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Mechanochemical Effects of High-Intensity Ultrasound on Dual Starch Modification of Mango Cotyledons

淀粉 对偶(语法数字) 强度(物理) 超声波 化学 食品科学 医学 放射科 物理 光学 艺术 文学类
作者
Ramiro Torres,Ricardo Andrade-Pizarro,Diego F. Tirado,Andrés Chávez‐Salazar,Francisco Javier Castellanos Galeano
出处
期刊:AgriEngineering [Multidisciplinary Digital Publishing Institute]
卷期号:7 (6): 190-190 被引量:2
标识
DOI:10.3390/agriengineering7060190
摘要

The starch modification of mango cotyledons with both single ultrasound (US) and dual (US followed by octenyl succinic anhydride, OSA) was optimized by response surface methodology (RSM). The mechanochemical effects of ultrasound on amylose content, particle size, and dual modification efficiency were assessed. In addition, the structural, thermal, morphological, and functional properties were evaluated. After optimization with single US (41 min and 91% sonication intensity), sonication induced starch granule fragmentation, altering amorphous and partially crystalline regions, which increased amylose content (34%), reduced particle size (Dx50 = 12 μm), and modified granule surface morphology. The dual modification (the subsequent OSA reaction lasted 4.6 h under the same conditions) reached a degree of substitution of 0.02 and 81% efficiency, imparting amphiphilic properties to the starch. OSA groups were mainly incorporated into amorphous and surface regions, which decreased crystallinity, gelatinization temperature, and enthalpy. The synergistic effect of the modification with US and OSA in the dual modification significantly improved the solubility and swelling power of starch, resulting in better dispersion, functionality in aqueous systems, and chemical reactivity. These findings highlight the potential of dual modification to transform mango cotyledon starch into a versatile ingredient in the food industry as a thickener, a stabilizer in soups and sauces, an emulsifier, a carrier of bioactive and edible films; in the cosmetic industry as a gelling and absorbent agent; and in the pharmaceutical industry for the controlled release of drugs. Furthermore, valorizing mango cotyledons supports circular economy principles, promoting sustainable and value-added food product development.
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