Development, optimization and characterization of flurbiprofen matrix transdermal drug delivery system using Box–Behnken statistical design

Abstract Background Present investigation for research was to develop matrix-type transdermal drug delivery system of flurbiprofen (FBP) with the various ratio of matrix polymers (hydrophilic and hydrophobic), the concentration of plasticizer and natural penetration enhancer by Box–Behnken statistic...

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Main Authors: Ramakant Joshi, Navneet Garud
Format: Article
Language:English
Published: SpringerOpen 2021-03-01
Series:Future Journal of Pharmaceutical Sciences
Subjects:
Online Access:https://doi.org/10.1186/s43094-021-00199-2
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spelling doaj-d35f224eee9f440a9577499b2987b2232021-03-11T12:44:07ZengSpringerOpenFuture Journal of Pharmaceutical Sciences2314-72532021-03-017111810.1186/s43094-021-00199-2Development, optimization and characterization of flurbiprofen matrix transdermal drug delivery system using Box–Behnken statistical designRamakant Joshi0Navneet Garud1School of Studies in Pharmaceutical Sciences, Jiwaji UniversitySchool of Studies in Pharmaceutical Sciences, Jiwaji UniversityAbstract Background Present investigation for research was to develop matrix-type transdermal drug delivery system of flurbiprofen (FBP) with the various ratio of matrix polymers (hydrophilic and hydrophobic), the concentration of plasticizer and natural penetration enhancer by Box–Behnken statistical design to investigate the combined outcome of selected independent variables for effective management of rheumatoid arthritis. The influence of a binary mixture of polymers, plasticizer and penetration enhancer on physicochemical considerations including thickness, tensile strength, percent elongation, weight variation, percent moisture content, percent moisture uptake, water vapour transmission rate, folding endurance, drug content, in vitro drug dissolution study and then ex vivo drug permeation study was evaluated. Results The study demonstrated that the tensile strength of films improved by matrix polymer ratio and to a slighter gradation in the rise of plasticizer and natural penetration enhancer. Ex vivo drug permeation study was accompanied via excised porcine skin as a permeation barrier in Franz diffusion cell. Ex vivo drug permeation study indicated that matrix polymer ratio (HPMC K15M:ERL100) at 3:1 and natural penetration enhancer (d-limonene) at highest concentration 7.5% w/w containing formulation FBPT7 delivered maximum flux and supplementary improved the permeation of drug. The result of the skin irritation test revealed that the developed formulation is free from any type of skin irritation effects like erythema and oedema. Conclusion Based on the findings of this research, it can be established that a well-controlled release and very effective skin penetration of the drug was accomplished by the film FBPT7 in the existence of permeation enhancers for prolonged periods.https://doi.org/10.1186/s43094-021-00199-2Transdermal drug delivery systemBox–Behnken statistical designRheumatoid arthritisFlurbiprofenNatural penetration enhancer
collection DOAJ
language English
format Article
sources DOAJ
author Ramakant Joshi
Navneet Garud
spellingShingle Ramakant Joshi
Navneet Garud
Development, optimization and characterization of flurbiprofen matrix transdermal drug delivery system using Box–Behnken statistical design
Future Journal of Pharmaceutical Sciences
Transdermal drug delivery system
Box–Behnken statistical design
Rheumatoid arthritis
Flurbiprofen
Natural penetration enhancer
author_facet Ramakant Joshi
Navneet Garud
author_sort Ramakant Joshi
title Development, optimization and characterization of flurbiprofen matrix transdermal drug delivery system using Box–Behnken statistical design
title_short Development, optimization and characterization of flurbiprofen matrix transdermal drug delivery system using Box–Behnken statistical design
title_full Development, optimization and characterization of flurbiprofen matrix transdermal drug delivery system using Box–Behnken statistical design
title_fullStr Development, optimization and characterization of flurbiprofen matrix transdermal drug delivery system using Box–Behnken statistical design
title_full_unstemmed Development, optimization and characterization of flurbiprofen matrix transdermal drug delivery system using Box–Behnken statistical design
title_sort development, optimization and characterization of flurbiprofen matrix transdermal drug delivery system using box–behnken statistical design
publisher SpringerOpen
series Future Journal of Pharmaceutical Sciences
issn 2314-7253
publishDate 2021-03-01
description Abstract Background Present investigation for research was to develop matrix-type transdermal drug delivery system of flurbiprofen (FBP) with the various ratio of matrix polymers (hydrophilic and hydrophobic), the concentration of plasticizer and natural penetration enhancer by Box–Behnken statistical design to investigate the combined outcome of selected independent variables for effective management of rheumatoid arthritis. The influence of a binary mixture of polymers, plasticizer and penetration enhancer on physicochemical considerations including thickness, tensile strength, percent elongation, weight variation, percent moisture content, percent moisture uptake, water vapour transmission rate, folding endurance, drug content, in vitro drug dissolution study and then ex vivo drug permeation study was evaluated. Results The study demonstrated that the tensile strength of films improved by matrix polymer ratio and to a slighter gradation in the rise of plasticizer and natural penetration enhancer. Ex vivo drug permeation study was accompanied via excised porcine skin as a permeation barrier in Franz diffusion cell. Ex vivo drug permeation study indicated that matrix polymer ratio (HPMC K15M:ERL100) at 3:1 and natural penetration enhancer (d-limonene) at highest concentration 7.5% w/w containing formulation FBPT7 delivered maximum flux and supplementary improved the permeation of drug. The result of the skin irritation test revealed that the developed formulation is free from any type of skin irritation effects like erythema and oedema. Conclusion Based on the findings of this research, it can be established that a well-controlled release and very effective skin penetration of the drug was accomplished by the film FBPT7 in the existence of permeation enhancers for prolonged periods.
topic Transdermal drug delivery system
Box–Behnken statistical design
Rheumatoid arthritis
Flurbiprofen
Natural penetration enhancer
url https://doi.org/10.1186/s43094-021-00199-2
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