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

Johanna Thomann, Michael Polhuis, J. O.P. Broekman, Peter Deuss, Hero J. Heeres, André Heeres

Research output: Contribution to journalArticleAcademicpeer-review

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.
Original languageEnglish
Article number100675
JournalCarbohydrate Polymer Technologies and Applications
Volume9
DOIs
Publication statusPublished - 1 Mar 2025

Keywords

  • food industry
  • heat-moisture treatment
  • hydrothermal modification
  • mineral enrichment
  • native potato starch
  • nutrients

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  • Innovatie Hub Oost-Groningen

    Heeres, A. (PI)

    18/12/2031/12/23

    Project: Research

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