Jafari Taha, Naghib Seyed Morteza, Mozafari M R
Nanotechnology Department, School of Advanced Technologies, Iran University of Science and Technology (IUST), Tehran, 1684613114, Iran.
Australasian Nanoscience and Nanotechnology Initiative (ANNI), Monash University LPO, Monash Institute of Medical Research, Clayton, VIC 3168, Australia.
Curr Org Synth. 2025;22(4):457-480. doi: 10.2174/0115701794307242240612075648.
The biopolymer chitosan, which is derived from chitin, has shown great promise for tissue regeneration and regulated drug delivery. Its broad-spectrum antibacterial action, low toxicity, biocompatibility, and many other attributes make it appealing for use in biomedical applications. Crucially, chitosan may be synthesized into a range of forms that can be customized to provide desired results, such as hydrogels, membranes, scaffolds, and nanoparticles. Hydrogels that are biocompatible and self-healing are innovative soft materials with considerable potential for use in biomedical applications. Hydrogels that self-heal using chitosan, which are mostly made by dynamic imine linkages, have gained a lot of interest because of their great biocompatibility, moderate preparation requirements, and capacity to mend themselves in a physiological setting. In this study, a summary of the applications of chitosan-based self-healing hydrogels in bone, cartilage, and tooth tissue regeneration and drug delivery is provided. Lastly, we have mentioned the difficulties and potential outcomes for the biomedical field's creation of hydrogels based on chitosan that can mend themselves.
由几丁质衍生而来的生物聚合物壳聚糖在组织再生和药物控释方面显示出巨大潜力。其广谱抗菌作用、低毒性、生物相容性以及许多其他特性使其在生物医学应用中颇具吸引力。至关重要的是,壳聚糖可以被合成为一系列能够定制以提供所需结果的形式,如水凝胶、膜、支架和纳米颗粒。具有生物相容性和自愈能力的水凝胶是具有相当大生物医学应用潜力的新型软材料。利用壳聚糖实现自愈的水凝胶大多通过动态亚胺键制成,因其具有良好的生物相容性、适度的制备要求以及在生理环境中自我修复的能力而备受关注。在本研究中,提供了基于壳聚糖的自愈水凝胶在骨、软骨和牙齿组织再生以及药物递送方面的应用综述。最后,我们提到了生物医学领域制备可自愈的基于壳聚糖的水凝胶所面临的困难和潜在成果。