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Article

Ultrasound-Induced Modification of Durian Starch (Durio zibethinus) for Gel-Based Applications: Physicochemical and Thermal Properties

by
Hien Vinh Nguyen
1,2,
Phong Xuan Huynh
1 and
Tuyen Chan Kha
3,*
1
Institute of Food and Biotechnology, Can Tho University, Can Tho City 94000, Vietnam
2
Institute of Engineering and Technology, Thu Dau Mot University, Thu Dau Mot 75100, Vietnam
3
Faculty of Chemical Engineering and Food Technology, Nong Lam University, Ho Chi Minh City 700000, Vietnam
*
Author to whom correspondence should be addressed.
Gels 2025, 11(4), 296; https://doi.org/10.3390/gels11040296
Submission received: 21 March 2025 / Revised: 12 April 2025 / Accepted: 14 April 2025 / Published: 16 April 2025
(This article belongs to the Special Issue Advancements in Food Gelation: Exploring Mechanisms and Applications)

Abstract

This study investigated the effects of ultrasound treatment on the physicochemical properties and thermal stability of durian starch. Durian starch samples were subjected to ultrasound at 20 kHz and 500 W for 2 min. The treatment significantly increased the starch extraction yield by 14.55% compared to untreated starch. Scanning electron microscopy analysis revealed that ultrasound treatment induced physical modifications in the starch granules, including the formation of cracks and pores, which likely contributed to the enhanced extraction efficiency and influenced the starch’s gelation behavior. Thermal analysis, including differential scanning calorimetry and thermogravimetric analysis, demonstrated that ultrasound-treated starch exhibited higher thermal stability compared to native starch. The thermogravimetric analysis results indicated a lower weight loss at high temperatures (70.39% for ultrasound-treated starch versus 79.55% for native starch at 596 °C). The heat flow during thermal decomposition was reduced in ultrasound-treated starch, suggesting that the treatment induced structural modifications that strengthened the gel matrix and improved resistance to thermal degradation. Additionally, ultrasound treatment enhanced the functional properties of durian starch, including swelling power, solubility, and water absorption capacity, which are critical for hydrogel formation and food-grade gel applications. These findings highlight the potential of ultrasound-treated durian starch for advanced applications in food hydrogels, biodegradable films, and gel-based delivery systems.
Keywords: durian starch; gelation behavior; morphological structure; physicochemical properties; rheological properties; hydrogel formation; ultrasound treatment durian starch; gelation behavior; morphological structure; physicochemical properties; rheological properties; hydrogel formation; ultrasound treatment
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MDPI and ACS Style

Nguyen, H.V.; Huynh, P.X.; Kha, T.C. Ultrasound-Induced Modification of Durian Starch (Durio zibethinus) for Gel-Based Applications: Physicochemical and Thermal Properties. Gels 2025, 11, 296. https://doi.org/10.3390/gels11040296

AMA Style

Nguyen HV, Huynh PX, Kha TC. Ultrasound-Induced Modification of Durian Starch (Durio zibethinus) for Gel-Based Applications: Physicochemical and Thermal Properties. Gels. 2025; 11(4):296. https://doi.org/10.3390/gels11040296

Chicago/Turabian Style

Nguyen, Hien Vinh, Phong Xuan Huynh, and Tuyen Chan Kha. 2025. "Ultrasound-Induced Modification of Durian Starch (Durio zibethinus) for Gel-Based Applications: Physicochemical and Thermal Properties" Gels 11, no. 4: 296. https://doi.org/10.3390/gels11040296

APA Style

Nguyen, H. V., Huynh, P. X., & Kha, T. C. (2025). Ultrasound-Induced Modification of Durian Starch (Durio zibethinus) for Gel-Based Applications: Physicochemical and Thermal Properties. Gels, 11(4), 296. https://doi.org/10.3390/gels11040296

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