Cargando…

Microsponges based novel drug delivery system for augmented arthritis therapy

The motive behind present work was to formulate and evaluate gel containing microsponges of diclofenac diethylamine to provide prolonged release for proficient arthritis therapy. Quasi-emulsion solvent diffusion method was implied using Eudragit RS-100 and microsponges with varied drug–polymer ratio...

Descripción completa

Detalles Bibliográficos
Autores principales: Osmani, Riyaz Ali M., Aloorkar, Nagesh H., Ingale, Dipti J., Kulkarni, Parthasarathi K., Hani, Umme, Bhosale, Rohit R., Jayachandra Dev, Dandasi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4605913/
https://www.ncbi.nlm.nih.gov/pubmed/26594124
http://dx.doi.org/10.1016/j.jsps.2015.02.020
_version_ 1782395273243262976
author Osmani, Riyaz Ali M.
Aloorkar, Nagesh H.
Ingale, Dipti J.
Kulkarni, Parthasarathi K.
Hani, Umme
Bhosale, Rohit R.
Jayachandra Dev, Dandasi
author_facet Osmani, Riyaz Ali M.
Aloorkar, Nagesh H.
Ingale, Dipti J.
Kulkarni, Parthasarathi K.
Hani, Umme
Bhosale, Rohit R.
Jayachandra Dev, Dandasi
author_sort Osmani, Riyaz Ali M.
collection PubMed
description The motive behind present work was to formulate and evaluate gel containing microsponges of diclofenac diethylamine to provide prolonged release for proficient arthritis therapy. Quasi-emulsion solvent diffusion method was implied using Eudragit RS-100 and microsponges with varied drug–polymer ratios were prepared. For the sake of optimization, diverse factors affecting microparticles physical properties were too investigated. Microsponges were characterized by SEM, DSC, FT-IR, XRPD and particle size analysis, and evaluated for morphology, drug loading, in vitro drug release and ex vivo diffusion as well. There were no chemical interactions between drug and polymers used as revealed by compatibility studies outcomes. The drug polymer ratio reflected notable effect on drug content, encapsulation efficiency and particle size. SEM results revealed spherical microsponges with porous surface, and had 7.21 μm mean particle size. The microsponges were then incorporated in gel; which exhibited viscous modulus along with pseudoplastic behavior. In vitro drug release results depicted that microsponges with 1:2 drug–polymer ratio were more efficient to give extended drug release of 75.88% at the end of 8 h; while conventional formulation get exhausted incredibly earlier by releasing 81.11% drug at the end of 4 h only. Thus the formulated microsponge-based gel of diclofenac diethylamine would be a promising alternative to conventional therapy for safer and efficient treatment of arthritis and musculoskeletal disorders.
format Online
Article
Text
id pubmed-4605913
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-46059132015-11-20 Microsponges based novel drug delivery system for augmented arthritis therapy Osmani, Riyaz Ali M. Aloorkar, Nagesh H. Ingale, Dipti J. Kulkarni, Parthasarathi K. Hani, Umme Bhosale, Rohit R. Jayachandra Dev, Dandasi Saudi Pharm J Original Article The motive behind present work was to formulate and evaluate gel containing microsponges of diclofenac diethylamine to provide prolonged release for proficient arthritis therapy. Quasi-emulsion solvent diffusion method was implied using Eudragit RS-100 and microsponges with varied drug–polymer ratios were prepared. For the sake of optimization, diverse factors affecting microparticles physical properties were too investigated. Microsponges were characterized by SEM, DSC, FT-IR, XRPD and particle size analysis, and evaluated for morphology, drug loading, in vitro drug release and ex vivo diffusion as well. There were no chemical interactions between drug and polymers used as revealed by compatibility studies outcomes. The drug polymer ratio reflected notable effect on drug content, encapsulation efficiency and particle size. SEM results revealed spherical microsponges with porous surface, and had 7.21 μm mean particle size. The microsponges were then incorporated in gel; which exhibited viscous modulus along with pseudoplastic behavior. In vitro drug release results depicted that microsponges with 1:2 drug–polymer ratio were more efficient to give extended drug release of 75.88% at the end of 8 h; while conventional formulation get exhausted incredibly earlier by releasing 81.11% drug at the end of 4 h only. Thus the formulated microsponge-based gel of diclofenac diethylamine would be a promising alternative to conventional therapy for safer and efficient treatment of arthritis and musculoskeletal disorders. Elsevier 2015-10 2015-03-07 /pmc/articles/PMC4605913/ /pubmed/26594124 http://dx.doi.org/10.1016/j.jsps.2015.02.020 Text en © 2015 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Osmani, Riyaz Ali M.
Aloorkar, Nagesh H.
Ingale, Dipti J.
Kulkarni, Parthasarathi K.
Hani, Umme
Bhosale, Rohit R.
Jayachandra Dev, Dandasi
Microsponges based novel drug delivery system for augmented arthritis therapy
title Microsponges based novel drug delivery system for augmented arthritis therapy
title_full Microsponges based novel drug delivery system for augmented arthritis therapy
title_fullStr Microsponges based novel drug delivery system for augmented arthritis therapy
title_full_unstemmed Microsponges based novel drug delivery system for augmented arthritis therapy
title_short Microsponges based novel drug delivery system for augmented arthritis therapy
title_sort microsponges based novel drug delivery system for augmented arthritis therapy
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4605913/
https://www.ncbi.nlm.nih.gov/pubmed/26594124
http://dx.doi.org/10.1016/j.jsps.2015.02.020
work_keys_str_mv AT osmaniriyazalim microspongesbasednoveldrugdeliverysystemforaugmentedarthritistherapy
AT aloorkarnageshh microspongesbasednoveldrugdeliverysystemforaugmentedarthritistherapy
AT ingalediptij microspongesbasednoveldrugdeliverysystemforaugmentedarthritistherapy
AT kulkarniparthasarathik microspongesbasednoveldrugdeliverysystemforaugmentedarthritistherapy
AT haniumme microspongesbasednoveldrugdeliverysystemforaugmentedarthritistherapy
AT bhosalerohitr microspongesbasednoveldrugdeliverysystemforaugmentedarthritistherapy
AT jayachandradevdandasi microspongesbasednoveldrugdeliverysystemforaugmentedarthritistherapy