Marine Derived Polysaccharides for Biomedical Applications: Chemical Modification Approaches

Полисахариды морского происхождения для применения в биомедицине: подходы к химической модификации
Mario Malinconico, Paola Laurienzo, Giovanna Gomez d’Ayala
2008-09-03

alginatechemical modificationchitin and chitosanmarine-derived polysaccharidespolysaccharide-based biomaterials
Polysaccharide-based biomaterials are an emerging class in several biomedical fields such as tissue regeneration, particularly for cartilage, drug delivery devices and gelentrapment systems for the immobilization of cells. Important properties of the polysaccharides include controllable biological activity, biodegradability, and their ability to form hydrogels. Most of the polysaccharides used derive from natural sources; particularly, alginate and chitin, two polysaccharides which have an extensive history of use in medicine, pharmacy and basic sciences, and can be easily extracted from marine plants (algae kelp) and crab shells, respectively. The recent rediscovery of poly-saccharidebased materials is also attributable to new synthetic routes for their chemical modification, with the aim of promoting new biological activities and/or to modify the final properties of the biomaterials for specific purposes. These synthetic strategies also involve the combination of polysaccharides with other polymers. A review of the more recent research in the field of chemical modification of alginate, chitin and its derivative chitosan is presented. Moreover, we report as case studies the results of our recent work concerning various different approaches and applications of polysaccharide-based biomaterials, such as the realization of novel composites based on calcium sulphate blended with alginate and with a chemically modified chitosan, the synthesis of novel alginate-poly(ethylene glycol) copolymers and the development of a family of materials based on alginate and acrylic polymers of potential interest as drug delivery systems.
1
Alginate and chitin can be readily extracted from marine sources, including kelp and crab shells, supporting their continued use in biomedical material development.
2
Chemical modification of alginate, chitin, and chitosan enables tailored biological activities and material properties for tissue regeneration, drug delivery, and cell immobilization.
3
Combining marine polysaccharides with other polymers provides additional routes for designing application-specific biomedical materials.
4
Marine-derived alginate and chitin/chitosan are valuable biomedical biomaterials because they are biodegradable, biologically tunable, and capable of forming hydrogels.
5
Reported case studies include calcium sulfate composites with alginate or chemically modified chitosan, alginate–poly(ethylene glycol) copolymers, and alginate–acrylic polymer systems for potential drug delivery.

Marine-derived polysaccharides (primarily alginate, chitin/chitosan) used as biomaterials

Chemical modification strategies and resulting biological and material properties of these polysaccharides for biomedical applications

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2008-09-03
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Mario Malinconico
Paola Laurienzo
Giovanna Gomez d’Ayala
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