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January 23, 2026Fermentation0 citationsOpen Access

Gluten-Free Steamed Bread Formulated with Rice–Amaranth Flours via Sourdough Fermentation

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RHRicardo H. Hernández-FigueroaBMBeatriz Mejía-GaribayEPEnrique Palou

Key Points

  • The central aim is to assess the impact of probiotics in gluten-free steamed bread on various quality attributes and shelf stability.
  • Formulated gluten-free rice-amaranth steamed bread with and without probiotics.
  • Evaluated physicochemical characteristics and sensory attributes over 10 days of storage.
  • Analyzed moisture content, water activity, texture, and volatile organic compounds (VOCs).
  • Sourdough significantly reduced pH and hardness while increasing moisture and water activity.
  • After cooking, probiotic viability decreased by 6 to 8 log10 CFU/g.
  • Sourdough improved texture and VOC profile without altering physical or sensory characteristics.

Abstract

The aims of this study were to evaluate the impact of probiotics (added as a starter sourdough and microcapsules) on gluten-free (GF) rice–amaranth steamed bread (SB) regarding physicochemical characteristics, sensory attributes, probiotic viability, and volatile organic compounds (VOCs). Also, probiotic viability, pH, total titratable acidity (TTA), moisture content, water activity, and texture were determined for 10 days of storage. GF-SB based on rice and amaranth was formulated and cooked at 90 ± 2 °C for 40 min. Three types of GF-SB were studied: control, with 30% sourdough fermented using Lactiplantibacillus plantarum NRRL B-4496 (GF-P), and with sourdough and encapsulated Limosilactobacillus reuteri DSM 17938 (GF-PC). The encapsulation yield was 94.9%. The viability of both probiotics was drastically reduced after steamed cooking, with losses ranging from 6 to 8 log10 CFU/g. Sourdough decreased the pH (from 6.04 to 5.48–5.71) and hardness (control 46 N, sourdough ~25 N) while increasing lactic and acetic acids, moisture content (control 38%, sourdough ~46%), and water activity. Sourdough and probiotic capsules did not affect volume (~1.24 cm3/g), width-to-height ratio (~2.4), color, or sensory attributes. The VOCs revealed higher relative abundances of certain yeast-derived higher alcohols and oxidation-related carbonyl-trapping derivatives in control GF-SB, whereas bread with sourdough showed higher levels of long-chain hydrocarbons and esters, such as heptacosane and decanoic acid decyl ester. During the storage, Lpb. plantarum increased to ~3 log10 CFU/g and Lim. reuteri remained steady. pH and TTA (0.03–0.04%) remained constant during storage. After 10 days of storage, hardness increased significantly (p < 0.05) in all GF-SB, doubling the initial values. Moisture content remained constant, while water activity decreased in GF-P (Δ = 0.025) and the control (Δ = 0.015). The use of sourdough in GF-SB improved texture, moisture content, and VOCs without modifying physical and sensory properties.

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Cite This Study

Hernández-Figueroa et al. (2026) studied this question.

synapsesocial.com/papers/69731005c8125b09b0d1fc36https://doi.org/10.3390/fermentation12010065
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