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CompletedNCT03107195Updated Dec 12, 2022

Biokinetics Study of Tc-99m DMSA in Pediatric Molecular Imaging

An observational study in Renal Disease, sponsored by Boston Children's Hospital. Completed at 1 site in United States. Open to participants aged 9 Months to 6 Years. Per ClinicalTrials.gov, last updated 2022-12-12.

Sponsored by Boston Children's Hospital · Observational

Study type
Observational
Model
Other
Time perspective
Other
Enrollment
24
Ages
9 Months to 6 Years
Sex
All
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Study summary

The radiation exposure resulting from medical imaging is a topic of some concern. Nuclear medicine provides potentially life-saving information regarding physiological processes, and is of particular value in children where the rapid and unequivocal diagnosis of pathological concerns is essential for the health of these patients. The overall objective of this investigation is to optimize pediatric patient absorbed dose by keeping it as low as possible while maintaining excellent diagnostic quality of nuclear medicine images. This is particularly important since children are at increased risk due to the enhanced radiosensitivity of their tissues and the longer time-period over which radiation effects may manifest. Current dosimetric estimations in children are based on either animal biokinetic or pharmacokinetic data from adults due to paucity of data that exists for children. This situation will be improved through the following specific aims:

  • Collect image-based pharmacokinetic (PK) data from patient volunteers in different age groups scheduled for routine nuclear medicine studies for 4 radiopharmaceuticals commonly used in pediatric nuclear medicine
  • Pool and analyze the data for different age groups for each radiopharmaceuticals and
  • Generate biokinetic models to be used in subsequent dosimetric models for the optimization of pediatric nuclear medicine procedures.

Since inadequate pharmacokinetic data currently exist in these patients, the investigators will use the data acquired in this study to establish PK models applicable to different age categories. Data on the pharmacokinetics of agents used in pediatric nuclear medicine are almost completely lacking. Internationally adopted dose coefficients (mSv/MBq) for pediatric nuclear medicine make age-dependent adjustments only for patient size and anatomical differences, while time-dependent kinetics from adult PK models are assumed due to the lack of kinetic data for children. The data obtained from this study will make it possible for the first time to determine how the PK in pediatric patients differs from adults. This will be done for Tc-99m dimethylsuccinic acid (DMSA), a radiopharmaceutical commonly used for pediatric nuclear medicine imaging. The overall hope is that results will allow the molecular imaging community to implement pediatric dose-reduction approaches that substantially improve upon current guidelines pointing to future technological advances that could yield even greater dose-reduction while simultaneously improving diagnostic image quality.

Read the detailed description

The overall objective of this investigation is to optimize pediatric patient absorbed dose by keeping it as low as possible while maintaining and even improving the diagnostic quality of nuclear medicine images. Current dosimetric estimations in children are based on either animal biokinetic or pharmacokinetic data from adults. This is due to paucity of data that exists specifically for children. This situation will be improved through the following specific aims:

  • Collect imaging-based pharmacokinetic (PK) data from patient volunteers in different age groups scheduled for selected, routine nuclear medicine studies for 4 radiopharmaceuticals commonly used in pediatric nuclear medicine
  • Pool and analyze the data for different age groups for each radiopharmaceuticals and
  • Generate biokinetic models to be used in subsequent dosimetric models for the optimization of pediatric nuclear medicine procedures.

Pediatric absorbed dose estimates that are typically reported apply adult PK data with pediatric variations in body size and anatomy but not for differences in physiology between children and adults. Depending on the diagnostic agent, such differences can be of greater impact than anatomical differences. The investigators will acquire image data that will allow us to develop PK models for Tc-99m dimethylsuccinic acid (DMSA), a radiopharmaceutical commonly used in children for renal cortical imaging. Patients undergoing standard of care imaging will be asked to consent to being imaged at one additional time point, either prior or subsequent to the time typical for clinical imaging. No patient will be asked to undergo more than one additional imaging time-point.

It is important to note that the patient volunteers will not receive any additional radiation exposure for inclusion in this study. They are only being ask to allow imaging at an additional time point.

Patients ages 1-6 years old will be enrolled. Routine imaging will be performed 3-4 h post-administration (PA) with a dual-detector rotating gamma camera. In each age group, half of the subjects will also be imaged between 30 and 90 min, post-administration. The 2nd half will be imaged at 4-6 h, post-administration.

The additional imaging will occur on the day of the clinically indicated procedure. Other than that, there is no timeline associated with this study.

Image data acquired from the subjects will be analyzed by the principle investigator and by colleagues at Johns Hopkins University and the University of Florida. Regions of interest will be defined around pertinent target organs and tissues and the count data recorded. The specific target organs will depend on the particular radiopharmaceutical. The data for each age range and time point will be pooled, normalized and fit to models describing the pharmacokinetics. The resultant models will be evaluated for age-based variations in the PK data and compared to existing, published models based on adult data to evaluated age based differences. Lastly, the impact that the more accurate PK has on dosimetric estimates of patients of different ages will be analyzed.

The number of subjects required at each time point will be determined using nonlinear mixed effects modeling software to model the data and adjust for covariates. The likelihood ratio test based on the objective function value (OFV) will be used to estimate PK parameters for varying doses and ages using a Bayesian approach. The proposed sample size plan with subjects imaged at different time points is predicated on the Monte Carlo Mapped Power (MCMP) method to achieve 80% power for detecting age and dose effects and robust coverage in estimating individual PK parameters. It is expected that there will be 5-10 subjects per age group depending on the statistical requirements as described above.

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Conditions studied

  • Renal Disease

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03

In context

Kidney Diseases

3,840 studies on the registry are indexed under Kidney Diseases; 500 are open to participants now.

This study's enrollment of 24 is below the median of 192 across 1,033 observational studies indexed under Kidney Diseases.

Browse Kidney Diseases studies →

Lead sponsor

Boston Children's Hospital is the lead sponsor of 598 studies on the registry; 151 are open to participants now.

Of its 31 completed or terminated interventional studies of FDA-regulated products, 18 (58%) have results posted.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
9 Months to 6 Years
Sexes eligible
All
Accepts healthy volunteers
No
Sampling method
Non-probability sample

Study population

All patients within the specified age ranges scheduled at Boston Children's Hospital for a nuclear medicine study utilizing Tc-99m DMSA will be eligible to volunteer for inclusion in this study.

Inclusion criteria

  • All patients within the specified age ranges scheduled at Boston Children's Hospital for a nuclear medicine study utilizing Tc-99m DMSA will be eligible to volunteer for inclusion in this study. It is also essential that inclusion does not compromise the potential of acquiring the clinically indicated image acquisition.

Exclusion criteria

Exclusion Criteria:

  • Inability to be imaged at the additional time point without the need for sedation or anesthesia
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Study design

Observational model
Other
Time perspective
Other
Enrollment
24 participants (actual)
Patient registry
No

Groups and cohorts

  • Tc-99m DMSA

    Patients aged 1-6 years old will be enrolled. Routine SPECT imaging will be performed 3-4 h post-administration (PA) with a dual-detector rotating gamma camera over a 360˚ rotation for 8 s per view using a 1282 matrix. In each age group, half of the subjects will also be imaged between 30 and 90 min, post-administration. The 2nd half will be imaged at 4-6 h, post-administration. It is important to note that the patient volunteers will not receive any additional radiation exposure for inclusion in this study. They are only being ask to allow imaging at one additional time point.

    Drug: Imaging Time

Interventions

  • DrugImaging Time

    Participants will be asked to be imaged at an additional time point.

06

What researchers measure

Primary outcomes

  1. Radioactivity in target organs at various time points

    The target-organ radioactivity measurements will be used to estimate the time-integrated activity in the target organs, hopefully leading to better estimates of absorbed dose to patients of different ages.

    Time frame: 6 hours

07

Study locations

1 site
  • Boston Children's Hospital
    Boston, Massachusetts 02115, United States
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References and documents

Publications

  • Fahey FH, Goodkind AB, Plyku D, Khamwan K, O'Reilly SE, Cao X, Frey EC, Li Y, Bolch WE, Sgouros G, Treves ST. Dose Estimation in Pediatric Nuclear Medicine. Semin Nucl Med. 2017 Mar;47(2):118-125. doi: 10.1053/j.semnuclmed.2016.10.006. Epub 2016 Nov 9. PubMed 28237000 ↗
  • Treves ST, Gelfand MJ, Fahey FH, Parisi MT. 2016 Update of the North American Consensus Guidelines for Pediatric Administered Radiopharmaceutical Activities. J Nucl Med. 2016 Dec;57(12):15N-18N. No abstract available. PubMed 27909182 ↗
  • Fahey FH, Ziniel SI, Manion D, Baker A, Treves ST. Administered Activities in Pediatric Nuclear Medicine and the Impact of the 2010 North American Consensus Guidelines on General Hospitals in the United States. J Nucl Med. 2016 Sep;57(9):1478-85. doi: 10.2967/jnumed.116.172148. Epub 2016 Apr 7. PubMed 27056617 ↗
  • O'Reilly SE, Plyku D, Sgouros G, Fahey FH, Ted Treves S, Frey EC, Bolch WE. A risk index for pediatric patients undergoing diagnostic imaging with (99m)Tc-dimercaptosuccinic acid that accounts for body habitus. Phys Med Biol. 2016 Mar 21;61(6):2319-32. doi: 10.1088/0031-9155/61/6/2319. Epub 2016 Mar 1. PubMed 26930549 ↗
  • Sgouros G, Frey EC, Bolch WE, Wayson MB, Abadia AF, Treves ST. An approach for balancing diagnostic image quality with cancer risk: application to pediatric diagnostic imaging of 99mTc-dimercaptosuccinic acid. J Nucl Med. 2011 Dec;52(12):1923-9. doi: 10.2967/jnumed.111.092221. PubMed 22144506 ↗

Individual participant data

Plan to share: Yes — Anonymized patient data, with all protected patient information removed, will be shared with collaborators at Johns Hopkins University and the University of Florida. In particular, anonymized nuclear medicine image data will be shared for analysis.

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Dec 12, 2022, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
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Registry details

Key details

Study ID
NCT03107195
Lead sponsor
Boston Children's Hospital
Collaborators
National Institute for Biomedical Imaging and Bioengineering (NIBIB), Johns Hopkins University, University of Florida
Responsible party
Frederic Fahey (Professor of Radiology, Boston Children's Hospital) — Principal investigator
First posted
Apr 11, 2017
Start date
Oct 31, 2017
Primary completion
Oct 6, 2021
Completion
Oct 6, 2021
Last update
Dec 12, 2022

Study contacts

Frederic H Fahey, DSc
principal investigator · Boston Children's Hospital

Oversight

Data monitoring committee
No
FDA-regulated drug
Yes
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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This study is completed, as verified in Dec 2022. You cannot join it, but the record below documents what was studied.

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