A coated matrix tablet formulation has been used to develop controlled release diltiazem HCl (DIL) tablets. The developed drug delivery system provided prolonged drug release rates over a defined period of time. DIL tablets prepared using dry mixing and direct compression and the core consisted of hydrophilic and hydrophobic polymers such as hydroxypropylmethylcellulose (HPMC), Eudragits RLPO/RSPO, microcrystalline cellulose, and lactose. Tablets were coated with Eudragit NE 30D, and the influence of varying the inert hydrophobic polymers and the amount of the coating polymer were investigated. The release profile of the developed formulation was described by the Higuchi model. Stability trials up to 6 months displayed excellent reproducibi...
The purpose of the present research work was develop once-daily sustained-release matrix tablet cont...
The drug delivery system (DDS) changes the formulation techniques and have made a great break-throug...
An innovative matrix, produced by thermal treatment on direct compression (DC) tablets containing po...
The aim of the present study was to prepare and characterize controlled-release matrix tablets of Di...
Purpose: To develop and optimise sustained release (SR) matrix tablets of diltiazem hydrochloride (D...
Purpose: To develop and optimise sustained release (SR) matrix tablets of diltiazem hydrochloride (D...
Purpose: To develop and optimise sustained release (SR) matrix tablets of diltiazem hydrochloride (D...
Purpose: To develop and optimise sustained release (SR) matrix tablets of diltiazem hydrochloride (D...
The aim of the current study was to design sustained release tablet of Diltiazem hydrochloride and t...
Purpose: To develop and optimise sustained release (SR) matrix tablets of diltiazem hydrochloride (D...
Purpose: To develop and optimise sustained release (SR) matrix tablets of diltiazem hydrochloride (D...
ABSTRACT The object of the present study is to develop sustained release system of the Diltiazem hyd...
Purpose: To develop a oral controlled matrix drug delivery system for a highly water soluble drug, d...
Purpose: To develop a oral controlled matrix drug delivery system for a highly water soluble drug, d...
Purpose: To develop a oral controlled matrix drug delivery system for a highly water soluble drug, d...
The purpose of the present research work was develop once-daily sustained-release matrix tablet cont...
The drug delivery system (DDS) changes the formulation techniques and have made a great break-throug...
An innovative matrix, produced by thermal treatment on direct compression (DC) tablets containing po...
The aim of the present study was to prepare and characterize controlled-release matrix tablets of Di...
Purpose: To develop and optimise sustained release (SR) matrix tablets of diltiazem hydrochloride (D...
Purpose: To develop and optimise sustained release (SR) matrix tablets of diltiazem hydrochloride (D...
Purpose: To develop and optimise sustained release (SR) matrix tablets of diltiazem hydrochloride (D...
Purpose: To develop and optimise sustained release (SR) matrix tablets of diltiazem hydrochloride (D...
The aim of the current study was to design sustained release tablet of Diltiazem hydrochloride and t...
Purpose: To develop and optimise sustained release (SR) matrix tablets of diltiazem hydrochloride (D...
Purpose: To develop and optimise sustained release (SR) matrix tablets of diltiazem hydrochloride (D...
ABSTRACT The object of the present study is to develop sustained release system of the Diltiazem hyd...
Purpose: To develop a oral controlled matrix drug delivery system for a highly water soluble drug, d...
Purpose: To develop a oral controlled matrix drug delivery system for a highly water soluble drug, d...
Purpose: To develop a oral controlled matrix drug delivery system for a highly water soluble drug, d...
The purpose of the present research work was develop once-daily sustained-release matrix tablet cont...
The drug delivery system (DDS) changes the formulation techniques and have made a great break-throug...
An innovative matrix, produced by thermal treatment on direct compression (DC) tablets containing po...