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经水热处理的玉米麸皮中阿拉伯木聚糖的精细结构特征和抗氧化能力。

Fine structural features and antioxidant capacity of ferulated arabinoxylans extracted from nixtamalized maize bran.

机构信息

Biopolymers Laboratory, Research Center for Food and Development (CIAD, AC), Hermosillo, Sonora, Mexico.

NANO-VAC Research Group, Department of Pharmacy and Pharmaceutical Technology, University of Navarra, Pamplona, Spain.

出版信息

J Sci Food Agric. 2023 Jul;103(9):4584-4591. doi: 10.1002/jsfa.12531. Epub 2023 Mar 10.

Abstract

BACKGROUND

The nixtamalization process improves the nutritional and technological properties of maize. This process generates nixtamalized maize bran as a by-product, which is a source of arabinoxylans (AX). AX are polysaccharides constituted of a xylose backbone with mono- or di-arabinose substitutions, which can be ester-linked to ferulic acid (FA). The present study investigated the fine structural features and antioxidant capacity (AC) of nixtamalized maize bran arabinoxylans (MBAX) to comprehend the structure-radical scavenging capacity relationship in this polysaccharide deeply.

RESULTS

MBAX presented a molecular weight, intrinsic viscosity, and hydrodynamic radius of 674 kDa, 1.8 dL g , and 24.6 nm, respectively. The arabinose-to-xylose ratio (A/X) and FA content were 0.74 and 0.25 g kg polysaccharide, respectively. MBAX contained dimers (di-FA) and trimer (tri-FA) of FA (0.14 and 0.07 g kg polysaccharide, respectively). The main di-FA isomer was the 8-5' structure (80%). Fourier transform infrared spectroscopy confirmed MBAX molecular identity, and the second derivate of the spectral data revealed a band at 958 cm related to the presence of arabinose disubstitution. H-Nuclear magnetic resonance spectroscopy showed mono- and di-arabinose substitution in the xylan backbone with more monosubstituted residues. MBAX registered an AC of 25 and 20 μmol Trolox equivalents g polysaccharide despite a low FA content, using ABTS (2,2'-azino-bis-3-ethylbenzthiazoline-6-sulfonic acid) and DPPH (1,1-diphenyl-2-picrylhydrazyl) methods, respectively.

CONCLUSION

AC in MBAX could be related to the high A/X ratio (mainly monosubstitution) and the high 8-5' di-FA proportion in this polysaccharide. © 2023 Society of Chemical Industry.

摘要

背景

碱处理过程改善了玉米的营养和技术特性。该过程会生成一种副产物——碱处理玉米麸皮,它是阿拉伯木聚糖(AX)的来源。AX 是由木糖主链与单或二阿拉伯糖取代基组成的多糖,可以与阿魏酸(FA)形成酯键。本研究调查了碱处理玉米麸皮阿拉伯木聚糖(MBAX)的精细结构特征和抗氧化能力(AC),以深入了解该多糖结构与清除自由基能力的关系。

结果

MBAX 的分子量、特性粘度和流体力学半径分别为 674 kDa、1.8 dL g 和 24.6 nm。阿拉伯糖与木糖的比值(A/X)和 FA 含量分别为 0.74 和 0.25 g kg 多糖。MBAX 含有 FA 的二聚体(di-FA)和三聚体(tri-FA)(分别为 0.14 和 0.07 g kg 多糖)。主要的二 FA 异构体是 8-5'结构(80%)。傅立叶变换红外光谱证实了 MBAX 的分子特征,光谱数据的二阶导数显示出与阿拉伯糖双取代存在相关的 958 cm 处的峰。 1 H-核磁共振波谱显示木聚糖主链上存在单取代和双取代的阿拉伯糖,且有更多的单取代残基。尽管 MBAX 的 FA 含量较低,但使用 ABTS(2,2'-azino-bis-3-ethylbenzthiazoline-6-sulfonic acid)和 DPPH(1,1-diphenyl-2-picrylhydrazyl)方法,其 AC 分别为 25 和 20 μmol Trolox 当量 g 多糖。

结论

MBAX 的 AC 可能与其 A/X 比值高(主要为单取代)以及该多糖中 8-5'二 FA 比例高有关。 © 2023 化学学会。

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