[<sup>18</sup>F]AlF-NOTA-octreotide PET imaging: biodistribution, dosimetry and first comparison with [<sup>68</sup>Ga]Ga-DOTATATE in neuroendocrine tumour patients.

Pauwels, Elin; Cleeren, Frederik; Tshibangu, Térence; Koole, Michel; Serdons, Kim; Dekervel, Jeroen; Van Cutsem, Eric; Verslype, Chris et al. · Eur J Nucl Med Mol Imaging · 2020

prospective_cohort · Level II

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Abstract

The widespread use of gallium-68-labelled somatostatin analogue (SSA) PET, the current standard for somatostatin receptor (SSTR) imaging, is limited by practical and economic challenges that could be overcome by a fluorine-18-labelled alternative, such as the recently introduced [<sup>18</sup>F]AlF-NOTA-octreotide ([<sup>18</sup>F]AlF-OC). This prospective trial aimed to evaluate safety, dosimetry, biodistribution, pharmacokinetics and lesion targeting of [<sup>18</sup>F]AlF-OC and perform the first comparison with [<sup>68</sup>Ga]Ga-DOTATATE in neuroendocrine tumour (NET) patients. Six healthy volunteers and six NET patients with a previous clinical [<sup>68</sup>Ga]Ga-DOTATATE PET were injected with an IV bolus of 4 MBq/kg [<sup>18</sup>F]AlF-OC. Healthy volunteers underwent serial whole-body PET scans from time of tracer injection up to 90 min post-injection, with an additional PET/CT at 150 and 300 min post-injection. In patients, a 45-min dynamic PET was acquired and three whole-body PET scans at 60, 90 and 180 min post-injection. Absorbed organ doses and effective doses were calculated using OLINDA/EXM. Normal organ uptake (SUV<sub>mean</sub>) and tumour lesion uptake (SUV<sub>max</sub> and tumour-to-background ratio (TBR)) were measured. A lesion-by-lesion analysis was performed and the detection ratio (DR), defined as the fraction of detected lesions was determined for each tracer. [<sup>18</sup>F]AlF-OC administration was safe and well tolerated. The highest dose was received by the spleen (0.159 ± 0.062 mGy/MBq), followed by the urinary bladder wall (0.135 ± 0.046 mGy/mBq) and the kidneys (0.070 ± 0.018 mGy/MBq), in accordance with the expected SSTR-specific uptake in the spleen and renal excretion of the tracer. The effective dose was 22.4 ± 4.4 μSv/MBq. The physiologic uptake pattern of [<sup>18</sup>F]AlF-OC was comparable to [<sup>68</sup>Ga]Ga-DOTATATE. Mean tumour SUV<sub>max</sub> was lower for [<sup>18</sup>F]AlF-OC (12.3 ± 6.5 at 2 h post-injection vs. 18.3 ± 9.5; p = 0.03). However, no significant differences were found in TBR (9.8 ± 6.7 at 2 h post-injection vs. 13.6 ± 11.8; p = 0.35). DR was high and comparable for both tracers (86.0% for [<sup>68</sup>Ga]Ga-DOTATATE vs. 90.1% for [<sup>18</sup>F]AlF-OC at 2 h post-injection; p = 0.68). [<sup>18</sup>F]AlF-OC shows favourable kinetic and imaging characteristics in patients that warrant further head-to-head comparison to validate [<sup>18</sup>F]AlF-OC as a fluorine-18-labelled alternative for gallium-68-labelled SSA clinical PET. Clinicaltrials.gov : NCT03883776, EudraCT: 2018-002827-40.

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