Showing posts with label research. Show all posts
Showing posts with label research. Show all posts

Saturday, July 15, 2017

These "Indestructible" Animals Would Survive a Planet-Wide Apocalypse

Even the most catastrophic astrophysical events couldn't wipe out the hardy tardigrade, researchers report.

A magnified view of a tardigrade, also known as a water bear

The world's most robust animals may very well survive until the sun stops shining.

Also known as water bears, tardigrades are tiny water dwelling creatures famed for their resiliency. The eight legged invertebrates can survive for up to 30 years without food or water and can endure wild temperature extremes, radiation exposure, and even the vacuum of space.

"Tardigrades are extremely hardy animals," says Thomas Boothby, a tardigrade researcher at the University of North Carolina. "Scientists are still trying to work out how they survive these extremes."

At a minimum, all of Earth's oceans would have to boil away to completely wipe out all life on the planet. Although Boothby said tardigrades are only known to survive high temperatures when dry and those species living in the sea would likely die before the waters boiled , tardigrades are still expected to avoid extinction until our sun swells up and becomes a red giant roughly six billion years from now, according to researchers who investigated the effects of various doomsday scenarios.


For details Tardigrades: The Indestructible Animals

Friday, May 29, 2009

'Breakthrough' in malaria fight

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Australian scientists have identified a potential treatment to combat malaria.
Researchers in Melbourne believe their discovery could be a major breakthrough in the fight against the disease.
The malaria parasite produces a glue-like substance which makes the cells it infects sticky, so they cannot be flushed through the body.
The researchers have shown removing a protein responsible for the glue can destroy its stickiness, and undermine the parasite's defence.
The malaria parasite - Plasmodium falciparum - effectively hijacks the red blood cells it invades, changing their shape and physical properties dramatically.
Among the changes it triggers is the production of the glue-like substance, which enables the infected cells to stick to the walls of the blood vessels.
This stops them being pased through the spleen, where the parasites would usually be destroyed by the immune system.
Painstaking tests
The Australian team developed mutant strains of P. falciparum, each lacking one of 83 genes known or predicted to play a role in the red cell remodeling process.
Systematically testing each one, they were able to show that eight proteins were involved in the production of the key glue-like substance.
Removing just one of these proteins stopped the infected cells from attaching themselves to the walls of blood vessels.
Professor Alan Cowman, a member of the research team at the Walter and Eliza Hall Institute of Medical Research, said targeting the protein with drugs - or possibly a vaccine - could be key to fighting malaria.
"If we block the stickiness we essentially block the virulence or the capacity of the parasite to cause disease," he said.
Malaria is preventable and curable, but can be fatal if not treated promptly. The disease kills more than a million people each year. Many of the victims are young children in sub-Saharan Africa.
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