Living Fiber Dispersions from Mycelium as a New Sustainable Platform for Advanced Materials

A Ashutosh Sinha (Cellulose and Wood Materials Laboratory Empa Dübendorf 8600 Switzerland) L Luiz G. Greca (Cellulose and Wood Materials Laboratory Empa Dübendorf 8600 Switzerland) N Nico Kummer (Cellulose and Wood Materials Laboratory Empa Dübendorf 8600 Switzerland) C Ciatta Wobill (Department of Health Sciences and Technology ETH Zurich Zurich 8092 Switzerland) C Carolina Reyes (2Genentech, Inc., South San Francisco, United States) P Peter Fischer S Silvia Campioni (Cellulose and Wood Materials Laboratory Empa Dübendorf 8600 Switzerland) G Gustav Nyström

Abstract

Abstract Functional biopolymeric fibers are key building blocks for developing sustainable materials within the growing bioeconomy. However, their flexible use in emerging advanced materials with smart properties typically requires processing methods that may compromise sustainability. Here, a sustainable route to generate living fiber dispersions (LFD) from mycelium that combines the excellent material‐forming properties of biopolymeric fibers, and the highly dynamic properties of living materials is proposed. This is showcased by using industrially available liquid culture and mechanical defibrillation methods to generate well‐dispersed living mycelium fibers. These fibers can form materials where precursors with good dispersibility and network formation properties are paramount and can harness dynamic properties through growth even in the absence of added nutrients. This is demonstrated in unique living emulsions with 3.6x slower phase separation and in living films with 2.5x higher tensile strength upon growth, the latter vastly outperforming the strongest pure mycelium materials to date. Further, humidity can be used to modulate mechanical properties and to trigger the superhydrophobic patterning of substrates, mechanical actuation, and degradation of lignocellulosic consumer goods at their end of life. In the future, combining synthetic biology with this promising platform for smart materials can expand the horizons for sustainable material manufacturing.

Article Details

Volume / Issue Vol. 37, Issue 22
Published June 01, 2025
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (8)

A

Ashutosh Sinha

Cellulose and Wood Materials Laboratory Empa Dübendorf 8600 Switzerland

L

Luiz G. Greca

Cellulose and Wood Materials Laboratory Empa Dübendorf 8600 Switzerland

N

Nico Kummer

Cellulose and Wood Materials Laboratory Empa Dübendorf 8600 Switzerland

C

Ciatta Wobill

Department of Health Sciences and Technology ETH Zurich Zurich 8092 Switzerland

C

Carolina Reyes

2Genentech, Inc., South San Francisco, United States

P

Peter Fischer

S

Silvia Campioni

Cellulose and Wood Materials Laboratory Empa Dübendorf 8600 Switzerland

G

Gustav Nyström