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首页> 外文期刊>Bioorganic and Medicinal Chemistry Letters >Synthesis and evaluation of 3-123I-iodo-5-[2-(S)-3- pyrrolinylmethoxy]-pyridine (niodene) as a potential nicotinic α4β2 receptor imaging agent
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Synthesis and evaluation of 3-123I-iodo-5-[2-(S)-3- pyrrolinylmethoxy]-pyridine (niodene) as a potential nicotinic α4β2 receptor imaging agent

机译:3-123I-Iodo-5- [2-(S)-3-吡咯乙氧基甲氧基的合成与评价 - 吡啶(NiODENE)作为潜在的烟碱α4β2受体成像剂

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摘要

Nicotinic acetylcholine receptors (nAChRs) are downregulated in disease conditions such as Alzheimer's and substance abuse. Presently, 123I-5-IA-85380 is used in human studies and requires over 6 h of scanning time, thus increases patient discomfort. We have designed and synthesized 3-iodo-5-[2-(S)-3-pyrrolinylmethoxy]pyridine (niodene) with the aim to have faster binding kinetics compared to 123I-5-IA-85380, which may reduce scanning time and help in imaging studies. Binding affinity K i of niodene for rat brain α4β2 receptors in brain homogenate assays using 3H-cytisine was 0.27 nM. Niodene, 10 nM displaced 95% of 18F-nifene bound to α4β2 receptors in rat brain slices. By using the iododestannylation method, 123I- niodene was obtained in high radiochemical purity (95%) but with low radiochemical yield (5%) and low specific activity (~100 Ci/mmol). Autoradiograms show 123I-niodene localized in the thalamus and cortex, which was displaced by nicotine (thalamus to cerebellum ratio = 4; cortex to cerebellum ratio = 1.6). Methods of radioiodination need to be further evaluated in order to obtain 123I-niodene in higher radiochemical yields and higher specific activity of this potentially useful new SPECT imaging agent.
机译:烟碱乙酰胆碱受体(NACHR)在疾病条件下下调,例如阿尔茨海默氏症和药物滥用。目前,123i-5-IA-85380用于人类研究,需要超过6小时的扫描时间,从而增加患者的不适。我们已经设计和合成了3-Iodo-5- [2-(S)-3-吡咯乙氧基氧基]吡啶(NiODENE),其目的是与123i-5-Ia-85380相比具有更快的结合动力学,这可能会降低扫描时间和帮助成像研究。使用3H-cytisine的脑匀浆测定中的大鼠脑α4β2受体的NIODENE的结合亲和力K I为0.27nm。 NiODENE,10nm位移,10nm& 95%的18F-镍氢乙烯与大鼠脑切片中的α4β2受体结合。通过使用IododeStankylation方法,在高放射化学纯度(& 95%)中获得123i- NiODene,但不受放射化学产率(≤5%)和低比活性(〜100ci / mmol)。 autoradiograms显示丘脑和皮质定位的123i-核苷酸,其被尼古丁(丘脑到小鸡比率= 4;皮质到小脑比率= 1.6)。需要进一步评估放射性碘的方法,以便在更高的放射化学产率和较高的放射化学产率和更高的细比活性中获得123i- NiODENE。

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