Background Recent efforts in fungal biotechnology aim to develop new concepts and technologies that convert renewable plant biomass into innovative biomaterials. Hereby, plant substrates become metabolized by filamentous fungi to transform them into new fungal based materials. Current research is thus focused on both understanding and optimizing the biology and genetics underlying filamentous fungal growth and on the development of new technologies to produce customized fungal based materials. Results This manuscript reports the production of stable pastes, composed of Fomes fomentarius mycelium, alginate and water with 71 wt. mycelium in the solid content, for additive manufacturing of fungal based composite materials. After printing...
The usage of plastics in all aspects of human activity has resulted in substantial pollution since i...
With increased awareness of the environmental impact of synthetic materials, there has been an incre...
Abstract Filamentous fungal cell factories are efficient producers of platform chemicals, proteins, ...
Background: Recent efforts in fungal biotechnology aim to develop new concepts and technologies that...
A recent emerging class of sustainable materials are fungal biomaterials, which can offer an alterna...
Background: Filamentous fungi of the phylum Basidiomycota are considered as an attractive source for...
Filamentous fungi are harnessed as cell factories for the production of a diverse range of organic a...
Filamentous fungi drive carbon and nutrient cycling across our global ecosystems, through its intera...
Due to the adaptability, durability, and affordability of synthetic polymers, their usage has been i...
Filamentous fungal cell factories are efficient producers of platform chemicals, proteins, enzymes a...
Wood-decaying saprotrophic fungi of the phylum Basidiomycota occur almost ubiquitously. Due to their...
Mycelium-Based Composites (MBCs) are innovative engineering materials made from lignocellulosic by-p...
Background The circular economy closes loops in industrial manufacturing processes and minimizes wa...
Mycelium materials are made of fungi. By digesting waste to create a bio-composite of mycelium and t...
Mycelium-based composites result from the growth of filamentous fungi on organic materials such as a...
The usage of plastics in all aspects of human activity has resulted in substantial pollution since i...
With increased awareness of the environmental impact of synthetic materials, there has been an incre...
Abstract Filamentous fungal cell factories are efficient producers of platform chemicals, proteins, ...
Background: Recent efforts in fungal biotechnology aim to develop new concepts and technologies that...
A recent emerging class of sustainable materials are fungal biomaterials, which can offer an alterna...
Background: Filamentous fungi of the phylum Basidiomycota are considered as an attractive source for...
Filamentous fungi are harnessed as cell factories for the production of a diverse range of organic a...
Filamentous fungi drive carbon and nutrient cycling across our global ecosystems, through its intera...
Due to the adaptability, durability, and affordability of synthetic polymers, their usage has been i...
Filamentous fungal cell factories are efficient producers of platform chemicals, proteins, enzymes a...
Wood-decaying saprotrophic fungi of the phylum Basidiomycota occur almost ubiquitously. Due to their...
Mycelium-Based Composites (MBCs) are innovative engineering materials made from lignocellulosic by-p...
Background The circular economy closes loops in industrial manufacturing processes and minimizes wa...
Mycelium materials are made of fungi. By digesting waste to create a bio-composite of mycelium and t...
Mycelium-based composites result from the growth of filamentous fungi on organic materials such as a...
The usage of plastics in all aspects of human activity has resulted in substantial pollution since i...
With increased awareness of the environmental impact of synthetic materials, there has been an incre...
Abstract Filamentous fungal cell factories are efficient producers of platform chemicals, proteins, ...