Chitin and Chitosans: Characteristics, Eco-Friendly Processes, and Applications in Cosmetic Science
Хитин и хитозаны: характеристики, экологичные процессы и применения в косметической науке
2019-06-21
SCID: 54.1/nwact9xv
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bacterial fermentationbiocompatibilitybiodegradabilitychitinchitosancosmetic applicationseco-friendly extraction processesenzymatic deacetylationenzymatic deproteinizationmarine polysaccharides
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Abstract (AI)
Huge amounts of chitin and chitosans can be found in the biosphere as important constituents of the exoskeleton of many organisms and as waste by worldwide seafood companies. Presently, politicians, environmentalists, and industrialists encourage the use of these marine polysaccharides as a renewable source developed by alternative eco-friendly processes, especially in the production of regular cosmetics. The aim of this review is to outline the physicochemical and biological properties and the different bioextraction methods of chitin and chitosan sources, focusing on enzymatic deproteinization, bacteria fermentation, and enzymatic deacetylation methods. Thanks to their biodegradability, non-toxicity, biocompatibility, and bioactivity, the applications of these marine polymers are widely used in the contemporary manufacturing of biomedical and pharmaceutical products. In the end, advanced cosmetics based on chitin and chitosans are presented, analyzing different therapeutic aspects regarding skin, hair, nail, and oral care. The innovative formulations described can be considered excellent candidates for the prevention and treatment of several diseases associated with different body anatomical sectors.
Key Findings
1
Advanced cosmetic formulations based on chitin and chitosans show therapeutic potential for prevention and treatment across skin, hair, nail, and oral care.
2
Chitin and chitosans are abundant in the biosphere and represent a large renewable waste resource from global seafood industries.
3
Chitin and chitosans possess biodegradability, non-toxicity, biocompatibility, and bioactivity, supporting wide use in biomedical and pharmaceutical manufacturing.
4
Eco-friendly bioextraction methods—enzymatic deproteinization, bacterial fermentation, and enzymatic deacetylation—are emphasized as alternatives to conventional processes.
Research Object
Chitin and chitosans (marine polysaccharides) used as sources/materials for cosmetic and biomedical applications
Research Subject
Their physicochemical and biological properties, eco-friendly bioextraction/deacetylation processes (enzymatic deproteinization, bacterial fermentation, enzymatic deacetylation), and applications in cosmetic science including skin, hair, nail, and oral-care therapeutic formulations
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2019-06-21
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