Electrospinning for Biomedical Applications: An Overview of Material Fabrication Techniques

This review examines recent methodologies for fabricating nonwoven polymer materials through electrospinning, focusing on the underlying physical principles, including the effects of external parameters, experimental conditions, material selection, and primary operational mechanisms. Potential appli...

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Main Authors: Anastasiia D. Tsareva, Valeriia S. Shtol, Dmitriy V. Klinov, Dimitri A. Ivanov
Format: Article
Language:English
Published: MDPI AG 2025-01-01
Series:Surfaces
Subjects:
Online Access:https://www.mdpi.com/2571-9637/8/1/7
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author Anastasiia D. Tsareva
Valeriia S. Shtol
Dmitriy V. Klinov
Dimitri A. Ivanov
author_facet Anastasiia D. Tsareva
Valeriia S. Shtol
Dmitriy V. Klinov
Dimitri A. Ivanov
author_sort Anastasiia D. Tsareva
collection DOAJ
description This review examines recent methodologies for fabricating nonwoven polymer materials through electrospinning, focusing on the underlying physical principles, including the effects of external parameters, experimental conditions, material selection, and primary operational mechanisms. Potential applications of electrospun polymer matrices in tissue engineering are analyzed, with particular emphasis on their utility in biomedical contexts. Key challenges in incorporating new materials into biomedical devices are discussed, along with recent advances in electrospinning techniques driving innovation in this field.
format Article
id doaj-art-34ffad35fa2b4d0ebde4a93913325898
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issn 2571-9637
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publisher MDPI AG
record_format Article
series Surfaces
spelling doaj-art-34ffad35fa2b4d0ebde4a939133258982025-08-20T01:48:58ZengMDPI AGSurfaces2571-96372025-01-0181710.3390/surfaces8010007Electrospinning for Biomedical Applications: An Overview of Material Fabrication TechniquesAnastasiia D. Tsareva0Valeriia S. Shtol1Dmitriy V. Klinov2Dimitri A. Ivanov3Department of Genetics and Life Sciences, Sirius University of Science and Technology, Olympic Ave., 1., Sirius Federal Territory, 354340 Krasnodar, RussiaDepartment of Genetics and Life Sciences, Sirius University of Science and Technology, Olympic Ave., 1., Sirius Federal Territory, 354340 Krasnodar, RussiaDepartment of Genetics and Life Sciences, Sirius University of Science and Technology, Olympic Ave., 1., Sirius Federal Territory, 354340 Krasnodar, RussiaDepartment of Genetics and Life Sciences, Sirius University of Science and Technology, Olympic Ave., 1., Sirius Federal Territory, 354340 Krasnodar, RussiaThis review examines recent methodologies for fabricating nonwoven polymer materials through electrospinning, focusing on the underlying physical principles, including the effects of external parameters, experimental conditions, material selection, and primary operational mechanisms. Potential applications of electrospun polymer matrices in tissue engineering are analyzed, with particular emphasis on their utility in biomedical contexts. Key challenges in incorporating new materials into biomedical devices are discussed, along with recent advances in electrospinning techniques driving innovation in this field.https://www.mdpi.com/2571-9637/8/1/7electrospinningbiodegradable polymersnanofiberstissue engineeringregenerative medicinepolymer scaffold
spellingShingle Anastasiia D. Tsareva
Valeriia S. Shtol
Dmitriy V. Klinov
Dimitri A. Ivanov
Electrospinning for Biomedical Applications: An Overview of Material Fabrication Techniques
Surfaces
electrospinning
biodegradable polymers
nanofibers
tissue engineering
regenerative medicine
polymer scaffold
title Electrospinning for Biomedical Applications: An Overview of Material Fabrication Techniques
title_full Electrospinning for Biomedical Applications: An Overview of Material Fabrication Techniques
title_fullStr Electrospinning for Biomedical Applications: An Overview of Material Fabrication Techniques
title_full_unstemmed Electrospinning for Biomedical Applications: An Overview of Material Fabrication Techniques
title_short Electrospinning for Biomedical Applications: An Overview of Material Fabrication Techniques
title_sort electrospinning for biomedical applications an overview of material fabrication techniques
topic electrospinning
biodegradable polymers
nanofibers
tissue engineering
regenerative medicine
polymer scaffold
url https://www.mdpi.com/2571-9637/8/1/7
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AT dmitriyvklinov electrospinningforbiomedicalapplicationsanoverviewofmaterialfabricationtechniques
AT dimitriaivanov electrospinningforbiomedicalapplicationsanoverviewofmaterialfabricationtechniques