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环戊烯基胞嘧啶对神经母细胞瘤细胞系的细胞生长抑制及分化诱导作用

The cytostatic- and differentiation-inducing effects of cyclopentenyl cytosine on neuroblastoma cell lines.

作者信息

Bierau J, van Gennip A H, Helleman J, van Kuilenburg A B

机构信息

Academic Medical Center, University of Amsterdam, Emma Children's Hospital and Department of Clinical Chemistry, P.O. Box 22700, 1100 DE, Amsterdam, The Netherlands.

出版信息

Biochem Pharmacol. 2001 Oct 15;62(8):1099-105. doi: 10.1016/s0006-2952(01)00756-0.

Abstract

This paper describes the effects of cyclopentenyl cytosine (CPEC) on the proliferation and cell-cycle distribution of the SK-N-BE(2)c and SK-N-SH neuroblastoma cell lines, as well as their ability to recover from treatment with CPEC. The IC50 value of SK-N-BE(2)c for CPEC, determined after 48 hr was 80 nM. SK-N-BE(2)c cells showed a time- and concentration-dependent accumulation in the S-phase of the cell cycle after 2 and 3 days of incubation with 50-250 nM CPEC, followed by a G0/G1-phase arrest after 4 days. After incubation with 50 nM CPEC for 2 days, SK-N-BE(2)c cells fully recovered and resumed logarithmic proliferation. In contrast, a complete and persistent growth arrest occurred when SK-N-BE(2)c cells were incubated for 2 days with 100 or 250 nM CPEC. The IC50 value of SK-N-SH, determined after 48 hr, for CPEC was > or =1 microM. SK-N-SH cells incubated with 250 nM or 1 microM CPEC showed a time-dependent accumulation in the S-phase of the cell cycle, followed by an accumulation in the G0/G1-phase, which reached a maximum of 84.1% after 7 days of incubation with 1 microM CPEC. SK-N-SH cells did not resume proliferation after removal of the drug. In addition, CPEC strongly induced differentiation in SK-N-SH cells. After 48 hr incubation with 250 nM CPEC, 90% of the cell population was differentiated. Both neuronal type and Schwannian type cells were observed. We conclude that at very low concentrations, CPEC has profound cytostatic- and differentiation-inducing effects on the neuroblastoma cells studied.

摘要

本文描述了环戊烯基胞嘧啶(CPEC)对SK-N-BE(2)c和SK-N-SH神经母细胞瘤细胞系增殖及细胞周期分布的影响,以及它们从CPEC处理中恢复的能力。48小时后测定,SK-N-BE(2)c对CPEC的IC50值为80 nM。用50 - 250 nM CPEC孵育2天和3天后,SK-N-BE(2)c细胞在细胞周期的S期呈现时间和浓度依赖性积累,4天后出现G0/G1期阻滞。用50 nM CPEC孵育2天后,SK-N-BE(2)c细胞完全恢复并重新开始对数增殖。相反,当SK-N-BE(2)c细胞用100或250 nM CPEC孵育2天时,会出现完全且持续的生长停滞。48小时后测定,SK-N-SH对CPEC的IC50值≥1 μM。用250 nM或1 μM CPEC孵育的SK-N-SH细胞在细胞周期的S期呈现时间依赖性积累,随后在G0/G1期积累,用1 μM CPEC孵育7天后,G0/G1期积累最多达到84.1%。去除药物后,SK-N-SH细胞未恢复增殖。此外,CPEC强烈诱导SK-N-SH细胞分化。用250 nM CPEC孵育48小时后,90%的细胞群体发生分化。观察到神经元型和雪旺氏型细胞。我们得出结论,在非常低的浓度下,CPEC对所研究的神经母细胞瘤细胞具有显著的抑制细胞生长和诱导分化的作用。

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