Naturally occurring three-dimensional (3D) biopolymer-based matrices that can be used in different biomedical applications are sustainable alternatives to various artificial 3D materials. For this purpose, chitin-based structures from marine sponges are very promising substitutes. Marine sponges from the order Verongiida (class Demospongiae) are typical examples of demosponges with well-developed chitinous skeletons. In particular, species belonging to the family Ianthellidae possess chitinous, flat, fan-like fibrous skeletons with a unique, microporous 3D architecture that makes them particularly interesting for applications. In this work, we focus our attention on the demosponge Ianthella flabelliformis (Linnaeus, 1759) for simultaneous e...
Chitin (CT), the well-known natural biopolymer and chitosan (CS) (bio-based or "artificial polymer")...
Demosponges possess a skeleton made of a composite material with various organic constituents and/or...
Structure-based tissue engineering requires large-scale 3D cell/tissue manufacture technologies, to ...
Naturally occurring three-dimensional (3D) biopolymer-based matrices that can be used in different b...
Marine sponges remain representative of a unique source of renewable biological materials. The demos...
Marine sponges remain representative of a unique source of renewable biological materials. The demos...
Sponges (Porifera) are recognized as aquatic multicellular organisms which developed an effective bi...
Marine demosponges of the Verongiida order are considered a gold-mine for bioinspired materials scie...
The recent discovery of chitin within skeletons of numerous marine and freshwater sponges (Porifera)...
International audienceSponges are a valuable source of natural compounds and biomaterials for many b...
Sponges are a valuable source of natural compounds and biomaterials for many biotechnological applic...
Marine demosponges (Porifera: Demospongiae) are recognized as first metazoans which have developed o...
Sponges are a valuable source of natural compounds and biomaterials for many biotechnological applic...
Skeletal constructs of diverse marine sponges remain to be a sustainable source of biocompatible por...
Chitin (CT), the well-known natural biopolymer and chitosan (CS) (bio-based or "artificial polymer")...
Demosponges possess a skeleton made of a composite material with various organic constituents and/or...
Structure-based tissue engineering requires large-scale 3D cell/tissue manufacture technologies, to ...
Naturally occurring three-dimensional (3D) biopolymer-based matrices that can be used in different b...
Marine sponges remain representative of a unique source of renewable biological materials. The demos...
Marine sponges remain representative of a unique source of renewable biological materials. The demos...
Sponges (Porifera) are recognized as aquatic multicellular organisms which developed an effective bi...
Marine demosponges of the Verongiida order are considered a gold-mine for bioinspired materials scie...
The recent discovery of chitin within skeletons of numerous marine and freshwater sponges (Porifera)...
International audienceSponges are a valuable source of natural compounds and biomaterials for many b...
Sponges are a valuable source of natural compounds and biomaterials for many biotechnological applic...
Marine demosponges (Porifera: Demospongiae) are recognized as first metazoans which have developed o...
Sponges are a valuable source of natural compounds and biomaterials for many biotechnological applic...
Skeletal constructs of diverse marine sponges remain to be a sustainable source of biocompatible por...
Chitin (CT), the well-known natural biopolymer and chitosan (CS) (bio-based or "artificial polymer")...
Demosponges possess a skeleton made of a composite material with various organic constituents and/or...
Structure-based tissue engineering requires large-scale 3D cell/tissue manufacture technologies, to ...