Monday, 4 May 2026
Subscribe
logo logo
  • Global
  • Technology
  • Business
  • AI
  • Cloud
  • Edge Computing
  • Security
  • Investment
  • More
    • Sustainability
    • Colocation
    • Quantum Computing
    • Regulation & Policy
    • Infrastructure
    • Power & Cooling
    • Design
    • Innovations
  • 🔥
  • data
  • revolutionizing
  • Stock
  • Investment
  • Future
  • Secures
  • Growth
  • Top
  • Funding
  • Power
  • Center
  • technology
Font ResizerAa
Silicon FlashSilicon Flash
Search
  • Global
  • Technology
  • Business
  • AI
  • Cloud
  • Edge Computing
  • Security
  • Investment
  • More
    • Sustainability
    • Colocation
    • Quantum Computing
    • Regulation & Policy
    • Infrastructure
    • Power & Cooling
    • Design
    • Innovations
Have an existing account? Sign In
Follow US
© 2022 Foxiz News Network. Ruby Design Company. All Rights Reserved.
Silicon Flash > Blog > Innovations > Living fungus-based building material repairs itself for over a month
Innovations

Living fungus-based building material repairs itself for over a month

Published April 19, 2025 By Juwan Chacko
Share
3 Min Read
Living fungus-based building material repairs itself for over a month
SHARE


Graphical abstract. Credit: bioRxiv (2024). DOI: 10.1101/2024.05.03.592484

Researchers have pioneered a groundbreaking building material utilizing the root-like mycelium of a fungus coupled with bacteria cells. Their findings, which have been documented in Cell Reports Physical Science, reveal that this innovative material, created with living cells at low temperatures, possesses the unique ability to self-repair, potentially offering a sustainable alternative to traditional high-emission building materials like concrete.

“Biomineralized materials may not yet have the requisite strength to fully replace concrete in all applications, but efforts are underway to enhance their properties for broader utilization,” stated corresponding author Chelsea Heveran, an assistant professor at Montana State University.

In contrast to other biomaterials of a similar nature that typically remain functional for only days or weeks, the materials developed by Heveran’s team, which incorporate fungal mycelium and bacteria, maintain their utility for at least a month.

“The longevity of our materials is truly remarkable, as it opens up possibilities for additional cellular functions,” noted Heveran.

With prolonged presence of bacteria within the material, their cells are capable of executing various beneficial functions such as self-repair in case of damage and remediation of contaminants.

While materials derived from once-living organisms are starting to surface in the commercial realm, those constructed with living organisms pose challenges, mainly due to their short lifespan and lack of intricate internal structures necessary for many construction projects.

To tackle these obstacles, the research team, spearheaded by lead author Ethan Viles from Montana State University, delved into utilizing fungal mycelium as a scaffold for biomineralized materials, drawing inspiration from its prior use as a scaffold for packaging and insulation materials. The team worked with the fungus species Neurospora crassa and successfully crafted materials with diverse complex architectures.

See also  Building Collaboration Across CTOs, CIOs and Data Center Leaders for Greater Sustainability

“Our findings underscore the utility of fungal scaffolds in controlling the internal structure of the material. We managed to create internal geometries resembling cortical bone, paving the way for potential construction of other geometries in the future,” remarked Heveran.

The researchers are optimistic that their new biomaterials could eventually replace environmentally taxing building materials like cement, which contribute significantly to carbon dioxide emissions from human activities.

As a next phase, they aim to further enhance the materials by extending the lifespan of the cells and streamlining the manufacturing process for larger-scale production.

More information:
Mycelium as a scaffold for biomineralized engineered living materials, Cell Reports Physical Science (2025). DOI: 10.1016/j.xcrp.2025.102517

Citation:
Living fungus-based building material repairs itself for over a month (2025, April 16)
retrieved 19 April 2025
from https://techxplore.com/news/2025-04-fungus-based-material-month.html

This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no
part may be reproduced without the written permission. The content is provided for information purposes only.

TAGGED: Building, fungusbased, Living, material, Month, repairs
Share This Article
Facebook LinkedIn Email Copy Link Print
Previous Article Voiant Acquires Voxeleron Voiant Acquires Voxeleron
Next Article Meta Plans Nearly B Data Center Project in Wisconsin – Report Meta Plans Nearly $1B Data Center Project in Wisconsin – Report
Leave a comment

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

Your Trusted Source for Accurate and Timely Updates!

Our commitment to accuracy, impartiality, and delivering breaking news as it happens has earned us the trust of a vast audience. Stay ahead with real-time updates on the latest events, trends.
FacebookLike
LinkedInFollow

Popular Posts

Wall Street Analyst Predicts Sharp Decline for Leading AI Stock: More Than 70% Drop Expected

In summary, Wall Street analysts are overwhelmingly bullish on AI stocks, with Palantir Technologies being…

August 26, 2025

The Surge of IonQ Stock: What’s Driving the Momentum?

Summary: IonQ's stock experienced a significant surge this week due to positive announcements and new…

September 18, 2025

Understanding the Decline in Navitas Semiconductor Stock Performance

Summary: 1. Navitas Semiconductor (NVTS) experienced a significant drop in stock price following a recommendation…

August 22, 2025

VOO vs VTI: Comparing the Top U.S. Stock ETFs for Your Portfolio

Summary: 1. Choosing between Vanguard S&P 500 ETF (VOO) and Vanguard Total Stock Market ETF…

January 17, 2026

Revolutionizing Network Management: Forward Networks Introduces Agentic AI System Powered by Network Digital Twin Technology

Summary: 1. The blog discusses how Forward Networks uses an agentic framework to streamline troubleshooting…

January 31, 2026

You Might Also Like

Empowering Innovation: The Role of Design Enablement Teams in the European Chips Act
Innovations

Empowering Innovation: The Role of Design Enablement Teams in the European Chips Act

Juwan Chacko
Secure Access: Biometric Passwordless Login and EU Digital Wallet Protection Platform
Innovations

Secure Access: Biometric Passwordless Login and EU Digital Wallet Protection Platform

Juwan Chacko
The Crucial Role of Intelligent Networks in Europe’s Digital Future
Innovations

The Crucial Role of Intelligent Networks in Europe’s Digital Future

Juwan Chacko
Innovating the Future: EPI’s Revolutionary Approach to High-Performance Computing
Innovations

Innovating the Future: EPI’s Revolutionary Approach to High-Performance Computing

Juwan Chacko
logo logo
Facebook Linkedin Rss

About US

Silicon Flash: Stay informed with the latest Tech News, Innovations, Gadgets, AI, Data Center, and Industry trends from around the world—all in one place.

Top Categories
  • Technology
  • Business
  • Innovations
  • Investments
Usefull Links
  • Home
  • Contact
  • Privacy Policy
  • Terms & Conditions

© 2025 – siliconflash.com – All rights reserved

Welcome Back!

Sign in to your account

Lost your password?