Sponges (Porifera) are recognized as aquatic multicellular organisms which developed an effective biochemical pathway over millions of years of evolution to produce both biologically active secondary metabolites and biopolymer-based skeletal structures. Among marine demosponges, only representatives of the Verongiida order are known to synthetize biologically active substances as well as skeletons made of structural polysaccharide chitin. The unique three-dimensional (3D) architecture of such chitinous skeletons opens the widow for their recent applications as adsorbents, as well as scaffolds for tissue engineering and biomimetics. This study has the ambitious goal of monitoring other orders beyond Verongiida demosponges and finding alterna...
Marine sponges remain representative of a unique source of renewable biological materials. The demos...
Naturally occurring three-dimensional (3D) biopolymer-based matrices that can be used in different b...
Chitin is the second most abundant biopolymer found in nature and is present predominantly in the ex...
Sponges (Porifera) are recognized as aquatic multicellular organisms which developed an effective bi...
Marine demosponges (Porifera: Demospongiae) are recognized as first metazoans which have developed o...
WOS: 000412959500037PubMed: 28185932Since the discovery of chitin in skeletal structures of sponges ...
Since the discovery of chitin in skeletal structures of sponges (Porifera) in 2007, studies on searc...
Studies on the identification, properties and function of chitin in sponges (Porifera), which are re...
The recent discovery of chitin within skeletons of numerous marine and freshwater sponges (Porifera)...
Naturally occurring three-dimensional (3D) biopolymer-based matrices that can be used in different b...
International audienceThis work demonstrates that chitin is an important structural component within...
Marine sponges remain representative of a unique source of renewable biological materials. The demos...
International audienceA holdfast is a root-or basal plate-like structure of principal importance tha...
<p>Specimens of <i>A</i>. <i>wolffgangi</i> (a) and <i>E</i>. <i>gibbosa</i> (c) in their natural en...
Demosponges possess a skeleton made of a composite material with various organic constituents and/or...
Marine sponges remain representative of a unique source of renewable biological materials. The demos...
Naturally occurring three-dimensional (3D) biopolymer-based matrices that can be used in different b...
Chitin is the second most abundant biopolymer found in nature and is present predominantly in the ex...
Sponges (Porifera) are recognized as aquatic multicellular organisms which developed an effective bi...
Marine demosponges (Porifera: Demospongiae) are recognized as first metazoans which have developed o...
WOS: 000412959500037PubMed: 28185932Since the discovery of chitin in skeletal structures of sponges ...
Since the discovery of chitin in skeletal structures of sponges (Porifera) in 2007, studies on searc...
Studies on the identification, properties and function of chitin in sponges (Porifera), which are re...
The recent discovery of chitin within skeletons of numerous marine and freshwater sponges (Porifera)...
Naturally occurring three-dimensional (3D) biopolymer-based matrices that can be used in different b...
International audienceThis work demonstrates that chitin is an important structural component within...
Marine sponges remain representative of a unique source of renewable biological materials. The demos...
International audienceA holdfast is a root-or basal plate-like structure of principal importance tha...
<p>Specimens of <i>A</i>. <i>wolffgangi</i> (a) and <i>E</i>. <i>gibbosa</i> (c) in their natural en...
Demosponges possess a skeleton made of a composite material with various organic constituents and/or...
Marine sponges remain representative of a unique source of renewable biological materials. The demos...
Naturally occurring three-dimensional (3D) biopolymer-based matrices that can be used in different b...
Chitin is the second most abundant biopolymer found in nature and is present predominantly in the ex...