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基于DNA端粒酶抑制作用的三、四和七环苝类似物作为新型潜在抗肿瘤药物

Tri-, tetra- and heptacyclic perylene analogues as new potential antineoplastic agents based on DNA telomerase inhibition.

作者信息

Sissi Claudia, Lucatello Lorena, Paul Krapcho A, Maloney David J, Boxer Matthew B, Camarasa Maria V, Pezzoni Gabriella, Menta Ernesto, Palumbo Manlio

机构信息

Department of Pharmaceutical Sciences, University of Padova, Via Marzolo, 5-35131 Padova, Italy.

出版信息

Bioorg Med Chem. 2007 Jan 1;15(1):555-62. doi: 10.1016/j.bmc.2006.09.029. Epub 2006 Oct 10.

Abstract

A recent approach in anticancer chemotherapy envisages telomerase as a potentially useful target. An attractive strategy deals with the development of compounds able to stabilize telomeric DNA in the G-quadruplex folded structure and, among them, a prominent position is found in the perylenes. With the aim to further investigate the role of drug structure, in view of possible pharmaceutical applications, we synthesized a series of compounds related to PIPER, a well-known perylene-based telomerase inhibitor. We modified the number of condensed aromatic rings and introduced different side chains to modulate drug protonation state and extent of self-aggregation. Effective telomerase inhibition was induced by heptacyclic analogues only, some showing a remarkably wide selectivity index with reference to inhibition of Taq polymerase. G-quadruplex stabilization was monitored by circular dichroism and melting experiments. Cell cytotoxicity measurements indicated a poor short-term cell killing ability for the best G-quartet binders. Besides the presence of a planar seven-condensed ring system, the introduction of a cyclic amine in the side chains critically affects the selectivity window.

摘要

抗癌化疗领域最近的一种方法设想将端粒酶作为一个潜在的有用靶点。一种有吸引力的策略是研发能够使端粒DNA稳定在G-四链体折叠结构的化合物,其中,苝类化合物占据显著地位。为了进一步研究药物结构的作用,考虑到可能的药物应用,我们合成了一系列与PIPER相关的化合物,PIPER是一种著名的基于苝的端粒酶抑制剂。我们改变了稠合芳香环的数量,并引入不同的侧链来调节药物的质子化状态和自聚集程度。仅七环类似物能有效抑制端粒酶,其中一些对Taq聚合酶的抑制表现出非常宽的选择性指数。通过圆二色性和熔解实验监测G-四链体的稳定性。细胞毒性测量表明,对于最佳的G-四重体结合剂,其短期细胞杀伤能力较差。除了存在平面七稠环系统外,侧链中引入环胺对选择性窗口有至关重要的影响。

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