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中国精品科技期刊2020

荔枝果渣多酚与膳食纤维的制备及其功能特性分析

Study on the Preparation and Functional Properties of Polyphenols and Dietary Fiber from Litchi Pomace

  • 摘要: 荔枝果渣是荔枝加工过程中未得到充分利用的副产物,富含膳食纤维和多酚。为实现其高值化综合利用,本研究建立了一种同步制备荔枝果渣中四种关键组分——游离酚、结合酚、膳食纤维(LTDF)及脱酚膳食纤维(LTDF-F)的工艺体系。对这四种组分进行了系统提取、纯化与功能评价。结果表明,荔枝果渣中LTDF与LTDF-F的提取率分别为58.55%与53.05%;多酚分析显示,荔枝果渣中结合酚含量(26.23±0.57 mg GAE/g DW)显著(P<0.05)高于游离酚(8.54±0.21 mg GAE/g DW)。HPLC定量进一步明确,槲皮素-3-O-芸香糖-(1→2)-O-鼠李糖苷(1.2493±0.0307 mg/g DW)和原花青素B1(1.7960±0.0390 mg/g DW)分别为游离酚与结合酚中的主要单体。体外抗氧化研究表明,游离酚与结合酚均表现出显著活性,且其关键单体,如原花青素B1对DPPH的IC50为0.0184±0.0016 mg/mL、儿茶素对DPPH IC50为0.0085±0.0004 mg/mL,都展现出优异的抗氧化能力,证实了多酚组分的整体开发价值。膳食纤维结构分析表明,脱酚处理未显著改变膳食纤维的主体结构,但功能对比发现,LTDF在水合能力及对葡萄糖、胆固醇(pH=7)和亚硝酸盐(pH=2)的吸附能力上均显著(P<0.05)优于LTDF-F,这直接证明酚类物质对膳食纤维的功能特性具有关键增强作用。本研究证实,荔枝果渣中的多酚与膳食纤维,这四种组分各具独特功能,共同奠定了荔枝果渣作为功能性食品配料的应用基础。该成果为荔枝加工副产物的全组分、零废弃资源化利用提供了重要的理论与技术支撑。

     

    Abstract: Litchi pomace, an underutilized byproduct of litchi processing, is rich in dietary fiber and polyphenols. To achieve comprehensive high-value utilization, this study established a process system for the simultaneous preparation of four key components from litchi pomace: free phenolics, bound phenolics, dietary fiber (LTDF), and de-phenolic dietary fiber (LTDF-F). These components were systematically extracted, purified, and functionally evaluated. The results showed that the extraction yields of LTDF and LTDF-F from litchi pomace were 58.55% and 53.05%, respectively. Polyphenol analysis revealed that the content of bound phenolics in litchi pomace (26.23±0.57 mg GAE/g DW) was significantly (P<0.05) higher than that of free phenolics (8.54±0.21 mg GAE/g DW). Further quantification by HPLC identified quercetin-3-O-rutinoside-(1→2)-O-rhamnoside (1.2493±0.0307 mg/g DW) and procyanidin B1 (1.7960±0.0390 mg/g DW) as the predominant monomers in free and bound phenolics, respectively. In vitro antioxidant studies demonstrated that both free and bound phenolics exhibited significant antioxidant activity, with key monomers such as procyanidin B1 (DPPH IC50=0.0184±0.0016 mg/mL) and catechin (DPPH IC50=0.0085±0.0004 mg/mL) showing excellent antioxidant capacity, thereby confirming the overall value of polyphenol component development. Structural analysis of the dietary fibers indicated that de-phenolic treatment did not significantly alter the main structure of the fibers. However, functional comparison revealed that LTDF significantly (P<0.05) outperformed LTDF-F in terms of hydration capacity as well as adsorption capacity for glucose, cholesterol (pH 7.0), and nitrite (pH 2.0), directly demonstrating that phenolic substances play a crucial role in enhancing the functional properties of dietary fiber. This study confirms that the four components—polyphenols and dietary fibers found in litchi pomace—each exhibit distinct functionalities, collectively establishing litchi pomace as a viable functional food ingredient. The findings offer significant theoretical and technical support for the comprehensive, zero-waste utilization of byproducts from litchi processing.

     

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