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一种基于PET放射组学的新型临床前决策支持系统:在小鼠模型中对一种创新的铜标记螯合剂进行评估的初步研究。

A New Preclinical Decision Support System Based on PET Radiomics: A Preliminary Study on the Evaluation of an Innovative Cu-Labeled Chelator in Mouse Models.

作者信息

Benfante Viviana, Stefano Alessandro, Comelli Albert, Giaccone Paolo, Cammarata Francesco Paolo, Richiusa Selene, Scopelliti Fabrizio, Pometti Marco, Ficarra Milene, Cosentino Sebastiano, Lunardon Marcello, Mastrotto Francesca, Andrighetto Alberto, Tuttolomondo Antonino, Parenti Rosalba, Ippolito Massimo, Russo Giorgio

机构信息

Institute of Molecular Bioimaging and Physiology, National Research Council (IBFM-CNR), 90015 Cefalù, Italy.

Department of Health Promotion, Mother and Child Care, Internal Medicine and Medical Specialties, Molecular and Clinical Medicine, University of Palermo, 90127 Palermo, Italy.

出版信息

J Imaging. 2022 Mar 30;8(4):92. doi: 10.3390/jimaging8040092.

Abstract

The 64Cu-labeled chelator was analyzed in vivo by positron emission tomography (PET) imaging to evaluate its biodistribution in a murine model at different acquisition times. For this purpose, nine 6-week-old female Balb/C nude strain mice underwent micro-PET imaging at three different time points after 64Cu-labeled chelator injection. Specifically, the mice were divided into group 1 (acquisition 1 h after [64Cu] chelator administration, n = 3 mice), group 2 (acquisition 4 h after [64Cu]chelator administration, n = 3 mice), and group 3 (acquisition 24 h after [64Cu] chelator administration, n = 3 mice). Successively, all PET studies were segmented by means of registration with a standard template space (3D whole-body Digimouse atlas), and 108 radiomics features were extracted from seven organs (namely, heart, bladder, stomach, liver, spleen, kidney, and lung) to investigate possible changes over time in [64Cu]chelator biodistribution. The one-way analysis of variance and post hoc Tukey Honestly Significant Difference test revealed that, while heart, stomach, spleen, kidney, and lung districts showed a very low percentage of radiomics features with significant variations (p-value < 0.05) among the three groups of mice, a large number of features (greater than 60% and 50%, respectively) that varied significantly between groups were observed in bladder and liver, indicating a different in vivo uptake of the 64Cu-labeled chelator over time. The proposed methodology may improve the method of calculating the [64Cu]chelator biodistribution and open the way towards a decision support system in the field of new radiopharmaceuticals used in preclinical imaging trials.

摘要

通过正电子发射断层扫描(PET)成像在体内分析了64Cu标记的螯合剂,以评估其在不同采集时间的小鼠模型中的生物分布。为此,在注射64Cu标记的螯合剂后的三个不同时间点,对9只6周龄的雌性Balb/C裸鼠品系小鼠进行了微型PET成像。具体而言,将小鼠分为第1组(在给予[64Cu]螯合剂后1小时采集,n = 3只小鼠)、第2组(在给予[64Cu]螯合剂后4小时采集,n = 3只小鼠)和第3组(在给予[64Cu]螯合剂后24小时采集,n = 3只小鼠)。随后,所有PET研究均通过与标准模板空间(3D全身Digimouse图谱)配准进行分割,并从七个器官(即心脏、膀胱、胃、肝脏、脾脏、肾脏和肺)中提取108个放射组学特征,以研究[64Cu]螯合剂生物分布随时间的可能变化。单因素方差分析和事后Tukey真实显著性差异检验显示,虽然心脏、胃、脾脏、肾脏和肺区域在三组小鼠中显示出具有显著变化(p值<0.05)的放射组学特征百分比非常低,但在膀胱和肝脏中观察到大量(分别大于60%和50%)在组间有显著变化的特征,表明64Cu标记的螯合剂在体内的摄取随时间不同。所提出的方法可能会改进计算[64Cu]螯合剂生物分布的方法,并为临床前成像试验中使用的新型放射性药物领域的决策支持系统开辟道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93f5/9025273/f28146fd0873/jimaging-08-00092-g001.jpg

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