, the animal precursor strains are common and will likely re-emerge in the future," Baric told the UNC news service. "The key problem is that many of the vaccines and therapeutics targeting the 2002-2003 epidemic
strains may not work against future emergent strains."
According to Baric, researchers now ?have a model that will allow us to design better vaccines and drugs that will treat any strain of this virus that infects humans.?
Baric also believes the research could have an impact in research for other viruses.
"Potentially, we can apply this technology to many other emerging viruses," he said. "Then, perhaps we wouldn't have to develop a new therapy each year, but can find treatments that will be effective against all of the root viruses."
SARS breakthrough? UNC-CH team helps recreate variant of deadly virus
Posted: Today at 10:22 a.m.
Chapel Hill, N.C. ? UNC-Chapel Hill scientists working with colleagues at Vanderbilt have recreated a variant of the SARS virus that caused an epidemic in 2003.
The artificial synthesis of the severe acute respiratory syndrome, or SARS, virus found in bats could help researchers develop a vaccine and related treatments for future SARS outbreaks, according to the researchers involved.
"Only three other teams of researchers have synthetically reconstructed a virus,? said Ralph Baric, an epidemiologist at the UNC Gillings School of Global Public Health. ?In this case we reconstructed the likely progenitor of the SARS-CoV epidemic.
"The bat SARS virus is about four times larger than any other virus that has been synthesized to date. It will allow us to test the pathways in which the virus emerges and understand the ways that animal coronaviruses move from one species to another."
The National Academy of Sciences Early Edition?s Proceedings will publish a report about the research.
Baric, a graduate of North Carolina State University, is also principal investigator of a project designed to develop a single-dose vaccine for respiratory diseases that is easy to store as well as administer. In April, Baric?s lab was one of five designated as a ?Gillings Innovation Lab,? receiving additional funding from Quintiles Transational founder and chairman Dennis Gillings. The vaccine would be delivered through the respiratory system rather than through needles.
SARS is believed to have originated in bats and later ?jumped? to humans, Baric said.
The SARS epidemic spread to more than 20 countries across four continents after breaking out in Asia. It killed 774 people after affecting some 8,000 indivudals.
"Although the strains associated with the 2002-2003 epidemic no longer circulate in humans, the animal precursor strains are common and will likely re-emerge in the future," Baric told the UNC news service. "The key problem is that many of the vaccines and therapeutics targeting the 2002-2003 epidemic
strains may not work against future emergent strains."
According to Baric, researchers now ?have a model that will allow us to design better vaccines and drugs that will treat any strain of this virus that infects humans.?
Baric also believes the research could have an impact in research for other viruses.
"Potentially, we can apply this technology to many other emerging viruses," he said. "Then, perhaps we wouldn't have to develop a new therapy each year, but can find treatments that will be effective against all of the root viruses."