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International Journal of Pharmaceutical Investigation
Home»JPHI»Vol 5 Issue 1»In vitro-in vivo Evaluation of Xanthan Gum and Eudragit Inter Polyelectrolyte Complex Based Sustained Release Tablets
Vol 5 Issue 1

In vitro-in vivo Evaluation of Xanthan Gum and Eudragit Inter Polyelectrolyte Complex Based Sustained Release Tablets

December 17, 2014Updated:June 1, 20232 Mins Read
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International Journal of Pharmaceutical Investigation, 2015, 5, 1, 65-72.
DOI: 10.4103/2230-973X.147236
Published: December 2014
Type: Original Article

Authors: 

Tamal Krishna Deb
Department of Pharmaceutics, JSS College of Pharmacy, JSS University, Mysore, Karnataka, India.

B. Ramireddy
Department of Pharmaceutics, JSS College of Pharmacy, JSS University, Mysore, Karnataka, India.

Afrasim Moin
Department of Pharmaceutics, JSS College of Pharmacy, JSS University, Mysore, Karnataka, India.

H.G. Shivakumar
Department of Pharmaceutics, JSS College of Pharmacy, JSS University, Mysore, Karnataka, India.

ABSTRACT

Introduction: Polyelectrolyte complexes (PECs) are the association complexes formed between oppositely charged particles (e.g., polymer-polymer, polymer-drug and polymer-drug-polymer). These are formed due to electrostatic interaction between oppositely charged polyions. Diclofenac is a nonsteroidal anti-inflammatory drug (NSAID) advocated in use of painful and inflammatory rheumatic and certain non-rheumatic conditions. The drug has a relatively short elimination half-life, which limits the potential for drug accumulation. As an analgesic, it has a fast onset and long duration of action. Aim: invitro-invivo evaluation of Xanthan gum and Eudragit E100 inter polyelectrolyte complex based sustained release tablet. Materials and Method: Xanthan gum and Eudragit E100 were used as PEC and were prepared using different proportions i.e. in 1:1 to 1:6 ratio. The optimum ratio of E100 and XG was 1:6 used to characterize the IPC and the formulation of tablet. The tablets were prepared by wet granulation using PVP K30 as binder. Results and Discussion: FT-IR and DSC studies confirmed the formation of IPC. Scanning Electron Microscopy (SEM) studies showed highly porous tablet surface. The tablets were evaluated for hardness, weight variation, and drug content, found to be within limits. In vitro and in vivo studies concluded that tablets showed sustained release profile. The short term stability study of the optimized formulation indicated that the formulation was stable. Conclusion: Since the Poly Electrolyte Complex delay the release of the drug, it can be employed in formulating sustained release matrix tablets.

Keywords: Diclofenac sodium, Eudragit, Inter polyelectrolyte complex, Sustained release, Xanthan gum .

Original Article
Previous ArticleA Perspective Overview on Lipospheres as Lipid Carrier Systems
Next Article In vitro and in vivo Evaluation of Fast-dissolving Tablets Containing Solid Dispersion of Lamotrigine

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