Title of article :
Carboxymethyl Chitosan Nano-Fibers for Controlled Releasing 5-Fluorouracil Anticancer Drug
Author/Authors :
Raya ، Indah Departement of Chemistry - Faculty Mathematics and Natural Science - Hasanuddin University , Chupradit ، Supat Department of Occupational Therapy - Faculty of Associated Medical Sciences - Chiang Mai University , Mustafa ، Yasser Fakri Department of Pharmaceutical Chemistry - College of Pharmacy - University of Mosul , Oudaha ، Khulood H. Pharmaceutical Chemistry Department - College of Pharmacy - Al-Ayen University , Kadhim ، Mustafa M. College of technical engineering - Islamic University , Jalil ، Abduladheem Turki College of technical engineering - Islamic University , Kadhim ، Abed J. Department of Materials Engineering - Al-Nisour University , Mahmudiono ، Trias Departemen of Nutrition - Faculty of Public Health - Universitas Airlangga , Thangavelu ، Lakshmi Department of Pharmacology - Saveetha university
From page :
136
To page :
143
Abstract :
In the present study, the pH responsive electrospun carboxymethyl chitosan nanofibers were prepared via electrospinning method and cross-linked with glutaraldehyde vapor for various times up to 48 h. The controlled release of 5-Fluorouracil (5-FU) from single layer and tri-layered nanofibers (5-FU in the middle layer) was compared to obtain a sustained delivery system of 5-FU anticancer drug. The release of 5-FU from nanofibers was investigated at 37 °C under acidic pH (pH 5.5) and physiological pH (pH 7.4). The release data were fitted by zero-order, Higuchi and Korsmeyer-Peppas pharmacokinetic equations to determine the 5-FU release mechanism from nanofibers. Tri-layered nanofibers exhibited the sustained delivery of 5-FU without initial burst release during 168 and 216 h at pH=5.5 and 7.4, respectively. The initial burst release followed by sustained release of 5-FU from single layer cross-linked carboxymethyl chitosan nanofibers occurred during 48 and 60 h. The “n” constant of Korsmeyer-Peppas equation indicated the non Fickian diffusion of 5-FU from single layer nanofibers at both pH values of 5.5, pH 7.4 and tri-layered nanofibers at pH 5.5. Whereas, the Fickian diffusion of 5-FU was occurred from tri-layered nanofibers at pH 7.4. The obtained results indicated the high capability of tri-layered nanofibers for controlled release of 5-FU compared to single layer nanofibers
Keywords :
5 , Fluorouracil , Anticancer Drug , Carboxymethyl Chitosan , Nano Fibers , pH responsive , Pharmacokinetic
Journal title :
Journal of NanoStructures
Journal title :
Journal of NanoStructures
Record number :
2725939
Link To Document :
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