Gradients of Aliveness and Engineering: A Taxonomy of Fungal Engineered Living Materials

E Elise Elsacker (Research Group of Microbiology Department of Bioengineering Sciences Vrije Universiteit Brussel Pleinlaan 2 Brussels B‐1050 Belgium) J Jara Saluena Martin (Research Group of Microbiology Department of Bioengineering Sciences Vrije Universiteit Brussel Pleinlaan 2 Brussels B‐1050 Belgium) A Annah‐Ololade Sangosanya (Research Group of Microbiology Department of Bioengineering Sciences Vrije Universiteit Brussel Pleinlaan 2 Brussels B‐1050 Belgium) A Anouk Verstuyft (Research Group of Microbiology Department of Bioengineering Sciences Vrije Universiteit Brussel Pleinlaan 2 Brussels B‐1050 Belgium) A Aurélie Van Wylick (Research Group of Architectural Engineering Department of Architectural Engineering Vrije Universiteit Brussel Pleinlaan 2 Brussels B‐1050 Belgium) E Eveline Peeters (Research Group of Microbiology Department of Bioengineering Sciences Vrije Universiteit Brussel Pleinlaan 2 Brussels B‐1050 Belgium)

Abstract

Abstract Filamentous fungi offer unique potential for engineered living materials (ELMs), enabling self‐assembling, adaptive, and sustainable biofabrication. However, the field lacks a systematic framework to classify fungal ELMs, as they vary in biological state (dead, dormant, or living), scaffold composition, and degree of engineering intervention. Here, a classification system is introduced to categorize fungal ELMs, enabling researchers to map existing studies and guide future development. The ability to form resilient 3D networks make filamentous fungi ideal for applications ranging from self‐healing composites to materials for bioremediation and real‐time sensing, as demonstrated in proof‐of‐concept applications. A roadmap for next‐generation fungal ELMs is outlined, including spatial–temporal control of fungal states, multispecies integration for enhanced complexity, and computational modeling for predictive design. Key challenges, such as contamination control, cell viability, and bio‐digital integration, are discussed alongside strategies for genetic engineering. Finally, ethical and environmental considerations are emphasized as crucial factors for the responsible scaling of fungal ELMs.

Article Details

Volume / Issue Vol. 38, Issue 5
Published January 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (6)

E

Elise Elsacker

Research Group of Microbiology Department of Bioengineering Sciences Vrije Universiteit Brussel Pleinlaan 2 Brussels B‐1050 Belgium

J

Jara Saluena Martin

Research Group of Microbiology Department of Bioengineering Sciences Vrije Universiteit Brussel Pleinlaan 2 Brussels B‐1050 Belgium

A

Annah‐Ololade Sangosanya

Research Group of Microbiology Department of Bioengineering Sciences Vrije Universiteit Brussel Pleinlaan 2 Brussels B‐1050 Belgium

A

Anouk Verstuyft

Research Group of Microbiology Department of Bioengineering Sciences Vrije Universiteit Brussel Pleinlaan 2 Brussels B‐1050 Belgium

A

Aurélie Van Wylick

Research Group of Architectural Engineering Department of Architectural Engineering Vrije Universiteit Brussel Pleinlaan 2 Brussels B‐1050 Belgium

E

Eveline Peeters

Research Group of Microbiology Department of Bioengineering Sciences Vrije Universiteit Brussel Pleinlaan 2 Brussels B‐1050 Belgium