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March 2, 2015Marine Drugs2,533 citationsOpen Access

Chitin and Chitosan Preparation from Marine Sources. Structure, Properties and Applications

IYIslem YounesMRMarguerite Rinaudo

Key Points

  • To review marine chitin extraction methods, chitosan synthesis parameters, structural characterization techniques, and their resulting biological activities and biomedical applications.
  • Compared enzymatic and chemical deproteinization and demineralization protocols for recovering chitin from marine organisms.
  • Evaluated processing conditions that modify the degree of acetylation, molecular weight, and solubility of synthesized chitosan.
  • Surveyed biological assays and pharmaceutical applications based on structure-activity relationships.
  • Preparation conditions directly determine the degree of acetylation and molecular weight distribution along the chitosan backbone.
  • Structure-activity relationships confirmed that specific molecular weights and homogeneous acetyl group distributions regulate antibacterial, antifungal, antitumor, and antioxidant activities.
  • Biocompatibility and biodegradability make marine-derived chitin and chitosan effective candidates for pharmaceutical and biomedical applications.

Abstract

This review describes the most common methods for recovery of chitin from marine organisms. In depth, both enzymatic and chemical treatments for the step of deproteinization are compared, as well as different conditions for demineralization. The conditions of chitosan preparation are also discussed, since they significantly impact the synthesis of chitosan with varying degree of acetylation (DA) and molecular weight (MW). In addition, the main characterization techniques applied for chitin and chitosan are recalled, pointing out the role of their solubility in relation with the chemical structure (mainly the acetyl group distribution along the backbone). Biological activities are also presented, such as: antibacterial, antifungal, antitumor and antioxidant. Interestingly, the relationship between chemical structure and biological activity is demonstrated for chitosan molecules with different DA and MW and homogeneous distribution of acetyl groups for the first time. In the end, several selected pharmaceutical and biomedical applications are presented, in which chitin and chitosan are recognized as new biomaterials taking advantage of their biocompatibility and biodegradability.

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Cite This Study

Younes et al. (2015) studied this question.

synapsesocial.com/papers/69dc6f797873f5f05b133302https://doi.org/10.3390/md13031133
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Isolation and characterization of chitin from crawfish shell waste1989 · 241 citations
  2. 2The European Polysaccharide Network of Excellence (EPNOE)2012 · 40 citations
  3. 3Development of Novel Chitosan Derivatives as Micellar Carriers of Taxol1998 · 144 citations
  4. 4Antitumor effect of hexa-N-acetylchitohexaose and chitohexaose1986 · 448 citations
  5. 5Application of Chitin and Chitosan Derivatives in the Pharmaceutical Field2003 · 300 citations