Electrospun Scaffolds for Tissue Engineering: A Review

Author:

Flores-Rojas Guadalupe Gabriel123ORCID,Gómez-Lazaro Bélen2,López-Saucedo Felipe2ORCID,Vera-Graziano Ricardo3ORCID,Bucio Emilio2ORCID,Mendizábal Eduardo1

Affiliation:

1. Department of Chemistry and Chemical Engineering, University Center for Exact Sciences and Engineering, University of Guadalajara, Guadalajara 44430, Jalisco, Mexico

2. Department of Radiation Chemistry and Radiochemistry, Institute of Nuclear Sciences, National Autonomous University of Mexico, Mexico City 04510, Mexico, Mexico

3. Institute of Materials Research, National Autonomous University of Mexico, Mexico City 04510, Mexico, Mexico

Abstract

Tissue engineering and regenerative medicine have emerged as innovative approaches to enhance clinical outcomes by addressing tissue lesions and degenerations that can significantly impair organ function. Since human tissues have limited regenerative capacity, the field of regenerative medicine aims to restore damaged tissues and their functionalities. Recent decades have witnessed remarkable progress in materials science, tissue engineering, and medicine, leading to the development of regenerative engineering. This interdisciplinary field has revolutionized the production of artificial matrices, enabling the design of anatomically accurate structures with enhanced biocompatibility, bioabsorption, and cell adhesion. Among the techniques utilized for fabricating cellular scaffolds, the electrospinning of fibers stands out as an ideal approach due to its ability to mimic the characteristics of the extracellular matrix (ECM). Electrospun scaffolds exhibit distinct advantages, including a high surface area-to-volume ratio, exceptional porosity, uniformity, compositional diversity, structural flexibility, and the ease of functionalization with bioactive molecules for controlled release. These versatile properties allow for the creation of nanofiber scaffolds that closely resemble the architecture of the ECM. Consequently, they facilitate the transport of nutrients and oxygen to cells as well as the incorporation of growth factors to stimulate cell growth. These advancements open up a wide range of applications in the field of regenerative medicine.

Publisher

MDPI AG

Subject

Computer Networks and Communications,Hardware and Architecture,Software

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