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在体外模拟消化过程中研究水黄皮多酚的生物可给性、α-淀粉酶和α-葡萄糖苷酶抑制动力学。

Understanding the bioaccessibility, α-amylase and α-glucosidase enzyme inhibition kinetics of Allmania nodiflora (L.) R.Br. ex Wight polyphenols during in vitro simulated digestion.

机构信息

Bioprospecting Laboratory, Department of Botany, Bharathiar University, Coimbatore 641-046, Tamil Nadu, India.

Bioprospecting Laboratory, Department of Botany, Bharathiar University, Coimbatore 641-046, Tamil Nadu, India.

出版信息

Food Chem. 2022 Mar 15;372:131294. doi: 10.1016/j.foodchem.2021.131294. Epub 2021 Oct 2.

Abstract

This study renewed focus on Allmania nodiflora, a green leafy vegetable with diverse nutritional and medicinal properties. The bioaccessibility and the impact of in vitro simulated digestion on polyphenolics were investigated and identified using LC-MS. Although in vitro digestion reduced polyphenolics, the pancreatic digested sample showed a significant bioaccessibility of 97% with better metal ion binding activity (99%). Increased α-amylase and α-glucosidase inhibition (>45%) potentials were also observed in the digested samples. The presence of compounds such as rutin, caffeic acid, catechin, saikosaponin was also identified to be responsible for the enzyme inhibition against postprandial hyperglycemia. These results indicated that the pH of the digestive buffers is responsible for the structural changes in polyphenols for assimilation in the intestine. Hence, A. nodiflora leaf could serve as a functional food having higher assimilated polyphenolics with abundant therapeutic potential, which would be indispensible for future nutraceutical product development from green leafy vegetables.

摘要

这项研究重新关注了绿叶蔬菜 Allmania nodiflora,它具有丰富的营养和药用特性。本研究使用 LC-MS 对其生物可及性和体外模拟消化对多酚的影响进行了研究和鉴定。尽管体外消化会降低多酚含量,但胰腺消化样品的生物可及性达到了 97%,金属离子结合活性(99%)更好。在消化样品中还观察到 α-淀粉酶和 α-葡萄糖苷酶抑制率(>45%)的提高。芦丁、咖啡酸、儿茶素、柴胡皂苷等化合物的存在也被认为是对餐后高血糖的酶抑制作用的原因。这些结果表明,消化缓冲液的 pH 值负责多酚在肠道中进行结构变化以被吸收。因此,A. nodiflora 叶可作为一种功能性食品,其具有更高的可吸收多酚含量和丰富的治疗潜力,这对于未来从绿叶蔬菜开发营养保健品来说是不可或缺的。

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