Radiation dosimetry and biodistribution of the TSPO ligand 11C-DPA-713 in humans.

J Nucl Med

Department of Radiology, Johns Hopkins Medical Institutions, Baltimore, MD, USA.

Published: February 2012

Unlabelled: Whole-body PET/CT was used to characterize the radiation dosimetry of (11)C-DPA-713, a specific PET ligand for the assessment of translocator protein.

Methods: Six healthy control subjects, 3 men and 3 women, underwent whole-body dynamic PET scans after bolus injection of (11)C-DPA-713. Subjects were scanned from head to mid thigh with 7 passes performed, with a total PET acquisition of approximately 100 min. Time-activity curves were generated in organs with visible tracer uptake, and tissue residence times were calculated. Whole-body dosimetry was calculated using OLINDA 1.1 software, assuming no voiding.

Results: The absorbed dose is highest in the lungs, spleen, kidney, and pancreas. The lungs were determined to be the dose-limiting organ, with an average absorbed dose of 2.01 × 10(-2) mSv/MBq (7.43 × 10(-2) rem/mCi). On the basis of exposure limits outlined in the U.S. Food and Drug Administration Code of Federal Regulations (21CFR361.1), the single-dose limit for (11)C-DPA-713 radiotracer injection is 2,487.6 MBq (67.3 mCi).

Conclusion: (11)C-DPA-713 has an uptake pattern that is consistent with the biodistribution of translocator protein and yields a dose burden that is comparable to that of other (11)C-labeled PET tracers.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3274766PMC
http://dx.doi.org/10.2967/jnumed.111.094565DOI Listing

Publication Analysis

Top Keywords

radiation dosimetry
8
absorbed dose
8
11c-dpa-713
5
dosimetry biodistribution
4
biodistribution tspo
4
tspo ligand
4
ligand 11c-dpa-713
4
11c-dpa-713 humans
4
humans unlabelled
4
unlabelled whole-body
4

Similar Publications

Count-rate management in I SPECT/CT calibration.

EJNMMI Phys

January 2025

Department of Medical Radiation Physics and Nuclear Medicine, Karolinska University Hospital, Solna, Sweden.

Background: System calibration is essential for accurate SPECT/CT dosimetry. However, count losses due to dead time and pulse pileup may cause calibration errors, in particular for I, where high count rates may be encountered. Calibration at low count rates should also be avoided to minimise detrimental effects from e.

View Article and Find Full Text PDF

Introduction: The core objective of this study was to precisely locate metastatic lymph nodes, identify potential areas in nasopharyngeal carcinoma patients that may not require radiotherapy, and propose a hypothesis for reduced target volume radiotherapy on the basis of these findings. Ultimately, we reassessed the differences in dosimetry of organs at risk (OARs) between reduced target volume (reduced CTV2) radiotherapy and standard radiotherapy.

Methods And Materials: A total of 209 patients participated in the study.

View Article and Find Full Text PDF

The estimation of peripheral dose (PD) is vital in cancer patients with long life expectancy. Assessment of PD to radiosensitive organs is important to determine the possible risk of late effects. An attempt has been made to assess the peripheral dose using optically stimulated luminescence dosimeter (OSLD) with megavoltage photon beams as a function of field size, depth, energy, and distance from the field edge.

View Article and Find Full Text PDF

This study evaluates the effectiveness of Total Reflection X-ray Fluorescence for multi-element analysis in mussels, focusing on sensitivity, precision, and detection limits. Additionally, it offers a cross-regional comparison of elemental composition in mussels from aquaculture farms in Italy, Spain, and Chile. TXRF, using suspensions of mussel samples, proved effective in detecting minor and trace elements, with recovery rates over 80% for Fe, Cu, Zn, As, and Sr.

View Article and Find Full Text PDF

One of the main objectives of the ion mobility spectrometry (IMS) technique is to reduce moisture in detection systems, which causes the formation of ion clusters and ion water and a reduction in formed clusters' activity. Thus, one of the methods limiting moisture in a sampling injection system is to use hydrophobic polymeric membranes. The use of membranes with high permeability relative to the analysed organic compounds is required, including toxic agents in air (TAAs).

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!