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Published on: May 4, 2020
Pediatric Reference Value Profiling of Essential Trace and Toxic Elements in Healthy Children and Adolescents Using
Mary Kathryn Bohn1,2, Matthew Nichols2,3, Liju Yang3
1CALIPER Program, Department of Pediatric Laboratory Medicine, The Hospital for Sick Children, Toronto, ON, Canada.
Insights
This study establishes pediatric reference intervals for trace elements in children, crucial for diagnosing deficiencies and toxicities. Results show some elements need age-specific interpretation, with reliable data from two mass spectrometry platforms.
Area of Science:
- Clinical Chemistry
- Pediatric Toxicology
- Mass Spectrometry
Background:
- Accurate assessment of trace and toxic elements is vital for pediatric health.
- Pediatric reference intervals (RIs) for elements are lacking on current analytical systems.
- Elemental imbalances pose significant risks in children.
Purpose of the Study:
- To establish pediatric reference values for 13 plasma and 22 whole blood trace elements.
- To define normal exposure limits for toxic elements in children.
- To address the lack of pediatric RIs on modern analytical platforms.
Main Methods:
- Recruited 320 healthy children and adolescents.
- Measured trace elements using triple quadrupole ICP-MS/MS and HR-SF-ICPMS.
- Established RIs and exposure limits per Clinical and Laboratory Standards Institute guidelines.
Main Results:
- Eight elements required age partitioning (e.g., copper, manganese, cadmium).
- Excellent concordance was observed between ICP-MS/MS and HR-SF-ICPMS results.
- Few exceptions in concordance noted for molybdenum, cobalt, and nickel.
Conclusions:
- First study deriving pediatric RIs and exposure limits simultaneously on two validated MS platforms.
- Provides essential data for clinical decision-making in pediatric trace element analysis.
- Highlights the need for age-specific interpretation and confirms method comparability.
Background:
Assessment of trace and toxic element status is important for the diagnosis and monitoring of several pediatric conditions. Elemental deficiency and toxicity have serious implications, particularly in pediatrics wherein risk is higher. Pediatric reference intervals (RIs) for trace elements and normal exposure limits for toxic elements are lacking on modern analytical systems. Herein, reference values were established for 13 plasma and 22 whole blood trace elements in the Canadian Laboratory Initiative on Pediatric Reference Intervals (CALIPER) cohort of healthy children and adolescents.
Methods:
Approximately 320 healthy children and adolescents were recruited with informed consent. Trace elements were measured in whole blood and plasma samples using 2 technologies: (a) triple quadrupole inductively coupled plasma tandem mass spectrometry (ICP-MS/MS) (n = 172) and (b) high-resolution sector field ICPMS (HR-SF-ICPMS) (n =161). RIs and normal exposure limits were then established according to Clinical and Laboratory Standards Institute guidelines.
Results:
Of all elements assessed, none required sex partitioning and 8 required age partitioning (e.g., copper, manganese, and cadmium). Reference value distributions determined via ICP-MS/MS and HR-SF-ICPMS demonstrated excellent concordance, with few exceptions (e.g., molybdenum, cobalt, and nickel).
Conclusions:
These data represent the first study wherein pediatric RIs and normal exposure limits were derived simultaneously on 2 different clinically validated MS platforms which provide urgently needed data to inform clinical decision-making for trace elements in pediatrics. Study findings suggest some trace elements require age-specific consideration for appropriate interpretation. Highly concordant observations across the 2 analytical methods also demonstrate the comparability and reliability of results obtained on both platforms.
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