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June 3, 2026Food biomacromolecules.0 citationsOpen Access

The enhancing effects of locust bean gum and xanthan gum on the digestibility of potato starch under thermal treatments

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XHXiaopei HuYZYidi ZhangFZFenshu Zhang

Key Points

  • This research examines how locust bean gum and xanthan gum affect the digestibility of potato starch under various thermal treatments.
  • In vitro digestibility tests were conducted alongside Fourier transform infrared spectroscopy and scanning electron microscopy.
  • Potato starch was treated with locust bean gum and xanthan gum under normal and high pressure to create samples for analysis.
  • Fluctuation rates of breakdown and setback values were introduced as indicators of thermal stability and digestibility.
  • The AT-PLX sample exhibited a lower hydrolysis rate compared to plain potato starch, indicating decreased digestibility.
  • Resistant starch content increased significantly in the AT-PLX sample, suggesting enhanced stability under thermal treatment.
  • The lower viscosity and altered microscopic morphology further contributed to the findings, highlighting the effectiveness of the gum combinations.

Abstract

Abstract Locust bean gum (LBG) and xanthan gum (XG) played regulatory roles in the digestibility of potato starch (PS) during thermal treatments. The relative physicochemical characteristics were investigated through an in vitro digestibility test, Fourier transform infrared spectroscopy, and rapid viscosity analyzer, as well as scanning electron microscopy. PS combined with LBG and XG was heated successively under normal pressure and high pressure to obtain the AT‐PLX sample. Compared to PS, the AT‐PLX sample had a lower hydrolysis rate, larger resistant starch content, decreased viscosity, and partly covered microscopic morphology. The changes might be attributed to the network formed via hydrogen bonds between PS and LBG/XG. Besides, the fluctuation rates of breakdown and setback values (FRBD and FRSB, respectively) were proposed as novel indicators of stability under heat and retrogradation to evaluate the pasting property comprehensively and accurately. The AT‐PLX sample likely belonged to the stable soft gel with a stronger cross‐linking ability due to the lower FRSB and higher FRBD values, which also contributed to its lowest digestibility. These findings would provide an alternative and friendly strategy for the development of starch‐based soft food or material and have the potential to be utilized in nutrient delivery or special diets.

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Cite This Study

Hu et al. (2026) studied this question.

synapsesocial.com/papers/6a1fc76ddee9eb8c0dce856bhttps://doi.org/10.1002/fob2.70072
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