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Functionalized tea polyphenols in food: from design to application
Ziqi Wang1, Qinqin Zheng2, Shanshan Wang1
1College of Chemical Engineering, Zhejiang University of Technology, Hangzhou, P. R. China.
Functionalized tea polyphenols (TPs) complexes overcome stability and bioavailability issues. These complexes enhance antioxidant, antimicrobial, and nutrient protection for advanced functional foods.
Area of Science:
- Food Science
- Biochemistry
- Materials Science
Background:
- Tea polyphenols (TPs) possess significant bioactivities but suffer from poor stability and low bioavailability.
- Research is shifting towards complexing TPs with food matrices to enhance their functionality.
Purpose of the Study:
- To systematically review molecular interaction mechanisms of functionalized TPs.
- To discuss how these interactions influence structural organization, stability, and properties.
- To highlight enhanced functionalities and applications of TPs complexes.
Main Methods:
- Review of literature on molecular interactions (covalent, noncovalent) between TPs and food matrices.
- Analysis of how these interactions affect physicochemical properties and bioactivities.
- Summary of applications in food preservation, stabilization, and enhancement.
Main Results:
- Functionalized TPs complexes exhibit improved antioxidant and antimicrobial activities.
- Enhanced stabilization of flavor compounds and nutrient protection.
- Increased bioavailability of TPs through complexation.
Conclusions:
- Functionalized TPs complexes are a key strategy to overcome limitations of free TPs.
- These complexes offer a foundation for next-generation functional foods and health products.
- Integrating AI and simulations can advance structure-oriented production.
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