Electrospun nanofibers: Exploring process parameters, polymer selection, and recent applications in pharmaceuticals and drug delivery

被引:104
作者
Abdulhussain, Rand [1 ]
Adebisi, Adeola [1 ]
Conway, Barbara R. [1 ]
Asare-Addo, Kofi [1 ]
机构
[1] Univ Huddersfield, Dept Pharm, Huddersfield HD1 3DH, England
关键词
Nanofibers; Fibers; Electrospinning; Drug delivery; Parameters; Polymers; IN-VIVO EVALUATION; SOLID DISPERSIONS; NATURAL POLYMERS; POLYCAPROLACTONE NANOFIBERS; MECHANICAL-PROPERTIES; BENDING INSTABILITY; RELATIVE-HUMIDITY; CELLULOSE-ACETATE; FIBER FORMATION; WOUND CARE;
D O I
10.1016/j.jddst.2023.105156
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Electrospinning is acknowledged as a versatile technique for producing polymer nanofibers. Various methods, such as template synthesis, self-assembly, phase separation, and drawing, have been employed to create nanofibers. However, due to its simplicity, adaptability, and the inherently high surface area-to-volume ratio in electrospun fibers, electrospinning has emerged as the most suitable method for nanofiber fabrication. This review delves into the mechanisms of nanofiber techniques and establishes how electrospinning overcomes the challenges presented by other nanofabrication methods. The review explores the principles of electrospinning, processing parameters, and their effects on resulting fibers. It also discusses the properties and selection of polymers used in electrospinning, highlighting various polymer types commonly employed in pharmaceutical applications. Additionally, the review covers different types of electrospinning and their configurations, discussing their impact on drug release profiles, along with their respective advantages and disadvantages. The recent applications of electrospinning in enhancing pharmaceutical outcomes are examined, addressing crucial aspects in the pharmaceutical field, such as improving dissolution rates, masking undesirable tastes, and enabling drug delivery through various systems. In summary, this article provides a comprehensive understanding of electrospinning and its pivotal role in advancing drug delivery approaches.
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页数:24
相关论文
共 290 条
[1]   Electrospun hybrid nanofibers: Fabrication, characterization, and biomedical applications [J].
Abadi, Banafshe ;
Goshtasbi, Nazanin ;
Bolourian, Saman ;
Tahsili, Jaleh ;
Adeli-Sardou, Mahboubeh ;
Forootanfar, Hamid .
FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2022, 10
[2]   Utilising Co-Axial Electrospinning as a Taste-Masking Technology for Paediatric Drug Delivery [J].
Abdelhakim, Hend E. ;
Coupe, Alastair ;
Tuleu, Catherine ;
Edirisinghe, Mohan ;
Craig, Duncan Q. M. .
PHARMACEUTICS, 2021, 13 (10)
[3]  
Abunahel B., 2018, EFFECT NEEDLE DIAMET
[4]   A review on electrospinning for membrane fabrication: Challenges and applications [J].
Ahmed, Farah Ejaz ;
Lalia, Boor Singh ;
Hashaikeh, Raed .
DESALINATION, 2015, 356 :15-30
[5]   Ocular Drug Delivery: a Comprehensive Review [J].
Ahmed, Sadek ;
Amin, Maha M. ;
Sayed, Sinar .
AAPS PHARMSCITECH, 2023, 24 (02)
[6]  
Al-Hazeem N. Z. A., 2018, NOVEL NANOMATERIALS, P191
[7]   Electrospinning composite nanofibers of polyacrylonitrile/synthetic Na-montmorillonite [J].
Almuhamed, Sliman ;
Bonne, Magali ;
Khenoussi, Nabyl ;
Brendle, Jocelyne ;
Schacher, Laurence ;
Lebeau, Benedicte ;
Adolphe, Dominique C. .
JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2016, 35 :146-152
[8]   Prediction of the skin permeability of topical drugs using in silico and in vitro models [J].
Alonso, Cristina ;
Carrer, Victor ;
Espinosa, Sonia ;
Zanuy, Miriam ;
Cordoba, Monica ;
Vidal, Bernat ;
Dominguez, Maria ;
Godessart, Nuria ;
Coderch, Luisa ;
Pont, Merce .
EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES, 2019, 136
[9]   A THEORETICAL BASIS FOR A BIOPHARMACEUTIC DRUG CLASSIFICATION - THE CORRELATION OF IN-VITRO DRUG PRODUCT DISSOLUTION AND IN-VIVO BIOAVAILABILITY [J].
AMIDON, GL ;
LENNERNAS, H ;
SHAH, VP ;
CRISON, JR .
PHARMACEUTICAL RESEARCH, 1995, 12 (03) :413-420
[10]   Optimization of Chitosan-Gelatin Nanofibers Production: Investigating the Effect of Solution Properties and Working Parameters on Fibers Diameter [J].
Amiri N. ;
Rozbeh Z. ;
Afrough T. ;
Sajadi Tabassi S.A. ;
Moradi A. ;
Movaffagh J. .
BioNanoScience, 2018, 8 (03) :778-789