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亚毫米分辨率下双放射性核素体内成像检测微转移和淋巴管。

Dual-radionuclide in vivo imaging of micro-metastasis and lymph tract with submillimetre resolution.

机构信息

Kavli Institute for the Physics and Mathematics of the Universe (Kavli IPMU, WPI), The University of Tokyo, 5-1-5 Kashiwanoha, Kashiwa, Chiba, 277-8583, Japan.

Exploratory Oncology Research and Clinical Trial Center, National Cancer Center, 6-5-1 Kashiwanoha, Kashiwa, 277-8577, Japan.

出版信息

Sci Rep. 2023 Nov 9;13(1):19464. doi: 10.1038/s41598-023-46907-1.

Abstract

Multi-radionuclide in vivo imaging with submillimetre resolution can be a potent tool for biomedical research. While high-resolution radionuclide imaging faces challenges in sensitivity, multi-radionuclide imaging encounters difficulty due to radiation contamination, stemming from crosstalk between radionuclides and Compton scattering. Addressing these challenges simultaneously is imperative for multi-radionuclide high-resolution imaging. To tackle this, we developed a high-spatial-resolution and high-energy-resolution small animal single-photon emission computed tomography (SPECT) scanner, named CdTe-DSD SPECT-I. We first assessed the feasibility of multi-tracer SPECT imaging of submillimetre targets. Using the CdTe-DSD SPECT-I, we performed SPECT imaging of submillimetre zeolite spheres absorbed with I and subsequently imaged I-accumulated spheroids of 200-400 µm in size within an hour, achieving clear and quantitative images. Furthermore, dual-radionuclide phantom imaging revealed a distinct image of the submillimetre sphere absorbed with I immersed in a Tc-pertechnetate solution, and provided a fair quantification of each radionuclide. Lastly, in vivo imaging was conducted on a cancer-bearing mouse with lymph node micro-metastasis using dual-tracers. The results displayed dual-tracer images of lymph tract by Tc-phytic acid and the submillimetre metastatic lesion by I, shown to align with the immunofluorescence image.

摘要

采用亚毫米分辨率的多放射性核素体内成像是生物医学研究的有力工具。虽然高分辨率放射性核素成像是在灵敏度方面面临挑战,但由于放射性核素之间的串扰和康普顿散射导致的辐射污染,多放射性核素成像是困难的。同时解决这些挑战对于多放射性核素高分辨率成像是至关重要的。为了解决这个问题,我们开发了一种具有高空间分辨率和高能量分辨率的小动物单光子发射计算机断层扫描(SPECT)扫描仪,命名为 CdTe-DSD SPECT-I。我们首先评估了亚毫米靶标多示踪剂 SPECT 成像的可行性。使用 CdTe-DSD SPECT-I,我们对吸收 I 的亚毫米沸石球进行了 SPECT 成像,随后在一小时内对大小为 200-400 µm 的 I 积累球体进行了成像,获得了清晰和定量的图像。此外,双放射性核素 phantom 成像显示出吸收 I 的亚毫米球体在 Tc-高锝酸盐溶液中的清晰图像,并对每种放射性核素进行了公平的定量。最后,对带有淋巴结微转移的荷瘤小鼠进行了体内成像,使用了双示踪剂。结果显示 Tc-植酸钠的淋巴管双示踪图像和 I 的亚毫米转移性病变,与免疫荧光图像一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d63d/10636167/d177a3ac5580/41598_2023_46907_Fig1_HTML.jpg

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