Molecule that acts on Human Cells might provide hope for ‘Irresistible’ Cold Cure

Small blue blob with yellow innards up against large angular pale green blob with green innards

The molecule (yellow) blocks human NMT (blue), essential for the virus to assemble the capsid ‘shell’ that encloses its RNA genome (green)

Researchers have lab-tested a molecule that can combat the common cold virus by preventing it from hijacking human cells. Early lab-based tests with human cells have shown the molecule’s ability to completely block multiple strains of cold virus, and the team hope to move to animal and then human trials. The results of initial tests are published today in the journal Nature Chemistry.

The common cold is caused by a family of viruses with hundreds of variants, making it nearly impossible to become immune to or vaccinate against all of them. On top of that, the viruses evolve rapidly, meaning they can quickly gain resistance to drugs...

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How a Pinch of Salt can Improve Battery Performance

When the MOF is carbonised it transforms into a nano-diatom, much like a dragon egg turns into a fire-born dragon after fire treatment in Game of Thrones. Credit: Jingwei Hou

When the MOF is carbonised it transforms into a nano-diatom, much like a dragon egg turns into a fire-born dragon after fire treatment in Game of Thrones. Credit: Jingwei Hou

Researchers at Queen Mary University of London, University of Cambridge and Max Planck Institute for Solid State Research have discovered how a pinch of salt can be used to drastically improve the performance of batteries. They found that adding salt to the inside of a supermolecular sponge and then baking it at a high temperature transformed the sponge into a carbon-based structure. Surprisingly, the salt reacted with the sponge in special ways and turned it from a homogeneous mass to an intricate structure with fibres, struts, pillars and webs...

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Dozens of Binaries from Milky Way’s Globular Clusters could be detectable by LISA

gravitational wave emission

Visualization of the gravitational wave emission from a pair of orbiting compact objects. Credit: NASA

Next-generation gravitational wave detector in space will complement LIGO on Earth. The historic first detection of gravitational waves from colliding black holes far outside our galaxy opened a new window to understanding the universe. A string of detections – 4 more binary black holes and a pair of neutron stars – soon followed the Sept. 14, 2015, observation. Now, another detector is being built. LISA is expected to be in space in 2034, and it will be sensitive to gravitational waves of a lower frequency than those detected by the Earth-bound Laser Interferometer Gravitational-Wave Observatory (LIGO).

A new Northwestern University study predicts dozens of binaries (pairs of orbiting co...

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Could a Multiverse be Hospitable to Life?

Artistic impression of a Multiverse -- where our Universe is only one of many. According to the research varying amounts of dark energy have little effect on star formation. This raises the prospect of life in other universes -- if the Multiverse exists. Credit: Image by Jaime Salcido/simulations by the EAGLE Collaboration

Artistic impression of a Multiverse — where our Universe is only one of many. According to the research varying amounts of dark energy have little effect on star formation. This raises the prospect of life in other universes — if the Multiverse exists. Credit: Image by Jaime Salcido/simulations by the EAGLE Collaboration

A Multiverse – where our Universe is only one of many – might not be as inhospitable to life as previously thought, according to new research. Questions about whether other universes might exist as part of a larger Multiverse, and if they could harbour life, are burning issues in modern cosmology...

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