首页> 外文期刊>Journal of liposome research >PET imaging of liposomes labeled with an [18F]-fluorocholesteryl ether probe prepared by automated radiosynthesis
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PET imaging of liposomes labeled with an [18F]-fluorocholesteryl ether probe prepared by automated radiosynthesis

机译:通过自动放射合成制备的用[18F]-氟胆固醇醚探针标记的脂质体的PET成像

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A novel [18F]-labeled cholesteryl ether lipid probe was prepared by synthesis of the corresponding mesylate, which was [18F]- fluorinated by a [18F]KF, Kryptofix-222, K2CO3 procedure. Fluorination was done for 10 minutes at 165°C and took place with conversion between 3 and 17%, depending on conditions. Radiolabelling of the probe and subsequent in situ purification on SEP-Paks were done on a custom-built, fully automatic synthesis robot. Long-circulating liposomes were prepared by hydration (magnetic stirring) of a lipid film containing the radiolabeled probe, followed by fully automated extrusion through 100-nm filters. The [18F]-labeled liposomes were injected into nude, tumor-bearing mice, and positron emission tomography (PET) scans were performed several times over 8 hours to investigate the in vivo biodistribution. Clear tumor accumulation, as well as hepatic and splenic uptake, was observed, corresponding to expected liposomal pharmacokinetics. The tumor accumulation 8 hours postinjection accounted for 2.25±0.23 (mean ± standard error of the mean) percent of injected dose per gram (%ID/g), and the tumor-to-muscle ratio reached 2.20±0.24 after 8 hours, which is satisfactorily high for visualization of pathological lesions. Moreover, the blood concentration was still at a high level (13.9±1.5 %ID/g) at the end of the 8-hour time frame. The present work demonstrates the methodology for automated preparation of radiolabeled liposomes, and shows that [18F]-labeled liposomes could be suitable as a methodology for visualization of tumors and obtaining short-term pharmacokinetics in vivo.
机译:通过合成相应的甲磺酸盐,制备了一种新颖的[18F]标记的胆甾醇醚脂质探针,该甲磺酸盐是通过[18F] KF,Kryptofix-222,K2CO3程序氟化的。取决于条件,氟化在165°C下进行10分钟,转化率为3%至17%。探针的放射性标记和随后在SEP-Paks上的原位纯化是在定制的全自动合成机器人上完成的。长循环脂质体的制备是通过水合(磁力搅拌)含有放射性标记探针的脂质膜,然后通过100-nm滤膜进行全自动挤出来制备的。将[18F]标记的脂质体注射到荷瘤的裸鼠体内,并在8小时内进行几次正电子发射断层扫描(PET)扫描,以研究体内的生物分布。观察到明显的肿瘤积累以及肝和脾的摄取,这与预期的脂质体药代动力学相对应。注射后8小时的肿瘤累积占每克注射剂量的2.25±0.23(平均值±平均值的标准误)百分比,8小时后肿瘤与肌肉的比例达到2.20±0.24,对于病理性病变的可视化非常令人满意。此外,在8小时时限结束时,血液浓度仍处于较高水平(13.9±1.5%ID / g)。本工作证明了放射性标记脂质体的自动制备方法,并表明[18F]标记的脂质体可能适合作为可视化肿瘤和获得体内短期药代动力学的方法。

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