首页> 外文期刊>European Journal of Nuclear Medicine and Molecular Imaging >Do androgens control the uptake of 18F-FDG, 11C-choline and 11C-acetate in human prostate cancer cell lines?
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Do androgens control the uptake of 18F-FDG, 11C-choline and 11C-acetate in human prostate cancer cell lines?

机译:雄激素是否控制人前列腺癌细胞系中18F-FDG,11C-胆碱和11C-乙酸盐的摄取?

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PURPOSE: The aim of this study was to evaluate the impact of androgen ablation therapy in different prostate cancer (PCa) cell lines--reflecting different stages of the disease--on (18)F-fluorodeoxyglucose (FDG), 11C-choline and 11C-acetate uptake. METHODS: Uptake experiments were performed in androgen-sensitive (LNCaP, PC346C) and independent cell lines (22Rv1, PC346DCC, PC-3) as well as in a benign prostatic hyperplasia (BPH-1) cell line. Tracer uptake was assessed under androgen ablation. Results of the cancer cell lines were normalized to those of BPH-1. To evaluate the effect of androgen on the uptake of 18F-FDG, 11C-choline and 11C-acetate in PCa cell lines, 10(-8) M R1881, 10(-10) M R1881, the combination of 10(-10) M R1881 plus 10(-6) M Casodex or 10(-6) M Casodex alone were added in parallel cell cultures 1 day before uptake experiments. Uptake in androgen-supplemented cell cultures was compared to the uptake under androgen deprivation. Uptake was corrected for cell number using protein content. RESULTS: Compared to BPH-1, a higher 18F-FDG uptake was observed only in PC346C cells, whereas a higher 11C-choline and markedly increased 11C-acetate uptake was seen in all cancer cell lines. Androgens significantly modulated the uptake of 18F-FDG in LNCaP, PC346C and 22Rv1 cells, and of 11C-choline in the PC346C and 22Rv1 cell line. No androgenic effect on 11C-choline and 18F-FDG uptake was observed in PC-3 and PC346DCC cells. 11C-Acetate uptake was independent of androgen status in all PCa cell lines studied. CONCLUSION: 18F-FDG uptake in PCa cell lines showed the highest variability and strongest androgen effect, suggesting its poor potential for metabolic imaging of advanced PCa. In contrast to 18F-FDG and 11C-choline, 11C-acetate uptake was unaffected by androgens and thus 11C-acetate seems best for monitoring PCa progression.
机译:目的:本研究的目的是评估雄激素消融治疗对不同前列腺癌(PCa)细胞系(反映疾病的不同阶段)对(18)F-氟脱氧葡萄糖(FDG),11C-胆碱和摄取11C-乙酸盐。方法:在雄激素敏感(LNCaP,PC346C)和独立细胞系(22Rv1,PC346DCC,PC-3)以及良性前列腺增生(BPH-1)细胞系中进行摄取实验。在雄激素消融下评估示踪剂摄取。将癌细胞系的结果相对于BPH-1进行归一化。为了评估雄激素对PCa细胞10(-8)M R1881、10(-10)M R1881、10(-10)的组合中18F-FDG,11C-胆碱和11C-乙酸酯摄取的影响在摄取实验前1天,将M R1881加10(-6)M Casodex或10(-6)M Casodex单独添加到平行细胞培养物中。将雄激素补充的细胞培养物中的摄取与雄激素剥夺下的摄取进行比较。使用蛋白质含量校正摄取的细胞数。结果:与BPH-1相比,仅在PC346C细胞中观察到较高的18F-FDG摄取,而在所有癌细胞系中均观察到较高的11C-胆碱摄取和11C-乙酸盐摄取显着增加。雄激素显着调节LNCaP,PC346C和22Rv1细胞中18F-FDG的摄取,以及PC346C和22Rv1细胞系中11C-胆碱的摄取。在PC-3和PC346DCC细胞中未观察到对11C-胆碱和18F-FDG摄取的雄激素作用。在所有研究的PCa细胞系中,11C-乙酸盐的摄取与雄激素状态无关。结论:PCa细胞株中18 F-FDG的摄取具有最高的变异性和最强的雄激素作用,表明其对晚期PCa的代谢成像的潜力不大。与18F-FDG和11C-胆碱相反,雄激素不影响11C-乙酸盐的摄取,因此11C-乙酸盐似乎最适合监测PCa进程。

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