首页> 外文期刊>Oncology: International Journal of Cancer Research and Treatment >High-Dose 5-Fluorouracil with Uridine-Diphosphoglucose Rescue Increases Thymidylate Synthase Inhibition but Not 5-Fluorouracil Incorporation into RNA in Murine Tumors.
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High-Dose 5-Fluorouracil with Uridine-Diphosphoglucose Rescue Increases Thymidylate Synthase Inhibition but Not 5-Fluorouracil Incorporation into RNA in Murine Tumors.

机译:具有尿苷-二磷酸葡萄糖救援作用的大剂量5-氟尿嘧啶可增加胸苷酸合酶抑制作用,但不会将5-氟尿嘧啶并入小鼠肿瘤的RNA中。

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摘要

5-Fluorouracil (5FU) shows a steep dose response curve in several experimental systems, but the clinical use of high doses is hampered by the toxic side effects of this drug. Uridine diphosphoglucose (UDPG) rescue allows an increase in the maximum tolerated dose of 5FU in mice from 100 (FU(100)) to 150 mg/kg (5FU(150)+UDPG) and the higher dose is more effective than the standard treatment against several tumors. In the present paper we report on the effect of high-dose 5FU on thymidylate synthase (TS) levels and on 5FU incorporation into RNA. In the resistant murine tumor (Colon 26A) high-dose 5FU inhibited TS catalytic activity 8 h after treatment (4-fold; p = 0.00041) and the inhibition persisted until day 3 (p < 10(-4)). Standard-dose 5FU did not significantly inhibit TS activity. In a relatively sensitive tumor (Colon 26-10), there was no difference in the initial extent of TS inhibition by the two 5FU doses, but TS was still inhibited (2-fold) on day 3 after (5FU(150)+UDPG) while it was within the normal range after 5FU(100). In both tumor types TS activity showed an impressive rebound (3-fold) on days 3-7, and this occurred after both 5FU doses. In Colon 26A, however, a new 5FU injection on day 7 was still able to inhibit TS but not as effectively as the first dose. 5FU incorporation into RNA reached similar peak values (8 pmol/&mgr;g RNA) after the two 5FU doses, but the clearance was faster in mice receiving UDPG rescue. We conclude that UDPG does not interfere with the extent of TS inhibition by 5FU, but UDPG allows the use of a higher dose of 5FU resulting in enhanced TS inhibition. UDPG, however, increases 5FU clearance from RNA. In this experimental system the inhibition of TS seems essential in order to obtain a good antitumor activity, while 5FU incorporation into RNA does not seem to play a role in the antitumor activity of 5FU. Since preliminary results indicate that UDPG is well tolerated by patients, the use of higher 5FU doses may improve the response rate of human tumors. Copyright 2002 S. Karger AG, Basel
机译:5-氟尿嘧啶(5FU)在几个实验系统中均显示出陡峭的剂量反应曲线,但该药物的毒性副作用阻碍了大剂量的临床使用。尿苷二磷酸葡萄糖(UDPG)抢救可使小鼠5FU的最大耐受剂量从100(FU(100))增加到150 mg / kg(5FU(150)+ UDPG),并且更高的剂量比标准治疗更有效针对几种肿瘤。在本文中,我们报告了大剂量5FU对胸苷酸合酶(TS)水平和5FU掺入RNA的影响。在耐药的鼠类肿瘤(结肠26A)中,大剂量5FU在治疗后8小时抑制了TS催化活性(4倍; p = 0.00041),并且抑制作用一直持续到第3天(p <10(-4))。标准剂量5FU没有明显抑制TS活性。在相对敏感的肿瘤(结肠26-10)中,两种5FU剂量对TS的初始抑制程度没有差异,但在(5FU(150)+ UDPG)后第3天,TS仍被抑制(2倍) )在5FU(100)之后处于正常范围内。在这两种肿瘤类型中,TS活性在第3-7天都显示出令人印象深刻的反弹(3倍),这在两次5FU剂量后均发生。然而,在结肠26A中,第7天新的5FU注射仍能抑制TS,但不如第一剂有效。在两次5FU剂量后,将5FU掺入RNA达到相似的峰值(8 pmol / mg RNA),但在接受UDPG拯救的小鼠中清除速度更快。我们得出结论,UDPG不会干扰5FU对TS的抑制程度,但是UDPG允许使用更高剂量的5FU,从而导致TS抑制作用增强。但是,UDPG可增加RNA中5FU的清除率。在该实验系统中,抑制TS似乎是获得良好的抗肿瘤活性所必需的,而将5FU掺入RNA似乎对5FU的抗肿瘤活性没有作用。由于初步结果表明患者对UDPG的耐受性良好,因此使用更高的5FU剂量可以提高人肿瘤的应答率。版权所有2002 S. Karger AG,巴塞尔

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