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5-[¹⁸F]氟亮氨酸的合成与初步评价

Synthesis and Preliminary Evaluation of 5-[18F]fluoroleucine.

作者信息

Chin Bennett B, McDougald Darryl, Weitzel Douglas H, Hawk Thomas, Reiman Robert E, Zalutsky Michael R, Vaidyanathan Ganesan

机构信息

Duke University Medical Center, Department of Radiology, Division of Nuclear Medicine, DUMC; Box 3949, Durham, North Carolina 27710. United States.

Department of Radiology, Duke University Medical Center, Division of Nuclear Medicine, North Carolina 27710. United States.

出版信息

Curr Radiopharm. 2017;10(1):41-50. doi: 10.2174/1874471009666161230114954.

Abstract

BACKGROUND

Amino acid transporters, such as LAT1, are overexpressed in aggressive prostate and breast carcinomas, directly influencing pathways of growth and proliferation.

OBJECTIVE

The purpose of this study was to synthesize and characterize a novel 18F labeled leucine analog, 5-[18F]fluoroleucine, as a potential imaging agent for aggressive tumors which may not be amenable to imaging by FDG PET.

METHODS

5-fluoroleucine was synthesized and characterized, and its 18F-labeled analog was synthesized from a mesylate precursor. First, breast cancer cell line assays were performed to evaluate uptake of 3H- or 14C-labeled L-leucine and other essential amino acids. Both L-leucine and 5- [18F]fluoroleucine were tested for uptake and accumulation over time, and for uptake via LAT1. Biodistribution studies were performed to estimate radiation dosimetry for human studies. Small animal PET / CT studies of a breast cancer were performed to evaluate in vivo 5-[18F]fluoroleucine tumor uptake.

RESULTS

Breast cancer cell lines showed increasing high net accumulation of L-[14C]leucine. Both L-leucine and 5-[18F]fluoroleucine showed increasing uptake over time in in vitro tumor cell assays, and uptake was also shown to occur via LAT1. The biodistribution study of 5-[18F]fluoroleucine showed rapid renal excretion, no significant in vivo metabolism, and acceptable dosimetry for use in humans. In vivo small animal PET / CT imaging of a breast cancer xenograft showed uptake of 5- [18F]fluoroleucine in the tumor, which progressively increased over time.

CONCLUSION

5-[18F]fluoroleucine is a leucine analog which may be useful in identifying tumors with high or upregulated expression of amino acid transporters, providing additional information that may not be provided by FDG PET.

摘要

背景

氨基酸转运蛋白,如LAT1,在侵袭性前列腺癌和乳腺癌中过表达,直接影响生长和增殖途径。

目的

本研究的目的是合成并表征一种新型的18F标记的亮氨酸类似物5-[18F]氟亮氨酸,作为一种潜在的成像剂,用于可能不适用于FDG PET成像的侵袭性肿瘤。

方法

合成并表征5-氟亮氨酸,其18F标记的类似物由甲磺酸酯前体合成。首先,进行乳腺癌细胞系试验,以评估3H或14C标记的L-亮氨酸和其他必需氨基酸的摄取。对L-亮氨酸和5-[18F]氟亮氨酸进行随时间的摄取和积累测试,以及通过LAT1的摄取测试。进行生物分布研究以估计人体研究的辐射剂量学。对乳腺癌进行小动物PET/CT研究,以评估体内5-[18F]氟亮氨酸的肿瘤摄取。

结果

乳腺癌细胞系显示L-[14C]亮氨酸的高净积累增加。在体外肿瘤细胞试验中,L-亮氨酸和5-[18F]氟亮氨酸的摄取均随时间增加,并且摄取也显示通过LAT1发生。5-[18F]氟亮氨酸的生物分布研究显示肾脏快速排泄,体内无明显代谢,且用于人体的剂量学可接受。乳腺癌异种移植的体内小动物PET/CT成像显示肿瘤摄取5-[18F]氟亮氨酸,且随时间逐渐增加。

结论

5-[18F]氟亮氨酸是一种亮氨酸类似物,可用于识别氨基酸转运蛋白高表达或上调表达的肿瘤,提供FDG PET可能无法提供的额外信息。

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