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六堡茶茶渣中提取的细胞壁多糖的 valorization:化学、结构和降血糖特性。 (注:“valorization”可译为“增值、 valorization利用等,这里保留英文未译,可能是特定专业术语有其特定含义,需结合专业背景准确理解)

Valorization of cell wall polysaccharides extracted from Liubao brick tea residues: chemical, structural, and hypoglycemic properties.

作者信息

Wang Li, Chi En-Zhong, Zhao Xin-Huai

机构信息

School of Biology and Food Engineering, Guangdong University of Petrochemical Technology, Maoming, China.

出版信息

J Sci Food Agric. 2024 Aug 30;104(11):6933-6946. doi: 10.1002/jsfa.13526. Epub 2024 Apr 20.

Abstract

BACKGROUND

Tea dregs, typically generated during the production of instant tea or tea beverages, have conventionally been regarded as waste material and routinely discarded. Nevertheless, contemporary research endeavors are concentrating on discovering efficient methods for utilizing the potential of this discarded resource.

RESULTS

In this study, we employed a sequential extraction method using chemical chelating agents to extract and isolate four distinct cell wall polysaccharides, designated as CWTPS-1 through CWTPS-4, from the tea dregs of Liubao brick tea. A comprehensive investigation into their physicochemical, structural, and hypoglycemic properties was conducted. The analysis of chemical composition and physicochemical characteristics revealed that all four CWTPSs were characterized as acidic polysaccharides, albeit with varying chemical compositions and physicochemical attributes. Specifically, the xyloglucan fractions, CWTPS-3 and CWTPS-4, were found to be rich in glucose and xylose, displaying a more uniform molecular weight distribution, greater structural stability, and a more irregular surface compared to the others. Moreover, they exhibited a higher diversity of monosaccharide residues. Importantly, our research unveiled that all four CWTPSs exhibited the capacity to modulate key glucose-regulated and antioxidant enzyme activities within HepG2 cells via the IRS-1-PI3K/AKT signaling pathway, thereby ameliorating cellular insulin resistance. Furthermore, our correlation analysis highlighted significant associations between monosaccharide composition and neutral sugar content with the observed hypoglycemic activity of CWTPSs.

CONCLUSION

This study highlights the potential of utilizing tea dregs as a valuable resource, making a significant contribution to the advancement of the tea industry. Furthermore, CWTPS-4 exhibits promising prospects for further development as a functional food ingredient or additive. © 2024 Society of Chemical Industry.

摘要

背景

茶渣通常是在速溶茶或茶饮料生产过程中产生的,传统上被视为废料并常规丢弃。然而,当代研究工作正专注于寻找有效方法来利用这种废弃资源的潜力。

结果

在本研究中,我们采用化学螯合剂的顺序提取方法,从六堡茶的茶渣中提取并分离出四种不同的细胞壁多糖,命名为CWTPS - 1至CWTPS - 4。对它们的物理化学、结构和降血糖特性进行了全面研究。化学成分和物理化学特性分析表明,所有四种CWTPS均为酸性多糖,尽管化学成分和物理化学属性各不相同。具体而言,木葡聚糖组分CWTPS - 3和CWTPS - 4富含葡萄糖和木糖,与其他组分相比,分子量分布更均匀,结构稳定性更高,表面更不规则。此外,它们的单糖残基多样性更高。重要的是,我们的研究表明,所有四种CWTPS都能够通过IRS - 1 - PI3K/AKT信号通路调节HepG2细胞内关键的葡萄糖调节和抗氧化酶活性,从而改善细胞胰岛素抵抗。此外,我们的相关性分析突出了单糖组成和中性糖含量与观察到的CWTPS降血糖活性之间的显著关联。

结论

本研究突出了将茶渣作为宝贵资源加以利用的潜力,为茶产业的发展做出了重大贡献。此外,CWTPS - 4作为功能性食品成分或添加剂具有进一步开发的广阔前景。© 2024化学工业协会。

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