J Pelipenko, P Kocbek, J Kristl - International journal of pharmaceutics, 2015 - Elsevier
The electrospinning technique for nanofiber production has opened new and interesting opportunities for tissue regeneration and treatment, because they allow biomimetic supports …
YJ Son, WJ Kim, HS Yoo - Archives of pharmacal research, 2014 - Springer
Electrospun nanofiber drug delivery systems have been studied using various techniques. Herein, we describe the fabrication of a drug-incorporating nanofiber. Drugs, such as …
Electrospinning is historically related to tissue engineering due to its ability to produce nano- /microscale fibrous materials with mechanical and functional properties that are extremely …
Worldwide research on electrospinning enabled it as a versatile technique for producing nanofibers with specified physio-chemical characteristics suitable for diverse biomedical …
V Agrahari, V Agrahari, AK Mitra - Therapeutic delivery, 2016 - Taylor & Francis
Macromolecules (proteins/peptides) have the potential for the development of new therapeutics. Due to their specific mechanism of action, macromolecules can be …
Chitosan exhibits outstanding properties, which allow a wide range of applications. For this reason, chitosan-based biomaterials have been developed over the years and, among …
RI Reda, MM Wen, AH El-Kamel - International journal of …, 2017 - Taylor & Francis
Purpose The purpose of this study was to formulate ketoprofen (KET)-loaded Eudragit L and Eudragit S nanofibers (NFs) by the electrospinning technique for buccal administration to …
Electrospinning is a method which produces various nanofiber scaffolds for different tissues was attractive for researchers. Nanofiber scaffolds could be made from several biomaterials …
R Malik, T Garg, AK Goyal, G Rath - Journal of Drug Targeting, 2015 - Taylor & Francis
Background: Conventional oral dosage forms exhibit poor/low bioavailability due to incomplete release of drug and short residence time at the absorption site. Gastro-retentive …