Aranaz Inmaculada, Alcántara Andrés R, Civera Maria Concepción, Arias Concepción, Elorza Begoña, Heras Caballero Angeles, Acosta Niuris
Departmento de Química en Ciencias Farmacéuticas, Universidad Complutense de Madrid, 28040 Madrid, Spain.
Instituto Pluridisciplinar, Universidad Complutense de Madrid, Paseo Juan XXIII, n 1, 28040 Madrid, Spain.
Polymers (Basel). 2021 Sep 24;13(19):3256. doi: 10.3390/polym13193256.
Chitosan has garnered much interest due to its properties and possible applications. Every year the number of publications and patents based on this polymer increase. Chitosan exhibits poor solubility in neutral and basic media, limiting its use in such conditions. Another serious obstacle is directly related to its natural origin. Chitosan is not a single polymer with a defined structure but a family of molecules with differences in their composition, size, and monomer distribution. These properties have a fundamental effect on the biological and technological performance of the polymer. Moreover, some of the biological properties claimed are discrete. In this review, we discuss how chitosan chemistry can solve the problems related to its poor solubility and can boost the polymer properties. We focus on some of the main biological properties of chitosan and the relationship with the physicochemical properties of the polymer. Then, we review two polymer applications related to green processes: the use of chitosan in the green synthesis of metallic nanoparticles and its use as support for biocatalysts. Finally, we briefly describe how making use of the technological properties of chitosan makes it possible to develop a variety of systems for drug delivery.
壳聚糖因其特性和潜在应用而备受关注。每年基于这种聚合物的出版物和专利数量都在增加。壳聚糖在中性和碱性介质中溶解度较差,限制了其在这些条件下的应用。另一个严重障碍与其天然来源直接相关。壳聚糖不是具有明确结构的单一聚合物,而是一类分子,其组成、大小和单体分布存在差异。这些特性对聚合物的生物学和技术性能有根本性影响。此外,所宣称的一些生物学特性并不明确。在本综述中,我们讨论壳聚糖化学如何解决其溶解度差的问题并提升聚合物性能。我们关注壳聚糖的一些主要生物学特性以及与聚合物物理化学性质的关系。然后,我们综述与绿色工艺相关的两种聚合物应用:壳聚糖在金属纳米颗粒绿色合成中的应用及其作为生物催化剂载体的应用。最后,我们简要描述如何利用壳聚糖的技术特性开发多种药物递送系统。