Dynamic Total-Body PET Imaging Unfolds [<sup>11</sup>C]Choline Kinetics and Dosimetry in Primary Hyperparathyroidism.

Brusa, Irene; Santoro, Miriam; Dall'Olio, Daniele; Fuso, Giuseppe Arturo; Zagni, Federico; Assenza, Marta; Fortunati, Emilia; Emiliani, Stefano et al. · J Nucl Med · 2026

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Abstract

This study investigated the biodistribution profile, kinetic constants, and dosimetry of [<sup>11</sup>C]choline in patients with primary hyperparathyroidism (pHPT) using total-body dynamic PET (dPET) imaging, to establish a baseline and standard reference for clinical practice. <b>Methods:</b> A 50-min dPET acquisition followed by a 20-min static acquisition at 100 ± 10 min postinjection was performed on 6 patients with a clinical diagnosis of primary hyperparathyroidism. Whole-body [<sup>11</sup>C]choline distribution and pharmacokinetics were evaluated by SUV, tissue uptake, organ-absorbed doses, and, finally, multitime graphical analysis and kinetic modeling with compartment models. <b>Results:</b> Rapid whole-body uptake of [<sup>11</sup>C]choline was observed, with adequate image quality for presurgical localization of parathyroid adenomas seen from 5 min postinjection onward. Average uptake values after 50 min for liver (17.61% ± 2.82%) and bowel (5.77% ± 1.80%), compared with kidneys (2.77% ± 0.24%) and urinary bladder (0.21% ± 0.16%), suggested alternative excretion pathways for [<sup>11</sup>C]choline other than renal clearance. Gallbladder (0.019 ± 0.004 mGy/MBq), liver (0.037 ± 0.008 mGy/MBq), pancreas (0.022 ± 0.005 mGy/MBq), kidneys (0.016 ± 0.005 mGy/MBq), and spleen (0.023 ± 0.009 mGy/MBq) were the organs with the highest observed effective doses. These organs also showcased extreme values among [Formula: see text], [Formula: see text], [Formula: see text], and [Formula: see text], which provide them with the most distinctive kinetic patterns. Parathyroid adenomas exhibited significantly higher <i>k</i> <sub>3</sub>, <i>K<sub>i</sub></i> , and distribution volume, and lower <i>K</i> <sub>1</sub>, than reference thyroid tissue (<i>P</i> < 0.05). <b>Conclusion:</b> The high adenoma-to-background uptake of [<sup>11</sup>C]choline observed 5 min postinjection onward may facilitate swift imaging protocols. The total-body dynamic approach further highlighted the pivotal role of liver metabolism, minimal renal excretion, and unique kinetic behaviors of parathyroid adenomas. These data advance our understanding of [<sup>11</sup>C]choline's uptake and may serve as a reference for future dPET studies.

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