Tuning properties of native potato starch by combining heat-moisture treatment with ion exchange

IF 6.5 Q1 CHEMISTRY, APPLIED Carbohydrate Polymer Technologies and Applications Pub Date : 2025-03-01 Epub Date: 2025-01-16 DOI:10.1016/j.carpta.2025.100675
Johanna A. Thomann , Michael Polhuis , J.O.P. Broekman , Peter J. Deuss , Hero J. Heeres , André Heeres
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Abstract

This study provides insights into novel combinations of hydrothermal modifications and mineral enrichment by demonstrating the versatility of this environmentally more benign approach compared to other common chemical starch modifications like crosslinking. Heat-moisture treatment (HMT) (15 % moisture, 100 °C) of native potato starch (NPS) affords granular products that gelatinise at lower temperatures, hold more water as gel, and are more susceptible to enzymatic digestion. Prior mineral enrichment of NPS with sodium, potassium, magnesium and calcium ions yielded significant changes in pasting curves, with monovalent cations increasing peak viscosity, while divalent cations decrease peak viscosity through ionic crosslinking of phosphate groups, allowing further fine tuning of swelling behaviour. Both short and long HMT (4 h and 16 h) triggered partial disruption of crystallinity and an increase in particle size without visible surface damage as evidenced by X-ray diffraction, laser diffraction and scanning electron microscopy. These novel products may find applications where a thickening agent is needed, and high levels of target minerals are desirable like sport nutrition. The viscosity behaviour, available energy and essential minerals may be beneficial to the formulation and nutritional value of energy gels, while adhering to clean-label requirements of today`s food industry.

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热湿处理与离子交换相结合对马铃薯淀粉性能的调优
与其他常见的化学淀粉改性(如交联)相比,该研究通过展示这种对环境更友好的方法的多功能性,为热液改性和矿物富集的新组合提供了见解。原生马铃薯淀粉(NPS)的热湿处理(HMT)(15%的水分,100°C)提供颗粒状产品,在较低的温度下糊化,保持更多的水作为凝胶,并且更容易被酶消化。先前用钠、钾、镁和钙离子富集NPS的矿物会产生显著的糊化曲线变化,单价阳离子增加峰值粘度,而二价阳离子通过磷酸基团的离子交联降低峰值粘度,从而允许进一步微调膨胀行为。x射线衍射、激光衍射和扫描电镜均证实,短时间和长时间的HMT (4 h和16 h)均可引起结晶度的部分破坏和颗粒尺寸的增加,但表面没有明显损伤。这些新产品可能会在需要增稠剂和高水平的目标矿物质(如运动营养)的地方找到应用。粘度行为,可用能量和必需矿物质可能有利于能量凝胶的配方和营养价值,同时坚持当今食品工业的清洁标签要求。
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