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大剂量环磷酰胺处理的培养肿瘤细胞中细胞色素P450的持续表达及前体药物激活。前体药物给药方案对细胞色素P450基因导向酶前体药物疗法的影响。

Sustained P450 expression and prodrug activation in bolus cyclophosphamide-treated cultured tumor cells. Impact of prodrug schedule on P450 gene-directed enzyme prodrug therapy.

作者信息

Schwartz Pamela S, Chen Chong-Sheng, Waxman David J

机构信息

Division of Cell and Molecular Biology, Department of Biology, Boston University, Boston, Massachussetts 02215, USA.

出版信息

Cancer Gene Ther. 2003 Aug;10(8):571-82. doi: 10.1038/sj.cgt.7700601.

Abstract

Cytochrome P450-based gene therapy can substantially increase the sensitivity of tumor cells to P450-activated cancer chemotherapeutic prodrugs such as cyclophosphamide (CPA) without increasing host toxicity. While the role of 4-OH-CPA, the primary active metabolite of CPA, in eliciting tumor cell death is well established, the effect of 4-OH-CPA exposure on the capacity of P450-expressing tumor cells for continued metabolism and activation of CPA has not been investigated. The present study addresses this question and characterizes the impact of CPA dose and treatment schedule on the ability of P450-expressing tumor cells to sustain prodrug activation over time. 9L gliosarcoma cells expressing human P450 2B6 and treated with CPA in a continuous manner exhibited a time- and CPA dose-dependent decrease in P450-catalyzed CPA 4-hydroxylase activity. This decrease reflects a selective, 4-OH-CPA-induced loss of cellular P450 protein content. By contrast, when the P450-expressing tumor cells were treated with CPA as a single 8 hours exposure, cellular CPA 4-hydroxylase activity and P450 protein expression were substantially prolonged when compared to continuous prodrug treatment. This schedule-dependent effect of CPA was influenced by the level of P450 protein expressed in the tumor cells. At high P450 protein and activity levels, which could be achieved by culturing the tumor cells at high cell density, net production and release of 4-OH-CPA into the culture media was increased substantially. This increase fully offset the decline in CPA 4-hydroxylase activity as the tumor cells underwent CPA-induced apoptotic death. These findings demonstrate the impact of CPA dose and treatment schedule on the efficacy of P450 gene-directed enzyme prodrug therapy, with bolus CPA treatment being compatible with sustained expression of P450 protein and maintenance of P450-dependent prodrug activation by the target tumor tissue.

摘要

基于细胞色素P450的基因疗法可显著提高肿瘤细胞对P450激活的癌症化疗前体药物(如环磷酰胺,CPA)的敏感性,同时不会增加宿主毒性。虽然CPA的主要活性代谢产物4-羟基环磷酰胺(4-OH-CPA)在引发肿瘤细胞死亡中的作用已得到充分证实,但尚未研究4-OH-CPA暴露对表达P450的肿瘤细胞持续代谢和激活CPA能力的影响。本研究解决了这个问题,并描述了CPA剂量和治疗方案对表达P450的肿瘤细胞随时间维持前体药物激活能力的影响。持续用CPA处理的表达人细胞色素P450 2B6的9L胶质肉瘤细胞,其P450催化的CPA 4-羟化酶活性呈现出时间和CPA剂量依赖性降低。这种降低反映了4-OH-CPA诱导的细胞P450蛋白含量的选择性丧失。相比之下,当表达P450的肿瘤细胞单次暴露于CPA 8小时时,与持续前体药物处理相比,细胞CPA 4-羟化酶活性和P450蛋白表达显著延长。CPA的这种方案依赖性效应受肿瘤细胞中表达的P450蛋白水平的影响。在高细胞密度培养肿瘤细胞可实现的高P450蛋白和活性水平下,4-OH-CPA向培养基中的净产生和释放显著增加。随着肿瘤细胞经历CPA诱导的凋亡死亡,这种增加完全抵消了CPA 4-羟化酶活性的下降。这些发现证明了CPA剂量和治疗方案对P450基因导向酶前体药物疗法疗效的影响,推注CPA治疗与P450蛋白的持续表达以及靶肿瘤组织维持P450依赖性前体药物激活兼容。

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