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体内实时正电子发射粒子追踪 (PEPT) 和单粒子 PET。

In vivo real-time positron emission particle tracking (PEPT) and single particle PET.

机构信息

School of Biomedical Engineering and Imaging Sciences, King's College London, London, UK.

School of Physics and Astronomy, University of Birmingham, Birmingham, UK.

出版信息

Nat Nanotechnol. 2024 May;19(5):668-676. doi: 10.1038/s41565-023-01589-8. Epub 2024 Jan 19.

Abstract

Positron emission particle tracking (PEPT) enables 3D localization and tracking of single positron-emitting radiolabelled particles with high spatiotemporal resolution. The translation of PEPT to the biomedical imaging field has been limited due to the lack of methods to radiolabel biocompatible particles with sufficient specific activity and protocols to isolate a single particle in the sub-micrometre size range, below the threshold for capillary embolization. Here we report two key developments: the synthesis and Ga-radiolabelling of homogeneous silica particles of 950 nm diameter with unprecedented specific activities (2.1 ± 1.4 kBq per particle), and the isolation and manipulation of a single particle. We have combined these developments to perform in vivo PEPT and dynamic positron emission tomography (PET) imaging of a single radiolabelled sub-micrometre size particle using a pre-clinical positron emission tomography/computed tomography scanner. This work opens possibilities for quantitative assessment of haemodynamics in vivo in real time, at the whole-body level using minimal amounts of injected radioactive dose and material.

摘要

正电子发射粒子追踪(PEPT)能够以高时空分辨率对单正电子发射放射性标记粒子进行 3D 定位和追踪。由于缺乏用足够的比活度对生物相容的粒子进行放射性标记的方法,以及在亚微米尺寸范围内(低于毛细血管栓塞的阈值)分离单个粒子的方案,PEPT 在生物医学成像领域的应用受到限制。在这里,我们报告了两个关键的进展:合成和 Ga 放射性标记具有空前比活度(每个粒子 2.1±1.4kBq)的 950nm 直径均一化硅粒子,以及单个粒子的分离和操作。我们结合这些进展,使用临床前正电子发射断层扫描/计算机断层扫描(PET/CT)扫描仪对单个放射性标记的亚微米尺寸粒子进行体内 PEPT 和动态正电子发射断层扫描(PET)成像。这项工作为使用最小量放射性剂量和材料,在全身水平上实时进行体内血流动力学的定量评估提供了可能性。

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