College of Food Science and Engineering, Ocean University of China, Qingdao, People's Republic of China.
College of Science and Technology, Hebei Agricultural University, Cangzhou, People's Republic of China.
J Food Biochem. 2021 May;45(5):e13689. doi: 10.1111/jfbc.13689. Epub 2021 Apr 4.
The preparation method and the sources of metal elements may affect the activity of the metal-polysaccharide complex. In this study, four Fe-tea polysaccharide complexes were prepared and three tea polysaccharides (TPSs) from different seasons were extracted. Moreover, the binding mode of TPSs with internal and external metallic elements as well as their inhibitory effect on α-glucosidase was explored. The results revealed that the binding mode (-C-O-Fe and -C-Fe) of the Fe-TPS complex prepared at pH 5.0 was closer to TPS with internal metallic elements. The TPS with the least amount of internal metallic elements (61.72 mg/g) exhibited a high inhibitory activity on α-glucosidase (37.90%). The inhibitory activity of Fe-TPS on α-glucosidase was lower than that without Fe. But the quenching effect and the inhibition type of TPSs on α-glucosidase were not affected by metallic elements. Therefore, the metallic elements have the potential to reduce the hypoglycemic activity of TPS. PRACTICAL APPLICATIONS: In this paper, TPS was extracted from crude tea in different seasons, and the effects of metallic elements in TPS on hypoglycemic activity, physicochemical properties, and structure of TPS were discussed. TPS metal complexes were prepared by adding Fe or removing metallic elements, and the differences of internal metallic elements in TPS were discussed. It is of great academic significance to use tea pruned leaves and crude tea as potential resources to develop polysaccharide hypoglycemic products and to reveal the relationship between TPS metal ions and their structure and activity. In addition, it has guiding value for consumers to choose tea-producing regions and growers to choose chemical fertilizer.
金属元素的来源和制备方法可能会影响金属-多糖复合物的活性。在本研究中,制备了四种铁-茶多糖复合物,并从不同季节提取了三种茶多糖(TPS)。此外,还探讨了 TPS 与内部和外部金属元素的结合方式及其对α-葡萄糖苷酶的抑制作用。结果表明,在 pH 值为 5.0 时制备的铁-TPS 复合物的结合方式(-C-O-Fe 和 -C-Fe)更接近具有内部金属元素的 TPS。具有最少内部金属元素(61.72mg/g)的 TPS 对α-葡萄糖苷酶表现出较高的抑制活性(37.90%)。Fe-TPS 对α-葡萄糖苷酶的抑制活性低于无 Fe 时的抑制活性。但是,金属元素并未影响 TPS 对α-葡萄糖苷酶的猝灭作用和抑制类型。因此,金属元素有可能降低 TPS 的降血糖活性。实际应用:本文从不同季节的粗茶中提取 TPS,并探讨 TPS 中金属元素对降血糖活性、理化性质和结构的影响。通过添加 Fe 或去除金属元素来制备 TPS 金属配合物,并讨论 TPS 内部金属元素的差异。利用修剪叶和粗茶作为潜在资源开发多糖降血糖产品,揭示 TPS 金属离子与其结构和活性之间的关系,具有重要的学术意义。此外,它对消费者选择茶叶产区和种植者选择化肥具有指导价值。