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Synthesis and biological activity of fused tetracyclic Pyrrolo21-c14benzodiazepines

机译:稠合四环吡咯并21-c 14苯并二氮杂s的合成及生物活性

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摘要

Cancer remains the second major cause of death in the world. Thus, there is a pressing need to identify potential synthetic route for the development of novel anticancer agents which will serve as lead compounds to effectively combat this life-threatening epidemic. Pyrrolo[2,1-c][1,4]benzodiazepines (PBDs) have sparked a great interest as lead compounds because of their cancerostatic and anti-infective properties. The twisted molecular structure of PBD analogs provides both helical and chiral elements. In an effort to expand novel PBDs that interact with the key exocyclic amino group of the DNA-guanine base, we hypothesized that construction of a fused cyclic active system, would likely serve as an electrophilic site when compared to traditional electrophilic C11-N10 imine group. To examine our theory, we report herein the synthesis and cell viability/cytotoxicity of a series of PBD analogs using NCI-60 cell lines screening. Thus, compounds >1–>13 were synthesized and fully characterized. The selected PBDs were found to have marginal inhibition of growth, up to 30%, for certain cell lines.
机译:癌症仍然是世界上第二大死亡原因。因此,迫切需要确定潜在的合成路线来开发新型抗癌药,这些抗癌药将作为有效对抗这种威胁生命的流行的先导化合物。吡咯并[2,1-c] [1,4]苯并二氮杂(PBDs)由于其抗癌和抗感染性能而引起人们对作为先导化合物的兴趣。 PBD类似物的扭曲分子结构提供了螺旋和手性元素。为了扩展与DNA-鸟嘌呤碱基的关键环外氨基相互作用的新型PBD,我们假设与传统的亲电C11-N10亚胺基团相比,稠合的环状活性系统的构建可能会成为亲电位点。为了检验我们的理论,我们在这里报告了使用NCI-60细胞系筛选的一系列PBD类似物的合成以及细胞活力/细胞毒性。因此,合成了化合物> 1 – > 13 并对其进行了全面表征。对于某些细胞系,发现所选的PBD具有边际生长抑制作用,最高可达30%。

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