Step aside Superman, Steel is No Competition for this New Material

The specific strength of our CNF fibers engineered at multiscale also exceeds that of metals, alloys, and glass fibers, enhancing the potential of sustainable lightweight high-performance materials with multiscale self-organization.

The specific strength of our CNF fibers engineered at multiscale exceeds that of metals, alloys, and glass fibers, enhancing the potential of sustainable lightweight high-performance materials with multiscale self-organization.

When it comes to materials, there is no question as to who wins the strongman competition. Spider silk is known as being the strongest fabric, and steel, ceramics and glass fibers are the best building materials. But now, researchers are reporting in ACS Nano that specially arranged nano-sized cellulose fibers are the strongest material of them all, in a move that might cause some to re-name Superman the “man of cellulose.”

Recently, scientists have been trying to mimic the architecture of natural materials on the nanoscale level with the hopes that it would transla...

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Computer-Designed Customized Regenerative Heart Valves

Computer-designed customized regenerative heart valve. Credit: Image adapted from figure in publication

Computer-designed customized regenerative heart valve. Credit: Image adapted from figure in publication

Cardiovascular tissue engineering aims to treat heart disease with prostheses that grow and regenerate. Now, researchers have successfully implanted regenerative heart valves, designed with the aid of computer simulations, into sheep for the first time. Tissue engineering, which involves growing replacement parts in the laboratory, forms a key part of this research. The parts can be used to replace defective cells and tissues in the body and restore their normal functioning. The bioengineered replacements have significant advantages over the artificial implants currently in use: They do not cause immune reactions in the patient’s body, and they can grow and regenerate themselves.

An inte...

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NASA Eyes Versatile Carbon-Nanotube Technology for Spaceflight Applications

These images, taken with an electron microscope, show the patterned nanotubes that would operate as electron emitters in a new instrument now being developed for analyzing extraterrestrial samples. The right image is a close-up of one of the bumps. Credit: NASA

These images, taken with an electron microscope, show the patterned nanotubes that would operate as electron emitters in a new instrument now being developed for analyzing extraterrestrial samples. The right image is a close-up of one of the bumps. Credit: NASA

An ultra-dark coating comprised of nearly invisible shag rug-like strands made of pure carbon is proving to be highly versatile for all types of spaceflight applications. In the most recent application of the carbon-nanotube coating, optical engineer John Hagopian, a contractor at NASA’s Goddard Space Flight Center in Greenbelt, Maryland, and Goddard scientist Lucy Lim are growing an array of miniscule, button-shaped bumps of multi-walled nanotubes on a silicon wafer...

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Red Sea Fungus yields leads for New Epilepsy Drugs

Zebrafish-Based Discovery of Antiseizure Compounds from the Red Sea: Pseurotin A2 and Azaspirofuran A

Zebrafish-Based Discovery of Antiseizure Compounds from the Red Sea: Pseurotin A2 and Azaspirofuran A

New treatments for epilepsy are sorely needed because current medications don’t work for many people with the disease. To find new leads, researchers have now turned to the sea – a source that has been largely untapped for prospective drugs. 2 metabolites produced by a fungus from the Red Sea look promising. “Epilepsy” covers a spectrum of brain disorders with symptoms ranging from mildly odd sensations to seizures, loss of consciousness and death. Worldwide, the condition affects 50 million people, according to the World Health Organization. Current treatments work in only about 70% of those who try them.

Marcel Jaspars, Peter A. M...

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