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[C]HD - 800的放射性合成与评估,一种用于成像微管的高亲和力脑渗透正电子发射断层显像(PET)示踪剂

Radiosynthesis and Evaluation of [C]HD-800, a High Affinity Brain Penetrant PET Tracer for Imaging Microtubules.

作者信息

Solingapuram Sai Kiran Kumar, Prabhakaran Jaya, Ramanathan Gayathri, Rideout Stephanie, Whitlow Christopher, Mintz Akiva, Mann J John, Kumar J S Dileep

机构信息

Department of Radiology, Wake Forest School of Medicine, Winston Salem, North Carolina, United States.

Molecular Imaging and Neuropathology Division, New York State Psychiatric Institute, New York, United States.

出版信息

ACS Med Chem Lett. 2018 Apr 30;9(5):452-456. doi: 10.1021/acsmedchemlett.8b00060. eCollection 2018 May 10.

Abstract

Microtubules (MTs) are highly abundant throughout the cytoskeleton, and their dysfunction is implicated in the pathogenesis of malignancies, various neurodegenerative disorders, and brain injuries. Validated radiotracers reported so far for MTs are [C]paclitaxel, [F]fluoropaclitaxel, and [C]docetaxel; however, they are well-characterized substrates of efflux transporters and consequently have poor uptake into the brain due to minimal blood brain barrier (BBB) penetration. PET imaging of MT expression requires radiolabeled BBB penetrating MT ligands, and it may offer a direct and more sensitive approach for early diagnosis, monitoring disease progression, and treatment effects in brain diseases and assessing the clinical potential of targeted therapeutics and treatments. We have identified N-(4-methoxyphenyl)-N-5-dimethylfuro[2,3-]pyrimidin-4-amine (HD-800) as a high affinity and selective colchicine site tubuline inhibitor amenable to radiolabel with C-11, a positron emitting isotope. HD-800 and desmethyl-HD-800 were synthesized in one step with 75% and 80% yields respectively from commercial synthons. The radiosynthesis of [C]HD-800 was achieved in 45 ± 5% yield at EOS. biodistribution binding data of [C]HD-800 indicate that the radioligand penetrated the BBB and it was retained in brain with 75% specific binding. Apart from the brain, specific binding was observed in muscle (55%), heart (50%), lungs (43%), blood (37%), and pancreas (30%). MicroPET imaging in mice showed excellent binding in brain that was blocked by preadministration of unlabeled HD-800 and a colchicine site binding MT ligand MPC-6827. The above results indicate that [C]HD-800 may be a suitable PET ligand for the quantification of MT inside and outside the brain.

摘要

微管(MTs)在整个细胞骨架中含量丰富,其功能障碍与恶性肿瘤、各种神经退行性疾病和脑损伤的发病机制有关。迄今为止报道的用于微管的经过验证的放射性示踪剂有[C]紫杉醇、[F]氟紫杉醇和[C]多西他赛;然而,它们是外排转运蛋白的特征明确的底物,因此由于血脑屏障(BBB)穿透性极小,进入大脑的摄取量很低。微管表达的正电子发射断层显像(PET)成像需要放射性标记的能够穿透血脑屏障的微管配体,它可能为脑部疾病的早期诊断、监测疾病进展和治疗效果以及评估靶向治疗和疗法的临床潜力提供一种直接且更灵敏的方法。我们已鉴定出N-(4-甲氧基苯基)-N-5-二甲基呋喃并[2,3-]嘧啶-4-胺(HD-800)是一种高亲和力且选择性的秋水仙碱位点微管蛋白抑制剂,适合用正电子发射同位素C-11进行放射性标记。HD-800和去甲基-HD-800分别以75%和80%的产率由市售合成子一步合成。[C]HD-800的放射性合成在合成结束时(EOS)的产率为45±5%。[C]HD-800的生物分布结合数据表明,该放射性配体穿透了血脑屏障,并以75%的特异性结合保留在脑中。除了脑之外,在肌肉(55%)、心脏(50%)、肺(43%)、血液(37%)和胰腺(30%)中也观察到了特异性结合。小鼠体内的微型PET成像显示,脑中具有出色的结合,预先给予未标记的HD-800和一种秋水仙碱位点结合微管配体MPC-6827可阻断这种结合。上述结果表明,[C]HD-800可能是一种适用于定量脑内外微管的PET配体。

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