Sodium Alginate with PEG/PEO Blends as a Floating Drug Delivery Carrier – In vitro Evaluation

Purpose: Floating drug delivery system reduces the quantity of drug intake and the risk of overloading the organs with excess drug. Methods: In the present study, we prepared the blends of sodium alginate with polyethylene glycol (PEG) and polyethylene oxide (PEO) as a matrix, sodium hydrogen carbon...

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Main Authors: Christe Sonia Mary, Sasikumar Swamiappan
Format: Article
Language:English
Published: Tabriz University of Medical Sciences 2016-09-01
Series:Advanced Pharmaceutical Bulletin
Subjects:
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spelling doaj-1566ad4b506641fdbb62766fea61639f2020-11-25T01:26:20ZengTabriz University of Medical Sciences Advanced Pharmaceutical Bulletin2228-58812251-73082016-09-016343544210.15171/apb.2016.056APB_843_20160616221928Sodium Alginate with PEG/PEO Blends as a Floating Drug Delivery Carrier – In vitro EvaluationChriste Sonia Mary0Sasikumar Swamiappan1Department of Chemistry, School of Advanced Sciences, VIT University, Vellore-632014, Tamil Nadu, India.Department of Chemistry, School of Advanced Sciences, VIT University, Vellore-632014, Tamil Nadu, India.Purpose: Floating drug delivery system reduces the quantity of drug intake and the risk of overloading the organs with excess drug. Methods: In the present study, we prepared the blends of sodium alginate with polyethylene glycol (PEG) and polyethylene oxide (PEO) as a matrix, sodium hydrogen carbonate as a pore forming agent, methyl cellulose as a binder and barium chloride containing 10% acetic acid as a hardening agent. Different ratios of pore forming agent to the polymer blend was used to prepare the floating beads with different porosity and morphology. Ciprofloxacin hydrochloride was used as a model drug for the release kinetics studies. Results: The beads were characterized by optical and FESEM microscopy to study the morphology and pore dimensions. The results obtained shows decrease in beads size with increase in the concentration of the pore forming agent. The swelling properties of the beads were found to be in the range of 80% to 125%. The release kinetics of the ciprofloxacin from the beads was measured by UV-Visible spectroscopy at λmax of 278nm and the results shows for highly porous beads. Conclusion: By varying the amount of alginate and pore forming agent the release kinetics is found to get altered. As a result, ciprofloxacin hydrochloride release is found to be sustained from the blended beads.Ciprofloxacin hydrochlorideFloating drug delivery systemPolyethylene glycolPolyethylene oxideSodium alginateSodium bicarbonate
collection DOAJ
language English
format Article
sources DOAJ
author Christe Sonia Mary
Sasikumar Swamiappan
spellingShingle Christe Sonia Mary
Sasikumar Swamiappan
Sodium Alginate with PEG/PEO Blends as a Floating Drug Delivery Carrier – In vitro Evaluation
Advanced Pharmaceutical Bulletin
Ciprofloxacin hydrochloride
Floating drug delivery system
Polyethylene glycol
Polyethylene oxide
Sodium alginate
Sodium bicarbonate
author_facet Christe Sonia Mary
Sasikumar Swamiappan
author_sort Christe Sonia Mary
title Sodium Alginate with PEG/PEO Blends as a Floating Drug Delivery Carrier – In vitro Evaluation
title_short Sodium Alginate with PEG/PEO Blends as a Floating Drug Delivery Carrier – In vitro Evaluation
title_full Sodium Alginate with PEG/PEO Blends as a Floating Drug Delivery Carrier – In vitro Evaluation
title_fullStr Sodium Alginate with PEG/PEO Blends as a Floating Drug Delivery Carrier – In vitro Evaluation
title_full_unstemmed Sodium Alginate with PEG/PEO Blends as a Floating Drug Delivery Carrier – In vitro Evaluation
title_sort sodium alginate with peg/peo blends as a floating drug delivery carrier – in vitro evaluation
publisher Tabriz University of Medical Sciences
series Advanced Pharmaceutical Bulletin
issn 2228-5881
2251-7308
publishDate 2016-09-01
description Purpose: Floating drug delivery system reduces the quantity of drug intake and the risk of overloading the organs with excess drug. Methods: In the present study, we prepared the blends of sodium alginate with polyethylene glycol (PEG) and polyethylene oxide (PEO) as a matrix, sodium hydrogen carbonate as a pore forming agent, methyl cellulose as a binder and barium chloride containing 10% acetic acid as a hardening agent. Different ratios of pore forming agent to the polymer blend was used to prepare the floating beads with different porosity and morphology. Ciprofloxacin hydrochloride was used as a model drug for the release kinetics studies. Results: The beads were characterized by optical and FESEM microscopy to study the morphology and pore dimensions. The results obtained shows decrease in beads size with increase in the concentration of the pore forming agent. The swelling properties of the beads were found to be in the range of 80% to 125%. The release kinetics of the ciprofloxacin from the beads was measured by UV-Visible spectroscopy at λmax of 278nm and the results shows for highly porous beads. Conclusion: By varying the amount of alginate and pore forming agent the release kinetics is found to get altered. As a result, ciprofloxacin hydrochloride release is found to be sustained from the blended beads.
topic Ciprofloxacin hydrochloride
Floating drug delivery system
Polyethylene glycol
Polyethylene oxide
Sodium alginate
Sodium bicarbonate
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AT sasikumarswamiappan sodiumalginatewithpegpeoblendsasafloatingdrugdeliverycarrierinvitroevaluation
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