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使用细胞色素P450 3A4与AQ4N联合的生物还原基因导向酶解前药疗法。

Bioreductive GDEPT using cytochrome P450 3A4 in combination with AQ4N.

作者信息

McCarthy Helen O, Yakkundi Anita, McErlane Verna, Hughes Ciara M, Keilty Gillian, Murray Margaret, Patterson Laurence H, Hirst David G, McKeown Stephanie R, Robson Tracy

机构信息

Radiation Science Research Group, School of Biomedical Sciences, University of Ulster at Jordanstown, Newtownabbey, County Antrim, UK.

出版信息

Cancer Gene Ther. 2003 Jan;10(1):40-8. doi: 10.1038/sj.cgt.7700522.

Abstract

The bioreductive drug, AQ4N, is metabolized under hypoxic conditions and has been shown to enhance the antitumor effects of radiation and chemotherapy drugs. We have investigated the role of cytochrome P450 3A4 (CYP3A4) in increasing the metabolism of AQ4N using a gene-directed enzyme prodrug therapy (GDEPT) strategy. RIF-1 murine tumor cells were transfected with a mammalian expression vector containing CYP3A4 cDNA. In vitro AQ4N metabolism, DNA damage, and clonogenic cell kill were assessed following exposure of transfected and parental control cells to AQ4N. The presence of exogenous CYP3A4 increased the metabolism of AQ4N and significantly enhanced the ability of the drug to cause DNA strand breaks and clonogenic cell death. Cotransfection of CYP reductase with CYP3A4 showed a small enhancement of the effect in the DNA damage assay only. A single injection of CYP3A4 into established RIF-1 murine tumors increased the metabolism of AQ4N, and when used in combination with radiation, three of nine tumors were locally controlled for >60 days. This is the first demonstration that CYPs alone can be used in a GDEPT strategy for bioreduction of the cytotoxic prodrug, AQ4N. AQ4N is the only CYP-activated bioreductive agent in clinical trials. Combination with a GDEPT strategy may offer a further opportunity for targeting radiation-resistant and chemo-resistant hypoxic tumor cells.

摘要

生物还原药物 AQ4N 在缺氧条件下会发生代谢,并且已显示其可增强放疗和化疗药物的抗肿瘤效果。我们采用基因导向酶前药疗法(GDEPT)策略,研究了细胞色素 P450 3A4(CYP3A4)在增加 AQ4N 代谢中的作用。用含有 CYP3A4 cDNA 的哺乳动物表达载体转染 RIF-1 小鼠肿瘤细胞。在将转染细胞和亲本对照细胞暴露于 AQ4N 后,评估体外 AQ4N 代谢、DNA 损伤和克隆源性细胞杀伤情况。外源性 CYP3A4 的存在增加了 AQ4N 的代谢,并显著增强了该药物导致 DNA 链断裂和克隆源性细胞死亡的能力。CYP 还原酶与 CYP3A4 共转染仅在 DNA 损伤试验中显示出效果有小幅增强。向已形成的 RIF-1 小鼠肿瘤中单次注射 CYP3A4 可增加 AQ4N 的代谢,并且当与放疗联合使用时,9 个肿瘤中有 3 个局部控制超过 60 天。这是首次证明细胞色素 P450 单独可用于 GDEPT 策略以对细胞毒性前药 AQ4N 进行生物还原。AQ4N 是临床试验中唯一的 CYP 激活生物还原剂。与 GDEPT 策略联合使用可能为靶向耐辐射和耐化疗的缺氧肿瘤细胞提供进一步的机会。

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