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[F]氟乙基蟾毒灵在荷肝癌小鼠体内的放射性合成及药代动力学

Radiosynthesis and pharmacokinetics of [F]fluoroethyl bufalin in hepatocellular carcinoma-bearing mice.

作者信息

Yang Zhaoshuo, Liu Jianhua, Huang Qingqing, Zhang Zhouji, Zhang Jiawei, Pan Yanjia, Yang Yunke, Cheng Dengfeng

机构信息

Department of Chinese Traditional Medicine, Zhongshan Hospital, Fudan University.

School of Medicine, Shanghai Jiao Tong University.

出版信息

Onco Targets Ther. 2017 Jan 11;10:329-338. doi: 10.2147/OTT.S110281. eCollection 2017.

Abstract

PURPOSE

Bufalin, the main component of a Chinese traditional medicine chansu, shows convincing anticancer effects in a lot of tumor cell lines. However, its in vivo behavior is still unclear. This research aimed to evaluate how bufalin was dynamically absorbed after intravenous injection in animal models. We developed a radiosynthesis method of [F]fluoroethyl bufalin to noninvasively evaluate the tissue biodistribution and pharmacokinetics in hepatocellular carcinoma-bearing mice.

METHODS

[F]fluoroethyl bufalin was synthesized with conjugation of 18F-CHCHOTs and bufalin. The radiochemical purity was proved by the radio-high-performance liquid chromatography (HPLC). The pharmacokinetic studies of [F]fluoroethyl bufalin were then performed in Institute of Cancer Research (ICR) mice. Furthermore, the biodistribution and metabolism of [F]fluoroethyl bufalin in HepG2 and SMMC-7721 tumor-bearing nude mice were studied in vivo by micro-positron emission tomography (micro-PET).

RESULTS

The radiochemical purity (RCP) of [F]fluoroethyl bufalin confirmed by radio-HPLC was 99%±0.18%, and [F]fluoroethyl bufalin showed good in vitro and in vivo stabilities. Blood dynamics of [F]fluoroethyl bufalin conformed to the two compartments in the ICR mice model. The pharmacokinetic parameters of [F]fluoroethyl bufalin were calculated by DAS 2.0 software. The area under concentration-time curve (AUC) and the values of clearance (CL) were 540.137 μg/L·min and 0.001 L/min/kg, respectively. The half-life of distribution (t ) and half-life of elimination (t ) were 0.693 and 510.223 min, respectively. Micro-PET imaging showed that [F]fluoroethyl bufalin was quickly distributed via the blood circulation; the major tissue biodistribution of [F]fluoroethyl bufalin in HepG2 and SMMC-7721 tumor-bearing mice was liver and bladder.

CONCLUSION

[F]fluoroethyl bufalin was accumulated rapidly in the liver at an early time point (5 min) post injection (pi) and then declined slowly, mainly through both the hepatic pathway and the renal pathway. Our study showed the biodistribution of [F]fluoroethyl bufalin in micro-PET images and provided visible information for demonstrating the bioactivities of bufalin.

摘要

目的

蟾酥灵是中药蟾酥的主要成分,在许多肿瘤细胞系中显示出令人信服的抗癌作用。然而,其体内行为仍不清楚。本研究旨在评估蟾酥灵在动物模型静脉注射后如何动态吸收。我们开发了一种[F]氟乙基蟾酥灵的放射性合成方法,以无创评估荷肝细胞癌小鼠的组织生物分布和药代动力学。

方法

通过18F-CHCHOTs与蟾酥灵的结合合成[F]氟乙基蟾酥灵。通过放射性高效液相色谱(HPLC)证明放射化学纯度。然后在癌症研究学会(ICR)小鼠中进行[F]氟乙基蟾酥灵的药代动力学研究。此外,通过微型正电子发射断层扫描(micro-PET)在体内研究[F]氟乙基蟾酥灵在荷HepG2和SMMC-7721肿瘤裸鼠中的生物分布和代谢。

结果

通过放射性HPLC确认的[F]氟乙基蟾酥灵的放射化学纯度(RCP)为99%±0.18%,[F]氟乙基蟾酥灵在体外和体内均表现出良好的稳定性。[F]氟乙基蟾酥灵的血液动力学在ICR小鼠模型中符合二室模型。通过DAS 2.0软件计算[F]氟乙基蟾酥灵的药代动力学参数。浓度-时间曲线下面积(AUC)和清除率(CL)值分别为540.137μg/L·min和0.001L/min/kg。分布半衰期(t)和消除半衰期(t)分别为0.693和510.223分钟。Micro-PET成像显示[F]氟乙基蟾酥灵通过血液循环迅速分布;[F]氟乙基蟾酥灵在荷HepG2和SMMC-7721肿瘤小鼠中的主要组织生物分布是肝脏和膀胱。

结论

[F]氟乙基蟾酥灵在注射后早期(5分钟)迅速在肝脏中蓄积,然后缓慢下降,主要通过肝脏途径和肾脏途径。我们的研究显示了[F]氟乙基蟾酥灵在micro-PET图像中的生物分布,并为证明蟾酥灵的生物活性提供了可视化信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6325/5238771/915ae69d1417/ott-10-329Fig1.jpg

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