• Video
  • Shop
  • Culture
  • Family
  • Wellness
  • Food
  • Living
  • Style
  • Travel
  • News
  • Book Club
  • Newsletter
  • Privacy Policy
  • Your US State Privacy Rights
  • Children's Online Privacy Policy
  • Interest-Based Ads
  • Terms of Use
  • Do Not Sell My Info
  • Contact Us
  • Recalls and Product Safety Alerts
  • © 2026 ABC News
  • News

Scientists make new muscle-like material that gets stronger after a 'workout'

5:56
JAXA
Inside Science's top stories of 2018
STOCK PHOTO/Shutterstock
ByYuen Yiu | INSIDE SCIENCE
February 01, 2019, 3:26 PM

This is an Inside Science story.

Researchers from Japan have come up with a way to encourage materials to grow stronger over time, like the muscles in our body. The new technique could allow engineers to design adaptable and healable materials for a wide range of applications.

When we lift weights in the gym, the mechanical stress causes our muscle fibers to rip and tear, but this damaging action actually allows the fibers to regrow stronger afterwards. In contrast, nonliving materials such as rubber bands or paper clips tend to weaken and deteriorate after repeated use.

Drawing inspiration from muscle tissues, a research group from Hokkaido University in Sapporo, Japan, designed a hydrogel that contains two intertwining networks of polymers -- materials formed by long chains of molecules such as those found in plastics.

Related Articles

(MORE: Computers may one day recognize voices as well as humans)

The hydrogel threads are submerged and stretched in a solution that contains monomers -- building materials for polymers similar to what amino acids are to muscles. The stretching causes the threads to partially tear, then the monomers in the solution allow them to regrow and become stronger.

The researchers observed the properties of the hydrogel threads after repeatedly stretching them and letting them heal. The threads eventually became 1.5 stronger and 23 times stiffer, and they also displayed a considerably bulkier physique, having beefed up to almost twice the original mass.

Related Articles

(MORE: How scientists use ordinary equipment to reveal a hidden picture based on its shadow)

The researchers suggest this new fabrication technique could be used to customize specific materials to specific challenges, by starting with different polymers and monomer combinations. It may lead to healable and tunable materials useful in biomedical applications, such as for prosthetics and orthotics.

The paper was published today in the journal Science.

Inside Science is an editorially-independent nonprofit print, electronic and video journalism news service owned and operated by the American Institute of Physics.

Up Next in News—

French lawmakers adopt social media ban for kids under 15

July 21, 2026

Trial begins for mom accused of killing her 3 children

July 20, 2026

Officer speaks out after rescuing driver trapped in burning car

July 20, 2026

Taylor Farms recalls lettuce in 27 states amid cyclosporiasis outbreak: What to know

July 20, 2026

Shop GMA Favorites

ABC will receive a commission for purchases made through these links.

Sponsored Content by Taboola

The latest lifestyle and entertainment news and inspiration for how to live your best life - all from Good Morning America.
  • Contests
  • Terms of Use
  • Privacy Policy
  • Do Not Sell My Info
  • Children’s Online Privacy Policy
  • Advertise with us
  • Your US State Privacy Rights
  • Interest-Based Ads
  • About Nielsen Measurement
  • Press
  • Feedback
  • Shop FAQs
  • ABC News
  • ABC
  • All Videos
  • All Topics
  • Sitemap
  • Recalls and Product Safety Alerts

© 2026 ABC News
  • Privacy Policy— 
  • Your US State Privacy Rights— 
  • Children's Online Privacy Policy— 
  • Interest-Based Ads— 
  • Terms of Use— 
  • Do Not Sell My Info— 
  • Contact Us— 
  • Recalls and Product Safety Alerts— 

© 2026 ABC News