Effect of wheat dietary fibers on properties of dough ingredient and corresponding noodles

Abstract To enhance wheat bran (WB) utilization in flour-based foods, total dietary fiber (TDF), soluble dietary fiber (SDF), and insoluble dietary fiber (IDF) were prepared via an acid-enzyme combined treatment, and their effects on the properties of starch and gluten in dough and noodle quality were evaluated in this study. The results indicated that water-holding, oil-holding, and swelling capacities followed the order: TDF > SDF > IDF > WB. SDF exhibited a loose microstructure (SEM), and facilitated conformational transitions from β-turns to β-sheets and from sulfhydryl groups to disulfide bonds. Dietary fiber supplementation (0–15%) significantly increased the onset (T0), peak (Tp), and conclusion (Tc) gelatinization temperatures of starch, while reducing viscosity properties and gelatinization enthalpy (p < 0.05), with the minimum value of 2.67 J/g for IDF. WB and TDF significantly increased the noodle hardness, chewiness and cooking loss, decreased tensile strength and water absorption capacity, with TDF exhibiting a milder effect than WB. Furthermore, compared to conventional wheat noodles, dietary fiber-enriched noodles showed increased resistant starch content and a lower estimated glycemic index (eGI), with the 15% TDF-supplemented noodles qualifying as a low-GI food. These findings suggest that wheat dietary fiber can serve as a high-quality raw material for developing low-GI food products.

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Publication Details

Journal
International Journal of Food Science & Technology
Published
2026-08-28
DOI
https://doi.org/10.1093/ijfood/vvag186
Primary Topic
Food composition and properties
Type
article
Field-Weighted Citation Impact
0.00

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article

Effect of wheat dietary fibers on properties of dough ingredient and corresponding noodles

Hua Li, Beibei Zhao, J. Teng, Runjia Liu et al.
International Journal of Food Science & Technology
Food composition and properties
article

Effect of wheat dietary fibers on properties of dough ingredient and corresponding noodles

Hua Li, Beibei Zhao, J. Teng, Runjia Liu, Zaichen Li, Jun Xi, Lulu Zhang
article en

Abstract

Abstract To enhance wheat bran (WB) utilization in flour-based foods, total dietary fiber (TDF), soluble dietary fiber (SDF), and insoluble dietary fiber (IDF) were prepared via an acid-enzyme combined treatment, and their effects on the properties of starch and gluten in dough and noodle quality were evaluated in this study. The results indicated that water-holding, oil-holding, and swelling capacities followed the order: TDF > SDF > IDF > WB. SDF exhibited a loose microstructure (SEM), and facilitated conformational transitions from β-turns to β-sheets and from sulfhydryl groups to disulfide bonds. Dietary fiber supplementation (0–15%) significantly increased the onset (T0), peak (Tp), and conclusion (Tc) gelatinization temperatures of starch, while reducing viscosity properties and gelatinization enthalpy (p < 0.05), with the minimum value of 2.67 J/g for IDF. WB and TDF significantly increased the noodle hardness, chewiness and cooking loss, decreased tensile strength and water absorption capacity, with TDF exhibiting a milder effect than WB. Furthermore, compared to conventional wheat noodles, dietary fiber-enriched noodles showed increased resistant starch content and a lower estimated glycemic index (eGI), with the 15% TDF-supplemented noodles qualifying as a low-GI food. These findings suggest that wheat dietary fiber can serve as a high-quality raw material for developing low-GI food products.

International Journal of Food Science & Technology
Henan University of Technology (CN), Food Research Institute (SK)
Henan University of Technology, Henan University
Openalex Percentile: Top 11%
Food composition and properties
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