Bacterial cellulose is a remarkable fibrous structural component of biofilms, as it forms a mechanically strong hydrogel with high water adsorption capabilities. Additionally, bacterial cellulose is biocompatible and therefore of potential interest for skin regeneration and wound healing applications. However, bacterial cellulose produced through conventional production processes at water–air interfaces lack macroporosity control, which is crucial for regenerative tissue applications. Here we demonstrate a straightforward and efficient approach to form a macroporous bacterial cellulose foam by foaming a mannitol-based media with a bacterial suspension of Gluconoacetobacter xylinus. The bacterial suspension foam is stabilized with Cremodan a...
Bacterial cellulose is an attractive resource for the manufacturing of sustainable materials, but it...
The scaffold is an essential component in tissue engineering. A novel method to prepare threedimensi...
Bacterial cellulose (BC) has established to be a remarkably versatile biomaterial and can be used in...
Microcapsules made of synthetic polymers are used for the release of cargo in agriculture, food, and...
New bio-based packaging materials are highly interesting for replacing conventional fossil based p...
Bacterial biofilms are three-dimensional networks of cells entangled in a self-generated extracellul...
FAPESP – FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULOLNNANO - BRAZILIAN NANOTECHNOLOGY NACIO...
Komagataeibacter xylinus cultures produced a high amount of bacterial cellulose (BC), which structur...
Bacterial cellulose (BC) is recognized as a multifaceted, versatile biomaterial with abundant applic...
Cellulose is the most abundant biopolymer found in the biosphere with plant as the major source. It ...
Summary: Sustainable structural materials with excellent impact-resistance properties are urgently n...
4siCellulose is a natural homopolymer, composed of β-1,4- anhydro-D-glucopyranose units. Unlike plan...
To shed light on novel sustainable materials with antimicrobial functionality, in this contribution,...
Natural biomaterials have benefited the human civilisation for millennia. However, in recent years, ...
We investigated wound dressing composites comprising fibrils of bacterial cellulose (BC) grown by fe...
Bacterial cellulose is an attractive resource for the manufacturing of sustainable materials, but it...
The scaffold is an essential component in tissue engineering. A novel method to prepare threedimensi...
Bacterial cellulose (BC) has established to be a remarkably versatile biomaterial and can be used in...
Microcapsules made of synthetic polymers are used for the release of cargo in agriculture, food, and...
New bio-based packaging materials are highly interesting for replacing conventional fossil based p...
Bacterial biofilms are three-dimensional networks of cells entangled in a self-generated extracellul...
FAPESP – FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULOLNNANO - BRAZILIAN NANOTECHNOLOGY NACIO...
Komagataeibacter xylinus cultures produced a high amount of bacterial cellulose (BC), which structur...
Bacterial cellulose (BC) is recognized as a multifaceted, versatile biomaterial with abundant applic...
Cellulose is the most abundant biopolymer found in the biosphere with plant as the major source. It ...
Summary: Sustainable structural materials with excellent impact-resistance properties are urgently n...
4siCellulose is a natural homopolymer, composed of β-1,4- anhydro-D-glucopyranose units. Unlike plan...
To shed light on novel sustainable materials with antimicrobial functionality, in this contribution,...
Natural biomaterials have benefited the human civilisation for millennia. However, in recent years, ...
We investigated wound dressing composites comprising fibrils of bacterial cellulose (BC) grown by fe...
Bacterial cellulose is an attractive resource for the manufacturing of sustainable materials, but it...
The scaffold is an essential component in tissue engineering. A novel method to prepare threedimensi...
Bacterial cellulose (BC) has established to be a remarkably versatile biomaterial and can be used in...