Department of Chemistry, Zakir Husain Delhi College (University of Delhi), New Delhi 110002, India.
Regional Center for Advanced Technologies and Materials, Faculty of Science, Palacky University, Slechtitelu 27, 78371 Olomouc, Czech Republic.
Int J Biol Macromol. 2020 Dec 1;164:526-539. doi: 10.1016/j.ijbiomac.2020.07.098. Epub 2020 Jul 17.
Chitin, a polysaccharide that occurs abundantly in nature after cellulose, has attracted the interest of the scientific community due to its plenty of availability and low cost. Mostly, it is derived from the exoskeleton of insects and marine crustaceans. Often, it is insoluble in common solvents that limit its applications but its deacetylated product, named chitosan is found to be soluble in protonated aqueous medium and used widely in various biomedical fields. Indeed, the existence of the primary amino group on the backbone of chitosan provides it an important feature to modify it chemically into other derivatives easily. In the present review, we present the structural properties of chitin, and its derivatives and highlighted their biomedical implications including, tissue engineering, drug delivery, diagnosis, molecular imaging, antimicrobial activity, and wound healing. We further discussed the limitations and prospects of this versatile natural polysaccharide.
壳聚糖是一种在自然界中大量存在的多糖,仅次于纤维素,由于其丰富的可用性和低成本,引起了科学界的兴趣。它主要来源于昆虫和海洋甲壳类动物的外骨骼。通常,它不溶于常见的溶剂中,这限制了它的应用,但它的脱乙酰产物壳聚糖在质子化的水介质中是可溶的,并广泛应用于各种生物医学领域。事实上,壳聚糖主链上的伯氨基赋予了它一个重要的特性,使其能够很容易地通过化学修饰转化为其他衍生物。在本综述中,我们介绍了壳聚糖及其衍生物的结构特性,并强调了它们在组织工程、药物传递、诊断、分子成像、抗菌活性和伤口愈合等生物医学领域的应用。我们进一步讨论了这种多功能天然多糖的局限性和前景。