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氟环戊烯基胞嘧啶(RX-3117;TV-1360)的代谢、作用机制和敏感性特征。

Metabolism, mechanism of action and sensitivity profile of fluorocyclopentenylcytosine (RX-3117; TV-1360).

机构信息

Department of Medical Oncology, VU University Medical Center, PO Box 7057, 1007 MB, Amsterdam, The Netherlands,

出版信息

Invest New Drugs. 2013 Dec;31(6):1444-57. doi: 10.1007/s10637-013-0025-x. Epub 2013 Sep 19.

Abstract

A novel cytidine analog fluorocyclopentenylcytosine (RX-3117; TV-1360) was characterized for its cytotoxicity in a 59-cell line panel and further characterized for cytotoxicity, metabolism and mechanism of action in 15 additional cancer cell lines, including gemcitabine-resistant variants. In both panels sensitivity varied 75-fold (IC50: 0.4- > 30 μM RX-3117). RX-3117 showed a different sensitivity profile compared to cyclopentenyl-cytosine (CPEC) and azacytidine, substrates for uridine-cytidine-kinase (UCK). Dipyridamole, an inhibitor of the equilibrative-nucleoside-transporter protected against RX-3117. Uridine and cytidine protected against RX-3117, but deoxycytidine (substrate for deoxycytidine-kinase [dCK]) not, although it protected against gemcitabine, demonstrating that RX-3117 is a substrate for UCK and not for dCK. UCK activity was abundant in all cell lines, including the gemcitabine-resistant variants. RX-3117 was a very poor substrate for cytidine deaminase (66,000-fold less than gemcitabine). RX-3117 was rapidly metabolised to its nucleotides predominantly the triphosphate, which was highest in the most sensitive cells (U937, A2780) and lowest in the least sensitive (CCRF-CEM). RX-3117 did not significantly affect cytidine and uridine nucleotide pools. Incorporation of RX-3117 into RNA and DNA was higher in sensitive A2780 and low in insensitive SW1573 cells. In sensitive U937 cells 1 μM RX-3117 resulted in 90% inhibition of RNA synthesis but 100 μM RX-3117 was required in A2780 and CCRF-CEM cells. RX-3117 at IC50 values did not affect the integrity of RNA. DNA synthesis was completely inhibited in sensitive U937 cells at 1 μM, but in other cells even higher concentrations only resulted in a partial inhibition. At IC50 values RX-3117 downregulated the expression of DNA methyltransferase. In conclusion, RX-3117 showed a completely different sensitivity profile compared to gemcitabine and CPEC, its uptake is transporter dependent and is activated by UCK. RX-3117 is incorporated into RNA and DNA, did not affect RNA integrity, depleted DNA methyltransferase and inhibited RNA and DNA synthesis. Nucleotide formation is related with sensitivity.

摘要

一种新型胞嘧啶类似物氟环胞苷(RX-3117;TV-1360)在 59 种细胞系中进行了细胞毒性特征分析,并在包括吉西他滨耐药变体在内的 15 种额外的癌细胞系中进行了细胞毒性、代谢和作用机制的进一步特征分析。在这两个面板中,敏感性差异高达 75 倍(IC50:0.4- > 30 μM RX-3117)。与环戊基胞苷(CPEC)和阿扎胞苷相比,RX-3117 显示出不同的敏感性特征,后者是尿苷胞苷激酶(UCK)的底物。双嘧达莫,一种平衡核苷转运体的抑制剂,可防止 RX-3117 进入。尿苷和胞苷可防止 RX-3117,但脱氧胞苷(脱氧胞苷激酶[dCK]的底物)不能,尽管它可以保护吉西他滨,表明 RX-3117 是 UCK 的底物,而不是 dCK。UCK 活性在所有细胞系中均很丰富,包括吉西他滨耐药变体。RX-3117 是胞苷脱氨酶的非常差的底物(比吉西他滨差 66,000 倍)。RX-3117 被快速代谢为其核苷酸,主要是三磷酸酯,在最敏感的细胞(U937、A2780)中含量最高,在最不敏感的细胞(CCRF-CEM)中含量最低。RX-3117 对胞苷和尿苷核苷酸池没有显著影响。在敏感的 A2780 细胞中,RX-3117 掺入 RNA 和 DNA 的比例较高,而在不敏感的 SW1573 细胞中则较低。在敏感的 U937 细胞中,1 μM RX-3117 可导致 90%的 RNA 合成抑制,但在 A2780 和 CCRF-CEM 细胞中则需要 100 μM RX-3117。在 IC50 值时,RX-3117 不会影响 RNA 的完整性。在敏感的 U937 细胞中,DNA 合成在 1 μM 时完全被抑制,但在其他细胞中,即使更高的浓度也只能导致部分抑制。在 IC50 值时,RX-3117 下调 DNA 甲基转移酶的表达。总之,与吉西他滨和 CPEC 相比,RX-3117 表现出完全不同的敏感性特征,其摄取依赖于转运体,并由 UCK 激活。RX-3117 被掺入 RNA 和 DNA 中,不影响 RNA 完整性,耗尽 DNA 甲基转移酶,并抑制 RNA 和 DNA 合成。核苷酸形成与敏感性有关。

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