Chitosan: A Natural Biopolymer with a Wide and Varied Range of Applications

Хитозан: природный биополимер с широким и разнообразным спектром применения
Juan Antonio Cecilia, Carmen P. Jiménez‐Gómez
2020-09-01

biocompatible biopolymerchitin deacetylationchitosanselective separationtissue engineering
Although chitin is of the most available biopolymers on Earth its uses and applications are limited due to its low solubility. The deacetylation of chitin leads to chitosan. This biopolymer, composed of randomly distributed β-(1-4)-linked D-units, has better physicochemical properties due to the facts that it is possible to dissolve this biopolymer under acidic conditions, it can adopt several conformations or structures and it can be functionalized with a wide range of functional groups to modulate its superficial composition to a specific application. Chitosan is considered a highly biocompatible biopolymer due to its biodegradability, bioadhesivity and bioactivity in such a way this biopolymer displays a wide range of applications. Thus, chitosan is a promising biopolymer for numerous applications in the biomedical field (skin, bone, tissue engineering, artificial kidneys, nerves, livers, wound healing). This biopolymer is also employed to trap both organic compounds and dyes or for the selective separation of binary mixtures. In addition, chitosan can also be used as catalyst or can be used as starting molecule to obtain high added value products. Considering these premises, this review is focused on the structure and modification of chitosan as well as its uses and applications.
1
Chitosan can trap organic compounds and dyes, selectively separate binary mixtures, function as a catalyst, and serve as a precursor for high-value products.
2
Chitosan dissolves under acidic conditions, adopts multiple conformations, and supports functionalization to tailor its surface chemistry for specific applications.
3
Chitosan is produced by deacetylating chitin, overcoming chitin’s limited applications caused by its low solubility.
4
Chitosan is promising for skin, bone, tissue-engineering, artificial-kidney, nerve, liver, and wound-healing applications.
5
Its biodegradability, bioadhesivity, and bioactivity make chitosan a highly biocompatible material with broad biomedical potential.

Chitosan (a deacetylated chitin biopolymer)

the structure, modification, properties, and wide-ranging applications of chitosan

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2020-09-01
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Juan Antonio Cecilia
Carmen P. Jiménez‐Gómez
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