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Updated: May 27, 2026

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Published on: May 16, 2021
Effects of sugars on post-mortem glycolysis in bovine muscle mince
O A Young1, S M Humphrey, D J Wild
1Meat Industry Research Institute of New Zealand (Inc.), PO Box 617, Hamilton, New Zealand.
Abstract:
Sternomandibularis muscles from steers were minced, within 75 min of slaughter, with sugars or amylases. The minces were held anoxically at 25°C for at least 7 h. At times samples were removed and chemically analysed. Glucose (1·5%) retarded the post-mortem pH fall, with kinetics similar to those of NaCl (2·0%). Typically, 1·5% glucose maintained the pH at 6·1, whereas control mince attained 5·5. Lesser amounts of glucose had a reduced effect. Other sugars were inactive. The metabolic effects of 1·5% added-glucose were compared with those of an iso-osmotic control, 1·5% added-fructose. For the glucose mince there was no change in glucose concentration over 7 h suggesting that the endogenous hexokinase was inactive. Further, more glycogen remained in the glucose mince that in the control, indicating that glucose inhibited glycolysis. This was confirmed by electron microscopy and was reflected in pH and lactate levels. Hexose monophosphates were strongly affected by glucose. In the control, their concentrations each fell in the first 2 h then increased steadily, as expected. In the presence of glucose, their concentrations were initially lower and decreased steadily with time. Concentrations of adenosine phosphates were little affected by glucose, but downstream products of purine metabolism showed marked differences, probably due to enhanced nucleotidase activity above pH 6. Glucose plus yeast hexokinase produced a mince with a rigor pH close to normal. The data indicated that phosphorylase activity was inhibited by glucose, and suggested that glucose was not phosphorylated because of muscle hexokinase inhibitors such as glucose-1,6-diphosphate.
Insights
Adding glucose to minced beef shortly after slaughter helps maintain a higher pH, preserving meat quality. This occurs because glucose inhibits glycolysis and preserves glycogen stores, impacting meat
Area of Science:
- * Meat science and post-mortem muscle biochemistry.
- * Understanding the metabolic fate of carbohydrates in muscle tissue.
Background:
- * Post-mortem pH decline is a critical factor influencing meat quality.
- * Glycolysis and glycogen metabolism significantly impact pH changes after slaughter.
Purpose of the Study:
- * To investigate the effect of glucose and other sugars on post-mortem pH fall in steer sternomandibularis muscle.
- * To elucidate the metabolic mechanisms by which glucose influences post-mortem muscle biochemistry.
Main Methods:
- * Minced sternomandibularis muscles from steers were treated with sugars or amylases and held anoxically.
- * Chemical analyses were performed over 7 hours to measure pH, lactate, and metabolite concentrations.
- * Electron microscopy was used to examine cellular changes.
Main Results:
- * 1.5% glucose significantly retarded the post-mortem pH fall, maintaining pH around 6.1 compared to 5.5 in controls.
- * Glucose inhibited glycolysis, preserved glycogen, and altered hexose monophosphate and purine metabolism.
- * Addition of glucose and yeast hexokinase resulted in a rigor pH close to normal.
Conclusions:
- * Glucose acts as a potent inhibitor of post-mortem glycolysis in muscle tissue.
- * The observed effects suggest glucose is not phosphorylated due to muscle hexokinase inhibitors.
- * Understanding these metabolic pathways can inform strategies for improving meat quality.
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