Related Experiment Video
Updated: Dec 2, 2025

Taste Exam: A Brief and Validated Test
Published on: August 17, 2018
Bitter-blockers as a taste masking strategy: A systematic review towards their utility in pharmaceuticals
Danielle Andrews1, Smita Salunke1, Anne Cram2
1School of Pharmacy, UCL, 29 - 39 Brunswick Square, London WC1N 1AX, United Kingdom.
Abstract:
Acceptable palatability of an oral dosage form is crucial to patient compliance. Excipients can be utilised within a formulation to mask the bitterness of a drug. One such category is the bitter-blockers. This term is used inconsistently within the literature and has historically been used to describe any additive which alters the taste of an unpleasant compound. This review defines a bitter-blocker as a compound which interacts with the molecular pathway of bitterness at a taste-cell level and compiles data obtained from publication screening of such compounds. Here, a novel scoring system is created to assess their potential utility in a medicinal product using factors such as usability, safety, efficacy and quality of evidence to understand their taste-masking ability. Sodium acetate, sodium gluconate and adenosine 5'monophophate each have a good usability and safety profile and are generally regarded as safe and have shown evidence of bitter-blocking in human sensory panels. These compounds could offer a much needed option to taste-mask particularly aversive medicines where traditional methods alone are insufficient.
More Related Videos
Related Concept Videos
The Physiology of Taste
Taste Buds and Receptors
Depolarizing Blockers: Pharmocokinetics
Adrenergic Antagonists: Chemistry and Classification of ɑ-Receptor Blockers
Nonselective α-blockers: Nonselective α-blockers contain haloalkylamine or imidazoline...
Drugs Acting on Autonomic Ganglia: Blockers
Depolarizing Blockers: Mechanism of Action
Succinylcholine is the most commonly used depolarizing blocker. Chemically, it constitutes two molecules of acetylcholine joined together by an acetate methyl group. They act on the receptors in the same way as acetylcholine. Because...

