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Safety of glucose-containing solutions during accidental hyperinfusion in piglets
1Department of Anaesthesiology, Hannover Medical School, Hannover, Germany. witt.lars-henrik@mh-hannover.de
Insights
Accidental hyperinfusion of balanced electrolyte solution with 1% glucose (BS-G1) in piglets showed the widest safety margin. Other solutions like 5% glucose (HE-G5) and 40% glucose (G40) proved less safe and hazardous, respectively.
Area of Science:
- Pediatric critical care medicine
- Intensive care
- Fluid resuscitation
Background:
- Fluid management errors pose significant risks in pediatric care.
- Understanding the safety of intravenous fluids is crucial for preventing complications.
Purpose of the Study:
- To evaluate the safety margin of accidental hyperinfusion of different glucose and electrolyte solutions in a pediatric animal model.
- To compare the physiological effects of BS-G1, HE-G5, and G40 solutions when infused in excess.
Main Methods:
- An experimental study involving fifteen piglets (12.1 kg average weight).
- Random assignment to receive 100 ml/kg of BS-G1, HE-G5, or G40 over 1 hour.
- Monitoring of blood electrolytes, glucose, osmolality, and intracranial pressure (ICP) throughout the infusion.
Main Results:
- BS-G1 caused moderate hyperglycemia but no significant adverse effects.
- HE-G5 led to marked hyperglycemia and hyponatremia.
- G40 induced severe hyperglycemic/hyperosmolar decompensation, hyponatremia, and cardiac arrest, proving hazardous.
Conclusions:
- Balanced electrolyte solution with 1% glucose (BS-G1) demonstrates the widest safety margin for accidental hyperinfusion in pediatric perioperative fluid management.
- Hypotonic electrolyte solution with 5% glucose (HE-G5) is less safe, and 40% glucose (G40) is hazardous.
- Findings support BS-G1 as a safer option to enhance patient safety in pediatric fluid management.
Background:
Errors in fluid management can lead to significant morbidity in children. We conducted an experimental animal study to determine the margin of safety in accidental hyperinfusion of different glucose and electrolyte containing solutions.
Methods:
Fifteen piglets [bodyweight 12.1 (sd 2.0) kg] were randomly assigned to receive either 100 ml kg⁻¹ of balanced electrolyte solution with glucose 1% (BS-G1), hypotonic electrolyte solution with glucose 5% (HE-G5), or glucose 40% solution (G40) over 1 h. Blood electrolytes, glucose, and osmolality and intracranial pressure (ICP) were measured before, during, and after fluid administration.
Results:
Hyperinfusion of BS-G1 led to moderate hyperglycaemia [baseline 3.4 (sd 1.3) mmol litre⁻¹, study end 12.6 (1.8) mmol litre⁻¹], but no other relevant pathophysiological alterations. Hyperinfusion of HE-G5 produced marked hyperglycaemia [baseline 3.9 (1.2) mmol litre⁻¹, study end 48.6 (4.3) mmol litre⁻¹, P < 0.05] and hyponatraemia [baseline 136.4 (1.3) mmol litre(-1), study end 119.6 (2.1) mmol litre⁻¹, P < 0.05], whereas osmolality remained stable during the course of the study. Hyperinfusion of G40 induced acute hyperglycaemic/hyperosmolar decompensation with an extreme decrease in serum electrolytes [e.g. sodium baseline 138 (1.1) mmol litre⁻¹, 30 min 87.8 (6.4) mmol litre⁻¹, P < 0.01], leading to cardiac arrest after infusion of 50-75 ml kg⁻¹. ICP remained within a physiological range in all groups.
Conclusions:
In an animal model of accidental hyperinfusion, BS-G1 showed the widest margin of safety and can therefore be expected to enhance patient safety in perioperative fluid management in children; HE-G5 proved significantly less safe; and G40 was found to be outright hazardous.
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