Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Formulation development of gastroretentive tablets of lamivudine using the floating-bioadhesive potential of optimized polymer blends

View through CrossRef
Abstract Objectives The current studies entail successful formulation of optimized gastroretentive tablets of lamivudine using the floating-bioadhesive potential of carbomers and cellulosic polymers, and their subsequent in-vitro and in-vivo evaluation in animals and humans. Methods Effervescent floating-bioadhesive hydrophilic matrices were prepared and evaluated for in-vitro drug release, floatation and ex-vivo bioadhesive strength. The optimal composition of polymer blends was systematically chosen using central composite design and overlay plots. Pharmacokinetic studies were carried out in rabbits, and various levels of in-vitro/in-vivo correlation (IVIVC) were established. In-vivo gamma scintigraphic studies were performed in human volunteers using 99mTc to evaluate formulation retention in the gastric milieu. Key findings The optimized formulation exhibited excellent bioadhesive and floatational characteristics besides possessing adequate drug-release control and pharmacokinetic extension of plasma levels. The successful establishment of various levels of IVIVC substantiated the judicious choice of in-vitro dissolution media for simulating the in-vivo conditions. In-vivo gamma scintigraphic studies ratified the gastroretentive characteristics of the optimized formulation with a retention time of 5 h or more. Conclusions Besides unravelling the polymer synergism, the study helped in developing an optimal once-a-day gastroretentive drug delivery system with improved bioavailability potential exhibiting excellent swelling, floating and bioadhesive characteristics.
Title: Formulation development of gastroretentive tablets of lamivudine using the floating-bioadhesive potential of optimized polymer blends
Description:
Abstract Objectives The current studies entail successful formulation of optimized gastroretentive tablets of lamivudine using the floating-bioadhesive potential of carbomers and cellulosic polymers, and their subsequent in-vitro and in-vivo evaluation in animals and humans.
Methods Effervescent floating-bioadhesive hydrophilic matrices were prepared and evaluated for in-vitro drug release, floatation and ex-vivo bioadhesive strength.
The optimal composition of polymer blends was systematically chosen using central composite design and overlay plots.
Pharmacokinetic studies were carried out in rabbits, and various levels of in-vitro/in-vivo correlation (IVIVC) were established.
In-vivo gamma scintigraphic studies were performed in human volunteers using 99mTc to evaluate formulation retention in the gastric milieu.
Key findings The optimized formulation exhibited excellent bioadhesive and floatational characteristics besides possessing adequate drug-release control and pharmacokinetic extension of plasma levels.
The successful establishment of various levels of IVIVC substantiated the judicious choice of in-vitro dissolution media for simulating the in-vivo conditions.
In-vivo gamma scintigraphic studies ratified the gastroretentive characteristics of the optimized formulation with a retention time of 5 h or more.
Conclusions Besides unravelling the polymer synergism, the study helped in developing an optimal once-a-day gastroretentive drug delivery system with improved bioavailability potential exhibiting excellent swelling, floating and bioadhesive characteristics.

Related Results

Formulation and In vitro Evaluation of Gastroretentive Floating Bioadhesive Tablets of Nizatidine using Factorial Design
Formulation and In vitro Evaluation of Gastroretentive Floating Bioadhesive Tablets of Nizatidine using Factorial Design
Background: The aim of the present study was to formulate and evaluate floating bioadhesive tablets of Nizatidine which is a competitive, reversible H2-receptor antagonist. Floatin...
Design of Floating HPMC Matrix Tablets: Effect of Formulation Variables on Floating Properties and Drug Release
Design of Floating HPMC Matrix Tablets: Effect of Formulation Variables on Floating Properties and Drug Release
Floating matrix tablets were designed and evaluated. Theophylline was used as a model drug. The system was prepared by mixing drug, matrix-forming polymer (hydroxypropyl methylcell...
Patient-Centric Approaches to Gastroretentive Floating Tablets: Tailoring for Diverse Clinical Needs
Patient-Centric Approaches to Gastroretentive Floating Tablets: Tailoring for Diverse Clinical Needs
Gastroretentive tablets have emerged as a promising platform for controlled drug delivery, offering the potential for prolonged gastric residence time and enhanced therapeutic outc...
Rheology of Miscible Polymer Blends
Rheology of Miscible Polymer Blends
AbstractBroadly classified, there are three types of polymer blends, namely, (1) miscible polymer blends, (2) immiscible polymer blends, and (3) partially miscible polymer blends. ...
Kajian Pengembangan Sediaan Floating Sustained Release Tablet
Kajian Pengembangan Sediaan Floating Sustained Release Tablet
Abstract. Floating sustained release tablets were developed to increase the elimination half-life and bioavailability of the drug because it is able to release the active substance...
Unpacking contemporary English blends: Morphological structure, meaning, processing
Unpacking contemporary English blends: Morphological structure, meaning, processing
<p>It is not coincidental that blend words (e. g. nutriceutical ← nutricious + pharmaceutical, blizzaster ← blizzard + disaster) are more and more often used in media sources...
Water Trash Collector
Water Trash Collector
In today day to day life, approximately 71% of the Earth's surface is covered by Without affecting significant role that technology plays in our modern world, environmental and wat...
Preparation and <i>In vitro</i> Evaluation of Theophylline Loaded Gastroretentive Floating Tablets of METHOCEL K4M
Preparation and <i>In vitro</i> Evaluation of Theophylline Loaded Gastroretentive Floating Tablets of METHOCEL K4M
This investigation describes the preparation and in vitro evaluation of gastroretentive floating tablets of theophylline. Hydrophilic polymer METHOCEL K4M was used for its gel form...

Back to Top