Future University In Egypt (FUE)

Staff Research

Paper Title :
Author : Azza Ahmed
CoAuthors : Salama, A.H., Mahmoud, A.A., Kamel, R.
Source : AAPS PharmSciTech
Date of Publication : 01/2015
Abstract : Our objective was to prepare nanoparticulate system using a simple yet attractive innovated method as an ophthalmic delivery system for fluocinolone acetonide to improve its ocular bioavailability. Poly(lactic-co-glycolic acid) (PLGA) nanoparticles were prepared by adopting thin film hydration method using PLGA/poloxamer 407 in weight ratios of 1:5 and 1:10. PLGA was used in 75/25 and 50/50 copolymer molar ratio of DL-lactide/glycolide. Results revealed that using PLGA with lower glycolic acid monomer ratio exhibited high particle size (PS), zeta potential (ZP) and drug encapsulation efficiency (EE) values with slow drug release pattern. Also, doubling the drug concentration during nanoparticles preparation ameliorated its EE to reach almost 100%. Furthermore, studies for separating the un-entrapped drug in nanoparticles using centrifugation method at 20,000 rpm for 30 min showed that the separated clear supernatant contained nanoparticles encapsulating an important drug amount. Therefore, separation of un-entrapped drug was carried out by filtrating the preparation using 20-25 μm pore size filter paper to avoid drug loss. Aiming to increase the PLGA nanoparticles mucoadhesion ability, surface modification of selected formulation was done using different amount of stearylamine and chitosan HCl. Nanoparticles coated with 0.1% w/v chitosan HCl attained most suitable results of PS, ZP and EE values as well as high drug release properties. Transmission electron microphotographs illustrated the deposition of chitosan molecules on the nanoparticles surfaces. Pharmacokinetic studies on Albino rabbit's eyes using HPLC indicated that the prepared novel chitosan-coated PLGA nanoparticles subjected to separation by filtration showed rapid and extended drug delivery to the eye
Download PDF
BACK
  • Research Centers

    With the growing emphasis on collaborative and interdisciplinary science, Research Centers have become indispensable to highly ranked universities. They gain their importance from the outstanding role they play in enhancing the academic activities, in general, and post graduate reputation and scientific ranking in particular. Realizing this fact, Future University in Egypt (FUE) have decided and allocated sufficient funds and infrastructure to establish FUE Research Center (FUERC) having the following vision, mission, and goals

    read more
  • Continuing Education

    Future University in Egypt’s Department of Continuing Education (DCE) is dedicated to bridging the gap between the capabilities

    read more
  • FUE Pharmaceutical Factory

    The Future Factory for Industrial Training’s (FFIT) aim is to be recognized for its unique training facility as well as its advanced techniques. As a result, we established a training pharmaceutical plant, that provides an actual simulation of an industrial atmosphere with the processes and procedures that take place in the manufacturing world.

    read more
  • FUE Dental Hospital

    FUE has maintained a highly reputable dental faculty over the years, therefore the development of the Dental Hospital is a step towards the FUE goal of providing the best dental academic programs

    read more
Community service unit at Faculty of Pharmaceutical Sciences and Pharmaceutical Industries, launches Q&A about Covid-19.

Community service unit at Faculty of Pharmaceutical Sciences and Pharmaceutical Industries, launches Q&A about Covid-19.

COVID-19 Awareness
FUEscientificJournals

VISIT FUE

Take a step to<br>Future<br>For a better future

Address

End of 90th St., Fifth Settlement,
New Cairo, Egypt

Hotline

Inside Egypt: 16383 (16FUE)

Outside Egypt: +20216383, +2026186100

Copyright © 2023 [Future University in Egypt]. All rights reserved.