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(18)F标记的亚苄基苯胺衍生物作为阿尔茨海默病中β淀粉样蛋白斑块成像的新型配体。

(18)F-Labeled benzylideneaniline derivatives as new ligands for beta-amyloid plaque imaging in Alzheimer's disease.

作者信息

Lee Hak Jeong, Jeong Jae Min, Rai Ganesha, Lee Yun-Sang, Chang Young Soo, Kim Young Ju, Kim Hyung Woo, Lee Dong Soo, Chung Jung Key, Mook-Jung Inhee, Lee Myung Chul

机构信息

Department of Nuclear Medicine, Seoul National University College of Medicine and Institute of Radiation Medicine, Jongno-gu, Seoul 110-744, South Korea.

出版信息

Nucl Med Biol. 2009 Feb;36(2):107-16. doi: 10.1016/j.nucmedbio.2008.11.004.

Abstract

INTRODUCTION

Noninvasive early detection of beta-amyloid (Abeta) plaques might be useful for the treatment of patients with Alzheimer's disease (AD). We herein describe the synthesis of (18)F-labeled benzylideneaniline derivatives using a novel labeling approach for imaging Abeta plaques in AD patients.

METHODS

Benzylidenaniline derivatives were synthesized by reacting fluorobenzaldehyde and corresponding aniline derivatives. Fluorobenzaldehyde was labeled with (18)F by incubating [(18)F]fluoride with N,N,N-trimethylbenzaldehyde in the presence of tetrabutylammonium bicarbonate. In vitro binding assay, stability test and biodistribution study were performed.

RESULTS

These compounds were stable at alkaline pH (pH >9); however, they were hydrolyzed rapidly at physiological pH (pH approximately 7.4). The K(i) values of amine-containing benzylideneaniline derivatives for Abeta(1-40) and Abeta(1-42) aggregates were 26-78 nM. These (18)F-labeled benzylideneaniline derivatives showed high brain uptake and rapid clearance after intravenous administration in normal mice (1.8-3.1%ID/g at 2 min and 0.1-1.2%ID/g at 30 min). The low level of bone activity at 30 min indicated that these (18)F-labeled benzylideneanilines are not prone to defluorination. Furthermore, the compounds have suitable lipophilicity - a property required to penetrate the blood-brain barrier.

CONCLUSION

These results showed that the instability of these compounds could cause a higher early phase/late phase ratio due to rapid clearance in the normal brain. The findings from this study suggest that these (18)F-labeled benzylideneaniline derivatives are feasible for the imaging of Abeta plaques.

摘要

引言

β-淀粉样蛋白(Aβ)斑块的无创早期检测可能对阿尔茨海默病(AD)患者的治疗有用。我们在此描述了一种使用新型标记方法合成(18)F标记的苄叉苯胺衍生物,用于对AD患者的Aβ斑块进行成像。

方法

通过使氟代苯甲醛与相应的苯胺衍生物反应合成苄叉苯胺衍生物。通过在碳酸氢四丁铵存在下将[(18)F]氟化物与N,N,N-三甲基苯甲醛孵育,用(18)F标记氟代苯甲醛。进行了体外结合试验、稳定性测试和生物分布研究。

结果

这些化合物在碱性pH(pH>9)下稳定;然而,它们在生理pH(pH约7.4)下迅速水解。含胺苄叉苯胺衍生物对Aβ(1-40)和Aβ(1-42)聚集体的K(i)值为26-78 nM。这些(18)F标记的苄叉苯胺衍生物在正常小鼠静脉注射后显示出高脑摄取和快速清除(2分钟时为1.8-3.1%ID/g,30分钟时为0.1-1.2%ID/g)。30分钟时骨活性水平低表明这些(18)F标记的苄叉苯胺不易脱氟。此外,这些化合物具有合适的亲脂性——这是穿透血脑屏障所需的性质。

结论

这些结果表明,由于在正常脑中的快速清除,这些化合物的不稳定性可能导致更高的早期/晚期比值。本研究结果表明,这些(18)F标记的苄叉苯胺衍生物对Aβ斑块成像可行。

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