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
Graduate Program in Materials Science and Engineering, Laboratory of Materials Technology (LTM), Federal University of Campina Grande, Campina Grande 58429-900, Brazil.
Laboratory of Materials Technology (LTM), Department of Materials Engineering, Federal University of Campina Grande, Campina Grande 58429-900, Brazil.
Materials (Basel). 2020 Nov 6;13(21):4995. doi: 10.3390/ma13214995.
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.
壳聚糖由几丁质衍生而来,是一种生物聚合物,由任意分布的β-(1-4)-连接的D-葡萄糖胺和N-乙酰-D-葡萄糖胺组成,具有卓越的性能——生物相容性、生物降解性、无毒性、抗菌活性、成膜能力以及金属离子螯合能力。这些独特性能大多归因于壳聚糖主链上存在可质子化的游离氨基,这也使其在酸性条件下具有溶解性。此外,这种生物聚合物还可进行物理改性,从而呈现出多种有待开发的形式。因此,这种多糖被应用于多个领域,如组织工程、药物递送系统和癌症治疗。从这个意义上讲,本综述旨在收集有关这种多糖作为生物材料时的最新进展,提供其特性、化学改性及应用方面的信息。我们展示了有关这种基于多糖的生物材料在不同领域应用的最相关和最新信息,以及壳聚糖及其各种衍生物选择性透过癌细胞膜并表现出抗癌活性的能力,还有添加几种治疗性金属离子作为提高这种聚合物治疗潜力策略的可能性。