Identification of the Principle of Taste Sensors to Detect Non-Charged Bitter Substances by H^^1-NMR Measurement

機関リポジトリ (HANDLE) オープンアクセス
  • 石田, 岬
    九州大学大学院システム情報科学府
  • 井手, 晴菜
    九州大学大学院生物資源環境科学府生命機能科学専攻
  • 有馬, 継士郎
    九州大学大学院生物資源環境科学府生命機能科学専攻
  • Zhao, Zeyu
    九州大学大学院システム情報科学府
  • 松井, 利郎
    九州大学大学院農学研究院生命機能科学部門 九州大学五感応用デバイス研究開発センター
  • 都甲, 潔
    九州大学五感応用デバイス研究開発センター 九州大学高等研究院

説明

A taste sensor with lipid/polymer membranes is attracting attention as a method to evaluate taste objectively. However, due to the characteristic of detecting taste by changes in membrane potential, taste sensors cannot measure non-charged bitter substances. Many foods and medicines contain non-charged bitter substances, and it is necessary to quantify these tastes with sensors. Therefore, we have been developing taste sensors to detect bitter tastes caused by non-charged substances such as caffeine. In previous studies, a sensor for detecting bitterness caused by caffeine and theobromine, theophylline, was developed, using a membrane modified with hydroxybenzoic acid (HBA) as the sensing part. The sensor was designed to form intramolecular hydrogen bonds (H-bonds) between the hydroxy group and carboxy group of HBA and to successively cause the intermolecular H-bonds between HBA and caffeine molecules to be measured. However, whether this sensing principle is correct or not cannot be confirmed from the results of taste sensor measurements. Therefore, in this study, we explored the interaction between HBA and caffeine by H^^1-nuclear magnetic resonance spectroscopy (NMR). By the H^^1 NMR detection, we confirmed that both the substances interact with each other. Furthermore, the nuclear Overhauser effect (NOE) of intermolecular spatial conformation in solution was measured, by which 2,6-dihydroxybenzoic acid (2,6-DHBA) preferably interacted with caffeine via the H-bonding and stacking configuration between aromatic rings. Identifying the binding form of 2,6-DHBA to caffeine was estimated to predict how the two substances interact.

収録刊行物

  • Sensors

    Sensors 22 (7), 2592-, 2022-04-01

    MDPI (Multidisciplinary Digital Publishing Institute)

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詳細情報 詳細情報について

  • CRID
    1050298532703079168
  • ISSN
    14248220
  • HANDLE
    2324/6770283
  • 本文言語コード
    en
  • 資料種別
    journal article
  • データソース種別
    • IRDB

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