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用于18F-氟胆碱质量控制分析的便捷高效方法:适用于基于小规模药品生产质量管理规范的放射性药物实验室设置。

Convenient and Efficient Method for Quality Control Analysis of 18F-Fluorocholine: For a Small Scale GMP-based Radiopharmaceuticals Laboratory Set-up.

作者信息

Hassan Hishar, Abu Bakar Suharzelim, Halim Khairul Najah Che A, Idris Jaleezah, Nordin Abdul Jalil

机构信息

Centre for Diagnostic Nuclear Imaging, Universiti Putra Malaysia, Serdang 43400, Malaysia.

出版信息

Curr Radiopharm. 2016;9(2):128-36. doi: 10.2174/1874471008666150527091956.

Abstract

BACKGROUND AND OBJECTIVE

Prostate cancer continues to be the most prevalent cancer in men in Malaysia. As time progresses, the prospect of PET imaging modality in diagnosis of prostate cancer is promising, with on-going improvement on novel tracers. Among all tracers, 18F-Fluorocholine is reported to be a reputable tracer and reliable diagnostic technique for prostate imaging. Nonetheless, only 18F-Fluorodeoxyglucose (18F-FDG) is available and used in most oncology cases in Malaysia. With a small scale GMP-based radiopharmaceuticals laboratory set-up, initial efforts have been taken to put Malaysia on 18F-Fluorocholine map. This article presents a convenient, efficient and reliable method for quality control analysis of 18F-Fluorocholine. Besides, the aim of this research work is to assist local GMP radiopharmaceuticals laboratories and local authority in Malaysia for quality control analysis of 18F-Fluorocholine guideline.

METHODS

In this study, prior to synthesis, quality control analysis method for 18F-Fluorocholine was developed and validated, by adapting the equipment set-up used in 18F-Fluorodeoxyglucose (18FFDG) routine production. Quality control on the 18F-Fluorocholine was performed by means of pH, radionuclidic identity, radio-high performance liquid chromatography equipped with ultraviolet, radio- thin layer chromatography, gas chromatography and filter integrity test.

RESULTS

Post-synthesis; the pH of 18F-Fluorocholine was 6.42 ± 0.04, with half-life of 109.5 minutes (n = 12). The radiochemical purity was consistently higher than 99%, both in radio-high performance liquid chromatography equipped with ultraviolet (r-HPLC; SCX column, 0.25 M NaH2PO4: acetonitrile) and radio-thin layer chromatography method (r-TLC). The calculated relative retention time (RRT) in r-HPLC was 1.02, whereas the retention factor (Rf) in r-TLC was 0.64. Potential impurities from 18F-Fluorocholine synthesis such as ethanol, acetonitrile, dimethylethanolamine and dibromomethane were determined in gas chromatography. Using our parameters, (capillary column: DB-200, 30 m x 0.53 mm x 1 um) and oven temperature of 35°C (isothermal), all compounds were well resolved and eluted within 3 minutes. Level of ethanol and acetonitrile in 18F-Fluorocholine were detected below threshold limit; less than 5 mg/ml and 0.41 mg/ml respectively. Meanwhile, dimethylethanolamine and dibromomethane were undetectable.

CONCLUSION

A convenient, efficient and reliable quality control analysis work-up procedure for 18FFluorocholine has been established and validated to comply all the release criteria. The convenient method of quality control analysis may provide a guideline to local GMP radiopharmaceutical laboratories to start producing 18F-Fluorocholine as a tracer for prostate cancer imaging.

摘要

背景与目的

前列腺癌仍是马来西亚男性中最常见的癌症。随着时间的推移,正电子发射断层扫描(PET)成像模式在前列腺癌诊断中的前景广阔,新型示踪剂也在不断改进。在所有示踪剂中,18F-氟胆碱据报道是一种用于前列腺成像的可靠示踪剂和诊断技术。然而,在马来西亚,大多数肿瘤病例中仅使用18F-氟脱氧葡萄糖(18F-FDG)。通过建立一个小规模的基于药品生产质量管理规范(GMP)的放射性药物实验室,已初步努力使马来西亚进入18F-氟胆碱领域。本文介绍了一种方便、高效且可靠的18F-氟胆碱质量控制分析方法。此外,本研究工作的目的是协助马来西亚当地的GMP放射性药物实验室和地方当局制定18F-氟胆碱质量控制分析指南。

方法

在本研究中,在合成之前,通过采用18F-氟脱氧葡萄糖(18F-FDG)常规生产中使用的设备装置,开发并验证了18F-氟胆碱的质量控制分析方法。通过pH值、放射性核素鉴定、配备紫外检测器的放射性高效液相色谱、放射性薄层色谱、气相色谱和过滤器完整性测试对18F-氟胆碱进行质量控制。

结果

合成后;18F-氟胆碱的pH值为6.42±0.04,半衰期为109.5分钟(n = 12)。在配备紫外检测器的放射性高效液相色谱(r-HPLC;SCX柱,0.25 M NaH2PO4:乙腈)和放射性薄层色谱法(r-TLC)中,放射化学纯度均始终高于99%。r-HPLC中计算的相对保留时间(RRT)为1.02,而r-TLC中的保留因子(Rf)为0.64。通过气相色谱法测定了18F-氟胆碱合成过程中潜在的杂质,如乙醇、乙腈、二甲基乙醇胺和二溴甲烷。使用我们的参数(毛细管柱:DB-200,30 m×0.53 mm×1μm)和35°C的柱温(等温),所有化合物都得到了很好的分离,并在3分钟内洗脱出来。18F-氟胆碱中乙醇和乙腈的含量检测低于阈值;分别低于5 mg/ml和0.41 mg/ml。同时,未检测到二甲基乙醇胺和二溴甲烷。

结论

已建立并验证了一种方便、高效且可靠的18F-氟胆碱质量控制分析方法,以符合所有放行标准。这种方便的质量控制分析方法可为当地的GMP放射性药物实验室开始生产18F-氟胆碱作为前列腺癌成像示踪剂提供指导。

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