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用于脑内鞘氨醇-1-磷酸受体5(S1PR5)成像的新型正电子发射断层显像剂的设计与合成

Design and Synthesis of Novel PET Radiotracers for Imaging Sphingosine-1-Phosphate Receptor 5 (S1PR5) in the Brain.

作者信息

Lang Jiawen, Zhou Wenjuan, Huang Tianyu, Jiang Hao, Chen Hong, Xu Shuxian, Qiu Lin, Heady Madison, Yu Yanbo, Brier Matthew R, Nai Ying-Hwey, Guglielmetti Caroline, Perlmutter Joel S, Tu Zhude

机构信息

Department of Radiology, Washington University School of Medicine, St. Louis, Missouri 63110, United States.

Department of Neurology, Washington University School of Medicine, St. Louis, Missouri 63110, United States.

出版信息

J Med Chem. 2025 Jun 26;68(12):12991-13018. doi: 10.1021/acs.jmedchem.5c00881. Epub 2025 Jun 6.

Abstract

Sphingosine-1-phosphate receptor-5 (S1PR5) is highly expressed in oligodendrocytes and it plays an important role in neurodegenerative disorders like multiple sclerosis. We designed, synthesized, and determined the binding potencies of 27 novel S1PR5 ligands. Four radiotracers [C], [F], [C], and [F] were synthesized for the characterization of their and binding properties. [F] had good rat brain uptake with 0.62%ID/g at 5 min, while the other three radiotracers had lower brain uptake. [F] had K values of 2.2, 4.6, and 27.6 nM for recombinant human S1PR5 cell membranes, C57BL/6 mouse brain, and human cerebral cortex, respectively. Pretreatment with S1PR5 potent modulators effectively impacted rodent brain uptake of [F]. Cuprizone-fed mice had reduced [F] brain uptake, reflecting the loss of oligodendrocytes and decreased S1PR5 expression. [F] also showed good brain uptake and retention in macaque, and no radiometabolites entered the rat brain, further supporting its potential as a promising radiotracer for imaging S1PR5 in the brain.

摘要

鞘氨醇-1-磷酸受体-5(S1PR5)在少突胶质细胞中高表达,且在诸如多发性硬化症等神经退行性疾病中发挥重要作用。我们设计、合成并测定了27种新型S1PR5配体的结合亲和力。合成了四种放射性示踪剂[C]、[F]、[C]和[F],以表征它们的 和 结合特性。[F]在5分钟时具有良好的大鼠脑摄取率,为0.62%ID/g,而其他三种放射性示踪剂的脑摄取率较低。[F]对重组人S1PR5细胞膜、C57BL/6小鼠脑和人脑皮质的K值分别为2.2、4.6和27.6 nM。用S1PR5强效调节剂预处理有效影响了啮齿动物脑对[F]的摄取。经曲吡酮喂养的小鼠脑对[F]的摄取减少,反映了少突胶质细胞的损失和S1PR5表达的降低。[F]在猕猴中也显示出良好的脑摄取和滞留,且没有放射性代谢物进入大鼠脑,这进一步支持了其作为一种有前景的用于脑内S1PR5成像的放射性示踪剂的潜力。

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