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Whole-body PET/MRI of Pediatric Patients: The Details That Matter
Published on: December 19, 2017
Brain tissue gadolinium retention in pediatric patients after contrast-enhanced magnetic resonance exams:
A Luana Stanescu1, Dennis W Shaw2, Nozomu Murata3,4
1Department of Radiology, Seattle Children's Hospital, University of Washington, 4800 Sand Point Way NE, M/S MA 7.220, Seattle, WA, 98105, USA. stanescu@u.washington.edu.
Background:
Retained gadolinium from gadolinium-based contrast agents (GBCAs) used in MR exams has been inferred based on signal changes on serial brain MRI and subsequently demonstrated pathologically in adults. Retention has been similarly inferred in children but pathological demonstration in pediatric patients is limited. The long-term effects of retained gadolinium are unknown but are potentially of greater concern in children given their increased vulnerability from continuing development and their expected longer period of exposure. Several factors can influence gadolinium retention. In adults as well as in children, greater accumulation has been demonstrated based on MR signal changes with linear compared with macrocyclic gadolinium chelates, attributed to lower chelate affinity with linear agents. Effects of age at exposure on retention are unknown, while differences in GBCA washout rates are still under investigation and might affect gadolinium retention relative to time of GBCA administration.
Objective:
The purpose of this study was to confirm whether gadolinium brain deposits are present in pediatric patients who received GBCAs and to quantify the amounts present.
Materials And Methods:
Brain autopsy specimens from 10 pediatric patients between 1 year and 13 years of age who underwent at least one contrast-enhanced MR exam were analyzed for elemental gadolinium using inductively coupled plasma mass spectrometry. Brain samples included white matter, basal ganglia (putamen, globus pallidus), thalamus, dentate nucleus and tumor tissue as available. Type and dose of contrast agent, number and timing of contrast-enhanced MR exams and renal function (estimated glomerular filtration rate [eGFR]) were documented for each child.
Results:
Patient exposures ranged from 1 dose to 20 doses of GBCAs including both macrocyclic and linear ionic agents. Gadolinium was found to be present in brain tissue in all children and was generally highest in the globus pallidus. Those who received only macrocyclic agents showed lower levels of gadolinium retention.
Conclusion:
This study demonstrates pathological confirmation of gadolinium retention in brain tissue of a series of pediatric patients exposed to GBCAs including not only linear ionic agents but also macrocyclic agents with both nonionic and ionic compounds. The distribution and deposition levels in this small pediatric population are comparable with the findings in adults. While the clinical significance of these deposits remains unknown, at this point it would be prudent to exert caution and avoid unnecessary use of GBCAs in pediatric patients.
Insights
Gadolinium deposition was confirmed in the brains of pediatric patients who received gadolinium-based contrast agents (GBCAs). This study highlights the need for caution in using GBCAs in children due to potential long-term effects.
Area of Science:
- Neurology
- Radiology
- Pediatrics
Background:
- Gadolinium-based contrast agents (GBCAs) are used in MRI scans.
- Gadolinium retention in the brain has been observed in adults and inferred in children.
- Long-term effects of gadolinium retention in developing brains are unknown and concerning.
Purpose of the Study:
- To confirm the presence of gadolinium brain deposits in pediatric patients.
- To quantify the amount of gadolinium present in pediatric brain tissue.
Main Methods:
- Analysis of brain autopsy specimens from 10 pediatric patients (ages 1-13).
- Measurement of elemental gadolinium using inductively coupled plasma mass spectrometry.
- Documentation of GBCA type, dose, number of MR exams, and renal function.
Main Results:
- Gadolinium was detected in the brain tissue of all pediatric patients studied.
- Gadolinium levels were generally highest in the globus pallidus.
- Patients receiving only macrocyclic agents showed lower gadolinium retention.
Conclusions:
- Pathological confirmation of gadolinium retention in pediatric brains after GBCA exposure.
- Gadolinium deposition in children is comparable to that in adults.
- Caution is advised regarding unnecessary GBCA use in pediatric patients due to unknown clinical significance.
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