壳聚糖
生物高聚物
生物相容性
生物降解
纳米技术
生化工程
环境友好型
材料科学
激发子
化学
聚合物
有机化学
工程类
生态学
生物
酶
作者
Lorenzo A. Picos‐Corrales,Ana M. Morales‐Burgos,Jose P. Ruelas‐Leyva,Grégorio Crini,Evangelina García‐Armenta,Sergio A. Jiménez‐Lam,Lidia Elena Ayón‐Reyna,Fernando Rocha-Alonzo,Loranda Calderón-Zamora,Ulises Osuna‐Martínez,Abraham Calderón-Castro,Gonzalo De-Paz-Arroyo,Levy Noé Inzunza Camacho
出处
期刊:Polymers
[MDPI AG]
日期:2023-01-19
卷期号:15 (3): 526-526
被引量:42
标识
DOI:10.3390/polym15030526
摘要
Public health, production and preservation of food, development of environmentally friendly (cosmeto-)textiles and plastics, synthesis processes using green technology, and improvement of water quality, among other domains, can be controlled with the help of chitosan. It has been demonstrated that this biopolymer exhibits advantageous properties, such as biocompatibility, biodegradability, antimicrobial effect, mucoadhesive properties, film-forming capacity, elicitor of plant defenses, coagulant-flocculant ability, synergistic effect and adjuvant along with other substances and materials. In part, its versatility is attributed to the presence of ionizable and reactive primary amino groups that provide strong chemical interactions with small inorganic and organic substances, macromolecules, ions, and cell membranes/walls. Hence, chitosan has been used either to create new materials or to modify the properties of conventional materials applied on an industrial scale. Considering the relevance of strategic topics around the world, this review integrates recent studies and key background information constructed by different researchers designing chitosan-based materials with potential applications in the aforementioned concerns.
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