Picos-Corrales Lorenzo A, Morales-Burgos Ana M, Ruelas-Leyva Jose P, Crini Grégorio, García-Armenta Evangelina, Jimenez-Lam Sergio A, Ayón-Reyna Lidia E, Rocha-Alonzo Fernando, Calderón-Zamora Loranda, Osuna-Martínez Ulises, Calderón-Castro Abraham, De-Paz-Arroyo Gonzalo, Inzunza-Camacho Levy N
Facultad de Ingeniería Culiacán, Universidad Autónoma de Sinaloa, Ciudad Universitaria, Culiacán 80013, Sinaloa, Mexico.
Facultad de Ciencias Químico Biológicas, Universidad Autónoma de Sinaloa, Ciudad Universitaria, Culiacán 80013, Sinaloa, Mexico.
Polymers (Basel). 2023 Jan 19;15(3):526. doi: 10.3390/polym15030526.
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.
在公共卫生、食品生产与保存、环保(美容用)纺织品和塑料制品的开发、采用绿色技术的合成工艺以及水质改善等诸多领域,壳聚糖都能发挥调控作用。业已证明,这种生物聚合物具有诸多优势特性,如生物相容性、生物降解性、抗菌效果、粘膜粘附性、成膜能力、植物防御激发剂、凝聚 - 絮凝能力、协同效应以及与其他物质和材料搭配时的佐剂作用等。其多功能性部分归因于可电离且具有反应活性的伯氨基的存在,这些氨基能与小的无机和有机物质、大分子、离子以及细胞膜/细胞壁形成强烈的化学相互作用。因此,壳聚糖已被用于制造新材料或改变工业规模应用的传统材料的性能。鉴于全球战略主题的相关性,本综述整合了不同研究人员开展的近期研究以及关键背景信息,这些研究人员设计了在上述相关领域具有潜在应用的壳聚糖基材料。