Transferrin-targeted poly(butylene adipate)/terephthalate nanoparticles for targeted delivery of 5-fluorouracil in HT29 colorectal cancer cell line

(2017) Transferrin-targeted poly(butylene adipate)/terephthalate nanoparticles for targeted delivery of 5-fluorouracil in HT29 colorectal cancer cell line. Journal of Bioactive and Compatible Polymers. pp. 503-527. ISSN 0883-9115

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Abstract

The purpose of this study was to design 5-fluorouracil-loaded poly(butylene adipate)/terephthalate (Ecoflex((R))) nanoparticles for targeting colorectal cancer. The nanoparticles were prepared by emulsification-solvent evaporation method and optimized by a full factorial design. The effects of polymer and surfactant concentration, surfactant type, and stirrer rate were studied on the particle size, zeta potential, loading efficiency, and release efficiency of nanoparticles. For production of targeted nanoparticles, chitosan was conjugated to transferrin which was then coated on the surface of Ecoflex nanoparticles via electrostatic interactions. The conjugation of transferrin/chitosan was verified by Fourier transform infrared spectroscopy, ultraviolet spectroscopy, and SDS-PAGE (sodium dodecyl sulfate-polyacrylamide gel electrophoresis) methods and quantified by ultraviolet spectroscopy assay. The cytotoxicity of 5-fluorouracil loaded in targeted and non-targeted nanoparticles was studied on human colon adenocarcinomacellline (HT29), Michigan Cancer Foundation-7 (MCF-7), and human umbilical vein endothelial cells using MTT (thiazolyl blue tetrazolium bromide) assay. The best results were obtained from nanoparticles prepared by 0.2 of the polymer, 2 of Tween 20, and stirrer speed of 17,500r/min. The successful conjugation of transferrin/chitosan was confirmed by Fourier transform infrared spectrum and SDS-PAGE results and was about 80. The targeted nanoparticles showed significantly more cytotoxic effects on HT29 cells compared to free 5-fluorouracil and non-targeted nanoparticles. Blocking transferrin receptors resulted in a significantly higher cell survival for targeted nanoparticles which confirmed receptor-mediated cellular uptake of targeted nanoparticles.

Item Type: Article
Keywords: 5-fluorouracil transferrin receptors ecoflex nanoparticles colorectal cancer paclitaxel-loaded nanoparticles solid-lipid nanoparticles blood-brain-barrier in-vitro release drug-delivery colon-cancer therapeutic agents soluble drugs tumor-cells receptor
Divisions: Faculty of Pharmacy and Pharmaceutical Sciences > Department of Pharmaceutical Biotechnology
Faculty of Pharmacy and Pharmaceutical Sciences > Department of Pharmacotherapy
Novel Drug Delivery Systems Research Center
Page Range: pp. 503-527
Journal or Publication Title: Journal of Bioactive and Compatible Polymers
Journal Index: ISI
Volume: 32
Number: 5
Identification Number: https://doi.org/10.1177/0883911517690756
ISSN: 0883-9115
Depositing User: مهندس مهدی شریفی
URI: http://eprints.mui.ac.ir/id/eprint/325

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