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Magnesium-reinforced Electrospun Synthetic-polymer Nanofibers Designed for Promoting Tissue Growth

Authors
Rafiq, MuheebRather, Anjum HamidKhan, Rumysa SaleemWani, Taha UmairKhan, Haseeb A.Alhomida, Abdullah S.Sheikh, Faheem A.
Issue Date
May-2024
Publisher
Springer
Keywords
Bone regeneration; Magnesium; Nanofibers; Tissue engineering
Citation
Journal of Bionic Engineering, v.21, no.3, pp 1412 - 1426
Pages
15
Indexed
SCIE
SCOPUS
Journal Title
Journal of Bionic Engineering
Volume
21
Number
3
Start Page
1412
End Page
1426
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/70093
DOI
10.1007/s42235-024-00495-6
ISSN
1672-6529
2543-2141
Abstract
The creation of 3D nanofibers offering desirable functions for bone regeneration is developed due to the latest improvisations to the electrospinning technique. Synthetic polymers are among the best choices for medical usage due to their lower costs, high tensile properties, and ease of spinnability compared to natural polymers. In this communication, we report a series of interventions to polymers modified with Mg-based fillers for ideal tissue engineering applications. The literature survey indicated that these filler materials (e.g., nano-sized particles) enhanced biocompatibility, antibacterial activity, tensile strength, and anti-corrosive properties. This review discusses electrospinning parameters, properties, and applications of the poly(ε-caprolactone), poly(lactic acid), poly(3-hydroxybutyric acid-co-3-hydroxy valeric acid), polyurethane, and poly(vinyl pyrrolidone) nanofibers when modified with Mg-based fillers. This report encourages researchers to use synthetic polymers with Mg as fillers and validate them for tissue engineering applications. © Jilin University 2024.
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