Gibson N W, Hartley J A, LaFrance R J, Vaughan K
Cancer Res. 1986 Oct;46(10):4999-5003.
A series of arylalkyltriazenes has been investigated for its differential cytotoxicity towards the HT-29 (Mer+) and BE (Mer-) cell lines and for its ability to cause DNA strand breaks and cross-links. A monomethyltriazene (MMPT) and some hydroxymethyltriazene derivatives capable of generating the monomethyltriazene in situ were preferentially cytotoxic to the BE cell line when compared with the HT-29 cell line. The differential toxicity of MMPT is very similar to the analogous monochloroethyltriazene. In contrast, the dimethyl- and monoethyltriazenes in the series display reduced toxicity towards the BE cell line with little or no differential toxicity between the BE and HT-29 cell lines. MMPT and monochloroethyltriazene caused single strand DNA breaks in the two cell lines, whereas little or no DNA strand breaks were observed in either cell line after exposure to the monoethyl- or dimethyltriazene. However, these lesions could not account for the differential cytotoxicity observed. In measurements of DNA interstrand cross-linking none of the agents tested, including monochloroethyltriazene and MMPT, was found to cause such linkages. In contrast to previous results obtained with bifunctional monochloroethylating agents, which produced a similar differential cytotoxicity between these two cell lines, our results tend to suggest that lesions other than DNA interstrand cross-links may be responsible for the mechanisms of cell killing by chloroethylating agents.
已对一系列芳基烷基三氮烯进行了研究,考察其对HT - 29(Mer +)和BE(Mer -)细胞系的差异细胞毒性,以及其导致DNA链断裂和交联的能力。与HT - 29细胞系相比,一种单甲基三氮烯(MMPT)和一些能够原位生成单甲基三氮烯的羟甲基三氮烯衍生物对BE细胞系具有优先细胞毒性。MMPT的差异毒性与类似的一氯乙基三氮烯非常相似。相比之下,该系列中的二甲基和单乙基三氮烯对BE细胞系的毒性降低,BE和HT - 29细胞系之间几乎没有差异毒性。MMPT和一氯乙基三氮烯在两种细胞系中均导致单链DNA断裂,而在暴露于单乙基或二甲基三氮烯后,在任一细胞系中均未观察到或仅观察到极少的DNA链断裂。然而,这些损伤并不能解释所观察到的差异细胞毒性。在DNA链间交联的测量中,所测试的试剂,包括一氯乙基三氮烯和MMPT,均未发现会导致这种交联。与之前使用双功能一氯乙基化剂获得的结果相反,双功能一氯乙基化剂在这两种细胞系之间产生了类似的差异细胞毒性,我们的结果倾向于表明,除DNA链间交联之外的损伤可能是氯乙基化剂导致细胞杀伤机制的原因。