Recent Advancements in Electrospun Chitin and Chitosan Nanofibers for Bone Tissue Engineering Applications

Author:

Ganesh S Shree1,Anushikaa Ramprasad1,Swetha Victoria Venkadesan Sri1,Lavanya Krishnaraj1,Shanmugavadivu Abinaya1,Selvamurugan Nagarajan1

Affiliation:

1. Department of Biotechnology, School of Bioengineering, College of Engineering and Technology, SRM Institute of Science and Technology, Kattankulathur 603203, India

Abstract

Treatment of large segmental bone loss caused by fractures, osteomyelitis, and non-union results in expenses of around USD 300,000 per case. Moreover, the worst-case scenario results in amputation in 10% to 14.5% of cases. Biomaterials, cells, and regulatory elements are employed in bone tissue engineering (BTE) to create biosynthetic bone grafts with effective functionalization that can aid in the restoration of such fractured bones, preventing amputation and alleviating expenses. Chitin (CT) and chitosan (CS) are two of the most prevalent natural biopolymers utilized in the fields of biomaterials and BTE. To offer the structural and biochemical cues for augmenting bone formation, CT and CS can be employed alone or in combination with other biomaterials in the form of nanofibers (NFs). When compared with several fabrication methods available to produce scaffolds, electrospinning is regarded as superior since it enables the development of nanostructured scaffolds utilizing biopolymers. Electrospun nanofibers (ENFs) offer unique characteristics, including morphological resemblance to the extracellular matrix, high surface-area-to-volume ratio, permeability, porosity, and stability. This review elaborates on the recent strategies employed utilizing CT and CS ENFs and their biocomposites in BTE. We also summarize their implementation in supporting and delivering an osteogenic response to treat critical bone defects and their perspectives on rejuvenation. The CT- and CS-based ENF composite biomaterials show promise as potential constructions for bone tissue creation.

Publisher

MDPI AG

Subject

Biomedical Engineering,Biomaterials

Reference191 articles.

1. Chitosan-coated and thymol-loaded polymeric semi-interpenetrating hydrogels: An effective platform for bioactive molecule delivery and bone regeneration in vivo;Lavanya;Biomater. Adv.,2023

2. (2023, March 18). Bone Health and Osteoporosis: A Report of the Surgeon General—PubMed, Available online: https://pubmed.ncbi.nlm.nih.gov/20945569/.

3. Bone grafts and biomaterials substitutes for bone defect repair: A review;Wang;Bioact. Mater.,2017

4. Temperature- and pH-responsive chitosan-based injectable hydrogels for bone tissue engineering;Lavanya;Mater. Sci. Eng. C,2020

5. Bone Tissue Engineering: Recent Advances and Challenges;Amini;Crit. Rev. Biomed. Eng.,2012

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