Hara T, Kosaka N, Shinoura N, Kondo T
Department of Radiology, International Medical Center of Japan.
J Nucl Med. 1997 Jun;38(6):842-7.
This article describes a new method of [11C]choline synthesis for intravenous injection. We aimed at the utilization of this compound for brain tumor imaging with PET.
After [11C]carbon dioxide production in a cyclotron and the subsequent [11C]methyl iodide synthesis, [methyl-11C]choline was synthesized by the reaction of [11C]methyl iodide with "neat" dimethylaminoethanol at 120 degrees C for 5 min. Purification was achieved by evaporation of the reactants followed by passage of the aqueous solution of the product through a cation-exchange resin cartridge. The time required for overall chemical processing, excluding the cyclotron operation, was 15 min. Radiochemical yield was > 98%. Radiochemical purity was > 98%. Chemical purity was > 90% (dimethylaminoethanol was the only possible impurity). Specific radioactivity of the product was > 133 GBq/mumol. The whole body distribution was examined in rabbits with PET. Clinical studies were performed in patients with brain tumor using PET after intravenous injection of 370 MBq of [11C]choline.
In rabbits,[11C]choline was taken up from blood by various tissues very rapidly, and the radioactivity remaining in blood became almost negligible 5 min after intravenous injection. Taking advantage of this characteristic, we obtained stable tissue distribution images of human brain using PET. In patients with brain tumor, PET produced clearly delineated positive images of the tumors.
Carbon-11-choline can be used for obtaining clear images of brain tumor in PET.
本文描述了一种用于静脉注射的[11C]胆碱合成新方法。我们旨在将该化合物用于正电子发射断层扫描(PET)脑肿瘤成像。
在回旋加速器中产生[11C]二氧化碳并随后合成[11C]碘甲烷后,[11C]碘甲烷与“纯”二甲基氨基乙醇在120℃反应5分钟合成[甲基-11C]胆碱。通过蒸发反应物,然后使产物的水溶液通过阳离子交换树脂柱来实现纯化。不包括回旋加速器操作,整个化学处理所需时间为15分钟。放射化学产率>98%。放射化学纯度>98%。化学纯度>90%(二甲基氨基乙醇是唯一可能的杂质)。产物的比活度>133GBq/μmol。用PET在兔体内进行全身分布研究。在静脉注射370MBq的[11C]胆碱后,使用PET对脑肿瘤患者进行临床研究。
在兔体内,[11C]胆碱能非常迅速地从血液被各种组织摄取,静脉注射后5分钟血液中残留的放射性几乎可以忽略不计。利用这一特性,我们用PET获得了人脑稳定的组织分布图像。在脑肿瘤患者中,PET产生了清晰勾勒出的肿瘤阳性图像。
碳-11-胆碱可用于在PET中获得清晰的脑肿瘤图像。