The Effects of Fixation Methods on the Composition and Activity of Sea Buckthorn (Hippophae rhamnoides L.) Leaf Tea

Author:

Chen Xuetao1ORCID,Jiang Xiumei1,Zhao Sanhu1,Liang Huimin1,Zhang Xiyan1,Xu Xinyu1,Cao Yexia1,Li Xia2

Affiliation:

1. Xinzhou Sea Buckthorn Engineering Technology Research Center, Department of Chemistry, Xinzhou Teachers University, Shanxi 034000, China

2. Tianjin Key Laboratory for Modern Drug Delivery & High-Efficiency, School of Pharmaceutical Science and Technology, Tianjin University, Tianjin 300072, China

Abstract

Fixation is the key step to improve the quality of sea buckthorn leaf tea. Composition and activity are important indexes to evaluate the quality of sea buckthorn leaf tea. Comparing the effects of fixation methods on components and activities provides a theoretical basis for the contemporary, controllable, and continuous production of sea buckthorn leaf tea. The effects of six different fixed methods, pan-firing fixed (PF), steaming fixed (SF), boiling water fixed (BF), hot air fixed (HF), microwave fixed (MWF), and infrared fixed (IRF) for sea buckthorn leaf tea in terms of α-glucosidase inhibitory activity, lipase inhibitory ability, and the antioxidant capacity were studied. The total flavonoids (TF) content, total soluble phenolics (TP) content, water-soluble carbohydrate (WSC) content, the inhibitory activity of α-glucosidase, lipase inhibitory ability, and the antioxidant capacity of fixed sea buckthorn leaf tea were significantly higher ( p 0.05 ) compared with sea buckthorn leaf. IRF and MWF samples had higher ( p 0.05 ) contents of TF (92.48 mg RE/g and 79.20 mg RE/g), TP (115.37 mg GA/g and 135.18 mg GA/g) and WSC (4.24% and 4.39%). The DPPH radical scavenging activity of the SF sample was the strongest one, followed by the MWF sample and IRF sample ( p 0.05 ). The hydroxyl radical scavenging ability and reducing power of IRF were the strongest one, followed by the MWF sample ( p 0.05 ). The IRF sample had the strongest α-glucosidase inhibitory activity ( p 0.05 ), and the MWF sample had the strongest lipase inhibitory ability while samples contained the same amount of total polyphenols ( p 0.05 ). Principal component analysis results showed that the IRF sample, MWF sample, and SF sample had higher comprehensive principal component values. MWF takes less time than IRF, which operated at 2,450 MHz (full power of 700 W) for 2 min. Therefore, MWF was the most suitable fixation method for sea buckthorn leaf tea. Practical Applications. Leaf tea is the main product of sea buckthorn leaf. However, at present, the quality of sea buckthorn leaf tea in the market is uneven, the processing methods are diverse, and there is no certain quality standard. This paper provides some data support and theoretical support for the production, processing, and purchase of sea buckthorn leaf tea.

Funder

Shanxi “1331 Project”

Publisher

Hindawi Limited

Subject

Safety, Risk, Reliability and Quality,Food Science

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