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Foods· 2026Q1

Rheological Optimization of Reduced-Sugar Ice Cream Enriched with Inulin and Carob Flour

Teresa Stefania Dell'Endice, Giusy Rita Caponio, Anna Maria Giudetti, Davide De Angelis et al.

Short summary

An optimized reduced-sugar ice cream formulation achieved a 71% reduction in glucose and sucrose, comparable rheological properties to a commercial reference, and a 25% decrease in perceived sweetness, by using inulin and carob flour as functional ingredients.

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Key points

  • An optimized reduced-sugar ice cream formulation reduced glucose and sucrose by approximately 71%.
  • Inulin and carob flour provided a thickening effect and contributed to a total dietary fiber content of 11.59 g/100g.
  • The optimized ice cream showed a rheological profile broadly comparable to a commercial reference, exhibiting pseudoplastic behavior.
  • Perceived sweetness was significantly reduced by 25% compared to the control formulation.

AI-generated from the title and abstract; the full text is not read.

Abstract

Sugar reduction is technologically challenging in ice cream because sugars contribute not only to sweetness but also to rheological properties. A D-optimal mixture design was applied to optimize the formulation of reduced-sugar ice cream using inulin and carob flour as functional ingredients. The effects of sucrose, dextrose, inulin, and carob flour on viscosity, consistency index, flow behavior index, and thixotropy were investigated. All formulations exhibited pseudoplastic behavior, although marked differences in rheological properties were observed within the experimental domain. Sucrose increased viscosity and consistency, whereas dextrose reduced both parameters. Inulin and carob flour exerted a pronounced thickening effect due to their water-binding capacity. Based on the rheological targets defined using a commercial reference ice cream, an optimized formulation was identified and experimentally validated. The optimized sample showed a broadly comparable rheological profile to the commercial reference, although some discrepancies between predicted and experimental values were observed. Compared with both the experimental and commercial controls, the optimized formulation showed lower sucrose and glucose contents, corresponding a reduction of approximately 71% in glucose and sucrose. Total dietary fiber (calculated value) reached 11.59 g 100 g−1, allowing the product to be potentially classified as “high in fiber” with a lower energy value. Sensory evaluation revealed a significant reduction in perceived sweetness (−25%) compared to the control formulation. Inulin and carob flour can be effectively used to develop reduced-sugar ice cream with improved nutritional quality while maintaining properties in agreement with the formulation targets.

The authors' abstract, as published at the source. Foods, 2026 · DOI ↗

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Field: Nutrition and Dietetics

Nutrition and DieteticsNursing