Structuring Potential of Brown Rice Protein for Meat Analogue

ABSTRACT Brown rice protein (BRP) is a lesser‐used plant‐based ingredient derived from the grains of rice. However, it holds potential for diversifying protein sources for food products such as infant foods and bakeries as nutritious plant‐based sources. This study investigates the structuring potential of brown rice protein (BRP) using a high‐temperature shear cell (HTSC) under varying dry matter contents, BRP‐to‐soy ratios, and processing temperatures. The total dry matter content of the product was around 40%, which is a typical value for meat analogues. When processed under HTSC alone, BRP forms a non‐fibrous, dry, and crumbly product due to its low water‐holding capacity, solubility, and gelling ability compared to soy protein. However, partial incorporation of BRP at 4–9 wt% into blends with soy protein isolate (SPI) or concentrate (SPC) produced a range of products with small fibrous layers and diverse textural profiles. This indicates that BRP has potential to broaden the range of ingredients used in meat analogues when optimally combined with other ingredients.

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Publication Details

Journal
Applied Research
Published
2026-09-16
DOI
https://doi.org/10.1002/appl.70193
Primary Topic
Proteins in Food Systems
Type
article
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article

Structuring Potential of Brown Rice Protein for Meat Analogue

Kasidaj Sivakul, Julia K. Keppler, Atze Jan van der Goot
Applied Research
Proteins in Food Systems
article

Structuring Potential of Brown Rice Protein for Meat Analogue

Kasidaj Sivakul, Julia K. Keppler, Atze Jan van der Goot
article en

Abstract

ABSTRACT Brown rice protein (BRP) is a lesser‐used plant‐based ingredient derived from the grains of rice. However, it holds potential for diversifying protein sources for food products such as infant foods and bakeries as nutritious plant‐based sources. This study investigates the structuring potential of brown rice protein (BRP) using a high‐temperature shear cell (HTSC) under varying dry matter contents, BRP‐to‐soy ratios, and processing temperatures. The total dry matter content of the product was around 40%, which is a typical value for meat analogues. When processed under HTSC alone, BRP forms a non‐fibrous, dry, and crumbly product due to its low water‐holding capacity, solubility, and gelling ability compared to soy protein. However, partial incorporation of BRP at 4–9 wt% into blends with soy protein isolate (SPI) or concentrate (SPC) produced a range of products with small fibrous layers and diverse textural profiles. This indicates that BRP has potential to broaden the range of ingredients used in meat analogues when optimally combined with other ingredients.

Applied ResearchVol. 5(5)
Wageningen University & Research (NL)
Zero hunger
Openalex Percentile: Top 14%
Proteins in Food Systems
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Structuring Potential of Brown Rice Protein for Meat Analogue — Kasidaj Sivakul, Julia K. Keppler, et al. · Applied Research (2026) | TGRS Research Map | TGRS