Nanostructural Organization of Naturally Occurring Composites—Part II: Silica-Chitin-Based Biocomposites

Author:

Ehrlich Hermann1,Janussen Dorte2,Simon Paul3,Bazhenov Vasily V.4,Shapkin Nikolay P.4,Erler Christiane1,Mertig Michael1,Born René1,Heinemann Sascha1,Hanke Thomas1,Worch Hartmut1,Vournakis John N.5

Affiliation:

1. Max Bergmann Center of Biomaterials and Institute of Materials Science, Dresden University of Technology, 01069 Dresden, Germany

2. Forschungsinstitut und Naturmuseum Senckenberg, Senckenberganlage 25, 60325 Frankfurt am Main, Germany

3. Max Planck Institute of Chemical Physics of Solids, 01187 Dresden, Germany

4. Institute of Chemistry and Applied Ecology, Far Eastern National University, 690650 Vladivostok, Russia

5. Marine Polymer Technologies, Inc., Danvers, MA 01923, USA

Abstract

Investigations of the micro- and nanostructures and chemical composition of the sponge skeletons as examples for natural structural biocomposites are of fundamental scientific relevance. Recently, we show that some demosponges (Verongula gigantea, Aplysinasp.) and glass sponges (Farrea occa, Euplectella aspergillum) possess chitin as a component of their skeletons. The main practical approach we used for chitin isolation was based on alkali treatment of corresponding external layers of spicules sponge material with the aim of obtaining alkali-resistant compounds for detailed analysis. Here, we present a detailed study of the structural and physicochemical properties of spicules of the glass spongeRossella fibulata. The structural similarity of chitin derived from this sponge to invertebrate alpha chitin has been confirmed by us unambiguously using physicochemical and biochemical methods. This is the first report of a silica-chitin composite biomaterial found inRossella species. Finally, the present work includes a discussion related to strategies for the practical application of silica-chitin-based composites as biomaterials.

Funder

German Academic Exchange Service

Publisher

Hindawi Limited

Subject

General Materials Science

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