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A Review on Chitosan’s Uses as Biomaterial: Tissue Engineering, Drug Delivery Systems and Cancer Treatment

Chitosan, derived from chitin, is a biopolymer consisting of arbitrarily distributed β-(1-4)-linked D-glucosamine and N-acetyl-D-glucosamine that exhibits outstanding properties— biocompatibility, biodegradability, non-toxicity, antibacterial activity, the capacity to form films, and chelating of me...

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Autores principales: de Sousa Victor, Rayssa, Marcelo da Cunha Santos, Adillys, Viana de Sousa, Bianca, de Araújo Neves, Gelmires, Navarro de Lima Santana, Lisiane, Rodrigues Menezes, Romualdo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7664280/
https://www.ncbi.nlm.nih.gov/pubmed/33171898
http://dx.doi.org/10.3390/ma13214995
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author de Sousa Victor, Rayssa
Marcelo da Cunha Santos, Adillys
Viana de Sousa, Bianca
de Araújo Neves, Gelmires
Navarro de Lima Santana, Lisiane
Rodrigues Menezes, Romualdo
author_facet de Sousa Victor, Rayssa
Marcelo da Cunha Santos, Adillys
Viana de Sousa, Bianca
de Araújo Neves, Gelmires
Navarro de Lima Santana, Lisiane
Rodrigues Menezes, Romualdo
author_sort de Sousa Victor, Rayssa
collection PubMed
description Chitosan, derived from chitin, is a biopolymer consisting of arbitrarily distributed β-(1-4)-linked D-glucosamine and N-acetyl-D-glucosamine that exhibits outstanding properties— biocompatibility, biodegradability, non-toxicity, antibacterial activity, the capacity to form films, and chelating of metal ions. Most of these peculiar properties are attributed to the presence of free protonable amino groups along the chitosan backbone, which also gives it solubility in acidic conditions. Moreover, this biopolymer can also be physically modified, thereby presenting a variety of forms to be developed. Consequently, this polysaccharide is used in various fields, such as tissue engineering, drug delivery systems, and cancer treatment. In this sense, this review aims to gather the state-of-the-art concerning this polysaccharide when used as a biomaterial, providing information about its characteristics, chemical modifications, and applications. We present the most relevant and new information about this polysaccharide-based biomaterial’s applications in distinct fields and also the ability of chitosan and its various derivatives to selectively permeate through the cancer cell membranes and exhibit anticancer activity, and the possibility of adding several therapeutic metal ions as a strategy to improve the therapeutic potential of this polymer.
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spelling pubmed-76642802020-11-14 A Review on Chitosan’s Uses as Biomaterial: Tissue Engineering, Drug Delivery Systems and Cancer Treatment de Sousa Victor, Rayssa Marcelo da Cunha Santos, Adillys Viana de Sousa, Bianca de Araújo Neves, Gelmires Navarro de Lima Santana, Lisiane Rodrigues Menezes, Romualdo Materials (Basel) Review Chitosan, derived from chitin, is a biopolymer consisting of arbitrarily distributed β-(1-4)-linked D-glucosamine and N-acetyl-D-glucosamine that exhibits outstanding properties— biocompatibility, biodegradability, non-toxicity, antibacterial activity, the capacity to form films, and chelating of metal ions. Most of these peculiar properties are attributed to the presence of free protonable amino groups along the chitosan backbone, which also gives it solubility in acidic conditions. Moreover, this biopolymer can also be physically modified, thereby presenting a variety of forms to be developed. Consequently, this polysaccharide is used in various fields, such as tissue engineering, drug delivery systems, and cancer treatment. In this sense, this review aims to gather the state-of-the-art concerning this polysaccharide when used as a biomaterial, providing information about its characteristics, chemical modifications, and applications. We present the most relevant and new information about this polysaccharide-based biomaterial’s applications in distinct fields and also the ability of chitosan and its various derivatives to selectively permeate through the cancer cell membranes and exhibit anticancer activity, and the possibility of adding several therapeutic metal ions as a strategy to improve the therapeutic potential of this polymer. MDPI 2020-11-06 /pmc/articles/PMC7664280/ /pubmed/33171898 http://dx.doi.org/10.3390/ma13214995 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
de Sousa Victor, Rayssa
Marcelo da Cunha Santos, Adillys
Viana de Sousa, Bianca
de Araújo Neves, Gelmires
Navarro de Lima Santana, Lisiane
Rodrigues Menezes, Romualdo
A Review on Chitosan’s Uses as Biomaterial: Tissue Engineering, Drug Delivery Systems and Cancer Treatment
title A Review on Chitosan’s Uses as Biomaterial: Tissue Engineering, Drug Delivery Systems and Cancer Treatment
title_full A Review on Chitosan’s Uses as Biomaterial: Tissue Engineering, Drug Delivery Systems and Cancer Treatment
title_fullStr A Review on Chitosan’s Uses as Biomaterial: Tissue Engineering, Drug Delivery Systems and Cancer Treatment
title_full_unstemmed A Review on Chitosan’s Uses as Biomaterial: Tissue Engineering, Drug Delivery Systems and Cancer Treatment
title_short A Review on Chitosan’s Uses as Biomaterial: Tissue Engineering, Drug Delivery Systems and Cancer Treatment
title_sort review on chitosan’s uses as biomaterial: tissue engineering, drug delivery systems and cancer treatment
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7664280/
https://www.ncbi.nlm.nih.gov/pubmed/33171898
http://dx.doi.org/10.3390/ma13214995
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