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Article

Enhancing Rice Bran Soluble Dietary Fiber Yield Through Sequential Ultrasound–Xylanase Treatment

1
Engineering Research Center of Bio-Process of Ministry of Education, School of Food and Biological Engineering, Hefei University of Technology, Hefei 230601, China
2
The Experimental Research Center, Anhui University of Chinese Medicine, Hefei 230038, China
3
Intelligent Manufacturing Institute of HFUT, Hefei 230051, China
*
Author to whom correspondence should be addressed.
Foods 2025, 14(3), 388; https://doi.org/10.3390/foods14030388
Submission received: 5 November 2024 / Revised: 28 December 2024 / Accepted: 31 December 2024 / Published: 24 January 2025

Abstract

The main aim of this study was to enhance the content of soluble dietary fiber (SDF) derived from rice bran (RB) through various treatments, including physical methods (ultrasound and alternating magnetic field (AMF)) and enzymatic approaches (cellulase and xylanase), applied individually or in combination. The results revealed that AMF treatment was the most effective single modification technique for increasing SDF yield, followed by treatments with xylanase, cellulase, and ultrasound. Notably, among the combined approaches, the sequential ultrasound–xylanase treatment (U-X) demonstrated the highest potential for enhancing SDF yield. Further optimization experiments revealed that under the conditions of a xylanase addition of 4.3 mg/g sample, a material-to-liquid ratio of 50 mL/g, and an ultrasonic power of 72 W, the yield of U-X-SDF significantly increased from 1.03% to 18.4%. Compared to unmodified samples, the modified SDF groups exhibited marked enhancements in water holding capacity (42.5–86.4%) and water solubility (21.0–30.6%), while the unmodified SDF displayed superior oil holding capacity than the modified groups. In summary, the sequential ultrasound–xylanase treatment not only improves the SDF yield but also enhances the functional properties of RB-derived SDF, positioning it as a valuable health-promoting food additive with potential benefits for both laboratory and industrial food applications. The optimized treatment process can contribute to the development of new functional food ingredients from RB, thereby promoting health and wellness in consumers.
Keywords: rice bran; soluble dietary fiber; cellulase; xylanase; alternating magnetic field; ultrasound rice bran; soluble dietary fiber; cellulase; xylanase; alternating magnetic field; ultrasound

Share and Cite

MDPI and ACS Style

Lin, Y.; Zhang, S.; Huang, Y.; Yang, S.; Zhou, A.; Zhang, W.; Wu, Z. Enhancing Rice Bran Soluble Dietary Fiber Yield Through Sequential Ultrasound–Xylanase Treatment. Foods 2025, 14, 388. https://doi.org/10.3390/foods14030388

AMA Style

Lin Y, Zhang S, Huang Y, Yang S, Zhou A, Zhang W, Wu Z. Enhancing Rice Bran Soluble Dietary Fiber Yield Through Sequential Ultrasound–Xylanase Treatment. Foods. 2025; 14(3):388. https://doi.org/10.3390/foods14030388

Chicago/Turabian Style

Lin, Yanting, Siling Zhang, Yifei Huang, Shuyuan Yang, An Zhou, Wencheng Zhang, and Zeyu Wu. 2025. "Enhancing Rice Bran Soluble Dietary Fiber Yield Through Sequential Ultrasound–Xylanase Treatment" Foods 14, no. 3: 388. https://doi.org/10.3390/foods14030388

APA Style

Lin, Y., Zhang, S., Huang, Y., Yang, S., Zhou, A., Zhang, W., & Wu, Z. (2025). Enhancing Rice Bran Soluble Dietary Fiber Yield Through Sequential Ultrasound–Xylanase Treatment. Foods, 14(3), 388. https://doi.org/10.3390/foods14030388

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