Utility of Preclinical Dosimetry for First-in-Human Studies with PET Drugs Labeled with Common Radionuclides: A Systematic Review of Radiation Dose Estimates

剂量学 核医学 医学 有效剂量(辐射) 辐射剂量 体内分布 人体研究 吸收剂量 辐射 放射治疗 医学物理学 参考剂量 放射生物学 辐射暴露 电离辐射 动物研究 治疗指标 剂量-反应关系 动物模型 相对生物效应 辐射防护 剂量率 正电子发射断层摄影术
作者
Hayoung Koo,Donika Plyku,Libero Marzella
出处
期刊:Journal of nuclear medicine [Society of Nuclear Medicine and Molecular Imaging]
卷期号:: jnumed.125.270487-jnumed.125.270487
标识
DOI:10.2967/jnumed.125.270487
摘要

First-in-human studies of radiopharmaceuticals include an estimation of human radiation doses often extrapolated from preclinical biodistribution data. We reviewed radiation dose estimates derived from preclinical and clinical studies to determine the utility of preclinical dosimetry studies for estimating the human radiation dose of PET radiopharmaceuticals. Methods: Literature searches were performed for preclinical and clinical studies published between 1990 and 2021 that provided radiation dose estimates for common PET radiopharmaceuticals. Whole-body effective dose and maximum organ absorbed dose coefficients derived from animal and human studies were compared to evaluate their agreement. Ratios of animal-derived to human-derived dose estimates were calculated. Dosimetry data were further stratified by pharmacophore, animal species, and animal-to-human extrapolation method. Results: The SD in radiation dose estimates from clinical studies was generally lower compared with the SD in dose estimates extrapolated from animals. An overlap in the distribution of radiation dose estimates derived from animal and human studies was observed for short-lived radiopharmaceuticals (82Rb-, 15O-, 13N-, 11C-, 68Ga-, 18F-, and 64Cu-labeled, n = 394). The higher dose estimates and larger variability (spread) in preclinical and clinical radiation dose estimates observed for long-lived (89Zr- and 124I-labeled, n = 48) compared with short-lived radiopharmaceuticals highlight important differences in the radiation profile between the 2 groups. Conclusion: Our assessment of the agreement between animal and human radiation dosimetry data for PET drugs indicated a difference between short-and long-lived radiopharmaceuticals in terms of agreement, magnitude, and variability in dose estimates. A closer agreement between animal and human data, relatively lower doses, and lower variability in measured ED values in studies of short-lived PET radiopharmaceuticals suggest that approaches to forego preclinical dosimetry can be developed to facilitate clinical trials of new PET drugs for certain short-lived radionuclides. For first-in-human studies of long-lived PET radiopharmaceuticals or radiopharmaceuticals with long biological turnover, which are associated with higher radiation doses, animal-derived human dose estimates may provide necessary radiation safety information (e.g., identify unexpected high uptake in a particular organ) even though the radiation dose may be underestimated.
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