Quantification of the association constant of caffeic acid‐cyclodextrin complex using a novel micro‐conductometric sensor for bitter taste masking of caffeic acid

Author:

Kallel Jihen12,Aina Oluwatoyin3ORCID,Marote Pedro3,Bordes Claire2,Chevalier Yves2,Hbaieb Souhaira1,Jaffrezic‐Renault Nicole3ORCID

Affiliation:

1. University of Tunis El Manar Research Laboratory: Characterization, Applications, and Modeling of Materials Faculty of Sciences of Tunis El Manar University Campus 1068 Tunis Tunisia

2. University of Lyon 1 Laboratory of Automation, Process Engineering and Pharmaceutical Engineering UMR 5007 CNRS 43 bd 11 Novembre 69622 Villeurbanne France

3. University of Lyon 1 Institute of Analytical Sciences 69100 Villeurbanne France

Abstract

AbstractCaffeic acid (CA), a member of the hydroxycinnamic acid family, has garnered attention in the medical community for its wide‐ranging health benefits. However, its application in pharmaceutical and nutraceutical products has been hampered by its distinctly bitter taste, which deters many consumers. This study investigates the taste‐masking of caffeic acid (CA) using hydroxypropyl‐β‐cyclodextrin (HP‐β‐CD). A CA micro‐conductometric sensor was developed. This advanced technology demonstrated remarkable sensitivity, capable of detecting CA at concentrations as low as 10−5 M, with a rapid response time between 10 and 50 seconds. The binding constant of the CA‐HP‐β‐CD complex was determined to be 240±24. 1H NMR spectroscopy analysis provided concrete evidence of the formation of a 1 : 1 inclusion complex between CA and HP‐β‐CD. These findings collectively suggest that HP‐β‐CD is highly effective in masking CA's bitterness, thereby significantly enhancing its palatability.

Publisher

Wiley

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