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The role of pH decrease in tofu-like precipitate formation using magnesium chloride
1Department of Innovative Food Sciences, School of Food Sciences and Nutrition, Mukogawa Women's University, Nishinomiya, Hyogo, 663-8558, Japan.
Abstract:
Uncertainty surrounds the role of pH in tofu-like precipitate (TLP) formation using MgCl2. In this study, to clarify the role of MgCl2-induced pH decrease in TLP formation, the protein concentration in the supernatant, weight of wet precipitate, and the solubility in 2 M urea at constant pH (6.5 or 6.2) were measured using a buffer and comparing the buffering effect under variable pH conditions to the effect observed without buffer. Analysis of protein concentration in the supernatant showed no precipitation of soymilk proteins under stable pH conditions of 6.5. Wet precipitate formation varied substantially during TLP formation at three different pHs; the weight slightly increased with the increase in MgCl2 concentration up to 20 mM at a constant pH of 6.5. However, wet precipitation was substantially enhanced by MgCl2 (≥10 mM) at a constant pH of 6.2 but rapidly increased by MgCl2 (≥7 mM) under variable pH conditions. The protein concentrations and wet precipitate weight at 20 mM MgCl2 under constant pH conditions showed contrasting patterns. However, the weight of dry precipitate was almost the same under both constant pH (6.5 and 6.2) conditions. Urea solubility under constant and variable pH conditions differed; no urea-insoluble precipitates were produced under constant pH conditions. These results suggest that pH decrease is essential for bringing proteins closer together for MgCl2-mediated TLP formation. This study will aid in understanding the mechanisms underlying TLP formation and support further discovery of new coagulants for the effective production of new tofu-like and tofu-based foods.
Insights
Magnesium chloride (MgCl2) causes tofu-like precipitate (TLP) formation, but pH changes are key. This study shows a pH decrease is essential for TLP formation, aiding new food product development.
Area of Science:
- Food Science
- Biochemistry
- Materials Science
Background:
- The role of pH in magnesium chloride (MgCl2)-induced tofu-like precipitate (TLP) formation remains unclear.
- Understanding TLP formation mechanisms is crucial for developing novel coagulants and food products.
Purpose of the Study:
- To elucidate the specific role of MgCl2-induced pH decrease in TLP formation.
- To compare TLP formation under constant versus variable pH conditions.
Main Methods:
- Soymilk protein precipitation was analyzed by measuring supernatant protein concentration, wet precipitate weight, and urea solubility.
- Experiments were conducted using a buffer to maintain constant pH (6.5 or 6.2) and compared to variable pH conditions.
- MgCl2 concentrations were varied to observe their effect on precipitation.
Main Results:
- No significant protein precipitation occurred at a constant pH of 6.5.
- Wet precipitate formation increased with MgCl2 concentration at pH 6.5, but was substantially enhanced at pH 6.2 and under variable pH conditions.
- Dry precipitate weight was similar at constant pH levels, but urea solubility differed, indicating pH-dependent structural changes.
Conclusions:
- A decrease in pH is essential for aggregating proteins, facilitating MgCl2-mediated TLP formation.
- These findings provide insights into TLP formation mechanisms and potential new coagulants for tofu-based foods.
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