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DT-黄递酶在醌类的激活与解毒过程中的作用。丝裂霉素C的生物还原激活作用。

DT-diaphorase in activation and detoxification of quinones. Bioreductive activation of mitomycin C.

作者信息

Ross D, Siegel D, Beall H, Prakash A S, Mulcahy R T, Gibson N W

机构信息

School of Pharmacy, University of Colorado Health Sciences Center, Denver 80262.

出版信息

Cancer Metastasis Rev. 1993 Jun;12(2):83-101. doi: 10.1007/BF00689803.

Abstract

A role of DTD in the bioreductive activation of mitomycin C was supported by indirect evidence utilizing enzyme inhibitors in cellular systems. Using a cell-free system, we have confirmed that DTD can bioactivate mitomycin C using both purified rat and human DTD. Metabolism and bioactivation of mitomycin C by DTD is pH-dependent. At pH 7.8 alkylation of DTD leading to enzyme inhibition and DTD crosslinking occurs whereas at pH values of 7.4 and below metabolite formation, preservation of catalytic activity of DTD and sequence-selective DNA crosslinking occurs. Bioactivation of mitomycin C by DTD and the cytotoxicity of this drug in DTD-rich cell lines is oxygen-independent. Mitomycin C induces greater DNA crosslinking, even after chemical reduction, at lower pH values. This suggests that if mitomycin C is used in tumors with elevated DTD activity, greater therapeutic activity may be obtained by lowering intratumoral pH. Human NSCLC has elevated DTD activity relative to SCLC and normal lung and may be a target for the development of drugs which can be efficiently bioactivated by DTD. Because of the pH-dependent inactivation of DTD by mitomycin C, however, other drugs which are efficiently metabolized and bioactivated by DTD may be better candidates for the therapy of tumors high in DTD such as NSCLC.

摘要

利用细胞系统中的酶抑制剂所获得的间接证据支持了DTD在丝裂霉素C生物还原激活过程中的作用。使用无细胞系统,我们已证实,无论是纯化的大鼠还是人DTD都能使丝裂霉素C发生生物激活。DTD对丝裂霉素C的代谢和生物激活作用依赖于pH值。在pH 7.8时,DTD发生烷基化,导致酶抑制和DTD交联,而在pH值为7.4及以下时,则会发生代谢物形成、DTD催化活性的保留以及序列选择性DNA交联。DTD对丝裂霉素C的生物激活以及该药物在富含DTD的细胞系中的细胞毒性与氧无关。即使经过化学还原,丝裂霉素C在较低pH值下也能诱导更强的DNA交联。这表明,如果在DTD活性升高的肿瘤中使用丝裂霉素C,通过降低肿瘤内pH值可能会获得更大的治疗活性。相对于小细胞肺癌和正常肺组织,人非小细胞肺癌的DTD活性升高,可能是开发可被DTD有效生物激活的药物的靶点。然而,由于丝裂霉素C会使DTD发生pH依赖性失活,其他可被DTD有效代谢和生物激活的药物可能是治疗DTD含量高的肿瘤(如非小细胞肺癌)的更好候选药物。

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