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首页> 外文期刊>Journal of Medicinal Chemistry >Design, synthesis, and biological evaluation of cyclic and acyclic nitrobenzylphosphoramide mustards for E-coli nitroreductase activation
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Design, synthesis, and biological evaluation of cyclic and acyclic nitrobenzylphosphoramide mustards for E-coli nitroreductase activation

机译:环状和无环硝基苄基磷酰胺芥菜对大肠杆菌硝基还原酶活化的设计,合成和生物学评估

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In efforts to obtain anticancer prodrugs for antibody-directed or gene-directed enzyme prodrug therapy using E. coli nitroreductase, a series of nitrobenzylphosphoramide mustards were designed and synthesized incorporating a strategically placed nitro group in a position para to the benzylic carbon for reductive activation. All analogues were good substrates of E. coli nitroreductase with half-lives between 2.9 and 11.9 min at pH 7.0 and 37 degrees C. Isomers of the 4-nitrophenylcyclophosphamide analogues 3 and 5 with a benzylic oxygen para to the nitro group showed potent selective cytotoxicity in nitroreductase (NTR) expressing cells, while analogues 4 and 6 with a benzylic nitrogen para to the nitro group showed little selective cytotoxicity despite their good substrate activity. These results suggest that good substrate activity and the benzylic oxygen are both required for reductive activation of 4-nitrophenylcyclophosphamide analogues by E. coli nitroreductase. Isomers of analogue 3 showed 23000-29000 x selective cytotoxicity toward NTR-expressing V79 cells with an IC50 as low as 27 nM. They are about as active as and 3-4x more selective than 5-aziridinyl-2,4-dinitrobenzamide (CB1954). The acyclic 4-nitrobenzylphosphoramide mustard ((+/-)-7) was found to be the most active and most selective compound for activation by NTR with 170000x selective cytotoxicity toward NTR-expressing V79 cells and an IC50 of 0.4 nM. Compound (+/-)-7 also exhibited good bystander effect compared to 5-aziridinyl-2,4-dinitrobenzamide. The low IC50, high selectivity, and good bystander effects of nitrobenzylphosphoramide mustards in NTR-expressing cells suggest that they could be used in combination with E. coli nitroreductase in enzyme prodrug therapy.
机译:为了努力获得用于使用大肠杆菌硝基还原酶进行抗体指导或基因指导的酶治疗的抗癌前药,设计并合成了一系列硝基苄基磷酰胺芥末,并在与苄基碳相对的位置上策略性地放置了硝基,以进行还原活化。所有类似物均是大肠杆菌硝基还原酶的良好底物,在pH 7.0和37摄氏度下的半衰期在2.9至11.9分钟之间。4-硝基苯基环磷酰胺类似物3和5的异构体与对硝基的苄基氧表现出强的选择性细胞毒性在表达硝基还原酶(NTR)的细胞中,尽管具有良好的底物活性,但是具有对硝基的苄基氮的类似物4和6却几乎没有选择性的细胞毒性。这些结果表明,良好的底物活性和苄基氧都是通过大肠杆菌硝基还原酶还原活化4-硝基苯基环磷酰胺类似物所必需的。类似物3的异构体对表达NTR的V79细胞显示23000-29000 x选择性细胞毒性,IC50低至27 nM。它们的活性与5-氮丙啶基-2,4-二硝基苯甲酰胺(CB1954)相同,选择性高3-4倍。发现无环4-硝基苄基磷酰胺芥子((+/-)-7)是最有效和最选择性的化合物,可被NTR激活,对表达NTR的V79细胞具有170000倍的选择性细胞毒性,IC50为0.4 nM。与5-氮丙啶基-2,4-二硝基苯甲酰胺相比,化合物(+/-)-7还表现出良好的旁观者效应。硝基苄基磷酰胺芥菜在表达NTR的细胞中的低IC50值,高选择性和良好的旁观者效应表明它们可与大肠杆菌硝基还原酶联合用于酶前药治疗。

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