Non-Starch Polysaccharides in Wheat Bran: Technological Approaches, Amelioration Strategies, and Functional Applications

Wheat bran is a rich source of non-starch polysaccharides, primarily arabinoxylans and β-glucans, which constitute a functionally important fraction of dietary fibre linked to glycemic regulation, cardiovascular health, and gut microbiota modulation. However, the dense, lignin and protein-cross-linked bran matrix limits solubility, fermentability and bioaccessibility of these polymers. To address these limitations, various amelioration strategies, including chemical, enzymatic, mechanical, and fermentation-based treatments, were pioneered to optimize extraction, solubility, and functional properties while preserving molecular integrity. For instance, enzymatic hydrolysis and solid-state fermentation increase soluble fibre yields and antioxidant capacity while refining dough rheology and the organoleptic profiles of cereal-based products.

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Publication Details

Journal
Food Reviews International
Published
2026-10-03
DOI
https://doi.org/10.1080/87559129.2026.2739447
Primary Topic
Food composition and properties
Type
article
Field-Weighted Citation Impact
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article

Non-Starch Polysaccharides in Wheat Bran: Technological Approaches, Amelioration Strategies, and Functional Applications

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Food Reviews International
Food composition and properties
article

Non-Starch Polysaccharides in Wheat Bran: Technological Approaches, Amelioration Strategies, and Functional Applications

Denglin Luo, Chonghui Yue, Arooj Shams, Zhouya Bai, Fengxia Li, Sihai Han, Jinying Guo, Peiyan Li, Libo Wang, Hasnat Fatima
article en

Abstract

Wheat bran is a rich source of non-starch polysaccharides, primarily arabinoxylans and β-glucans, which constitute a functionally important fraction of dietary fibre linked to glycemic regulation, cardiovascular health, and gut microbiota modulation. However, the dense, lignin and protein-cross-linked bran matrix limits solubility, fermentability and bioaccessibility of these polymers. To address these limitations, various amelioration strategies, including chemical, enzymatic, mechanical, and fermentation-based treatments, were pioneered to optimize extraction, solubility, and functional properties while preserving molecular integrity. For instance, enzymatic hydrolysis and solid-state fermentation increase soluble fibre yields and antioxidant capacity while refining dough rheology and the organoleptic profiles of cereal-based products.

Food Reviews International
Henan University of Science and Technology (CN), Government College University, Lahore (PK)
Openalex Percentile: Top 13%
Food composition and properties
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