4.5 Article

Optimization of enzymatic synthesis of theaflavins from potato polyphenol oxidase

期刊

BIOPROCESS AND BIOSYSTEMS ENGINEERING
卷 45, 期 6, 页码 1047-1055

出版社

SPRINGER
DOI: 10.1007/s00449-022-02723-x

关键词

Potato; Polyphenol oxidase; Theaflavins; Enzymatic synthesis

资金

  1. Project of Enzymatic preparation of theaflavin from plant exogenous polyphenol oxidase of China [2021084]
  2. Construction and demonstration of modern selenium rich black tea industry in Pingshan, China [2017NFP1068]
  3. Construction and application of modern Matcha production base in Pingshan, China [2018NZYZF0116]

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In this study, the synthesis of theaflavins using polyphenol oxidase catalysis was investigated. The optimal synthesis conditions were determined, and the dynamic changes and correlations of the main substrates and products were analyzed. This study lays a foundation for the industrial production of theaflavins.
Theaflavin (TF), a chemical component important in measuring the quality of fermented tea, has a strong natural antioxidant effect and many pharmacological functions. Enzymatic oxidation has become a widely used method for preparing TFs at the current research stage. Using plant exogenous polyphenol oxidase (PPO) to enzymatically synthesize TFs can significantly increase yield and purity. In this study, tea polyphenols were used as the reaction substrate to discuss the optimal synthesis conditions of potato PPO enzymatic synthesis of theaflavins and the main products of enzymatic synthesis of TFs. The optimal enzymatic synthesis conditions were as follows: pH of the reaction system was 5.5, reaction time was 150 min, substrate concentration was 6.0 mg/mL, reaction temperature was 20 degrees C, and the maximum amount of TFs produced was 651.75 mu g/mL. At the same time, high-performance liquid chromatography was used to determine the content of theaflavins and catechins in the sample to be tested, and the dynamic changes and correlations of the main catechins and theaflavins in the optimal enzymatic system were analyzed. The results showed that epicatechin (EC), epigallocatechin (EGC), epicatechin gallate (ECG), and epigallocatechin gallate (EGCG) are all the main substrates synthesis of TFs. The main substrate of TFs and its strongest enzymatic catalytic effect on EGCG make theaflavin-3,3 '-digallate (TFDG) the most important synthetic monomer. In this study, theaflavins were synthesized by polyphenol oxidase catalysis, which laid a foundation for industrialization of theaflavins.

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