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首页> 外文期刊>British Journal of Cancer >Role of the semi-quinone free radical of the anti-tumour agent etoposide (VP-16-213) in the inactivation of single- and double-stranded ΦX174 DNA
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Role of the semi-quinone free radical of the anti-tumour agent etoposide (VP-16-213) in the inactivation of single- and double-stranded ΦX174 DNA

机译:依托泊苷抗肿瘤药(VP-16-213)的半醌自由基在单链和双链ΦX174DNA失活中的作用

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The mechanism of action of the anti-tumour agent etoposide (VP-16-213) could involve its bioactivation to metabolites which can damage DNA. Active metabolites of etoposide, generated in vitro, are the 3',4'-dihydroxy-derivative (catechol) and its oxidation product, the ortho-quinone. The conversion of the catechol into the ortho-quinone (and vice versa) proceeds via formation of a semi-quinone free radical. We investigated the role of this radical species in the inactivation of biologically active single- (ss) and double-stranded (RF) phi X174 DNA. Since the formation of semi-quinone free radicals from the ortho-quinone of etoposide is pH dependent, experiments were performed, in which the ortho-quinone was incubated at pH 4, 7.4 and greater than or equal to 9. ESR measurements showed no formation of radical species from the ortho-quinone at pH 4, but an increased rate of generation of the primary semi-quinone free radical at pH values 7.4 to 10; at still higher pH values a secondary semi-quinone free radical was produced. HPLC analyses demonstrated chemical stability of the ortho-quinone at pH 4, but an accelerated decay was observed when the pH was elevated from 7.4 to 9, with its concomitant conversion into more polar components and into the catechol of etoposide. Ss phi X174 DNA, exposed to the ortho-quinone, was inactivated at an increasing rate at pH values increasing from 4 to 7.4 and subsequently to 9. RF phi X174 DNA was only significantly inactivated in incubations with the ortho-quinone at pH 4, not at pH values 7.4 and 9. From these data it is concluded that the primary semi-quinone free radical of etoposide may to a great extent be responsible for the ortho-quinone-induced ss phi X174 DNA inactivation, but that this radical species is not lethal towards RF phi X174 DNA.
机译:抗肿瘤药依托泊苷(VP-16-213)的作用机制可能涉及其对可能破坏DNA的代谢物的生物活化。体外产生的依托泊苷的活性代谢产物是3',4'-二羟基衍生物(邻苯二酚)及其氧化产物邻醌。通过形成半醌自由基进行儿茶酚向邻醌的转化(反之亦然)。我们调查了这种自由基物种在生物活性单(ss)和双链(RF)phi X174 DNA失活中的作用。由于依托泊苷的邻醌形成的半醌自由基是pH依赖性的,因此进行了实验,其中将邻醌在pH 4、7.4和大于或等于9的温度下孵育。ESR测量表明没有形成pH值为4时来自邻醌的自由基种类增加,但在pH值为7.4至10时伯半醌自由基的生成速率增加;在更高的pH值下,产生了仲半醌自由基。 HPLC分析表明邻醌在pH值为4时具有化学稳定性,但当pH从7.4升高至9时,观察到加速降解,伴随而来的是向更多极性组分和依托泊苷的邻苯二酚转化。暴露于邻醌的Ss phi X174 DNA在pH值从4升高到7.4,然后升高到9时以较高的速率失活。仅在与pH 4的邻醌孵育时,RF phi X174 DNA才被显着失活。 pH值不在7.4和9时。从这些数据可以得出结论,依托泊苷的主要半醌自由基在很大程度上可能是邻醌诱导的ss phi X174 DNA失活的原因,但该自由基是对RF phi X174 DNA不致命。

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