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Atomic Absorbance Spectroscopy to Measure Intracellular Zinc Pools in Mammalian Cells
Published on: May 16, 2019
Zinc homeostasis in pediatric critical illness
Natalie Z Cvijanovich1, Janet C King, Heidi R Flori
1Divisions of Critical Care, Children's Hospital, University of Cincinatti College of Medicine, and Research Center Oakland, Oakland, CA, USA. ncvijanovich@mail.cho.org
Insights
Critically ill children exhibit low plasma zinc levels, which correlate with inflammation and organ failure severity. These findings suggest potential benefits from zinc supplementation in this vulnerable population.
Area of Science:
- Pediatric Critical Care Medicine
- Nutritional Biochemistry
- Immunology
Background:
- Plasma zinc concentrations frequently decline in critically ill children.
- Metallothionein expression and inflammatory responses are implicated in zinc homeostasis.
- Understanding these relationships is crucial for managing pediatric critical illness.
Purpose of the Study:
- To investigate the association between low plasma zinc levels and metallothionein expression in critically ill children.
- To explore the correlation between plasma zinc concentrations and markers of inflammation and organ failure.
Main Methods:
- A prospective pilot study was conducted in a pediatric intensive care unit.
- Blood samples were collected from critically ill children (PRISM III score >5 or organ failure) on days 1 and 3.
- Analyses included plasma zinc and copper, metallothionein isoform expression, and cytokine levels (e.g., C-reactive protein, interleukin-6).
Main Results:
- All 20 enrolled children presented with low plasma zinc levels on day 1, persisting on day 3.
- Plasma zinc levels positively correlated with metallothionein isoforms (MT-1A, MT-1G, MT-1H) on day 1.
- On day 3, plasma zinc inversely correlated with C-reactive protein and interleukin-6, and was lower in patients with multiple organ failures.
Conclusions:
- Critically ill children demonstrate significantly low plasma zinc concentrations.
- Plasma zinc levels are linked to systemic inflammation and the extent of organ dysfunction.
- Further research into zinc supplementation for critically ill children is warranted.
Objective:
We explored the hypothesis that marked decline in plasma zinc concentrations among critically ill children is related to shifts in metallothionein expression and inflammation.
Design:
Prospective pilot study.
Setting:
Intensive care unit of tertiary care children's hospital.
Patients:
All children (<18 yrs) with unadjusted Pediatric Risk of Mortality III score >5 or at least one organ failure admitted to the pediatric intensive care unit from March through August 2006 were eligible for enrollment.
Interventions:
After consent, blood samples were collected on days 1 and 3 of illness and analyzed for serum chemistries, plasma zinc and copper levels, metallothionein isoform expression, and cytokine levels.
Measurements And Main Results:
Twenty patients were enrolled, with median age of 2.9 yrs (interquartile range, 0.7-10.1). Male to female ratio was 1.2:1. All patients had low zinc levels (mean, 0.43; range, 0.26-0.66 mug/dL) on day 1 of pediatric intensive care unit admission, and remained low (mean, 0.51; range, 0.26-0.81 mug/dL) on day 3, even when corrected for hypoalbuminemia. In comparison, serum copper levels were normal. On day 1, there was a positive correlation between zinc levels and expression of MT-1A (p < 0.01), MT-1G (p = 0.02), and MT-1H (p = 0.03). Plasma zinc levels correlated inversely with C-reactive protein levels (r = -.75, p = 0.01) and interleukin-6 levels (r = -.53, p = 0.04) on day 3. On day 3, patients with two or more organ failures had significantly lower plasma zinc concentrations compared with patients with =1 organ failure (p = 0.03).
Conclusions:
Plasma zinc concentrations are low in critically ill children. Plasma zinc correlated with measures of inflammation (C-reactive protein and interleukin-6) on day 3; low plasma zinc concentrations were associated with the degree of organ failure on day 3. These data serve as the basis for a larger study of shifts in plasma zinc concentrations in critically children to potentially identify patients who might benefit from zinc supplementation.
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