Related Experiment Video
Updated: Mar 18, 2026

Formation of Dispersible Taohong Siwu Tablets
Published on: February 3, 2023
Formulation Development and Characterization of Meclizine Hydrochloride Sublimated Fast Dissolving Tablets
Sateesh Kumar Vemula1, Mohan Vangala2
1College of Medical and Health Sciences, Wollega University, P.O. Box No 395, Nekemte, Ethiopia; Department of Pharmaceutics, Chaitanya College of Pharmacy Education and Research, Kishanpura, Hanamkonda, Warangal, Andhra Pradesh 506001, India.
Abstract:
The intention of present research is to formulate and develop the meclizine hydrochloride fast dissolving tablets using sublimation method to enhance the dissolution rate. In this study an attempt was made to fasten the drug release from the oral tablets by incorporating the superdisintegrants and camphor as sublimating agent. The prepared fast dissolving tablets were subjected to precompression properties and characterized for hardness, weight variation, friability, wetting time, water absorption ratio, and disintegration time. From in vitro release studies, the formulation F9 exhibited fast release profile of about 98.61% in 30 min, and disintegration time 47 sec when compared with other formulations. The percent drug release in 30 min (Q 30) and initial dissolution rate for formulation F9 was 98.61 ± 0.25%, 3.29%/min. These were very much higher compared to marketed tablets (65.43 ± 0.57%, 2.18%/min). The dissolution efficiency was found to be 63.37 and it is increased by 1.4-fold with F9 FDT tablets compared to marketed tablets. Differential scanning calorimetry and Fourier transform infrared spectroscopy studies revealed that there was no possibility of interactions. Thus the development of meclizine hydrochloride fast dissolving tablets by sublimation method is a suitable approach to improve the dissolution rate.
More Related Videos
Related Concept Videos
Formulation and Manufacturing Process: Physical Attributes of Generic Tablets and Capsules
Factors Influencing Drug Absorption: Pharmaceutical Parameters
Pharmaceutical Alternatives: Polymorphic Form-Related and Particle Size-Related Therapeutic Nonequivalence
Drug Dissolution: Requirements and Profile Comparison
Factors Affecting Dissolution: Polymorphism, Amorphism and Pseudopolymorphism
Some polymorphic crystals possess lower aqueous solubility than their amorphous counterparts, leading to incomplete absorption. For instance, the oral suspension of Chloramphenicol, which...
Drug Delivery Systems: Different Types

