n -苯甲酰腺嘌呤和6-三苯基膦嘌呤的三硼烷加合物的合成及其细胞毒性。

Tanya C Scarlett, Richard W Durham, Iris H Hall, Richard J Crosswicks, Joshua D Berkowitz, Bruce S Burnham
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引用次数: 4

摘要

选择n6 -苯甲酰腺嘌呤-氰硼烷(2)和6-三苯基膦嘌呤-氰硼烷(3)对小鼠和人肿瘤细胞系的细胞毒性、对人HL-60白血病代谢和DNA链断裂的影响进行研究,以确定这些化合物作为临床抗肿瘤药物的可行性。化合物2和3对L1210、P388、HL-60、Tmolt(3)、HUT-78、HeLa-S(3)子宫、回肠HCT-8和肝脏Hepe-2的ED(50)值均小于4马克/毫升,显示出有效的细胞毒性。化合物2对卵巢1-A9有活性,而化合物3仅对前列腺PL和胶质瘤UM有活性。两种化合物对肺549、乳腺MCF-7、骨肉瘤HSO、黑色素瘤SK2、KB鼻咽和THP-1急性单核细胞白血病的生长均无活性。在人类白血病HL-60细胞的作用模式研究中,这两种化合物在100 muM作用60分钟后都显示出对DNA和蛋白质合成的抑制作用。这些化合物在较小程度上抑制RNA合成。通过抑制DNA聚合酶α、m-RNA聚合酶、r-RNA聚合酶和t-RNA聚合酶的活性,确定化合物抑制了DNA模板的利用,这将导致DNA和RNA的合成受到充分抑制。两种化合物均能显著抑制二氢叶酸还原酶活性,特别是化合物2。在HL-60细胞中,这些化合物似乎在100 muM作用24小时后引起了DNA链的交联,这与在100 muM作用24小时后观察到的ct-DNA粘度增加一致。该化合物对DNA拓扑异构酶I和II活性或DNA-蛋白连接断裂无抑制作用。这两种化合物都没有通过核苷酸碱基的烷基化与DNA分子本身相互作用,也没有引起碱基对之间的DNA交叉。总的来说,这些抗肿瘤药物导致DNA和蛋白质复制的减少,从而导致癌细胞的死亡。
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Synthesis and cytotoxicity of cyanoborane adducts of n6-benzoyladenine and 6-triphenylphosphonylpurine.

N6-Benzoyladenine-cyanoborane (2), and 6-triphenylphosphonylpurine-cyanoborane (3) were selected for investigation of cytotoxicity in murine and human tumor cell lines, effects on human HL-60 leukemic metabolism and DNA strand scission to determine the feasibility of these compounds as clinical antineoplastic agents. Compounds 2 and 3 both showed effective cytotoxicity based on ED(50) values less than 4 mug/ml for L1210, P388, HL-60, Tmolt(3), HUT-78, HeLa-S(3) uterine, ileum HCT-8, and liver Hepe-2. Compound 2 had activity against ovary 1-A9, while compound 3 was only active against prostate PL and glioma UM. Neither compound was active against the growth of lung 549, breast MCF-7, osteosarcoma HSO, melanoma SK2, KB nasopharynx, and THP-1 acute monocytic leukemia. In mode of action studies in human leukemia HL-60 cells, both compounds demonstrated inhibition of DNA and protein syntheses after 60 min at 100 muM. These compounds inhibited RNA synthesis to a lesser extent. The utilization of the DNA template was suppressed by the compounds as determined by inhibition of the activities of DNA polymerase alpha, m-RNA polymerase, r-RNA polymerase and t-RNA polymerase, which would cause adequate inhibition of the synthesis of both DNA and RNA. Both compounds markedly inhibited dihydrofolate reductase activity, especially in compound 2. The compounds appeared to have caused cross-linking of the DNA strands after 24 hr at 100 muM in HL-60 cells, which was consistent with the observed increased in ct-DNA viscosity after 24 hr at 100 muM. The compounds had no inhibitory effects on DNA topoisomerase I and II activities or DNA-protein linked breaks. Neither compound interacted with the DNA molecule itself through alkylation of the nucleotide bases nor caused DNA interculation between base pairs. Overall, these antineoplastic agents caused reduction of DNA and protein replication, which would lead to killing of cancer cells.

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