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首次使用多功能合成仪自动化合成 11C 标记替米沙坦,用于临床研究。

First automatic radiosynthesis of 11C labeled Telmisartan using a multipurpose synthesizer for clinical research use.

机构信息

Division of Molecular Imaging, Institute of Biomedical Research and Innovation, 2-2 Minatojima minamimachi, Chuo-ku, Kobe, Hyogo, 650-0047, Japan.

出版信息

Ann Nucl Med. 2011 Jun;25(5):333-7. doi: 10.1007/s12149-011-0466-2. Epub 2011 Jan 28.

Abstract

OBJECTIVE

Telmisartan, a nonpeptide angiotensin II AT1 receptor antagonist, is an antihypertensive drug. Positron emission tomography (PET) imaging with [(11)C]Telmisartan is expected to provide information about the whole body pharmacokinetics of telmisartan as well as the transport function of hepatic OATP1B3. We developed a first automatic preparation system of [(11)C]Telmisartan to applicable clinical research using a new (11)C and (18)F multipurpose synthesizer.

METHODS

Two milligrams of precursor (1) in 5 μl of 1 M KOH in 0.5 ml of dimethyl sulfoxide was reacted with [(11)C]CH(3)I for 5 min at 120°C. The resultant solution was hydrolyzed with 1 M NaOH at 100°C for 3 min. The neutralization was carried out with acetic acid, followed by purification with high-performance liquid chromatography. The desired radioactive fraction was collected and solvent was replaced by 10 ml saline containing 0.3 ml of EtOH and 0.5 ml of PEG400, and then passed through a sterile 0.22 μm filter (Millex-GV, Millipore) to a pyrogen-free vial as the final product.

RESULTS

The yield of [(11)C]Telmisartan for clinical research use was 16.8 ± 2.9% EOB as decay corrected (n = 8, mean ± SD) in 32-36 min. The radiochemical purity of [(11)C]Telmisartan was >97%, and specific activity was higher than 86.3 MBq/nmol.

CONCLUSIONS

We succeeded in the first synthesis of [(11)C]Telmisartan for clinical research use by appropriate quality tests.

摘要

目的

替米沙坦是一种非肽类血管紧张素 II AT1 受体拮抗剂,是一种降压药物。正电子发射断层扫描(PET)成像用[(11)C]替米沙坦有望提供替米沙坦全身药代动力学和肝 OATP1B3 转运功能的信息。我们使用新型(11)C 和(18)F 多用途合成仪开发了第一个适用于临床研究的[(11)C]替米沙坦的自动制备系统。

方法

在 5μl 1MKOH 于 0.5ml 二甲亚砜中的 2mg 前体(1)与[(11)C]CH3I 在 120°C 下反应 5min。所得溶液在 100°C 下用 1MKOH 水解 3min。用乙酸中和,然后用高效液相色谱法进行纯化。收集所需放射性馏分,用含 0.3ml EtOH 和 0.5ml PEG400 的 10ml 生理盐水取代溶剂,然后通过无菌 0.22μm 过滤器(Millex-GV,Millipore)过滤到无热原小瓶中作为最终产物。

结果

在 32-36min 内,使用适当的质量测试,我们成功地首次合成了用于临床研究的[(11)C]替米沙坦,其临床研究使用的放射化学产率为 16.8±2.9% EOB(n=8,平均值±标准差)。[(11)C]替米沙坦的放射化学纯度>97%,比活度高于 86.3MBq/nmol。

结论

我们通过适当的质量测试成功地首次合成了用于临床研究的[(11)C]替米沙坦。

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