IBD: Synthetic Hydrogels Deliver Cells to Repair Intestinal Injuries

Human intestinal organoids (HIOs) generated in the hydrogel matrix differentiate into mature intestinal tissue and present specialized human intestinal cell types, such as enteroendocrine cells (CHGA; red), after transplantation into an animal. Credit: Ricardo Cruz-Acuña, Georgia Tech

Human intestinal organoids (HIOs) generated in the hydrogel matrix differentiate into mature intestinal tissue and present specialized human intestinal cell types, such as enteroendocrine cells (CHGA; red), after transplantation into an animal. Credit: Ricardo Cruz-Acuña, Georgia Tech

By combining engineered polymeric materials known as hydrogels with complex intestinal tissue known as organoids – made from human pluripotent stem cells – researchers have taken an important step toward creating a new technology for controlling the growth of these organoids and using them for treating wounds in the gut that can be caused by disorders such as inflammatory bowel disease (IBD)...

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A Quantum Spin Liquid

Scientists from Boson College and Harvard turned to copper to create a first-of-its-kind iridate -- Cu2IrO3 -- where the natural magnetic order is disrupted, a state known as geometric frustration. Credit: Boston College

Scientists from Boson College and Harvard turned to copper to create a first-of-its-kind iridate – Cu2IrO3 – where the natural magnetic order is disrupted, a state known as geometric frustration. Credit: Boston College

Honeycomb lattice meets elusive standards of the Kitaev model. Researchers from Boston College and Harvard have created an elusive honeycomb-structured material capable of frustrating the magnetic properties within it in order to produce a chemical entity known as “spin liquid,” long theorized as a gateway to the free-flowing properties of quantum computing, according to a new report in the Journal of the American Chemical Society.

The first-of-its-kind copper iridate metal oxide – Cu2IrO3 – is one where the natural magnetic order is disrupted, a state known as geometric fru...

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Spots on Supergiant Star drive Spirals in Stellar Wind

Artist's impression of the hot massive supergiant Zeta Puppis. The rotation period of the star indicated by the new BRITE observations is 1.78 d, and its spin axis is inclined by (24 ± 9)° with respect to the line of sight. Credit: Tahina Ramiaramanantsoa

Artist’s impression of the hot massive supergiant Zeta Puppis. The rotation period of the star indicated by the new BRITE observations is 1.78 d, and its spin axis is inclined by (24 ± 9)° with respect to the line of sight. Credit: Tahina Ramiaramanantsoa

Astronomers recently discovered that spots on the surface of a supergiant star are driving huge spiral structures in its stellar wind. Massive stars are responsible for producing the heavy elements that make up all life on Earth. At the end of their lives they scatter the material into interstellar space in catastrophic explosions ie supernovae – without these dramatic events, our solar system would never have formed.

Zeta Puppis is an evolved massive star known as a ‘supergiant’...

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Scientists discover Superconductor with Bounce

A single crystal of CaFe2As2 (scale bar 1 mm). Right: a micropillar of CaFe2As2, used to test its elasticity (scale bar 1 ?m). Credit: Image courtesy of DOE/Ames Laboratory

A single crystal of CaFe2As2 (scale bar 1 mm). Right: a micropillar of CaFe2As2, used to test its elasticity (scale bar 1 ?m). Credit: Image courtesy of DOE/Ames Laboratory

Scientists have discovered super-elastic shape-memory properties in a material that could be applied for use as an actuator in the harshest of conditions, such as outer space, and might be the first in a whole new class of shape memory materials. These materials “remember” their original shape and return to it after they are deformed. They are commonly metallic alloys that make possible “unbreakable” eyeglass frames and quieter jet engines.

But the material in this research, CaFe2As2, is not a metallic alloy but an intermetallic more well-known for its novel superconducting properties...

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