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March 5, 2026Current Research in Food Science2 citationsOpen Access

Revealing the influence of top-brewing and bottom-brewing methods on the flavor of green tea based on the interaction between EGCG and aroma compounds

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MZMengke ZhengZMZhongyi MaoYYYinan Yang

Key Points

  • This research aims to explore how top-brewing and bottom-brewing methods affect the flavor profile of green tea, focusing on the interactions between egcg and aroma compounds.
  • Utilized gas chromatography-mass spectrometry (GC-MS) to analyze flavor compounds in the tea infusions.
  • Conducted sensory analysis to assess flavor differences under varying brewing methods and temperatures.
  • Examined major polyphenolic compounds and their interactions with aroma compounds.
  • Top-brewing and bottom-brewing methods resulted in distinct flavor profiles in tea infusions.
  • Identified compounds like geraniol, nonanal, and methyl salicylate as important markers to discriminate brewing conditions.
  • Found that egcg strongly binds with aroma compounds, influencing their transfer and release during brewing.

Abstract

The brewing process is a crucial step in determining the flavor profile of green tea infusions. However, the flavor differences arising from top-brewing and bottom-brewing methods remain poorly understood, and the underlying mechanisms are largely unexplored. In this study, GC-MS and sensory analysis were employed to investigate the flavor differences in Shucheng Little Cymbidium tea infusions under varying water temperatures and brewing methods. Subsequently, the variations in major polyphenolic compounds were analyzed, and the potential causes of flavor differences were explained from the perspective of the interactions between EGCG and key aroma compounds. Multivariate statistical analysis revealed that compounds such as geraniol, nonanal, and methyl salicylate serve as important markers for discriminating between different brewing conditions. Moreover, EGCG exhibited a significant binding effect with compounds such as geraniol and nonanal, driven by hydrogen bonding and hydrophobic interactions. This binding may regulate the transfer of aroma compounds from tea leaves to the infusion during brewing, thereby shaping distinct sensory characteristics. These findings provide a molecular-level rationale for empirical techniques in traditional tea art. More importantly, it inspires researchers to pay attention to the crucial role of the tea infusion matrix in determining flavor. • The flavor and polyphenols in tea infusion were different due to the top-brewing and bottom-brewing. • Compounds such as geraniol, nonanal, and methyl salicylate were important markers for distinguishing different brewing methods. • The combination and interaction of polyphenolic substances and aroma compounds affected the volatilization and release of aroma. • The interaction between aromas and polyphenols were influenced by the functional groups of aroma molecules.

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Cite This Study

Zheng et al. (2026) studied this question.

synapsesocial.com/papers/69a91d55d6127c7a504c0069https://doi.org/10.1016/j.crfs.2026.101371
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