Muhammad Zikri Aiman Zulkifli, Darman Nordin
Tissue engineering (TE) is an emerging field of study that incorporates the principles of biology, medicine, and engineering for designing biological substitutes to maintain, restore, or improve tissue functions with the goal of avoiding organ transplantation. Amongst the various scaffolding techniques, electrospinning is one of the most widely used techniques to synthesize a nanofibrous scaffold. Electrospinning as a potential tissue engineering scaffolding technique has attracted a great deal of interest and has been widely discussed in many studies. The high surface-to-volume ratio of nanofibres, coupled with their ability to fabricate scaffolds that may mimic extracellular matrices, facilitates cell migration, proliferation, adhesion, and differentiation. These are all very desirable properties for TE applications. However, despite its widespread use and distinct advantages, electrospun scaffolds suffer from two major practical limitations: poor cell penetration and poor load-bearing applications. Furthermore, electrospun scaffolds have low mechanical strength. Several solutions have been offered by various research groups to overcome these limitations. This review provides an overview of the electrospinning techniques used to synthesize nanofibres for TE applications. In addition, we describe current research on nanofibre fabrication and characterization, including the main limitations of electrospun scaffolds.
@article{dbd01de9-2e37-40dd-844e-c196357bcba9,
title={Overview of Electrospinning for Tissue E},
author={Muhammad Zikri Aiman Zulkifli and Darman Nordin},
year={2026},
language={en}
}TY - JOUR TI - Overview of Electrospinning for Tissue E AU - Muhammad Zikri Aiman Zulkifli AU - Darman Nordin PY - 2026 LA - en ER -
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