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March 3, 2026SHILAP Revista de lepidopterología0 citationsOpen Access

Modulating Magnesium Ion Release for Dual Enhancement of Gel Properties and Nutrient Retention in Selenium-Enriched Tofu

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FDFute DuHenan University of TechnologyTTTingting TangChongqing University of Arts and SciencesJZJinxiaohan ZhangHenan University of Technology

Key Points

  • Improved nutrient retention and gel properties were observed with magnesium ion release regulation.
  • The optimal shear rate for magnesium ion release was determined to be 8000 r/min, ensuring the best texture.
  • A comparative analysis revealed better resilience and water-holding capacity than conventional methods.
  • Regulation of shear rate effectively controls magnesium ion release to enhance tofu quality.

Abstract

Traditional rapid coagulation processes often compromise the quality of selenium-enriched tofu, leading to suboptimal texture and substantial nutrient loss. This study regulated the gel properties and nutrient retention of selenium-enriched tofu by controlling magnesium ion (Mg2+) release from a water-in-oil (W/O) emulsion coagulant through shear rate adjustment (6000-12,000 r/min). The results demonstrated that at the optimal shear rate of 8000 r/min, sustained Mg2+ release facilitated the formation of a homogeneous and dense microstructure accompanied by significantly increased β-sheet content. Compared with conventional methods, the resulting tofu exhibited significant improvements in resilience (increased from 38.73% to 42.54%), water-holding capacity, and nutrient retention, with the selenium content rising from 44.42% to 54.57%. Conversely, deviations from this optimal condition produced either mechanically weak gels or structurally compromised networks with reduced nutrient retention capacity. This study establishes the regulation of shear rate to control Mg2+ release rate as an effective strategy for producing premium selenium-enriched tofu with synchronized optimization of texture and nutritional value, providing new insights for improving the overall quality of functional plant-based protein gels.

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Cite This Study

Du et al. (2026) studied this question.

synapsesocial.com/papers/69a75b14c6e9836116a21b8chttps://doi.org/10.3390/foods15030452
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