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使用[18F]氟脱氧腺苷和[18F]氟乙基尿嘧啶评估肿瘤细胞增殖。

Assessment of tumor cell proliferation using [18F]fluorodeoxyadenosine and[18F]fluoroethyluracil.

作者信息

Kim C G, Yang D J, Kim E E, Cherif A, Kuang L R, Li C, Tansey W, Liu C W, Li S C, Wallace S, Podoloff D A

机构信息

Department of Nuclear Medicine, University of Texas M. D. Anderson Cancer Center, Houston 77030, USA.

出版信息

J Pharm Sci. 1996 Mar;85(3):339-44. doi: 10.1021/js950402i.

Abstract

This study was to develop radiofluorinated ethyluracil (FEU) and deoxyadenosine analogues (FAD) for noninvasive assessment of tumor proliferative potential by positron emission tomography (PET). 5-(2-Fluoroethyl)uracil ([18F]FEU) was prepared by treating 2,4-dimethoxy-5-(2-hydroxyethyl)pyrimidine with K18F, followed by hydrolysis with HBr. Fluorodeoxyadenosine ([18F]FAD) was prepared by treating a triacetylated analogue of adenosine with K18F. In vitro cell proliferation assay of [18F]-FEU was performed using human peripheral blood mononucleus cells. Tissue distributions were studied in breast tumor-bearing rats at 0.5, 1, 2 and 4 h along with autoradiography at 45 min postinjection. PET imaging studies were conducted in VX-2 tumor-bearing rabbits. In vitro assay indicated that [18F]FEU incorporated into DNA/RNA during cell proliferation. Tumor-to-tissue count density ratios of [18F]FAD and [18F]-FEU increased as a function of time. [18F]FAD had higher tumor-to-nontumor tissue count density ratios than [18F]FEU. Autoradiograms of [18F]FEU and [18F]FAD, and PET images of [18F]FEU, showed that the tumors could be well visualized. The results suggest that [18F]FEU and [18F]FAD have potential use in evaluating tumor cell proliferation by PET.

摘要

本研究旨在开发放射性氟化乙基尿嘧啶(FEU)和脱氧腺苷类似物(FAD),用于通过正电子发射断层扫描(PET)对肿瘤增殖潜力进行无创评估。5-(2-氟乙基)尿嘧啶([18F]FEU)通过用K18F处理2,4-二甲氧基-5-(2-羟乙基)嘧啶,然后用HBr水解来制备。氟脱氧腺苷([18F]FAD)通过用K18F处理腺苷的三乙酰化类似物来制备。使用人外周血单核细胞对[18F]-FEU进行体外细胞增殖测定。在荷乳腺癌大鼠中于0.5、1、2和4小时研究组织分布,并在注射后45分钟进行放射自显影。在荷VX-2肿瘤的兔中进行PET成像研究。体外测定表明,[18F]FEU在细胞增殖过程中掺入DNA/RNA。[18F]FAD和[18F]-FEU的肿瘤与组织计数密度比随时间增加。[18F]FAD的肿瘤与非肿瘤组织计数密度比高于[18F]FEU。[18F]FEU和[18F]FAD的放射自显影片以及[18F]FEU的PET图像显示,肿瘤能够被很好地可视化。结果表明,[18F]FEU和[18F]FAD在通过PET评估肿瘤细胞增殖方面具有潜在用途。

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