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Published on: June 11, 2012
Relationship between hyperglycemia, hormone disturbances, and clinical evolution in severely hyperglycemic post
Yolanda Ballestero, Jesús López-Herce1, Rafael González
1Pediatric Intensive Care Department, Hospital General Universitario Gregorio Marañón Complutense University of Madrid, Madrid, Spain. pielvi@hotmail.com.
Insights
Critically ill children with severe hyperglycemia show initial low beta-cell function and insulin sensitivity. Higher cortisol and growth hormone levels were seen in non-survivors, indicating poorer prognosis in pediatric critical care.
Area of Science:
- Pediatric Endocrinology
- Critical Care Medicine
- Metabolic Disorders
Background:
- Severe hyperglycemia is common in critically ill children.
- Hormonal changes and their impact on prognosis are not fully understood.
Purpose of the Study:
- To investigate hormonal alterations in critically ill children with severe hyperglycemia.
- To explore the relationship between these hormonal changes, prognosis, and intensive care unit (ICU) length of stay.
Main Methods:
- Observational study of 29 critically ill children with hyperglycemia (blood glucose > 180 mg/dL).
- Assessed severity of illness using PIM2, PRISM, and PELOD scores.
- Measured blood glucose, insulin, C-peptide, cortisol, growth hormone, and other hormones; calculated beta-cell function and insulin resistance using HOMA.
Main Results:
- Initial hyperglycemia averaged 249 mg/dL, improving to 125 mg/dL by 72 hours.
- Patients exhibited low initial beta-cell function (49.2%) and insulin sensitivity (13.2%).
- Non-survivors had elevated cortisol and growth hormone levels at diagnosis; hyperglycemia onset was later compared to survivors.
Conclusions:
- Critically ill children with severe hyperglycemia present with impaired beta-cell function and insulin sensitivity.
- Elevated cortisol and growth hormone levels are associated with mortality in this population.
- Hormonal profiles and glycemic control may influence outcomes in pediatric critical care.
Background:
To study hormonal changes associated with severe hyperglycemia in critically ill children and the relationship with prognosis and length of stay in intensive care.
Methods:
Observational study in twenty-nine critically ill children with severe hyperglycemia defined as 2 blood glucose measurements greater than 180 mg/dL. Severity of illness was assessed using pediatric index of mortality (PIM2), pediatric risk of mortality (PRISM) score, and pediatric logistic organ dysfunction (PELOD) scales. Blood glucose, glycosuria, insulin, C-peptide, cortisol, corticotropin, insulinlike growth factor-1, growth hormone, thyrotropin, thyroxine, and treatment with insulin were recorded. β-cell function and insulin sensitivity and resistance were determined on the basis of the homeostatic model assessment (HOMA), using blood glucose and C-peptide levels.
Results:
The initial blood glucose level was 249 mg/dL and fell gradually to 125 mg/dL at 72 hours. Initial β-cell function (49.2%) and insulin sensitivity (13.2%) were low. At the time of diagnosis of hyperglycemia, 50% of the patients presented insulin resistance and β-cell dysfunction, 46% presented isolated insulin resistance, and 4% isolated β-cell dysfunction. β-cell function improved rapidly but insulin resistance persisted. Initial glycemia did not correlate with any other factor, and there was no relationship between glycemia and mortality. Patients who died had higher cortisol and growth hormone levels at diagnosis. Length of stay was correlated by univariate analysis, but not by multivariate analysis, with C-peptide and glycemic control at 24 hours, insulin resistance, and severity of illness scores.
Conclusions:
Critically ill children with severe hyperglycemia initially present decreased β-cell function and insulin sensitivity. Nonsurvivors had higher cortisol and growth hormone levels and developed hyperglycemia later than survivors.
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