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用胞嘧啶脱氨酶监测基因治疗:使用氚标记的5-氟胞嘧啶的体外研究。

Monitoring gene therapy with cytosine deaminase: in vitro studies using tritiated-5-fluorocytosine.

作者信息

Haberkorn U, Oberdorfer F, Gebert J, Morr I, Haack K, Weber K, Lindauer M, van Kaick G, Schackert H K

机构信息

Department of Oncological Diagnostics, German Cancer Research Center, Heidelberg, Germany.

出版信息

J Nucl Med. 1996 Jan;37(1):87-94.

PMID:8544010
Abstract

UNLABELLED

Genetically modified mammalian cells that express the cytosine deaminase (CD) gene are able to convert the nontoxic prodrug 5-fluorocytosine (5-FC) to the toxic metabolite 5-fluorouracil (5-FU). PET with 18F-5-FC may be used for in vivo measurement of CD activity in genetically modified tumors.

METHODS

A human glioblastoma cell line was stably transfected with the Escherichia coli CD gene. After incubation of lysates of CD-expressing cells and control cells with 3H-5-FC high-performance liquid chromatography (HPLC) was performed. The uptake of 5-FC was measured after various incubation times using therapeutic amounts of 5-FC. In addition, saturation and competition experiments with 5-FC and 5-FU were performed. Finally, the efflux was measured.

RESULTS

We found that 3H-5-FU was produced in CD-expressing cells, whereas in the control cells only 3H-5-FC was detected. Moreover, significant amounts of 5-FU were found in the medium of cultured cells, which may account for the bystander effect observed in previous experiments. However, uptake studies revealed a moderate and nonsaturable accumulation of radioactivity in the tumor cells, suggesting that 5-FC enters the cells only through diffusion. Although a significant difference in 5-FC uptake was seen between CD-positive and control cells after 48 hr of incubation, no difference was observed after 2 hr of incubation. Furthermore, a rapid efflux could be demonstrated.

CONCLUSION

5-Fluorocytosine transport may be a limiting factor for this therapeutic procedure. Quantitation with PET has to rely more on dynamic studies and modeling, including HPLC analysis of the plasma, than on nonmodeling approaches.

摘要

未标记

表达胞嘧啶脱氨酶(CD)基因的转基因哺乳动物细胞能够将无毒前体药物5-氟胞嘧啶(5-FC)转化为有毒代谢物5-氟尿嘧啶(5-FU)。用18F-5-FC进行正电子发射断层扫描(PET)可用于体内测量转基因肿瘤中的CD活性。

方法

用人胶质母细胞瘤细胞系稳定转染大肠杆菌CD基因。将表达CD的细胞和对照细胞的裂解物与3H-5-FC孵育后,进行高效液相色谱(HPLC)分析。使用治疗剂量的5-FC在不同孵育时间后测量5-FC的摄取。此外,进行了5-FC和5-FU的饱和及竞争实验。最后,测量了流出情况。

结果

我们发现表达CD的细胞中产生了3H-5-FU,而在对照细胞中仅检测到3H-5-FC。此外,在培养细胞的培养基中发现了大量的5-FU,这可能解释了先前实验中观察到的旁观者效应。然而,摄取研究显示肿瘤细胞中放射性呈中度且非饱和性积累,表明5-FC仅通过扩散进入细胞。尽管孵育48小时后CD阳性细胞和对照细胞在5-FC摄取上存在显著差异,但孵育2小时后未观察到差异。此外,可证明存在快速流出。

结论

5-氟胞嘧啶转运可能是该治疗程序的一个限制因素。PET定量必须更多地依赖动态研究和建模,包括血浆的HPLC分析,而不是非建模方法。

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