AIMode.newsSearch
Live

Protein-like nanoparticles sort themselves inside growing crystals, enabling controlled release

P

Phys.org

AIMode News Desk · curated summary

1 min readScience

Automated news aggregation. Headlines and summaries are gathered from public feeds; see our editorial standards for sourcing, corrections, and AI-assist disclosure.

The tiny bones in your fingers withstand countless taps and swipes thanks to a precise blend of materials. Flexible collagen fibers form the framework, reinforced by hard calcium phosphate hydroxyapatite crystals. This is just one of countless examples in which living organisms weave organic materials directly into inorganic crystals with exquisite precision. In a recent study published in Nature Communications, scientists attempted to recreate such precise spatial arrangements in biomimetic composite materials.

Key takeaways

  • 01The tiny bones in your fingers withstand countless taps and swipes thanks to a precise blend of materials.
  • 02Flexible collagen fibers form the framework, reinforced by hard calcium phosphate hydroxyapatite crystals.
  • 03This is just one of countless examples in which living organisms weave organic materials directly into inorganic crystals with exquisite precision.
Advertisement

About this story

This story was aggregated from Phys.org. Headlines, summaries, and links are gathered automatically from public RSS feeds for your convenience.

Read the full story →

For agents:JSON recordOpenAPIWebMCPllms.txt

Advertisement

More in Science

Science

How the value of star employees changes over a career

Overall, star employees tend to create value in different ways as their careers progress. Early on, they create outsized value through their individual performance. Experienced stars, meanwhile, contribute by helping colleagues succeed, sharing expertise and developing future stars.

Phys.org ·