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细胞色素P450还原酶活性在决定乳腺肿瘤细胞对生物还原药物替拉扎明(SR 4233)敏感性中的重要性。

Importance of P450 reductase activity in determining sensitivity of breast tumour cells to the bioreductive drug, tirapazamine (SR 4233).

作者信息

Patterson A V, Barham H M, Chinje E C, Adams G E, Harris A L, Stratford I J

机构信息

MRC Radiobiology Unit, Chilton, Didcot, Oxon, UK.

出版信息

Br J Cancer. 1995 Nov;72(5):1144-50. doi: 10.1038/bjc.1995.478.

Abstract

P450 reductase (NADPH:cytochrome P450 reductase, EC 1.6.2.4) is known to be important in the reductive activation of the benzotriazene-di-N-oxide tirapazamine (SR 4233). Using a panel of six human breast adenocarcinoma cell lines we have examined the relationship between P450 reductase activity and sensitivity to tirapazamine. The toxicity of tirapazamine was found to correlate strongly with P450 reductase activity following an acute (3 h) exposure under hypoxic conditions, the drug being most toxic in the cell lines with the highest P450 reductase activity. A similar correlation was also observed following a chronic (96 h) exposure to the drug in air but not following acute (3 h) exposure in air. We have also determined the ability of lysates prepared from the cell lines to metabolise tirapazamine to its two-electron reduced product, SR 4317, under hypoxic conditions using NADPH as an electron donor. The rate of SR 4317 formation was found to correlate both with P450 reductase activity and with sensitivity to tirapazamine, the highest rates of SR 4317 formation being associated with the highest levels of P450 reductase activity and the greatest sensitivity to the drug. These findings indicate a major role for P450 reductase in determining the hypoxic toxicity of tirapazamine in breast tumour cell lines.

摘要

P450还原酶(NADPH:细胞色素P450还原酶,EC 1.6.2.4)在苯并三氮烯二-N-氧化物替拉扎明(SR 4233)的还原激活中起着重要作用。我们使用一组六种人乳腺腺癌细胞系,研究了P450还原酶活性与对替拉扎明敏感性之间的关系。在缺氧条件下急性(3小时)暴露后,发现替拉扎明的毒性与P450还原酶活性密切相关,该药物在P450还原酶活性最高的细胞系中毒性最大。在空气中对该药物进行慢性(96小时)暴露后也观察到类似的相关性,但在空气中急性(3小时)暴露后未观察到。我们还测定了从细胞系制备的裂解物在缺氧条件下使用NADPH作为电子供体将替拉扎明代谢为其二电子还原产物SR 4317的能力。发现SR 4317的形成速率与P450还原酶活性和对替拉扎明的敏感性均相关,SR 4317形成速率最高与P450还原酶活性水平最高以及对该药物的最大敏感性相关。这些发现表明P450还原酶在确定替拉扎明对乳腺肿瘤细胞系的缺氧毒性中起主要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9740/2033939/9b2204d82579/brjcancer00045-0087-a.jpg

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