Chitin and Chitosan Preparation from Marine Sources. Structure, Properties and Applications
Получение хитина и хитозана из морских источников. Структура, свойства и применения
2015-03-02
SCID: 54.1/qxgqtg95
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acetyl group distributionbiological activities (antibacterial, antifungal, antitumor, antioxidant)chitin recovery from marine organismschitosan preparationdegree of acetylation (DA)demineralization conditionsdeproteinization (enzymatic vs chemical)molecular weight (MW)pharmaceutical and biomedical applicationssolubility–structure relationship
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Abstract (AI)
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.
Key Findings
1
Biological activities of chitin/chitosan (antibacterial, antifungal, antitumor, antioxidant) are presented and linked to DA and MW.
2
Characterization emphasizes solubility dependence on chemical structure, particularly acetyl group distribution along the polymer backbone.
3
Conditions of chitosan preparation markedly affect degree of acetylation (DA) and molecular weight (MW) of produced chitosan.
4
For the first time, a demonstrated relationship shows chitosan biological activity depends on DA, MW, and homogeneous acetyl group distribution.
5
The review compares enzymatic and chemical deproteinization methods and different demineralization conditions for recovering chitin from marine organisms.
Research Object
Chitin and chitosan derived from marine organisms
Research Subject
Methods of preparation (deproteinization, demineralization, deacetylation) and how chemical structure (degree and distribution of acetylation, molecular weight) affects properties, characterization (solubility), biological activities, and pharmaceutical/biomedical applications
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2015-03-02
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